WO2015064593A1 - Strip-winding device - Google Patents

Strip-winding device Download PDF

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Publication number
WO2015064593A1
WO2015064593A1 PCT/JP2014/078670 JP2014078670W WO2015064593A1 WO 2015064593 A1 WO2015064593 A1 WO 2015064593A1 JP 2014078670 W JP2014078670 W JP 2014078670W WO 2015064593 A1 WO2015064593 A1 WO 2015064593A1
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WO
WIPO (PCT)
Prior art keywords
sheet
piece
winding
hole
pressing
Prior art date
Application number
PCT/JP2014/078670
Other languages
French (fr)
Japanese (ja)
Inventor
浩明 高橋
友亮 工藤
Original Assignee
マックス株式会社
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from JP2014038040A external-priority patent/JP5696800B2/en
Priority claimed from JP2014089403A external-priority patent/JP5700157B2/en
Application filed by マックス株式会社 filed Critical マックス株式会社
Publication of WO2015064593A1 publication Critical patent/WO2015064593A1/en

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65HHANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H37/00Article or web delivery apparatus incorporating devices for performing specified auxiliary operations
    • B65H37/04Article or web delivery apparatus incorporating devices for performing specified auxiliary operations for securing together articles or webs, e.g. by adhesive, stitching or stapling
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B26HAND CUTTING TOOLS; CUTTING; SEVERING
    • B26FPERFORATING; PUNCHING; CUTTING-OUT; STAMPING-OUT; SEVERING BY MEANS OTHER THAN CUTTING
    • B26F1/00Perforating; Punching; Cutting-out; Stamping-out; Apparatus therefor
    • B26F1/32Hand-held perforating or punching apparatus, e.g. awls
    • B26F1/36Punching or perforating pliers
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B42BOOKBINDING; ALBUMS; FILES; SPECIAL PRINTED MATTER
    • B42BPERMANENTLY ATTACHING TOGETHER SHEETS, QUIRES OR SIGNATURES OR PERMANENTLY ATTACHING OBJECTS THERETO
    • B42B5/00Permanently attaching together sheets, quires or signatures otherwise than by stitching
    • B42B5/04Permanently attaching together sheets, quires or signatures otherwise than by stitching by laces or ribbons
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B42BOOKBINDING; ALBUMS; FILES; SPECIAL PRINTED MATTER
    • B42BPERMANENTLY ATTACHING TOGETHER SHEETS, QUIRES OR SIGNATURES OR PERMANENTLY ATTACHING OBJECTS THERETO
    • B42B5/00Permanently attaching together sheets, quires or signatures otherwise than by stitching
    • B42B5/08Permanently attaching together sheets, quires or signatures otherwise than by stitching by finger, claw or ring-like elements passing through the sheets, quires or signatures

Definitions

  • the present invention relates to a single winding device for winding a piece around a hole formed in a sheet.
  • Patent Document 1 and Patent Document 2 There is a binding tool that binds with a tape instead of a metal needle when binding a document (see Patent Document 1 and Patent Document 2).
  • a binding tool that binds with a tape instead of a metal needle when binding a document.
  • an adhesive tape used for the binding operation is sent out by a tape automatic feeding mechanism, and the rear end of the adhesive tape is attached to the bottom of the document with a pressing portion from below.
  • lift the blade with a hole in the document and simultaneously insert the tape into the hole and feed it to the top of the document bundle.
  • the sticking tape is wound in a C shape.
  • the binding device of Patent Document 1 since the adhesive tape is only wound in a C shape, the holding force is weak.
  • the binding tool disclosed in Patent Document 2 when a sheet is inserted, the end of the sheet is pressed against the tape that is waiting to be peeled off, and after the tape is attached to the end of the sheet, the punching blade is penetrated through the sheet.
  • the sheet can be bound with the tape by penetrating the end of the tape attached to the end of the sheet as it is pulled out.
  • the binding tool disclosed in Patent Document 1 is bent when the paper is inserted and the end of the paper is pressed against the tape that is waiting to be peeled off and the tape is attached to the end of the paper.
  • the present invention has been made in view of the above-described problems, and an object of the present invention is to provide a single-winding device that can reliably wind a piece around a sheet and further increase the holding force.
  • the single-winding device has a piece of a piece adhered to one surface of the sheet, and the free end side of the piece is inserted into the hole of the sheet by a winding tool. Then, the piece is wound around at least four surfaces of one side of the sheet, the end surface of the sheet, the other surface, and the end surface of the hole. For example, when the winding tool rotates and winds the piece around the sheet, the end surface of the sheet is pressed from the end surface side of the sheet while pressing the piece at the tip, in order of the end surface of the hole, It is wound around a sheet and a part of the piece is inserted into the hole.
  • the single winding device may further include a pressing member that presses the sheet when the piece is wound around the sheet.
  • the pressing member can be provided at a position that does not overlap the movable region of the winding tool.
  • the single-winding device includes a punching blade for punching a hole in a sheet, and a piece partially bonded to one surface of the sheet in conjunction with the operation of the punching blade. It is also possible to insert a piece into the hole after the punching blade has perforated the sheet.
  • the single winding device according to the present invention includes a rotating handle, and the punching blade punches the hole in the sheet while the handle reciprocates, and the winding tool inserts the piece into the hole. May be.
  • the single winding device includes a rotating handle, and the punching blade pierces the hole in the sheet while the handle moves forward, and the winding tool inserts the piece into the hole. May be.
  • the single winding device according to the present invention winds a piece attached to one surface of a sheet having holes from one surface of the sheet to the other surface, and inserts the piece into the hole from the other surface of the sheet. .
  • the piece winding device according to the present invention rotates so that the tip moves from the end side of the sheet to the hole of the sheet while pushing the piece.
  • the piece may have an adhesive layer.
  • a positioning member for positioning the sheet may be further provided.
  • the winding tool is provided so as to be movable from one surface of the sheet to the other surface, and a piece attached to one surface of the sheet is wound from one surface of the sheet to the other surface. Then, the sheet may be moved from one surface of the sheet to the other surface and inserted into the hole from the other surface of the sheet. Further, the winding tool is provided so as to be movable from one surface of the sheet to the other surface, and is attached to one surface of the sheet while being moved from one surface of the sheet to the other surface. A piece may be wound from one side of the sheet to the other side and inserted into the hole from the other side of the sheet.
  • the winding tool rotates so that the tip moves from the hole of the sheet to the end side of the sheet while pushing the piece. Is provided. Furthermore, you may make it further provide the other winding tool rotated so that a front-end
  • the winding tool when winding a piece around a sheet having a hole, the winding tool rotates so that the leading end of the winding tool moves from the sheet end side to the sheet hole while pushing the piece.
  • a piece attached to one surface of the sheet is wound from one surface of the sheet to the other surface, inserted into the hole from the other surface of the sheet, and into a sheet having a hole. Since the pieces are wound and the pieces are wound over the four surfaces, the pieces can be firmly wound around the sheet.
  • the present invention when winding a piece around a sheet having a hole, the winding tool is rotated so that the tip of the winding tool moves from the end side of the sheet to the hole in the sheet while pushing the piece, A piece attached to one side of the sheet is wound from one side of the sheet to the other side, inserted into the hole from the other side of the sheet, and the piece is wound around the sheet having holes. Any sheet can be surely wrapped around the sheet with a beautiful finish without wrinkles or bending scratches. Further, since the means for making the hole is different from the means for passing the tape through the hole, the load for inserting the tape into the hole in the paper is small, and the adhesive strength of the tape is not lowered.
  • FIG. 3A is a perspective view from the other surface side of the sheet bundle, showing a state where a piece is wound around the sheet bundle having holes.
  • FIG. 3B shows a state in which a piece is wound around a sheet bundle having holes, and
  • FIG. 3B is a plan view from the other surface side of the sheet bundle.
  • FIG. 3C is a perspective view from one surface side of the sheet bundle, showing a state in which a piece is wound around the sheet bundle having holes.
  • FIG. 3D is a cross-sectional view illustrating a state where a piece is wound around a sheet bundle having holes.
  • FIG. 4A is a plan view showing a belt-like body.
  • FIG. 4B is a cross-sectional view showing a belt-like body.
  • FIG. 4C is an enlarged cross-sectional view showing a state in which the piece is placed on the pedestal. It is a perspective view of a dust case.
  • 6A is a cross-sectional view of the single feed mechanism
  • FIG. 6B is a plan view showing the positional relationship between the piece, the upper guide member, and the lower guide member
  • FIG. 8A is sectional drawing which showed the state at the time of standby.
  • FIG. 8B is a cross-sectional view showing a state when the sheet bundle is punched out with a punching blade. It is sectional drawing which shows a winding tool, and FIG. 8C is sectional drawing which showed the state at the time of winding.
  • FIG. 9A is a diagram showing the positional relationship between the hole end surface of the hole of the sheet bundle that interferes with each other and the base end side corner of the winding tool, and FIG. 9A shows an example of a small number of sheet bundles.
  • FIG. 9B is a diagram showing the positional relationship between the hole end surface of the hole of the sheet bundle that interferes with each other and the base end side corner of the winding tool, and FIG. 9B shows an example of a large number of thick sheet bundles.
  • FIG. 12A is a cross-sectional view showing a standby state of the winding mechanism.
  • FIG. 12B is a cross-sectional view showing a state of the winding mechanism when the punching operation is started.
  • FIG. 13A is a cross-sectional view showing a state of the winding mechanism when the handle is at the bottom dead center.
  • FIG. 13B is a cross-sectional view showing a state of the winding mechanism when the winding claw winds the piece around the hole. It is sectional drawing which shows the state of a winding mechanism when a handle returns to a standby state.
  • FIG. 16A is a side view showing the sliding operation of the drilling unit.
  • FIG. 16B is a perspective view showing a state where the punching unit is in the standby position. It is a front view of a perforation unit.
  • FIG. 26A is a side view showing a state where a small number of sheet bundles are inserted.
  • FIG. 26B is a side view showing a state in which the pressing portion has been lowered to the lowest point and then retracted to a position where a load is not applied to the sheet bundle following the operation of the return path of the handle.
  • FIG. 27A is a side view showing a state in which a large number of thick sheet bundles are inserted.
  • FIG. 27B is a side view showing a state in which the pressing portion is lowered to the lowest point and then retracted to a position where the load is not applied to the sheet bundle following the return path operation of the handle.
  • FIG. 28A is a plan view illustrating a pressing portion that presses the sheet bundle at two positions on both sides of the punching blade.
  • FIG. 28B is a plan view illustrating an example in which the periphery of the punching blade is pressed by an example of a pressing region.
  • FIG. 29A is a side view showing a modification in which a push-up member is urged in a push-up direction by a coil spring.
  • FIG. 29B is a side view showing a modified example in which the push-up member is biased in the push-up direction by the torsion coil spring.
  • FIG. 29C is a side view showing a modification in which the push-up member is moved up and down with a gear.
  • FIG. 30A is a side view showing a modification in which the pressing member of the sheet bundle is driven by the drive unit.
  • FIG. 30B is a side view illustrating a modification in which the pressing member of the sheet bundle is driven by the driving unit.
  • FIG. 31A is a diagram illustrating a relationship between the wound claw and the sheet pressing member.
  • FIG. 31B is a diagram illustrating a relationship between the winding claw and the sheet pressing member.
  • FIG. 31C is a diagram illustrating a relationship between the winding claws and the sheet pressing member.
  • FIG. 32A is a continuation of FIGS. 31A to 31C and shows the relationship between the wound claw and the sheet pressing member.
  • FIG. 32B is a continuation of FIGS. 31A to 31C and shows the relationship between the wound claw and the sheet pressing member.
  • FIG. 32C is a continuation of FIGS. 31A to 31C and shows the relationship between the wound claw and the sheet pressing member.
  • FIG. 33A is a diagram illustrating a modification of the pressure bonding member.
  • FIG. 33B is a diagram illustrating a modification of the pressure bonding member.
  • FIG. 33C is a diagram illustrating a modification of the pressure bonding member.
  • FIG. 34A is a modified example of the pressure bonding member and is a diagram illustrating an example using a roller.
  • FIG. 34B is a modified example of the pressure bonding member and is a diagram illustrating an example using a roller.
  • FIG. 35A is a modified example of the pressure bonding member and is a diagram illustrating an example of pressing.
  • FIG. 35A is a modified example of the pressure bonding member and is a diagram illustrating an example of pressing.
  • 35B is a modified example of the pressure bonding member and is a diagram illustrating an example of pressing. It is sectional drawing of a single winding apparatus, and shows the state which the rotation lever raised. It is sectional drawing which shows the standby state of a single winding apparatus. It is sectional drawing which shows a state when a handle
  • FIG. 39 is a cross-sectional view showing a state where the handle is rotated from FIG. 38 and during a piece feeding operation. It is sectional drawing which shows the state which the extraction blade contacted the maximum number of sheet bundle. It is sectional drawing which shows the state which the sheet
  • FIG. 6 is a cross-sectional view illustrating a state where a punching blade has been removed from a sheet bundle. It is sectional drawing which shows the state which the sheet
  • FIG. 51A is an exploded perspective view of the sheet pressing and holding mechanism.
  • FIG. 51B is an exploded perspective view of the sheet pressing and holding mechanism. It is a side view of a sheet pressing and holding mechanism when the handle is in a standby state.
  • FIG. 9 is a side view of the sheet pressing and holding mechanism when the punching blade punches out the sheet bundle when a small number of sheet bundles are inserted, and shows a state where the sheet pressing member holds the sheet bundle by the holding member.
  • FIG. 51A is an exploded perspective view of the sheet pressing and holding mechanism.
  • FIG. 51B is an exploded perspective view of the sheet pressing and holding mechanism. It is a side view of a sheet pressing and holding mechanism when the handle is in a standby state.
  • FIG. 9 is a side view of the sheet pressing and holding mechanism when the punching blade punches out the sheet bundle when a small number of sheet bundles are inserted, and shows a state where the sheet pressing member holds the sheet bundle by the holding member.
  • FIG. 6 is a side view of the sheet pressing and holding mechanism when the punching blade punches out the sheet bundle when the maximum number of sheet bundles are inserted, and shows a state in which the sheet pressing member holds the sheet bundle by the holding member. It is a side view which shows the state which the lock
  • FIG. 56A is a diagram illustrating a case where the punching blade and the winding tool are each driven by a motor.
  • FIG. 56B is a diagram illustrating a case where the punching blade and the winding tool are each driven by a motor.
  • FIG. 56C is a diagram illustrating a case where the punching blade and the winding tool are each driven by a motor.
  • FIG. 57A is a view showing a modification of the winding mechanism using the first to third pressing levers.
  • FIG. 57B is a diagram showing a modification of the winding mechanism using the first to third pressing levers.
  • FIG. 57C is a diagram showing a modification of the winding mechanism using the first to third pressing levers.
  • FIG. 57D is a diagram showing a modification of the winding mechanism using the first to third pressing levers.
  • FIG. 57E is a view showing a modification of the winding mechanism using the first to third pressing levers.
  • FIG. 57F is a diagram showing a modification of the winding mechanism using the first to third pressing levers.
  • FIG. 57G is a diagram showing a modification of the winding mechanism using the first to third pressing levers.
  • FIG. 57H is a diagram showing a modification of the winding mechanism using the first to third pressing levers.
  • FIG. 58A is a diagram showing a modification in which pieces are attached to three surfaces using a winding nail.
  • FIG. 58B is a diagram showing a modification in which pieces are attached to three surfaces using a winding nail.
  • FIG. 59A is a diagram illustrating a modification in which pieces are attached to three surfaces using the first and second pressing levers.
  • FIG. 59B is a diagram showing a modification in which pieces are attached to three surfaces using the first and second pressing levers.
  • FIG. 59C is a diagram showing a modification in which pieces are attached to three surfaces using the first and second pressing levers.
  • FIG. 61A is a cross-sectional view showing a state in which the handle starts to rotate.
  • FIG. 61B is a cross-sectional view showing a state where the punching blade is perforating the sheet bundle.
  • FIG. 62A is a cross-sectional view showing a state in which the pressing operation member is detached from the punching blade.
  • FIG. 62B is a cross-sectional view showing a state where the handle is further rotated.
  • FIG. 63A is a cross-sectional view showing a state where the slide operation piece of the handle presses the engagement piece of the slider.
  • FIG. 63B is a cross-sectional view showing a state in which the winding tool winds the piece around the hole of the sheet bundle.
  • FIG. 64A is a diagram illustrating modifications in which the perforation unit is variously moved with respect to the base unit.
  • FIG. 64B is a diagram illustrating modifications in which the perforation unit is variously moved with respect to the base unit.
  • FIG. 64C is a diagram illustrating modifications in which the perforation unit is variously moved with respect to the base unit.
  • FIG. 64D is a diagram illustrating modifications in which the perforation unit is variously moved with respect to the base unit.
  • FIG. 64E is a diagram showing modifications in which the perforation unit is moved variously with respect to the base unit.
  • FIG. 64F is a diagram illustrating modifications in which the perforation unit is variously moved with respect to the base unit.
  • FIG. 64G is a diagram illustrating modifications in which the perforation unit is variously moved with respect to the base unit.
  • FIG. 64H is a diagram illustrating modifications in which the perforation unit is variously moved with respect to the base unit.
  • FIG. 64I is a diagram showing modifications in which the perforation unit is variously moved with respect to the base unit.
  • FIG. 65A is a diagram illustrating modifications in which the perforation unit is variously moved with respect to the base unit.
  • FIG. 65B is a diagram illustrating modifications in which the perforation unit is variously moved with respect to the base unit.
  • FIG. 65C is a diagram illustrating modifications in which the perforation unit is variously moved with respect to the base unit.
  • FIG. 65D is a diagram illustrating modifications in which the perforation unit is variously moved with respect to the base unit.
  • FIG. 65E is a diagram showing modifications in which the perforation unit is moved variously with respect to the base unit.
  • FIG. 65F is a diagram illustrating modifications in which the perforation unit is variously moved with respect to the base unit.
  • FIG. 65G is a diagram illustrating modifications in which the perforation unit is variously moved with respect to the base unit.
  • FIG. 65H is a diagram illustrating modifications in which the perforation unit is variously moved with respect to the base unit.
  • FIG. 65I is a diagram showing modifications in which the perforation unit is moved variously with respect to the base unit.
  • FIG. 66A is a diagram illustrating modifications in which the perforation unit is variously moved with respect to the base unit.
  • FIG. 66B is a diagram illustrating modifications in which the perforation unit is variously moved with respect to the base unit.
  • FIG. 66C is a diagram illustrating modifications in which the perforation unit is variously moved with respect to the base unit.
  • FIG. 66D is a diagram illustrating modifications in which the perforation unit is variously moved with respect to the base unit.
  • FIG. 67A is a perspective view from one surface side of the sheet, showing a state where a piece is wound around the sheet having holes.
  • FIG. 67A is a perspective view from one surface side of the sheet, showing a state where a piece is wound around the sheet having holes.
  • FIG. 67B is a plan view from one surface side of the sheet, showing a state where a piece is wound around the sheet having holes.
  • FIG. 67C is a perspective view from the other surface side of the sheet, showing a state where a piece is wound around the sheet having holes.
  • FIG. 67D is a cross-sectional view illustrating a state where a piece is wound around a sheet having holes.
  • FIG. 68A is a plan view showing a belt-like body.
  • FIG. 68B is a cross-sectional view showing a belt-like body.
  • FIG. 68C is an enlarged cross-sectional view showing a state in which the piece is placed on the pedestal.
  • FIG. 69A is a cross-sectional view showing a standby state.
  • FIG. 69B is a cross-sectional view showing a state at the time of winding.
  • It is sectional drawing which showed the single winding apparatus to which this invention is applied. It is sectional drawing which showed the state in which the sheet
  • FIG. 77A is sectional drawing which showed the state at the time of standby.
  • the 1st modification of the single winding apparatus with which the winding tool comprised by 2 members is shown
  • FIG. 77B is sectional drawing which showed the state at the time of a winding start.
  • the 1st modification of the single winding apparatus with which the winding tool comprised by 2 members is shown, and FIG.
  • FIG. 77C is sectional drawing which showed the state at the time of winding completion.
  • the 3rd modification of the single winding apparatus is shown, FIG. 78A is sectional drawing which showed the state at the time of standby.
  • the 3rd modification of the single winding apparatus is shown, FIG. 78B is sectional drawing which showed the state at the time of winding.
  • a fourth modification of the single-winding device is shown, and FIG. 79A is a cross-sectional view showing a standby state.
  • the 4th modification of the single winding apparatus is shown, FIG. 79B is sectional drawing which showed the state at the time of winding.
  • the 5th modification of the single winding apparatus is shown, and FIG. 80A is sectional drawing which showed the state at the time of standby.
  • FIG. 80B is sectional drawing which showed the state at the time of winding.
  • FIG. 81A is a cross-sectional view showing a standby state, showing a sixth modified example of a single winding device that winds a piece around a sheet having a hole with a first winding tool and a second winding tool.
  • FIG. 81B shows a sixth modification of the single-winding device that winds a piece around a sheet having a hole by the first winding tool and the second winding tool, and FIG. 81B winds the piece around the sheet by the first winding tool. It is sectional drawing which showed the state.
  • FIG. 81A is a cross-sectional view showing a standby state, showing a sixth modified example of a single winding device that winds a piece around a sheet having a hole with a first winding tool and a second winding tool.
  • FIG. 81B shows a sixth modification of the single-winding device that winds a piece around a sheet having a hole by the first
  • FIG. 81C shows a sixth modification of the single winding device that winds a piece around a sheet having a hole with the first winding tool and the second winding tool, and FIG. 81C winds the piece around the sheet with the second winding tool. It is sectional drawing which showed the state.
  • FIG. 81D is a cross-sectional view showing a modified example of FIG. 81B, showing a sixth modified example of a single-winding device that winds a piece around a sheet having holes with a first wound tool and a second wound tool.
  • FIG. 82A is a cross-sectional view showing a standby state, showing a seventh modification of the single winding device in which the winding tool is movably provided from one surface side of the sheet to the other surface side.
  • FIG. 82B shows a seventh modification of the single winding device in which the winding tool is movably provided from one surface side of the sheet to the other surface side, and FIG. 82B shows the winding tool from the one surface side of the sheet to the other surface side. It is sectional drawing which showed the state moved to the surface side.
  • Fig. 82C shows a seventh modification of the single winding device in which the winding tool is provided so as to be movable from one surface side of the sheet to the other surface side, and Fig. 82C shows a state where the piece is wound around the sheet by the winding device.
  • FIG. 83A shows a further modification of the seventh modification of the single winding device that winds the piece from one surface of the sheet to the other surface while the winding tool moves from one surface to the other surface, It is sectional drawing which showed the state at the time of standby.
  • FIG. 83B shows a further modification of the seventh modification of the single winding device that winds the piece from one surface of the sheet to the other surface while the winding tool moves from one surface to the other surface, It is sectional drawing which showed the state which has wound the piece around the sheet
  • FIG. 84C shows a further modification of the seventh modification of the single-winding device that winds the piece from one surface of the sheet to the other surface while the winding tool moves from one surface to the other surface, It is sectional drawing which showed the state which wound the sheet
  • FIG. 84A shows an eighth modification of the single-winding device in which the winding tool rotates so that the leading edge moves from the hole of the sheet to the edge side of the sheet while pushing the piece, and FIG. 84A shows a standby state. It is sectional drawing.
  • FIG. 84B shows an eighth modification of the single winding device in which the winding tool rotates so that the leading edge moves from the hole of the sheet to the edge side of the sheet while pushing the piece.
  • FIG. 84A shows an eighth modification of the single winding device in which the winding tool rotates so that the leading edge moves from the hole of the sheet to the edge side of the sheet while pushing the piece.
  • FIG. 84C shows an eighth modification of the single winding device in which the winding tool rotates so that the tip moves from the hole of the sheet to the edge side of the sheet while pushing the piece.
  • FIG. It is sectional drawing which showed the state wound.
  • the further modification of the 8th modification of the single winding apparatus which has the winding tool from which a rotation direction differs, and another winding tool is shown, and
  • FIG. 85A is sectional drawing which showed the state at the time of standby.
  • FIG. 85B shows a further modification of the eighth modification of the single-winding device having a winding tool having a different rotation direction and another winding tool
  • FIG. 85B shows a state in which the sheet is wound around the sheet by the other winding tool.
  • FIG. 85C shows a further modification of the eighth modification of the single-winding device having a winding tool having a different rotation direction and another winding tool
  • FIG. 85C shows a state where the piece is wound around the sheet by the winding tool.
  • the single winding device 10 to which the present invention is applied has a hole 2 formed in a sheet bundle 1 in which a plurality of sheets are stacked, and a piece 3 is wound around the hole 2, thereby An apparatus for binding the bundle 1.
  • the sheet bundle 1 is formed by laminating paper sheets such as documents, sheet-like members formed of a metal material, a resin material, or the like. In the vicinity of the end of the sheet bundle 1 on the insertion end side, a hole 2 penetrating in the thickness direction is formed.
  • the hole 2 is a punch hole formed in the sheet bundle 1 by the punching blade 67 after the sheet bundle 1 is inserted into the single winding device 10.
  • the sheet bundle 1 includes one surface 1a, an end surface 1c on the insertion end side, the other surface 1b, the hole end surface 2a of the hole 2, and one piece 1 over one surface 1a (here 5 or more). Surface) is wound.
  • the sheet bundle 1 is wound with the pieces 3 in a state where a plurality of sheets are stacked (for example, a sheet bundle having a small number of sheets to a thick sheet bundle having a large number of sheets).
  • the piece 3 may be wound with only one sheet.
  • the piece 3 is formed in, for example, a substantially rectangular shape in plan view, and has an adhesive layer 4 on the other surface 3b. A plurality are temporarily attached at predetermined intervals in the direction. Thereby, even if it is a case where the piece 3 is used after having waited for a long period of time, the fall of the adhesive force of the adhesion layer 4 can be prevented. Furthermore, the belt-like body 6 composed of the piece 3 and the release paper 5 is wound into a roll shape to form a roll body 8 (see FIG. 1), for example, and a roll provided in the base unit 11 of the piece winding device 10. The container 13 is rotatably accommodated.
  • a plurality of engagement holes 7 are formed in the release paper 5 of the belt-like body 6 at predetermined intervals in the longitudinal direction to engage with an engagement member 36 for feeding the belt-like body 6.
  • the engagement hole 7 may be a hole that penetrates the piece 3 and the release paper 5.
  • the length of the piece 3 is determined by how much the sheet 3 is wound around the hole 2 of the sheet bundle 1.
  • the one surface 1 a, the end surface 1 c on the insertion end side, the other surface 1 b, The piece 3 is formed in such a length that it can be wound around one or more rounds (here, 5 surfaces) over the hole end surface 2a and the one surface 1a. Therefore, when one surface 1a, the end surface 1c on the insertion end side, the other surface 1b, and the hole end surface 2a of the hole 2 are wound on four surfaces, the length is shortened accordingly, and the one surface 1a, the insertion end When winding the three surfaces of the side end surface 1c and the other surface 1b, the length is further shortened accordingly. Further, the piece 3 may be wound around the hole 2 by six or more surfaces. When the piece 3 is wound more in the hole 2, the sheet bundle 1 can be bound more firmly.
  • the single-winding device 10 includes a base unit 11 serving as a base portion on which the sheet bundle 1 to be bound is placed, and an operation unit provided to be rotatable with respect to the base unit 11. And a handle 12. Further, the base unit 11 has a roll accommodating portion 13 that rotatably accommodates a roll body 8 formed by winding a strip 6 of the pieces 3 binding the sheet bundle 1 in a roll shape on the rotation fulcrum side of the handle 12. Is provided. At a position straddling the base unit 11 and the handle 12, a one-feed mechanism 14 that extracts the piece 3 from the belt-like body 6 led out from the roll housing portion 13 is provided.
  • the base unit 11 is provided with a winding mechanism 15 for winding the piece 3 around the hole 2 of the sheet bundle 1 in the vicinity of the rotation fulcrum of the handle 12. Further, a punching unit 16 for punching holes 2 in the sheet bundle 1 is provided on the base unit 11.
  • the base unit 11 is formed in a rectangular box shape, for example, and is provided with a roll accommodating portion 13 on one end side in the longitudinal direction, and the base unit 11 is opposed to each other.
  • the handle 12 is rotatably supported by a support shaft 22 provided on the piece.
  • the base unit 11 incorporates a winding mechanism 15 of the piece 3 on the pivot fulcrum side of the handle 12, and the upper surface 23 of the base unit 11 is perforated so as to face the winding mechanism 15.
  • a unit 16 is provided.
  • the punching unit 16 is slidably mounted on the upper surface 23.
  • the punching unit 16 slides on the upper surface 23 between a punching position facing the winding mechanism 15 and a maintenance position on the other end side of the base unit 11 (insertion side of the sheet bundle 1).
  • the winding mechanism 15 is exposed to the outside so that maintenance work can be easily performed (see FIGS. 16A and B).
  • the base unit 11 has a dust case for storing substantially circular dust generated when the holes 2 are punched in the sheet bundle 1 by the punching blade 67 of the punching unit 16 on the bottom surface side thereof.
  • 24 is arranged. If the dust accumulated in the dust case 24 is not diffused, the dust accumulates in one place, and the capacity of the dust case 24 may not be fully utilized. If the dust overflows from inside the dust case, the dust may stick to the piece 3 and a spelling failure may occur. Therefore, the dust case 24 can be stored in a case storage portion 24 a provided on the bottom surface side of the base unit 11, and is slid from the other end side (insertion side of the sheet bundle 1) of the base unit 11. Attached to the bottom. The dust case 24 is opened at least at a position facing the punching blade 67 of the punching unit 16 and is configured to receive dust.
  • a protruding portion 25 is formed on the bottom surface 25b of the dust drop point at a corner portion with the insertion surface 25c to the case storage portion 24a.
  • the protruding portion 25 is formed so that the side of the punching blade 67 of the punching unit 16 is high, and is lowered as the distance from the punching blade 67 increases.
  • the top surface of the protrusion part 25 is the inclined surface 25a comprised by the plane, for example. The dust punched out by the punching blade 67 first hits a high portion of the projecting portion 25, and then divides into the left and right sides of the projecting portion 25 and falls to the bottom surface 25b, and slides down to the bottom surface 25b along the inclined surface 25a. .
  • the dust is dispersed and dropped in the dust case 24, and it is possible to prevent the punching blade from malfunctioning by being accumulated under the punching blade 67 of the punching unit 16. it can.
  • the dust case 24 is accommodated by being slid in and out of the case accommodating portion 24a with the side surface on the protruding portion 25 side from the other end side (sheet bundle 1 insertion side) of the base unit 11 as an insertion end.
  • the protrusion part 25 of the dust case 24 may be comprised by the rectangular piece in which the inclined surface 25a is not provided, and the top surface may be not a plane but a cross-sectional view mountain shape.
  • the handle 12 provided rotatably on the base unit 11 is rotatably supported by a support shaft 22 provided on a rising piece facing the base unit 11.
  • the handle 12 is urged to rotate in a direction away from the upper surface 23 of the base unit 11 by an urging member such as a torsion coil spring or a coil spring.
  • the urging member has one end locked to the handle 12 and the other end locked to the rising piece of the base unit 11 so that the handle 12 is separated from the upper surface 23 of the base unit 11 in FIG. Turn biased in the A direction.
  • the base unit 11 is provided with a roll accommodating portion 13 on one end side in the longitudinal direction, and the roll accommodating portion 13 supports the piece 3 from a roll body 8 that is rotatably accommodated.
  • the belt-like body 6 is fed by the one-feed mechanism 14 in conjunction with the rotation of the handle 12.
  • one piece 3 is discharged onto the winding mechanism 15.
  • the feed amount of the piece 3 is not constant, the winding position of the piece 3 changes, and there is a possibility that the piece 3 cannot be wound stably.
  • the single feed mechanism 14 includes a folding guide member 32 that folds the belt-like body 6 at the position of the discharge portion 31 that discharges the piece 3 in the base unit 11.
  • the folding guide member 32 is provided to face the support guide member 33 that extends from the roll body 8 provided on the base unit 11 side and supports the belt-like body 6 from below.
  • the folding guide member 32 has a C-shaped folding portion 32a in the vicinity of the discharge portion 31 of the piece 3, and the first half guide portion 32b facing the support guide member 33 and the piece 3 are peeled off on both sides of the folding portion 32a.
  • a second half guide portion 32c for guiding the belt-like body 6.
  • the belt-like body 6 from which the piece 3 is not peeled is sent to the discharge portion 31 through the space between the support guide member 33 and the first half guide portion 32b, and the travel path is folded at the turn-back portion 32a. At this time, the strip 6 is bent along the folded portion 32 a, whereby the piece 3 is peeled from the release paper 5, and only the piece 3 is discharged to the discharge portion 31.
  • the belt-like body 6 made of the release paper 5 from which the piece 3 is peeled is guided by the latter half guide portion 32c and discharged to the outside.
  • the piece 3 is discharged from the discharge unit 31 so that the adhesive layer 4 faces upward, that is, the adhesive layer 4 faces the front half guide portion 32b so as to face the one surface 1a of the sheet bundle 1. become.
  • the discharge section 31 for discharging the piece 3 peeled from the release paper 5 allows the lower guide member 34 and the upper guide member 35 to pass almost the piece 3. Opposite positions are spaced apart by a distance.
  • the lower guide member 34 supports the surface of the piece 3 peeled from the release paper 5 opposite to the adhesive layer 4. Since the upper guide member 35 is a member corresponding to the adhesive layer 4 of the piece 3, as shown in FIG. 6C, the upper guide member 35 is formed in a C-shaped cross section so as to avoid contact with the adhesive layer 4.
  • each end of the upper guide member 35 is cut into a mountain, and the inner inclined surfaces 35a, 35a are in contact with and guide both side edges of the piece 3 in the longitudinal direction.
  • the roll body 8 is wound around the belt-like body 6 so that the piece 3 is on the inside. Therefore, when the belt-like body 6 is pulled out from the roll body 8, a state in which a curl is attached in the direction of the lower guide member 34.
  • the adhesive layer 4 is difficult to attach to the upper guide member 35 even when the piece 3 is peeled off from the release paper 5.
  • the upper guide member 35 can reliably insert the piece below the sheet bundle while suppressing the movement of the peeling piece 3 up and down.
  • the single feed mechanism 14 further includes an engaging member 36 that sends the belt-like body 6 and a feeding member 37 that moves the engaging member 36.
  • the engaging member 36 is movably provided on a movement guide member 36 a provided in the roll accommodating portion 13 or the base unit 11, and is connected by the connecting pin 36 b being engaged with the connecting groove 37 d of the feeding member 37. Is done.
  • the engaging member 36 is formed with an engaging protrusion 36 c that engages with the engaging hole 7 of the belt-like body 6.
  • the engagement protrusion 36c is a hook-shaped protrusion that opens in the direction of arrow B, which is the feeding direction of the belt-like body 6, and has a shape that can be easily engaged with the engagement hole 7 (see FIG.
  • the engaging member 36 is elastically biased in the direction of the belt-like body 6 by an elastic body 36d such as a coil spring so that the engaging protrusion 36c can be easily engaged with the engaging hole 7 of the belt-like body 6. .
  • the engaging member 36 as described above is moved in the arrow B direction by the feed member 37 in conjunction with the rotation of the handle 12.
  • the feed member 37 includes a first member 37a and a second member 37b that are rotatably connected. Specifically, the first member 37 a and the second member 37 b are pivotally supported so that their respective shaft holes are inserted into a support shaft 37 c spanning the rising piece of the base unit 11 and are rotatable. .
  • the first member 37 a is a pressed member whose tip is pressed against the inner surface of the handle 12 when the handle 12 is rotated.
  • the second member 37 b that can rotate with respect to the first member is an operation member that operates the engagement member 36.
  • the second member 37b is connected when the connecting pin 36b of the engaging member 36 engages with the long connecting hole 37d.
  • the first member 37a and the second member 37b are urged in the direction of the arrow C by the urging member 38 such as a torsion coil spring at the position of the support shaft 37c, and have a linear positional relationship in the standby state. I am.
  • the feeding operation of the engaging member 36 stops when the second member 37b hits the support shaft 22 serving as a stopper.
  • the handle 12 is further rotated in the direction of the arrow A to move to a punching operation for forming the hole 2 in the sheet bundle 1.
  • the first member 37 a hits the support shaft 22 that serves as a stopper.
  • the second member 37b further rotates around the support shaft 37c with respect to the first member 37a against the urging force of the urging member 38.
  • the winding mechanism 15 that winds the piece 3 discharged from the discharge unit 31 around the hole 2 of the sheet bundle 1 includes a winding tool 40.
  • the winding tool 40 is provided with a winding claw 41 for winding the piece 3 discharged from the discharge portion 31 around the hole 2 of the sheet bundle 1.
  • the wound claw 41 is formed, for example, by being bent or bent in a C shape, and is provided so as to be rotatable around a rotation shaft. Specifically, the winding pawl 41 is rotated as shown in FIG.
  • the winding claw 41 has an end surface 1 c of the sheet bundle 1, the other surface 1 b of the sheet bundle 1, and a hole end surface of the hole 2 while the tip end portion 41 a presses the free end of the piece 3.
  • the inner peripheral pressing surface 41b in the middle of the inner peripheral surface of the winding claw 41 presses the position of the hole end surface 2a, so that the adhesive layer 4 of the piece 3 regardless of the number of sheets 1 Is pressed against the hole end surface 2a.
  • FIG. 9A shows the case of a small number of sheet bundles
  • FIG. 9B shows the case of a large number of thick sheet bundles 1.
  • the inner peripheral pressing surface 41b of the wound claw 41 can reliably press and adhere the adhesive layer 4 of the piece 3 at the position of the hole end surface 2a of the hole 2 of the sheet bundle 1.
  • the rotation mechanism 51 includes an arcuate gear 52 provided on the proximal end side of the handle 12, a drive gear member 53 rotated by the arcuate gear 52 of the handle 12, and a drive.
  • a rack link member 54 slid by the gear member 53 and a rack member 55 that slides integrally with the rack link member 54 and rotates the winding tool 40 are provided.
  • the drive gear member 53 is rotatably supported by the rising piece of the base unit 11 and has a gear portion 53a that meshes with the arcuate gear 52 of the handle 12.
  • the drive gear member 53 is formed with drive pins 53b for sliding the rack link member 54 and the rack member 55.
  • the rack link member 54 is a long rectangular member, and is slidably attached to the rising piece of the base unit 11.
  • the rack link member 54 is formed with a first engagement piece 54a with which the drive pin 53b of the drive gear member 53 is engaged.
  • the rack member 55 is attached to the rising piece of the base unit 11 so as to overlap the rack link member 54 and slides integrally with the rack link member 54.
  • the rack member 55 is formed with a second engagement piece 55a with which the drive pin 53b of the drive gear member 53 is engaged.
  • the rack link member 54 and the rack member 55 are connected by an elastic body 56 such as a coil spring, and the rack link member 54 slides against the rack member 55 against the elastic force of the elastic body 56.
  • the rack link member 54 is formed with guide pins 54 b that guide the slide with the rack member 55, and the guide pins 54 b are engaged with the guide holes 55 b of the rack member 55.
  • the rack member 55 is formed with first to third engaging recesses 55c, 55d, and 55e arranged side by side.
  • the engagement pins of the winding tool 40 are sequentially engaged with the first to third engagement recesses 55c, 55d, and 55e.
  • the winding tool 40 rotates in accordance with the slide of the rack member 55.
  • a circular rotation drive unit 43 is formed on a rotation shaft 42.
  • a plurality of engaging portions 44, 44, 44 that engage with the first to third engaging recesses 55 c, 55 d, 55 e are formed in the rotation drive portion 43.
  • any one of the engaging portions 44, 44, 44 is sequentially engaged with the first to third engaging recesses 55c, 55d, 55e.
  • the winding tool 40 rotates according to the slide of the rack member 55 by the engaging portions 44, 44, 44 pushing the standing walls of the first to third engaging recesses 55c, 55d, 55e. become.
  • FIG. 12A when the handle 12 is in the standby position, the winding pawl 41 is in a state of being retracted below the upper surface 23 of the base unit 11.
  • the arcuate gear 52 of the handle 12 moves in the D1 direction, so that the drive gear member 53 meshing with the arcuate gear 52 is moved in the E1 direction. Rotate to.
  • the drive pin 53b of the drive gear member 53 moves in the E1 direction away from the first engagement piece 54a. That is, the drive gear member 53 idles for a while after starting to rotate.
  • FIG. 12A when the handle 12 is in the standby position, the winding pawl 41 is in a state of being retracted below the upper surface 23 of the base unit 11.
  • the winding tool 40 further rotates in the G1 direction. Furthermore, the third engaging portion 44 engages with the third engaging recess 55e and the third engaging portion 44 is pushed, whereby the winding tool 40 further rotates in the G1 direction.
  • the winding claw 41 of the winding tool 40 rotates when the handle 12 is raised, presses the free end of the piece 3 with the tip end portion 41 a, and the piece 3 becomes the other end of the sheet bundle 1 and the other end of the sheet bundle 1. Can be wound in the order of the surface 1b and the hole end surface 2a of the hole 2.
  • the drive gear member 53 meshing with the arcuate gear 52 further rotates in the E2 direction.
  • the drive pin 53b of the drive gear member 53 moves away from the first engagement piece 54a and presses the second engagement piece 55a of the rack member 55 after idling.
  • the rack member 55 slides in the arrow F1 direction.
  • the engaging portions 44, 44, 44 of the winding tool 40 are engaged with the second engaging concave portion 55d and the first engaging concave portion 55c in order from the third engaging concave portion 55e.
  • the winding tool 40 rotates in the arrow G2 direction and returns to the standby position below the upper surface 23 from the position where the piece 3 is wound.
  • the piece 3 is wound around the hole 2 punched by the punching blade 67 with the winding claw 41 after the hole 2 is punched in the sheet bundle 1 by the punching blade 67. Therefore, in the rotation mechanism 51, the movable area of the winding claw 41 overlaps with the movable area of the punching blade 67, and if they operate simultaneously, they collide with each other. Therefore, the rotating mechanism 51 is configured to pierce the hole 2 in the sheet bundle 1 with the punching blade 67 when the handle 12 moves forward, and rotates the winding claw 41 when performing the return return operation, and pierces with the forward operation.
  • the pieces 3 are inserted and wound around the formed holes 2 to prevent interference with each other. According to this configuration, even if the handle 12 is moved up and down during the operation, the punching blade 67 and the winding claw 41 do not interfere with each other.
  • the buffer lever 57 and the elastic member 58 are provided. That is, the buffer lever 57 is an integral member with the rack link member 54 and is rotatably provided on a support shaft 57 a provided on the rack link member 54. The buffer lever 57 is provided with a first engagement piece 54a formed on the rack link member 54 in the previous example.
  • An elastic member 58 such as a torsion coil spring is bridged between the rack link member 54 and the buffer lever 57. The elastic member 58 urges the buffer lever 57 in a direction opposite to the arrow H in FIG. 15A.
  • the buffer lever 57 rotates in the direction of the arrow H about the support shaft 57a against the urging force of the elastic member 58, and the drive pin 53b moves to the first engagement piece 54a as shown in FIG. 15B.
  • the drive pin 53b does not force the first engagement piece 54a and can prevent the drive pin 53b from being bent or the winding claw 41 from being broken.
  • the drive pin 53b of the drive gear member 53 moves away from the first engagement piece 54a, and after idling, presses the second engagement piece 55a of the rack member 55,
  • the rack member 55 slides in the direction of the arrow F1, and the winding tool 40 rotates in the direction of the arrow G2 to return from the position where the piece 3 is wound to the standby position below the upper surface 23.
  • the discharge unit 31 and the winding mechanism 15 are exposed to the outside so that maintenance work can be easily performed. That is, since the winding mechanism 15 is exposed to the outside when the punching unit 16 is in the standby position, the adhesive attached to the winding claw 41 of the winding mechanism 15, the piece 3 attached to the winding claw 41, The operation of removing the punching blade 67 of the perforating unit 16 and the pieces 3 attached to the periphery thereof can be easily performed. Further, the winding tool 40 can be easily replaced.
  • the perforating unit 16 has a slide base 61, and the slide base 61 slides on the upper surface 23 of the base unit 11 in the longitudinal direction.
  • the slide base 61 is formed with guide pieces 62b and 62b that engage with guide rails 62a and 62a formed on both sides of the upper surface 23 of the base unit 11, and the guide pieces 62b and 62b are located outside the guide rails 62a and 62a. Engage with the surface.
  • engagement guide pieces 63b and 63b are formed inside the guide pieces 62b and 62b.
  • the engagement guide pieces 63b and 63b are formed on the upper surface of the base unit 11 along the longitudinal direction. 63a is engaged.
  • the punching unit 16 can move along the longitudinal direction of the base unit 11 on the upper surface 23 of the base unit 11.
  • the slide base 61 is provided with lock members 64 for locking the drilling unit 16 at the drilling position on both sides.
  • the locking member 64 engages with the engaging portions formed on the guide rails 62a and 62a on the upper surface 23 of the base unit 11, thereby locking the drilling unit 16 in the drilling position.
  • the lock member 64 is always urged in the locking direction to engage with the engaging portions on the guide rails 62a and 62a side, and is operated by the user to release the locked state with the engaging portion, and the standby position. It becomes possible to slide in the direction.
  • the lock member 64 may be provided only on one side.
  • this punching unit 16 is provided with a punching blade on the upper side of the slide base 61, and further, a die 67b that receives the punching blade 67 is integrally provided on the upper surface of the slide base 61.
  • a die 67b that receives the punching blade 67 is integrally provided on the upper surface of the slide base 61.
  • the upper surface of the slide base 61 is a placement surface 65 on which the sheet bundle 1 is placed, and the back of the placement surface 65 is formed with rising pieces as shown in FIG.
  • the abutting portions 66 and 66 against which the leading end portion of the sheet bundle 1 is abutted This is because if the piece 3 is attached to the end surface of the sheet bundle 1 at an angle, the tape cannot be inserted into the hole of the sheet bundle 1 in a later process. Therefore, the abutting portions 66 and 66 are exposed to the outside, and it is possible to confirm whether or not the sheet bundle 1 inserted by the user has abutted against the abutting portions 66 and 66.
  • the above-described slide base 61 has a punching blade 67 slidably attached thereto in a direction perpendicular to the mounting surface 65.
  • An elastic body 68 such as a coil spring is elastically biased in the direction of arrow I that is separated from the die 67b.
  • the punching blade 67 is pressed according to the turning operation of the handle 12 and is pressed and slid in the direction of arrow I for punching the sheet bundle 1.
  • One end of the punching blade 67 is a blade portion for punching the sheet bundle 1 and enters the through hole 67c of the die 67b.
  • the other end 67 a is a pressed portion that is pressed by the handle 12.
  • the other end 67a is formed to protrude outward.
  • the handle 12 that presses the punching blade 67 is provided with a punching blade pressing portion 70 that presses the other end 67 a of the punching blade 67 on the inner surface thereof.
  • the punching blade pressing unit 70 presses the punching blade 67 in the direction of arrow I during drilling (when the handle 12 is in the forward path).
  • the handle 12 returns, the other end 67a of the punching blade 67 is engaged with the engagement piece 70a formed on the punching blade pressing portion 70 in the first half of the return path operation, and is engaged with the engagement piece 70a in the second half. The state is released. Thereafter, the punching blade 67 returns to the initial position by the elastic restoring force of the elastic body 68.
  • the slide base 61 is formed with a guide hole 69 through which the punch blade 67 moves at a position facing the die 67b across the space in which the sheet bundle 1 is inserted.
  • the sheet bundle 1 is perforated so as to face the space portion where the sheet bundle 1 is placed at the front end portion of the guide hole 69, the sheet bundle 1 that is lifted by the lifting blade 67 that rises is provided.
  • a lifting restricting portion 69a to be pressed is formed.
  • the slide base 61 is provided with a sheet pressing member 71 around the punching blade 67 to press the sheet bundle 1 inserted and abutted against the abutting portions 66 and 66 and positioned. It has been. Although not shown, the sheet pressing member 71 is guided to slide in the same direction as the punching blade 67 by guide means integrated with the slide base 61.
  • the sheet pressing member 71 has a through hole 72 through which the punching blade 67 is inserted, and movement amount regulating grooves 73 for restricting the moving amount of the punching blade 67 are formed on both sides of the through hole 72.
  • the movement amount regulation groove 73 is engaged with a regulation projection 74 formed on the punching blade 67.
  • the movement amount regulating groove 73 presses the sheet pressing member 71 in the direction of arrow I with the regulating projection 74 hitting the lower end 73 a.
  • the sheet pressing member 71 also slides in the same direction as the punching blade 67 sliding in the punching direction.
  • the sheet pressing member 71 has a pair of sheet pressing portions 75 and 75 on both sides with the punching blade 67 interposed therebetween.
  • the sheet pressing portions 75, 75 press both sides of the punching blade 67 when punching the sheet bundle 1 with the punching blade 67, and prevent the sheet bundle 1 from being displaced during punching. Further, when the piece 3 is wound around the hole 2, the sheet 3 is slightly positioned away from the sheet bundle 1 in which the hole 2 is formed, and the upper surface of the sheet bundle can be set at a fixed position regardless of the number of sheets.
  • Sheet push-up members 76 and 76 that push up the sheet bundle 1 on the placement surface 65 of the slide base 61 are provided at positions facing the sheet press portions 75 and 75.
  • the sheet push-up members 76, 76 are, for example, leaf springs provided on the placement surface 65, and lift the insertion end of the sheet bundle 1 away from the placement surface 65 when the sheet bundle 1 is inserted.
  • a gap 80 is formed between the placement surface 65 and the lower surface of the sheet bundle 1, and the gap 80 is fed from the one-feed mechanism 14 between the pair of sheet push-up members 76, 76 to the discharge unit 31.
  • the piece 3 is inserted below the one surface 1a with the adhesive layer 4 facing the one surface 1a of the sheet bundle 1, but the sheet bundle 1 is pushed up by the sheet push-up member 76 and has a sufficient gap. Since 80 is formed, it is possible to prevent sticking to one surface 1a of the sheet bundle 1 while the piece 3 is being discharged, and stable to one surface 1a of the sheet bundle 1. Then, the piece 3 can be pasted.
  • the power to apply increases. Therefore, as shown in FIG. 24, in the vicinity of the die 67b of the placement surface 65, when the sheet bundle 1 is pressed by the sheet pressing portions 75, 75, the position of the sheet bundle 1 is increased at the position of the die 67b.
  • the convex portions 77 and 77 may be formed. Further, as shown in FIG. 25, a protrusion 78 having a predetermined width may be formed.
  • FIG. 26A shows a state where a small number of sheet bundles are inserted.
  • the sheet pressing portions 75 and 75 have a lowermost point set below the sheet bundle 1, and as shown in FIG. 27A, when a large number of thick sheet bundles 1 are inserted, the lowest point is reached. The maximum load will be applied.
  • FIG. 26B after the sheet pressing portions 75 and 75 are once lowered to the lowest point, the sheet pressing portions 75 and 75 are retracted to a position where no load is applied to the sheet bundle 1 following the operation of the return path of the handle 12.
  • FIG. 27B in the case of a large number of thick sheet bundles 1, the sheet bundle 1 just contacts the pressing surfaces of the sheet pressing portions 75 and 75.
  • suppressing parts 75 and 75 demonstrated above demonstrated the example provided in both sides on both sides of the punching blade 67 as shown to FIG. 28A, as shown to FIG. 28B, the circumference
  • the sheet pressing portion 75 has substantially the same shape as the facing sheet lifting member 76, and can surround the three directions of the punching blade 67, so that the sheet bundle 1 can be more reliably compared to the case where the pressing is performed at two places. Can be sunk to the bottom of the die 67b.
  • the sheet push-up member 76 described in the above example has been described as being formed of a leaf spring.
  • the sheet push-up member 76 made of resin or the like having an inclined push-up surface 76a is provided.
  • the coil spring 76b may be elastically biased in the push-up direction.
  • the sheet push-up member 76 is formed by bending a flat plate into a square shape, and is attached to the placement surface 65 so as to be rotatable.
  • the sheet push-up member 76 may be configured such that one piece that pushes up the sheet bundle 1 is twisted and elastically biased in the push-up direction by the coil spring 76c. Further, as shown in FIG.
  • a rack 76d is formed on a sheet push-up member 76 having a push-up surface 76a, a gear 76e is engaged with the rack 76d, and the gear 76e is rotated by a motor so that the sheet push-up member 76 is rotated. You may make it raise / lower.
  • the sheet pressing member 71 described above engages the restricting projection 74 of the punching blade 67 with the movement amount restricting groove 73 and presses the one end 73 a, thereby removing the sheet pressing member 71.
  • the sheet pressing member 71 may be slid in conjunction with the extraction blade 67 by a drive unit 79 using a motor or the like as a drive source. Good.
  • the slide of the punching blade 67 pushed by the handle 12 may be detected by a switch, and the sheet pressing member 71 may be slid by the driving unit 79.
  • the drive unit 79 may be pressed and urged in the pressing direction of the sheet bundle 1 by an elastic body such as a coil spring instead of the motor.
  • the punching unit 16 has a piece 3 wound around the hole 2 by the winding claw 41 on the upstream side in the insertion direction of the sheet bundle 1 with respect to the punching blade 67.
  • a pressing adhesive member 81 is provided that presses the sheet bundle 1 when it is pulled out to securely bond the piece 3 to the sheet bundle 1.
  • This pressing adhesive member 81 is a C-shaped elastic piece and is provided so as to be elastically displaceable in the arrow J direction with respect to the sheet bundle 1 inserted from the K direction in FIG. 31A.
  • the pressure bonding member 81 is provided so that an angle ⁇ formed by the piece on the side for receiving the inserted sheet bundle 1 and the inserted sheet bundle 1 becomes an acute angle, and the sheet bundle 1 can be smoothly moved, that is, with a small force. Can be inserted.
  • the sheet bundle 1 is pulled out, it is pressed so as to handle the piece 3 wound around the hole 2 by the wedge effect due to the angle of the piece 3 on the side for receiving the inserted sheet bundle 1. Yes.
  • the contact portion 81a with the sheet bundle 1 is also formed in an arc shape so that the surface of the sheet bundle 1 or the piece 3 is not soiled. As a result, the tip of the piece 3 is affixed on the one surface 1 a of the sheet bundle 1 so as to overlap the winding start portion of the piece 3.
  • the punching unit 16 is provided with a pair of sheet feeding rollers 87 and 87 on a rotation lever 86 that is rotatably provided on the insertion side of the sheet bundle 1.
  • the pair of sheet feeding rollers 87 and 87 are rotated so as to be separated from the placement surface 65 by lifting the rotation lever 86 when the sheet bundle 1 is inserted. Do not become resistance when inserting.
  • the sheet feeding rollers 87 and 87 are brought into contact with the sheet bundle 1 with the rotating lever 86 lowered as shown in FIG. 1, so that the sheet bundle 1 can be pulled out straight. To.
  • the punching unit 16 is provided with a pressing roller 88 that presses the piece 3 on the passage of the piece 3 wound around the hole 2.
  • the pressing roller 88 is a roller that contacts the sheet bundle 1 when the sheet bundle 1 is inserted or pulled out, and can be inserted straight when the sheet bundle 1 is inserted. Also, it functions as an insertion guide roller for the sheet bundle 1.
  • the pressing roller 88 has substantially the same function as the pressing adhesive member 81, and the punching unit 16 may be provided with both the pressing adhesive member 81 and the pressing roller 88, or only one of them. You may make it provide.
  • the pressing adhesive member 81 can also be configured as shown in FIGS. 33A to 33C. That is, in the example of FIGS. 33A to 33C, the press bonding member 81 is formed in a semi-cylindrical shape, and the arcuate surface serves as a contact portion that contacts the sheet bundle 1. Further, the pressing adhesive member 81 has a guide piece 81b formed on a plane opposite to the arcuate surface. The pressing adhesive member 81 is guided by an inclined guide member 82. The inclined guide member 82 is formed with a guide groove 82a, and a guide piece 81b is engaged with the guide groove 82a.
  • the guide piece 81b is pulled by a coil spring 83 which is an elastic body spanned between the fixed portion 84, and the pressing adhesive member 81 is always elastically biased in the direction of pressing the sheet bundle 1. .
  • the pressing adhesive member 81 can be pushed up smoothly, that is, with a small force.
  • the effect is to press the piece 3 wound around the hole 2 so as to handle it.
  • the pressure bonding member 81 is composed of a roller, and this roller is guided by the inclined guide member 82.
  • the pressing adhesive member 81 is pulled by a coil spring 83 and is always elastically biased in the direction of pressing the sheet bundle 1.
  • FIG. 34A when the sheet bundle 1 is inserted, the pressing adhesive member 81 can be pushed up smoothly, that is, with a small force, and when the sheet bundle 1 is pulled out, as shown in FIG.
  • the wedge effect due to the configuration of the inclined surface of the guide member 82, the portion 3 of the piece wound around the hole 2 is pressed so as to be handled.
  • the pressure bonding member 81 is a press mechanism and is moved up and down by a driving unit 85 such as a motor. As shown in FIG. 35A, when the sheet bundle 1 is inserted, it is separated from the placement surface 65 so that it can be inserted smoothly. As shown in FIG. 35B, when pulling out the sheet bundle 1, the pressure bonding member 81 is lowered to handle the sheet bundle 1 and handles the pieces 3 wound around the holes 2. When trying to elastically press the piece 3 with a pressing roller or the like when the sheet bundle 1 is pulled out, the load when the thick sheet bundle 1 is inserted into the piece winding device 10 has increased. The load at the time of inserting the sheet bundle 1 is reduced, and when the sheet bundle 1 is pulled out after the piece 3 is wound around the sheet bundle 1, the piece 3 can be handled with a load, and peeling of the piece 3 is prevented. be able to.
  • a driving unit 85 such as a motor
  • the piece 3 is sent out from the discharge portion 31 of the one-feed mechanism 14.
  • the piece 3 is inserted below the one surface 1a with the adhesive layer 4 facing the one surface 1a of the sheet bundle 1, but the sheet bundle 1 is pushed up by the sheet push-up member 76, and the placement surface Since a sufficient gap is formed between the sheet bundle 65 and the sheet 3, the sheet 3 is not accidentally stuck to one surface 1 a of the sheet bundle 1 while the piece 3 is being discharged.
  • the sheet pressing portions 75 and 75 of the sheet pressing member 71 are lowered to the portion where the push-up member 76 pushes up the sheet bundle 1.
  • the sheet bundle 1 is pressed by the sheet pressing portions 75 and 75 and sandwiched between the push-up member 76 and the sheet pressing portions 75 and 75.
  • a part of the piece 3 is securely attached to one surface 1 a of the sheet bundle 1.
  • the punching blade 67 also descends in the direction of the sheet bundle 1 and punches the sheet bundle 1 to form the hole 2. Note that either the lowering operation of the sheet push-up member 76 or the lowering operation of the punching blade 67 may be preceded.
  • the piece 3 stuck to one surface 1a of the sheet bundle 1 is pushed by the tip 41a of the winding claw 41 by the free end not stuck to the one surface 1a of the sheet bundle 1;
  • the end surface 1c of the sheet bundle 1, the other surface 1b of the sheet bundle 1, and the hole end surface 2a of the hole 2 are wound in this order.
  • the winding tool 40 reverses and returns to the standby state.
  • the handle 12 returns to the original position, and the sheet bundle 1 is pulled out in the direction of the opposite arrow K.
  • the pressing adhesive member 81 presses the piece 3 wound around the hole 2 by a pressing structure such as a wedge effect.
  • the piece 3 is stuck on the one surface 1a side of the sheet bundle 1 so as to overlap the portion of the piece 3 that is stuck first.
  • the piece 3 is wound around the hole 2 by approximately one turn or more.
  • the pressure bonding member 81 is provided so that the angle ⁇ formed by the piece 3 on the side for receiving the inserted sheet bundle 1 and the inserted sheet bundle 1 is an acute angle. Can be inserted smoothly, that is, with a small force. Further, as shown in FIG. 31A, the inserted sheet bundle 1 is pushed up by the sheet push-up member 76, and a gap is formed between the sheet bundle 1 and the piece 3 fed from the one-feed mechanism 14 can enter. It becomes a state.
  • the first member 37a and the second member 37b of the one-feed mechanism 14 for feeding the piece 3 are moved.
  • the feed member 37 that is rotatably connected starts to rotate around the support shaft 37c when the tip of the first member 37a is pressed against the inner surface of the handle 12.
  • FIG. 39 when the handle 12 is rotated, the first member 37a rotates about the support shaft 37c with respect to the second member 37b against the biasing member 38. .
  • the engaging member 36 connected via the second member 37b moves in the direction of arrow B, thereby feeding and feeding one piece 3.
  • the adhesive layer 4 faces the one surface 1 a of the sheet bundle 1 in the gap 80 between the sheet bundle 1 pushed up by the sheet push-up member 76 from the discharge portion 31 and the placement surface 65. And then discharged.
  • the feeding operation of the engaging member 36 is stopped when the second member 37b hits the support shaft 22 as a stopper, as shown in FIG.
  • the operation moves to a punching operation for forming the hole 2 in the sheet bundle 1.
  • the first member 37 a abuts against the support shaft 22 serving as a stopper,
  • the second member 37b further rotates around the support shaft 37c with respect to the first member 37a against the urging force of the urging member 38.
  • the sheet pressing member 71 also slides in the same direction as the punching blade 67 sliding in the punching direction. Further, when the handle 12 is further rotated, as shown in FIG. 42, the punching blade 67 penetrates the sheet bundle 1 and punches the hole 2 in the sheet bundle 1.
  • the winding tool 40 further rotates in the direction of the arrow G1.
  • the third engaging portion 44 engages with the third engaging recess 55e, and the third engaging portion 44 is pushed, so that the winding tool 40 further rotates in the arrow G1 direction.
  • the winding claw 41 of the winding tool 40 rotates in the direction of the arrow G1 when the handle 12 is raised, presses the free end of the piece 3 with the tip end portion 41a, and the piece 3 becomes the end surface 1c of the sheet bundle 1, the sheet The other surface 1b of the bundle 1 and the hole end surface 2a of the hole 2 can be wound in this order.
  • the winding claw 41 is configured to wind the piece 3 around the hole 2 by entering the hole 2 of the sheet bundle 1 perforated by the punching blade 67. If the punching blade 67 does not retract, the tip 41a is connected to the punching blade 67. Because it collides.
  • the rotating winding claw 41 rotates while lifting the piece 3, and its inner circumferential pressing surface 41 b is on the insertion end side of the sheet bundle 1. It contacts the end face 1c (see FIG. 3). Further, when the handle 12 rotates in the direction of arrow A, as shown in FIG. 48, the tip 41a of the wound claw 41 enters the hole 2 so that the free end of the piece 3 is pushed into the hole 2 (FIG. 8C). reference).
  • the winding claw 41 pushes the piece 3 attached to the surface 1a on the upper surface 23 side of the sheet bundle 1 while pressing the end surface 1c of the sheet bundle 1, the other surface 1b of the sheet bundle 1, and the hole 2 It winds in order of the end surface 2a.
  • the inner peripheral pressing surface 41b in the middle of the inner peripheral surface of the winding claw 41 presses the position of the hole end surface 2a, so that the adhesive layer 4 of the piece 3 is attached to the hole end surface regardless of the number of sheet bundles 1. 2a can be pressed (second bonding step).
  • the winding claw 41 starts to rotate in the direction of arrow G2, as shown in FIG. Specifically, as shown in FIG. 14, the rack member 55 slides in the direction of the arrow F1, and the engaging portions 44, 44, 44 of the winding tool 40 are second engaged in order from the third engaging recess 55e.
  • the recess 55d engages with the first engagement recess 55c.
  • the winding tool 40 rotates in the arrow G2 direction, and returns to the standby position below the upper surface 23 from the position where the piece 3 is wound, as shown in FIG. In this state, the handle 12 returns to the initial standby position. Thereafter, the sheet bundle 1 is pulled out in the opposite arrow K direction as shown in FIG.
  • the pressure bonding member 81 presses the piece 3 wound around the hole 2 by the wedge effect.
  • the piece 3 is also pressed by the pressing roller 88 (see FIG. 17).
  • the piece 3 is stuck on the one surface 1a side of the sheet bundle 1 so as to overlap the portion of the piece 3 that is stuck first (third bonding step).
  • the piece 3 is wound around the hole 2 by approximately one and a half rounds.
  • the end portion 41 a of the winding claw 41 pushes the free end of the piece 3 from the end side of the sheet bundle 1.
  • the winding claw 41 is rotated so as to move to the hole 2 of the sheet bundle 1
  • the piece 3 attached to one surface 1 a of the sheet bundle 1 is moved from one surface 1 a of the sheet bundle 1 to the other. Since the sheet 3 is wound over the surface 1b, inserted into the hole end surface 2a from the other surface 1b of the sheet bundle 1, the piece 3 is wound around the sheet bundle 1 having the hole 2, and the piece is wound over the four surfaces. 3 can be firmly wound around the sheet bundle 1.
  • the single-winding device 10 when the handle 12 is turned, the single-winding device 10 also rotates the winding tool 40 having the winding pawl 41 in conjunction with the sliding of the punching blade 67 pressed by the handle 12, And wound around the hole 2 of the sheet bundle 1. That is, since the operation of the punching blade 67 and the operation of the winding tool 40 are interlocked during the rotation of the handle 12, the hole 2 can be drilled at an accurate position and the piece 3 can be accurately wound around the hole 2. it can. Further, in a series of turning operations of the handle 12, the punching operation and the winding operation of the piece 3 can be performed, and the operability can be improved. If the sheet bundle 1 moves after the punching operation, the operation when winding the piece 3 may not be performed.
  • the sheet bundle 1 does not move after the punching operation.
  • the position of the hole 2 and the winding position of the piece 3 are not shifted, and when the piece 3 is wound, it is possible to prevent the piece 3 inserted into the hole 2 of the shifted sheet bundle 1 from colliding and jamming. .
  • Sheet holding mechanism> As shown in FIGS. 26A and B and FIGS. 27A and 27B, the sheet pressing portions 75 and 75 of the sheet pressing member 71 have the lowest point set below the sheet bundle 1, and as shown in FIG. When a large number of thick sheet bundles 1 are inserted, the maximum load is applied at the lowest point. Then, as shown in FIG. 26B, after the sheet pressing portions 75 and 75 are once lowered to the lowest point, the sheet pressing portions 75 and 75 are retracted to a position where no load is applied to the sheet bundle 1 following the operation of the return path of the handle 12. As shown in FIG. 27B, in the case of a large number of thick sheet bundles 1, the sheet bundle 1 just contacts the pressing surfaces of the sheet pressing portions 75 and 75.
  • the operation of the sheet pressing member 71 is controlled by a sheet pressing and holding mechanism 91 as shown in FIGS.
  • the sheet pressing member 71 constituting the sheet pressing and holding mechanism 91 slides in conjunction with the operation of the punching blade 67 as described above, and as described above, as shown in FIGS. 51A and 51 and FIG.
  • a pressing protrusion 92 that presses the holding member 94 is provided.
  • the sheet pressing member 71 is provided with a control projection 93 that controls the holding member 94 to slide in the direction of the opposite arrow I that is separated from the sheet bundle 1.
  • the sheet pressing and holding mechanism 91 further includes a holding member 94 that locks the slide of the sheet pressing member 71.
  • the holding member 94 is rotatably attached to the slide base 61 by a support shaft 94a.
  • the holding member 94 is switched between the position shown in FIG. 52 and the position shown in FIG. 53 by a switching member 95 made of an elastic body such as a coil spring.
  • the switching member 95 has one end locked to the slide base 61 and the other end locked to the holding member 94.
  • the holding member 94 is formed with a pressed portion 96 that is pressed by the pressing protrusion 92 of the sheet pressing member 71.
  • the holding member 94 is formed with an engaging step portion 97 with which the control protrusion 93 of the sheet pressing member 71 is brought into contact.
  • the sheet pressing member 71 is elastically urged in the counter arrow I direction by the elastic body 68 together with the punching blade 67.
  • the holding member 94 is urged to rotate in the direction of the arrow L by the switching member 95 around the support shaft 94 a, and the pressing protrusion 92 of the sheet pressing member 71 is pressed by the pressed portion 96 of the holding member 94. It is in the state separated from.
  • the sheet pressing member 71 that slides in the direction of arrow I together with the punching blade 67 is a pressing protrusion 92.
  • the pressed portion 96 of the holding member 94 is pressed.
  • the holding member 94 rotates in the counter arrow L direction around the support shaft 94a.
  • the control protrusion 93 of the sheet pressing member 71 is positioned slightly below the engagement step portion 97 of the holding member 94. As shown in FIGS.
  • the controller 100 places the punching blade 67 and the winding tool 40 in a standby state as shown in FIG. 56A. That is, the punching blade 67 is slid in the direction of the opposite arrow I, and the winding tool 40 is rotated in the direction of the arrow G2 and retracted below the placement surface 65.
  • the controller 100 drives the motor 101 to slide the punching blade 67 in the arrow I direction.
  • the controller 100 drives the motor 101 in the reverse direction and slides the punching blade 67 in the counter arrow I direction to retract.
  • the controller 100 drives the motor 102 to rotate the winding tool 40 in the direction of the arrow G1 and wind the piece 3 around the hole 2 punched in the sheet bundle 1.
  • the slide operation of the sheet push-up member 76 can be mechanically or electrically interlocked with the slide operation of the punching blade 67.
  • the sheet bundle 1 is pulled out in the direction of the opposite arrow K as shown in FIG. 32C.
  • the pressure bonding member 81 presses the piece 3 wound around the hole 2 by the wedge effect.
  • the piece 3 is stuck on the one surface 1a side of the sheet bundle 1 so as to overlap the portion of the piece 3 that is stuck first (third bonding step).
  • the winding mechanism 111 presses the piece 3 attached to one surface 1a of the sheet bundle 1 and bends substantially perpendicularly along the end surface 1c on the insertion end side of the sheet bundle 1.
  • the first pressing lever 112 advances substantially perpendicularly to the one surface 1a, and the piece 3 is bent substantially perpendicularly to the one surface 1a of the sheet bundle 1, The sheet bundle 1 is adhered to the end surface 1c on the insertion end side.
  • the second pressing lever 113 advances in a direction substantially perpendicular to the first pressing lever 112, bends the piece 3 substantially perpendicularly, Adhere to surface 1b.
  • the third pressing lever 114 advances substantially perpendicularly to the other surface 1b, bends the piece 3 substantially vertically, inserts the piece 3 into the hole 2, and inserts the hole. Adhere to the end face 2a.
  • the sheet bundle 1 is pulled out in the direction of the opposite arrow K as shown in FIG. 32C.
  • the pressing adhesive member 81 presses the piece 3 wound around the hole 2 by a pressing structure such as a wedge effect.
  • the piece 3 is stuck on the one surface 1a side of the sheet bundle 1 so as to overlap the portion of the piece 3 that is stuck first (third bonding step).
  • the piece 3 extends over the one surface 1a, the end surface 1c on the insertion end side, the other surface 1b, the hole end surface 2a of the hole 2, and the one surface 1a (five surfaces). Although the case where it was wound was demonstrated, the piece 3 may be wound by 3 surfaces. As shown in FIG. 58A, the piece 3 is temporarily attached on one surface 1a of the sheet bundle 1 so as to extend over the hole 2, and when the winding claw 41 is rotated in the direction of the arrow G1. Then, the piece 3 on the hole 2 is pressed by the tip portion 41 a to enter the hole 2. As shown in FIG.
  • a pressing lever may be used as shown in FIG. Specifically, as shown in FIG. 59A, the winding mechanism 121 presses the piece 3 attached to one surface 1 a of the sheet bundle 1 so as to follow the hole end surface 2 a of the hole 2 of the sheet bundle 1.
  • a first pressing lever 122 that bends substantially perpendicularly to the first pressing lever 122, and a second piece that bends the piece 3 bent by the first pressing lever 122 substantially perpendicularly along the other surface 1b of the sheet bundle 1.
  • a pressing lever 123 a pressing lever
  • the first and second pressing levers 122 and 123 are retracted, and when the hole 2 is punched in the sheet bundle 1, FIG.
  • the first pressing lever 122 advances substantially perpendicular to one surface 1a of the sheet bundle 1, and the piece 3 is bent substantially perpendicular to the one surface 1a of the sheet bundle 1,
  • the sheet bundle 1 is adhered to the hole end surface 2a of the hole 2 of the sheet bundle 1.
  • the second pressing lever 123 advances in a direction substantially perpendicular to the first pressing lever 122, bends the piece 3 substantially vertically, and the other surface 1b of the sheet bundle 1 Adhere to.
  • the piece 3 is adhered to the three surfaces of the one surface 1a, the hole end surface 2a, and the other surface 1b of the sheet bundle 1.
  • a handle 202 is attached to a base unit 201 so as to be rotatable by a support shaft 203.
  • the handle 202 is urged in the direction of arrow A that is in a standby state by an urging member 204 such as a coil spring.
  • a punching blade 205 is attached to the base unit 201, and the punching blade 205 is urged by an elastic body 206 such as a coil spring in a direction opposite to the arrow I which is a direction of a standby position.
  • a winding tool 210 is attached to the base unit 201 so as to be rotatable in the direction of the arrow G1.
  • a gear portion 209 is engaged with a rack portion 208 of a slider 207 provided in the base unit 201.
  • the handle 202 is provided with a slide operation piece 212 that engages with the engagement piece 211 of the slider 207 and operates the slider 207 in the arrow X direction.
  • the handle 202 has its rotation range restricted in the direction of arrow A by engaging the slide operation piece 212 with a stopper 218 provided on the base unit 201 side.
  • the handle 202 is provided with a pressing operation member 213 that presses the punching blade 205.
  • the pressing operation member 213 is rotatably attached to the inner surface of the handle 202 by a support shaft 214 and is urged to rotate in the arrow Y direction by a coil spring 215 that is a pulling member.
  • the pressing operation member 213 is urged in the arrow Z direction by an urging member 217 whose operating body 216 is a coil spring.
  • the operating body 216 is provided with a copying pin 219, and the copying pin 219 contacts the receiving portion 221 on the base unit 201 side when the handle 202 rotates in the arrow A direction.
  • the punching blade 205 is slid in the counter arrow I direction by the elastic force of the elastic body 206, and the pressing operation member 213. Is in a state where the operating body 216 is in contact with the tip of the punching blade 205 while being tilted with respect to the punching blade 205. Further, the slider 207 is slid in the counter arrow X direction, and the winding tool 210 is rotated in the counter arrow G1 direction and retracted.
  • the pressing operation member 213 rotates in the counter arrow Y direction around the support shaft 214, and the punching blade 205 and the pressing operation are performed.
  • the member 213 is linear.
  • the pressing operation member 213 presses the extraction blade 205 in the direction of arrow I against the elastic force of the elastic body 206. In this state, a hole 2 is punched in the sheet bundle 1 by the punching blade 205. At this time, the pressing operation member 213 is further inclined to the opposite side with respect to the punching blade 205.
  • the piece 3 wound here may be wound around three surfaces, or may be wound around four or more surfaces.
  • the punching unit 16 for punching holes 2 in the sheet bundle 1 is attached to the upper surface 23 of the base unit 11 so as to be slidable in the longitudinal direction, and the other end side of the base unit 11 (sheet bundle 1).
  • the winding claw 41 and the punching blade 67 of the winding part 40 of the discharge part 31 and the winding mechanism 15 are exposed to the outside so that the maintenance work can be easily performed. Yes.
  • the punching unit 16 may perform an operation other than the sliding operation shown in FIGS. 16A and 16B. .
  • FIG. 64A shows a basic state in which the punching unit 16 is mounted at the punching position.
  • the punching unit 16 is connected to the other end side of the base unit 11 (the insertion side of the sheet bundle 1). You may slide to a maintenance position (the same movement as FIG. 16A and B). Further, as shown in FIG. 64C, the punching unit 16 may be slid to the opposite side together with the roll housing unit 13.
  • FIG. 64D shows a state in which the drilling unit 16 is detachable and the drilling unit 16 is attached to the base unit 11.
  • the punching unit 16 can be removed from the base unit 11 to expose the discharge unit 31, the winding pawl 41, and the punching blade 67.
  • FIG. 64F shows a state in which the perforation unit 16 can be moved up and down so as to approach and separate from the base unit 11 and the perforation unit 16 is attached to the base unit 11.
  • the punching unit 16 can be exposed to the discharge unit 31, the winding pawl 41, and the punching blade 67 by being raised and separated from the base unit 11.
  • FIG. 64H shows a state in which the drilling unit 16 is rotatable with respect to the base unit 11 and the drilling unit 16 is mounted on the base unit 11.
  • the punching unit 16 can be rotated with respect to the base unit 11 to expose the discharging unit 31, the winding pawl 41, and the punching blade 67.
  • FIG. 65A to I show an example in which the discharge unit 31 is provided in the base unit 11, and the piece 3 is discharged from the discharge unit 31 on the lower side of the base unit 11 substantially perpendicularly to the base unit 11.
  • FIG. 65A shows a basic state where the discharge unit 31 is provided in the base unit 11 and the punching unit 16 is mounted at the punching position. Then, as shown in FIG. 65B, the punching unit 16 may be slid to the maintenance position on the other end side (the insertion side of the sheet bundle 1) of the base unit 11. In addition, as shown in FIG. 65C, the punching unit 16 may be slid to the opposite side together with the roll housing unit 13.
  • FIG. 65D shows a state in which the drilling unit 16 is detachable and the drilling unit 16 is attached to the base unit 11. As shown in FIG. 65E, the punching unit 16 can be removed from the base unit 11 to expose the discharge unit 31 and the punching blade 67.
  • FIG. 65F shows a state in which the drilling unit 16 can be moved up and down so as to approach and separate from the base unit 11, and the drilling unit 16 is attached to the base unit 11.
  • the punching unit 16 can be lifted and separated from the base unit 11 to expose the discharge portion 31 and the punching blade 67.
  • FIG. 65H shows a state in which the punching unit 16 is rotatable with respect to the base unit 11 and the punching unit 16 is attached to the base unit 11.
  • the punching unit 16 can expose the discharge portion 31 and the punching blade 67 by rotating with respect to the base unit 11.
  • FIGS. 66A to 66D the discharge unit 31 is provided in the punching unit 16.
  • 66A and 66C show a state in which the punching unit 16 is rotatable with respect to the base unit 11, and the punching unit 16 is attached to the base unit 11.
  • the punching unit 16 provided with the discharge unit 31 can be rotated with respect to the base unit 11 to expose the discharge unit 31 and the punching blade 67.
  • the single winding device 1001 to which the present invention is applied includes, for example, a piece 1020 attached to one surface 1010a of a sheet 1010 having a hole 1011 from one surface 1010a of the sheet 1010.
  • the piece 1020 is wound around the sheet 1010 having the hole 1011 by being wound around the other surface 1010b and being inserted into the hole 1011 of the sheet 1010 from the other surface 1010b of the sheet 1010.
  • the single winding device 1001 can wind the piece 1020 around the sheet 1010 having the hole 1011 and bind the sheet 1010 with the piece 1020, and thus can be used as, for example, a binding device that binds the sheet 1010. Further, the single-winding device 1001 can wrap the piece 1020 around the sheet 1010 having the hole 1011 and reinforce the hole 1011 of the sheet 1010 with the piece 1020. 1020) can be used as a mounting device for a reinforcing tool. Further, the piece winding device 1001 can identify the sheet 1010 by the piece 1020 by winding the piece 1020 having a different color or a piece 1020 with a different mark around the sheet 1010 having the hole 1011. Therefore, the single-winding device 1001 can be used, for example, as a discriminator attachment device that attaches the discriminator (piece 1020) to the sheet 1010 having the hole 1011.
  • the single-winding device 1001 includes a pedestal 1030 on which the sheet 1010 inserted from the sheet insertion port 1001a is placed on the other surface 1030b.
  • the single winding device 1001 includes a single feeding unit 1040 that is disposed on the far side in the sheet insertion direction X from the pedestal 1030 and that feeds the piece 1020 so as to partially overlap the end of the sheet 1010 on the insertion end side. Yes.
  • the single-winding device 1001 is disposed on the one surface 1030a side of the pedestal 1030, is provided rotatably on the back side in the sheet insertion direction X, and has a winding tool 1070 for winding the piece 1020 around the sheet 1010 having the hole 1011. I have.
  • the single winding device 1001 includes a pressing unit 1080 that is disposed on the other surface 1030b side of the pedestal 1030 and presses the sheet 1010 around which the piece 1020 is wound by the winding tool 1070.
  • the sheet 1010 is composed of paper such as a document, a sheet-like member formed of a metal material, a resin material, or the like. Further, a hole 1011 penetrating in the thickness direction is formed in the vicinity of the end of the sheet 1010 on the insertion end side.
  • the hole 1011 may be a punch hole formed in the sheet 1010 by a punch unit (not shown) after the sheet 1010 is inserted into the single winding device 1001, and before the sheet 1010 is inserted into the single winding device 1001, It may be a through hole such as a punch hole formed in the sheet 1010 in advance by a separate punch device or the like.
  • a piece 1020 is wound once around the sheet 1010 across one surface 1010a, the end surface 1010c on the insertion end side, the other surface 1010b, and the hole edge end surface 1011a of the hole 1011.
  • a plurality of sheets 1010 may be wound with the piece 1020 being stacked, or the piece 1020 may be wound with only one sheet.
  • the piece 1020 is formed in a substantially rectangular shape in plan view, and has an adhesive layer 1021 on the other surface 1020b.
  • the piece 1020 is provided on a long release paper 1022 in the longitudinal direction. A plurality are temporarily attached at a predetermined interval. Thereby, even if it is a case where the piece 1020 is used after waiting for a long period of time, the adhesive force of the adhesion layer 1021 can be prevented from being lowered.
  • the band-like body 1023 composed of the piece 1020 and the release paper 1022 is wound in a roll shape, for example, and is provided on the back side of the sheet insertion direction X with respect to the winding tool 1070 (non-band-like body housing portion (Shown).
  • an engagement hole 1024 in which an engagement member (not shown) for feeding the band-like body 1023 is engaged with the strip 1020 and / or the release paper 1022 of the band-like body 1023 is spaced apart at a predetermined interval in the longitudinal direction. A plurality are formed.
  • the pedestal 1030 is made of, for example, a plate member, and the sheet 1010 inserted from the sheet insertion port 1001a is placed on the other surface 1030b. As a result, the sheet 1010 is positioned in the height direction Z. Further, the pedestal 1030 has a through hole 1031 at a position corresponding to the tip 1070 a of the winding tool 1070.
  • the one-feed section 1040 is disposed on the back side in the sheet insertion direction X with respect to the pedestal 1030, and the release paper conveyance path branched from the single conveyance path 1041 that connects the strip-shaped body accommodation section and the pedestal 1030. 1042 is provided.
  • the one-feed unit 1040 is constituted by, for example, a pair of conveying rollers or an engaging member that slides while engaging with the engaging hole 1024 of the belt-like body 1023.
  • the one-feed unit 1040 is, for example, a drive unit such as a drive motor by a mechanical drive operation such as a handle (not shown) being rotated by the user or an operation button being pressed by the user.
  • a feed drive mechanism (not shown) is driven in conjunction with an electrical drive operation such as driving the belt
  • the belt-like body 1023 is sent out to the release paper transport path 1042 branched from the one transport path 1041 by a predetermined length.
  • the piece 1020 is peeled from the release paper 1022 at the branching point, and the peeled piece 1020 is sent from the discharge port 1041a of the piece conveyance path 1041 to the base 1030.
  • the one-feed-out portion 1040 has the piece 1020 and the adhesive layer 1021 attached to the sheet 1010 so that the end on the insertion end side of the sheet 1010 and one end of the piece 1020 overlap in plan view. It is placed on the other surface 1030b of the pedestal 1030 toward the side. Further, at this time, the one-feed unit 1040 stores the release paper 1022 from which the piece 1020 has been released in a release paper storage unit (not shown) that communicates with the release paper transport path 1042.
  • the winding tool 1070 is disposed on the back side in the sheet insertion direction X on the one surface 1030a side of the base 1030. Further, the winding tool 1070 is arranged in the width direction Y so as to correspond to the through hole 1031 of the base 1030. Furthermore, as shown in FIG. 69A, the winding tool 1070 is provided by being bent or bent, for example, in a substantially C shape or a substantially L shape in a side view. Further, the winding tool 1070 is provided so as to be rotatable about a rotation shaft 1071 substantially parallel to the width direction Y. Specifically, as shown in FIG.
  • the winding tool 1070 is moved from a standby state in which the tip 1070a is positioned on the one surface 1030a side of the pedestal 1030 as shown in FIG. Rotate toward the back end of the seat 1030 in the sheet insertion direction X, and move from the one surface 1030a side of the base 1030 to the other surface 1030b side through the back end of the sheet insertion direction X Then, on the other surface 1030b side, the pedestal 1030 is rotatably provided so as to move from the back end in the sheet insertion direction X to the through hole 1031 of the pedestal 1030.
  • the winding tool 1070 has one end on one surface 1010a on the insertion end side of the sheet 1010 by a winding tool driving mechanism (not shown) in conjunction with a mechanical or electrical driving operation. While the tip 1070a pushes the other end of the piece 1020 to which the portion is attached, the tip 1070a is connected to the other surface 1010b side from the one surface 1010a side of the sheet 1010 through the end portion on the insertion end side of the sheet 1010. Then, on the other surface 1010b side, the sheet 1010 is rotated so as to move from the end side on the insertion end side to the hole 1011 of the sheet 1010, and as shown in FIG.
  • An end is wound from one surface 1010a of the sheet 1010 to the other surface 1010b, and the sheet is formed from the other surface 1010b side of the sheet 1010. It is inserted into the 010 holes 1011. Further, thereafter, the winding tool 1070 is rotated in the reverse direction by a winding tool driving mechanism (not shown), and is provided in a standby state in which the tip 1070a is positioned on the one surface 1030a side of the base 1030.
  • the winding tool 1070 has a tip 1070a inserted into the through hole 1031 of the pedestal 1030 from the other surface 1030b side of the pedestal 1030, and the other end of the piece 1020 is connected to the sheet 1010.
  • the proximal end pressing portion 1070b of the corner (curved portion) on the proximal end side of the inner peripheral surface of the winding tool 1070 is on the insertion end side of the sheet 1010.
  • a corner 1010d between the end surface 1010c and one surface 1010a or a piece 1020 corresponding to the corner 1010d is brought into contact with a distal end side pressing portion 1070c of a corner portion (curved portion) on the distal end side of the inner peripheral surface of the winding tool 1070.
  • a corner (edge) 1010e between one surface 1010a of the sheet 1010 and the hole 1011 or a piece 1020 corresponding to the corner 1010e. It may be.
  • the winding tool 1070 can press the wound piece 1020 by the proximal-side pressing portion 1070b and the distal-side pressing portion 1070c while winding the piece 1020 around the sheet 1010 having the hole 1011. Can be attached to the sheet 1010.
  • the pressing portion 1080 is disposed on the front side in the sheet insertion direction X on the other surface 1030b side of the base 1030.
  • the pressing unit 1080 is configured by, for example, a roller or an elastic piece biased toward the pedestal 1030.
  • the pressing unit 1080 presses the sheet 1010 and the piece 1020 toward the base 1030 when the sheet 1010 around which the piece 1020 is wound by the winding tool 1070 is pulled out toward the front side in the sheet insertion direction X.
  • the piece 1020 is securely bonded to the sheet 1010.
  • the sheet 1010 is inserted from the sheet insertion opening 1001a toward the back side in the sheet insertion direction X. 71, the sheet 1010 is placed on the other surface 1030b of the pedestal 1030 in the single winding device 1001. Further, the seat 1010 is positioned in the height direction Z by the pedestal 1030.
  • the single-winding device 1001 when a mechanical or electrical driving operation is performed by the user, the single-winding device 1001 is configured to send the belt-like body 1023 by a predetermined length by the single-feed unit 1040 as shown in FIG.
  • the piece 1020 is peeled off from the release paper 1022 at a branch point between the piece transport path 1041 and the release paper transport path 1042.
  • the single-winding device 1001 has a piece 1020 peeled from the release paper 1022 sent out toward the base 1030 with the adhesive layer 1021 facing the sheet 1010 by the one-feeding unit 1040.
  • the sheet 1010 is provided so that the end on the insertion end side of the sheet 1010 and the one end of the piece 1020 overlap each other in plan view. Then, one surface 1010a of the end portion on the insertion end side of the sheet 1010 is brought into contact with the piece 1020, and one end portion of the piece 1020 is attached to one surface 1010a of the end portion on the insertion end side of the sheet 1010.
  • the single winding device 1001 is configured such that the tip 1070a of the winding tool 1070 pushes the other end of the piece 1020 with one end affixed to one surface 1010a of the end of the sheet 1010 on the insertion end side, 1070a moves from the one surface 1010a side of the sheet 1010 to the other surface 1010b side through the end portion on the insertion end side of the sheet 1010, and then on the other surface 1010b side on the insertion end side of the sheet 1010.
  • the winding tool 1070 is rotated so as to move from the end side to the hole 1011 of the sheet 1010. Accordingly, the one-sided winding device 1001 is wound from the one surface 1010a of the sheet 1010 to the other surface 1010b by the winding tool 1070 so that the other surface 1010b of the sheet 1010 is wound from the other surface 1010b side.
  • the sheet 1010 is inserted into the hole 1011. Therefore, the piece 1020 is wound around the sheet 1010 across the one surface 1010 a, the end surface 1010 c on the insertion end side, the other surface 1010 b, and the hole edge end surface 1011 a of the hole 1011.
  • the winding tool 1070 is rotated in the direction of arrow B in FIG. 74 around the rotation shaft 1071 substantially parallel to the width direction Y, and the tip 1070 a is a pedestal. 1030 is returned to the standby position arranged on the one surface 1030a side.
  • the one-side winding device 1001 is connected to the other end of the piece 1020 that is wound around the sheet 1010.
  • the portion is bent and wound around the one surface 1010a side of the sheet 1010 by the pedestal 1030.
  • the piece winding apparatus 1001 is piled up on the piece 1020 currently wound around the one surface 1010a of the sheet
  • the sheet 1010 is wound once around the sheet 1010 over the one surface 1010a, the end surface 1010c on the insertion end side, the other surface 1010b, and the hole edge end surface 1011a of the hole 1011.
  • the sheet 1010 having the hole 1011 is wound around the piece 1020.
  • the winding tool 1070 is rotated so as to move from the end side of the insertion end side of the sheet 1010 to the hole 1011 of the sheet 1010, so that the sheet 1010 having the hole 1011 is attached to one surface 1010 a.
  • the piece 1020 extends from one surface 1010a of the sheet 1010 to the other surface 1010b. Since the sheet 1010 is inserted into the hole 1011 of the sheet 1010 from the other surface 1010b side of the sheet 1010 and the piece 1020 is wound around the sheet 1010, any sheet is beautiful without being wrinkled or bent. The piece 1020 can be reliably wound around the sheet 1010 with a satisfactory finish.
  • the single-winding device 1001 may be configured such that the winding tool is composed of two members.
  • a two-member winding tool 1090 is rotated about a first winding member 1092 that is rotatable about a rotation shaft 1091 that is substantially parallel to the width direction Y, and a first winding member 1092.
  • a second winding member 1093 that is freely connected.
  • the winding tool 1090 is provided as a whole in, for example, a substantially C shape or a substantially L shape in a side view as in the case of the winding tool 1070.
  • the winding tool 1090 has an end portion on the insertion end side of the sheet 1010 by a winding tool driving mechanism (not shown) in conjunction with a mechanical or electrical driving operation.
  • a winding tool driving mechanism not shown
  • FIGS. 77B and 77C the other end of the piece 1020 whose one end is attached to one surface 1010a of the second surface 1010a is pushed by the tip 1093a of the second winding member 1093.
  • the leading end 1093a moves from the one surface 1010a side of the sheet 1010 to the other surface 1010b side through the end portion on the insertion end side of the sheet 1010, and then on the other surface 1010b side, the insertion end side of the sheet 1010
  • the other end of the piece 1020 is moved from one surface 1010a of the sheet 1010 by being rotated so as to move from the end side of the sheet 1010 to the hole 1011 of the sheet 1010. Wound over the square face 1010b, is inserted from the other surface 1010b side of the sheet 1010 into the hole 1011 of the sheet 1010, wound strip 1020 sheets 1010.
  • the single-winding device 1001 has a wrinkle on any sheet, regardless of whether the winding tool 1090 is composed of two parts or the winding tool 1070 composed of one part.
  • the piece 1020 can be reliably wound around the sheet 1010 with a beautiful finish without causing any bending damage.
  • the single winding device 1001 may be provided with a punch portion, or the punch portion may be omitted by using a sheet 1010 in which holes 1011 are formed in advance by a separate punch device or the like.
  • the single-winding device 1001 is provided with a positioning member 1100 for positioning the sheet 1010 in contact with the end surface 1010c on the insertion end side of the sheet 1010 on the other surface 1030b of the base 1030.
  • the positioning member 1100 is formed of, for example, a pillar member or a plate member, and is provided at a position different from that of the winding tool 1070 in the width direction Y so as not to hinder the rotation of the winding tool 1070 (winding tool 1090). It has been.
  • the positioning member 1100 positions the sheet 1010 in the sheet insertion direction X by the contact portion 1100a standing in the height direction Z, and the holding portion 1100b provided at the upper end of the contact portion 1100a.
  • the end of the sheet 1010 on the insertion end side is prevented from rising.
  • the single-winding device 1001 can position the sheet 1010 not only in the height direction Z but also in the sheet insertion direction X of the sheet 1010 by providing the positioning member 1100, which is illustrated in FIG. 78B.
  • the piece 1020 can be reliably wound around the sheet 1010 with a beautiful finish without wrinkling or bending damage.
  • the single winding device 1001 abuts on a winding tool 1070 (winding tool 1090), a single feeding portion 1040 (not shown in FIG. 79), and an end surface 1010c on the insertion end side of the sheet 1010.
  • the positioning member 1110 for positioning the sheet 1010 may be provided, and the pedestal 1030, the pressing unit 1080, and the like may be omitted.
  • the positioning member 1110 is constituted by, for example, a pillar member or a plate member, and is provided at a position different from that of the winding tool 1070 in the width direction Y so as not to prevent the rotation of the winding tool 1070.
  • it is composed of a pillar member and is provided above the winding tool 1070. Even in such a single winding device 1001, the piece 1020 can be wound around the sheet 1010 having the hole 1011 as shown in FIG. 79B.
  • the single winding device 1001 only needs to include at least a winding tool 1070 (winding tool 1090) and a single feeding portion 1040.
  • the base 1030, the pressing portion 1080, and the like are omitted. You may do it.
  • the piece 1020 can be wound around the sheet 1010 having the hole 1011 as shown in FIG. 80B.
  • the single winding device 1001 is not limited to winding the piece 1020 around the sheet 1010 having the hole 1011 with only the winding tool 1070 (winding tool 1090).
  • the piece 1020 may be wound around the sheet 1010 having the hole 1011 with the first winding tool 1070 and the second winding tool 1120.
  • the hole 1011 is formed not by one component one step such as rotating the winding tool 1070 but by two component two steps such as rotating the first winding tool 1070 and driving the second winding tool 1120.
  • the piece 1020 may be wound around the sheet 1010.
  • the second winding tool 1120 is disposed at a position corresponding to the through hole 1031 of the base 1030 on the other surface 1030b side of the base 1030, as shown in FIG. 81A.
  • the second winding tool 1120 is disposed to be inclined to the back side in the sheet insertion direction X.
  • the 2nd winding tool 1120 is comprised by the pillar member (pin member) etc., for example.
  • the second winding tool 1120 is provided so as to be able to approach and separate from the pedestal 1030 by the winding tool driving mechanism 1121 and the like, and is provided so as to be able to be inserted into the through hole 1031 of the pedestal 1030.
  • the piece winding device 1001 first rotates the winding tool 1070 as shown in FIG.
  • the other end of the piece 1020 attached to the surface 1010a is wound from one surface 1010a of the sheet 1010 to the other surface 1010b.
  • the single winding device 1001 moves the second winding tool 1120 so as to be close to the base 1030, and the second winding tool 1120 moves the other end of the piece 1020 to the sheet 1010.
  • the other surface 1010b is inserted into the hole 1011 of the sheet 1010.
  • the piece winding device 1001 may wind the piece 1020 around the sheet 1010 having the hole 1011 in two parts and two steps.
  • the single winding device 1001 moves the second winding tool 1120 so as to be close to the base 1030 after the winding of the other end portion of the piece 1020 by the winding tool 1070 is completed.
  • the other end of the piece 1020 is not limited to being inserted into the hole 1011 of the sheet 1010 from the other surface 1010b of the sheet 1010, and as shown in FIG.
  • the second winding tool 1120 is moved closer to the pedestal 1030, and the other end of the piece 1020 is moved from the other surface 1010b of the sheet 1010 to the sheet 1010. It may be inserted into the hole 1011.
  • the single-winding device 1001 may be provided so that the winding tool 1070 is movable from the one surface 1010a side of the sheet 1010 to the other surface 1010b side.
  • the winding tool 1070 is arranged on the one surface 1010a side of the sheet 1010 and the leading end 1070a is located on the one surface 1010a side of the sheet 1010 as shown in FIG. 82A. Then, the leading end 1070a is rotated by a winding tool driving mechanism (not shown) in conjunction with the mechanical or electrical driving operation, and the leading end 1070a is one surface 1010a at the end of the insertion end side of the sheet 1010 as shown in FIG. 82B. While the other end of the piece 1020 having one end attached thereto is pushed, the sheet 1010 moves from the one surface 1010a side to the other surface 1010b side through the end portion on the insertion end side of the sheet 1010.
  • the winding tool 1070 winds the other end portion of the piece 1020 from the one surface 1010a of the sheet 1010 to the other surface 1010b via the end portion on the insertion end side of the sheet 1010.
  • the winding tool 1070 is rotated in the reverse direction by a winding tool driving mechanism (not shown) and returned to the first standby state.
  • the winding tool 1070 is moved from the first standby state by a winding tool moving mechanism (not shown), for example, the rotating shaft 1071 is moved from one surface 1010a side of the sheet 1010 to the other surface 1010b side as shown in FIG. 82B.
  • the second surface 1010a of the sheet 1010 is disposed on the other surface 1010a side, and the leading end 1070a is provided on the other surface 1010a side of the sheet 1010.
  • the winding tool 1070 is, for example, arcuate, U-shaped, or U-shaped so that the rotating shaft 1071 bypasses the seat 1010 while being rotated by a predetermined angle from the first standby state around the rotating shaft 1071. Moved to.
  • the winding tool 1070 is not limited to this, but the rotary shaft 1071 is moved in an arc shape while being rotated 180 degrees from the first standby state around the rotary shaft 1071, and an arbitrary point is set. It is moved to the point target position in the center.
  • the winding tool 1070 moved to the other surface 1010b side of the sheet 1010 is rotated from the second standby state by a winding tool driving mechanism (not shown), and the leading end 1070a is moved from the one surface 1010a to the other surface 1010b.
  • the sheet 1010 is moved from the other surface 1010b side of the sheet 1010 to the one surface 1010a side through the hole 1011 of the sheet 1010 while pushing the other end of the piece 1020 wound over the sheet 1020.
  • the winding tool 1070 winds the other end portion of the piece 1020 from the other surface 1010b side of the sheet 1010 over the one surface 1010a through the hole 1011 of the sheet 1010.
  • the winding tool 1070 is rotated in the reverse direction by a winding tool driving mechanism (not shown) and returned to the second standby state. Thereafter, the winding tool 1070 is moved from the other surface 1010b side of the sheet 1010 to one side by the winding tool moving mechanism (not shown). It is moved to the surface 1010a side and returned to the first standby state.
  • the single-winding device 1001 is clean without wrinkles or bending damage even if the winding tool 1070 is provided so as to be movable from the one surface 1010a side of the sheet 1010 to the other surface 1010b side.
  • the piece 1020 can be reliably wound around the sheet 1010 with a satisfactory finish.
  • the other end portion of the piece 1020 is changed from the one surface 1010a of the sheet 1010 to the end portion on the insertion end side of the sheet 1010 and the other surface 1010b. And then the other end of the piece 1020 is wound from the hole 1011 of the sheet 1010 to the one surface 1010a when the sheet 1010 is moved to the other surface 1010a side. You may do it.
  • the winding tool 1070 winds the piece 1020 attached to one surface 1010a of the sheet 1010 from one surface 1010a of the sheet 1010 to the other surface 1010b, and then from the one surface 1010a side of the sheet 1010. It is not limited to being moved to the other surface 1010b side and inserted into the hole 1011 from the other surface 1010b of the sheet 1010, but as shown in FIGS. 83A to 83C, the one surface 1010a side of the sheet 1010.
  • the piece 1020 attached to one surface 1010a of the sheet 1010 is wound from one surface 1010a to the other surface 1010b of the sheet 1010 while moving from the other surface 1010b to the other surface 1010b side. You may make it insert in the hole 1011 from 1010b.
  • the winding tool 1070 is moved from the first standby state as shown in FIG. 83A by the winding tool moving mechanism (not shown) to the other side from the one surface 1010a side of the sheet 1010 as shown in FIG. 83B. Move to the surface 1010b side.
  • the winding tool 1070 is rotated by a winding tool driving mechanism (not shown), and as shown in FIG. 83B, one end of the leading end 1070a is affixed to one surface 1010a on the insertion end side of the sheet 1010.
  • the sheet 1010 While pressing the other end portion of the sheet 1020, the sheet 1010 moves from the one surface 1010a side to the other surface 1010b side through the end portion on the insertion end side of the sheet 1010, and on the other surface 1010b side, the sheet 1010 From the end side of the insertion end side to the hole 1011 of the sheet 1010. Further, as shown in FIG. 83C, the leading end 1070a of the winding tool 1070 moves from the hole 1011 of the sheet 1010 to the one surface 1010a side of the sheet 1010. By these series of movements, the winding tool 1070 winds the other end portion of the piece 1020 from the one surface 1010a of the sheet 1010 to the other surface 1010b through the end portion on the insertion end side of the sheet 1010.
  • the sheet 1010 is wound around the one surface 1010a through the hole 1011 of the sheet 1010 from the other surface 1010b side.
  • the winding tool 1070 is rotated in the reverse direction by a winding tool moving mechanism (not shown) and a winding tool driving mechanism (not shown), and returned to the first standby state.
  • the single-winding device 1001 is provided so that the winding tool 1070 can be moved from the one surface 1010a side of the sheet 1010 to the other surface 1010b side, and moved from the one surface 1010a of the sheet 1010 to the other surface 1010b. Even if the sheet 1010 is wound around the sheet 1010 while rotating around the rotation shaft 1071, the sheet 1010 can be reliably wound around the sheet 1010 with a beautiful finish without causing wrinkles or bending damage. .
  • the winding tool 1130 is disposed on the back side in the sheet insertion direction X on the one surface 1010a side of the sheet 1010 with the tip 1130a facing the front side in the sheet insertion direction X; It has substantially the same configuration as the winding tool 1070 except that the rotation direction is different.
  • the tip 1070a of the winding tool 1070 moves in the order of the one surface 1010a side of the sheet 1010, the end side on the insertion end side, the other surface 1010b side, and the hole 1011.
  • the tip 1130a moves in the order of the one surface 1010a side, the hole 1011, the other surface 1010b side, and the end side on the insertion end side.
  • the winding tool 1130 is mechanically moved from a standby state in which the front end 1130a is located on the one surface 1010a side of the sheet 1010 and the front end 1130a is disposed on the one surface 1010a side of the sheet 1010 as shown in FIG.
  • the leading end 1130a is attached to one surface 1010a of the end portion on the insertion end side of the sheet 1010 as shown in FIG. 84B by being rotated by a winding tool driving mechanism (not shown) in conjunction with the electric driving operation.
  • the sheet 1010 moves from the one surface 1010 a side to the other surface 1010 b side through the hole 1011 of the sheet 1010. Further, as shown in FIG.
  • the winding tool 1070 has the leading end 1130a moving from the hole 1011 of the sheet 1010 to the end side of the insertion end side of the sheet 1010 on the other surface 1010b side.
  • the winding tool 1130 winds one end of the piece 1020 from the one surface 1010a of the sheet 1010 to the other surface 1010b through the hole 1011 over three surfaces.
  • the winding tool 1130 is rotated in the reverse direction by a winding tool driving mechanism (not shown) and returned to the standby state.
  • the single-winding device 1001 is configured so that the tip 1130a moves from the hole 1011 of the sheet 1010 to the end side on the insertion end side of the sheet 1010 while pushing the piece 1020. Even with the rotating winding tool 1130, the piece 1020 can be reliably wound around the sheet 1010 with a beautiful finish without causing wrinkles or bending scratches.
  • the one-sided winding device 1001 pushes the piece 1020 while the tip 1130a pushes the piece 1020 to the end on the insertion end side of the sheet 1010.
  • a winding tool 1130 that rotates so as to move to the section side, and the rotation direction is different from that of the winding tool 1130.
  • the tip 1070a inserts the sheet 1010 while pressing the piece 1020. You may make it provide the winding tool 1070 rotated so that it may move to the hole 1011 of the sheet
  • the winding tool 1130 is not illustrated from a standby state in which the winding 1130 is disposed on the one surface 1010a side of the sheet 1010 and the leading end 1130a is positioned on the one surface 1010a side of the sheet 1010 as shown in FIG.
  • the sheet 1010 is rotated while being pushed by the one end portion of the piece 1020 attached to the one surface 1010a of the end portion on the insertion end side of the sheet 1010 by being rotated by the winding drive mechanism. It moves from the one surface 1010a side to the other surface 1010b side or the end side of the insertion end side of the sheet 1010 through the hole 1011 of the sheet 1010.
  • the winding tool 1130 winds one end portion of the piece 1020 from the one surface 1010a of the sheet 1010 to the other surface 1010b through the hole 1011.
  • the winding tool 1130 is rotated in the reverse direction by a winding tool driving mechanism (not shown) and returned to the standby state.
  • the winding tool 1070 is disposed on the one surface 1010a side of the sheet 1010 and the leading end 1070a is positioned on the one surface 1010a side of the sheet 1010 as shown in FIG. 85C, the leading end 1070a pushes the other end of the piece 1020 and the other surface 1010b from the one surface 1010a side of the sheet 1010 through the end portion on the insertion end side of the sheet 1010 as shown in FIG. Move to the side or hole 1011 of the sheet 1010. Thereby, the winding tool 1070 winds the other end portion of the piece 1020 from the one surface 1010a of the sheet 1010 to the other surface 1010b via the end portion on the insertion end side of the sheet 1010. Thereafter, the winding tool 1070 is rotated in the reverse direction by a winding tool driving mechanism (not shown) and returned to the standby state.
  • a winding tool driving mechanism not shown
  • the single winding device 1001 includes the winding tool 1130 that rotates so that the tip 1130a moves from the hole 1011 of the sheet 1010 to the end side on the insertion end side of the sheet 1010 while pushing the piece 1020.
  • 1130 is provided with a winding tool 1070 that rotates so that the leading end 1070a moves from the end side of the insertion end side of the sheet 1010 to the hole 1011 of the sheet 1010 while pushing the piece 1020.
  • the piece 1020 can be reliably wound around the sheet 1010 with a beautiful finish without causing wrinkles or bending scratches.
  • the single-winding device 1001 is not limited to rotating the winding tool 1070 after rotating the winding tool 1130, but rotating the winding tool 1130 after rotating the winding tool 1070.
  • the single winding device 1001 may rotate the other winding tool before the one winding tool previously rotated returns completely to the standby state.

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  • Engineering & Computer Science (AREA)
  • Textile Engineering (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Forests & Forestry (AREA)
  • Mechanical Engineering (AREA)
  • Perforating, Stamping-Out Or Severing By Means Other Than Cutting (AREA)
  • Winding Of Webs (AREA)

Abstract

In order to wind a strip securely on sheets and further increase holding strength thereof, the strip (3) is wound over at least four surfaces, one surface (1a) of a sheet stack (1), the edge (1c) of the sheet stack (1), the other surface (1b), and the hole edge surface (2a), by bonding a portion of the strip to the one surface (1a) of the sheet stack (1) and inserting the free end of the strip (3) in the hole (2) of the sheet stack (1) using a winding hook (41). A pressing member (71) for pressing the sheet stack (1) when winding the strip (3) onto the sheet stack (1) can also be provided. A pressing part (75) is provided at a position that does not overlap with the movable portion of the winding hook (41).

Description

片巻き装置Single winding device
 本発明は、片を、シートに形成された孔に巻き付ける片巻き装置に関する。 The present invention relates to a single winding device for winding a piece around a hole formed in a sheet.
 書類を綴じる際に、金属針ではなくテープで綴じる綴じ具がある(特許文献1及び特許文献2参照)。例えば、特許文献1の綴じ器は、各綴じ作動毎に、綴じ作動に使用される貼着テープをテープ自動送り機構により送り出し、下から押貼部で貼着テープの後端を書類底部に貼り付け、次に、書類に孔を穿孔した刃を持ち上げると同時にテープを孔に挿通して書類束の上面に繰り出し、刃体が上部に戻った状態で、回転押圧体でテープの上部を書類束の上面に貼り付けることにより書類束をテープで結束貼着する。この結束器では、貼着テープがC字状に巻かれることになる。 There is a binding tool that binds with a tape instead of a metal needle when binding a document (see Patent Document 1 and Patent Document 2). For example, in the binding device of Patent Document 1, for each binding operation, an adhesive tape used for the binding operation is sent out by a tape automatic feeding mechanism, and the rear end of the adhesive tape is attached to the bottom of the document with a pressing portion from below. Next, lift the blade with a hole in the document and simultaneously insert the tape into the hole and feed it to the top of the document bundle. By sticking on the top surface of the paper, the document bundle is bound and attached with tape. In this binder, the sticking tape is wound in a C shape.
 しかしながら、特許文献1の綴じ器では、貼着テープがC字状に巻かれるだけであるから、保持力が弱い。
 特許文献2の綴じ具は、用紙挿入時に、用紙端部を剥離待機されたテープに押し付けて、用紙端部にテープが貼り付けられた後に、用紙に抜き刃が貫通されて、その抜き刃の引き抜きに伴い用紙端部に貼り付いているテープの端部を用紙に貫通させることで、テープで用紙を綴じることができる。
 しかしながら、特許文献1の綴じ具は、例えば用紙が薄い場合、用紙を挿入して用紙端部を剥離待機されたテープに押し付けて用紙端部にテープを貼り付ける際に折れ曲がり、シワや傷が付いてしまい、薄い用紙には適さず、確実にテープで用紙を綴じることができない虞がある。更に、特許文献1の綴じ具は、テープが剥離されて粘着層が露出された状態で待機されているので、長期間待機された後に使用する場合、テープの粘着力が低下して、確実にテープで用紙を綴じることができない虞がある。また、抜き刃で用紙にテープを通す時、用紙にあけた穴と抜き刃の隙間は無いので、テープが積極的に用紙に押し付けられて、粘着面が用紙に貼り付こうとする。この貼付力に逆らってテープを用紙に通すため、テープを挿通する負荷が大きく、粘着面をこするため粘着力も低下する。
However, in the binding device of Patent Document 1, since the adhesive tape is only wound in a C shape, the holding force is weak.
In the binding tool disclosed in Patent Document 2, when a sheet is inserted, the end of the sheet is pressed against the tape that is waiting to be peeled off, and after the tape is attached to the end of the sheet, the punching blade is penetrated through the sheet. The sheet can be bound with the tape by penetrating the end of the tape attached to the end of the sheet as it is pulled out.
However, for example, when the paper is thin, the binding tool disclosed in Patent Document 1 is bent when the paper is inserted and the end of the paper is pressed against the tape that is waiting to be peeled off and the tape is attached to the end of the paper. Therefore, it is not suitable for thin paper, and there is a possibility that the paper cannot be bound with tape reliably. Furthermore, since the binding tool of Patent Document 1 is in a standby state in which the tape is peeled and the adhesive layer is exposed, the adhesive strength of the tape is reduced and reliably used when used after a long standby. There is a possibility that sheets cannot be bound with tape. Further, when the tape is passed through the paper with the punching blade, there is no gap between the hole drilled in the paper and the punching blade, so the tape is positively pressed against the paper and the adhesive surface tries to stick to the paper. Since the tape is passed through the paper against this sticking force, the load for inserting the tape is large, and the adhesive force is reduced because the adhesive surface is rubbed.
日本国特開平10-025753号公報Japanese Laid-Open Patent Publication No. 10-025753 日本国特開平10-000871号公報Japanese Unexamined Patent Publication No. 10-000871
 本発明は、以上のような問題点に鑑みてなされたものであり、確実にシートに片を巻き付け、更に保持力を高めることが可能な片巻き装置を提供することを目的とする。 The present invention has been made in view of the above-described problems, and an object of the present invention is to provide a single-winding device that can reliably wind a piece around a sheet and further increase the holding force.
 上述した課題を解決するために、本発明に係る片巻き装置は、シートの一方の面に片の一部を貼着し、巻き具によって、該片の自由端側を該シートの孔に挿入し、該片を、該シートの一方の面、該シートの端面、他方の面、及び、孔の端面の少なくとも四面に亘って巻き付ける。例えば、上記巻き具は、回動して、上記片を上記シートに巻き付ける際に、先端部で上記片を押しながら上記シートの端面側から、上記他方の面、上記孔の端面の順に、上記シートに巻き付けて、上記片の一部を上記孔に挿入する。 In order to solve the above-described problem, the single-winding device according to the present invention has a piece of a piece adhered to one surface of the sheet, and the free end side of the piece is inserted into the hole of the sheet by a winding tool. Then, the piece is wound around at least four surfaces of one side of the sheet, the end surface of the sheet, the other surface, and the end surface of the hole. For example, when the winding tool rotates and winds the piece around the sheet, the end surface of the sheet is pressed from the end surface side of the sheet while pressing the piece at the tip, in order of the end surface of the hole, It is wound around a sheet and a part of the piece is inserted into the hole.
 本発明に係る片巻き装置は、更に、上記片を上記シートに巻き付ける際に、上記シートを押さえる押さえ部材を備えていてもよい。上記押さえ部材は、上記巻き具の可動領域と重ならない位置に設けることができる。
 本発明に係る片巻き装置は、シートに孔を穿孔する抜き刃と、上記抜き刃の動作に連動して、上記シートの一方の面に一部が貼着された片を、上記シートの孔に挿入する巻き具とを備え、上記抜き刃が上記シートに穿孔してから、上記巻き具が片を上記孔に挿入することもできる。
 更に本発明に係る片巻き装置は回動するハンドルを備え、上記ハンドルが往復動作する間に、上記抜き刃が上記シートに上記孔を穿孔し、上記巻き具が上記孔に、上記片を挿入してもよい。
 更に本発明に係る片巻き装置は回動するハンドルを備え、上記ハンドルが往動作する間に、上記抜き刃が上記シートに上記孔を穿孔し、上記巻き具が上記孔に、上記片を挿入してもよい。
 本発明に係る片巻き装置は、孔を有するシートの一方の面に取り付けられた片を、該シートの一方の面から他方の面に巻き付けて、該シートの他方の面から該孔に挿入する。
 また、本発明に係る片巻き装置は、孔を有するシートに片を巻き付ける際に、先端が該片を押しながら該シートの端部側から該シートの孔まで移動するように回動する巻き具を備える。
 更に、上記片は、粘着層を有するようにしても良い。
 更に、上記シートが位置決めされる位置決め部材を更に備えるようにしても良い。
 更に、上記片が巻き付けられたシートを押圧する押圧部材を更に備えるようにしても良い。
 更に、上記巻き具は、上記シートの一方の面から他方の面に移動可能に設けられ、上記シートの一方の面に取り付けられた片を、該シートの一方の面から該他方の面に巻き付けた後、上記シートの一方の面から該他方の面に移動されて、該シートの他方の面から該孔に挿入するようにしても良い。
 更に、上記巻き具は、上記シートの一方の面から他方の面に移動可能に設けられ、上記シートの一方の面から該他方の面に移動されつつ、上記シートの一方の面に取り付けられた片を、該シートの一方の面から該他方の面に巻き付けて、該シートの他方の面から該孔に挿入するようにしても良い。
 また、本発明に係る片巻き装置は、孔を有するシートに片を巻き付ける際に、先端が該片を押しながら該シートの孔から該シートの端部側まで移動するように回動する巻き具を備える。
 更に、先端が上記片を押しながら該シートの端部側から該シートの孔まで移動するように回動する他の巻き具を更に備えるようにしても良い。
The single winding device according to the present invention may further include a pressing member that presses the sheet when the piece is wound around the sheet. The pressing member can be provided at a position that does not overlap the movable region of the winding tool.
The single-winding device according to the present invention includes a punching blade for punching a hole in a sheet, and a piece partially bonded to one surface of the sheet in conjunction with the operation of the punching blade. It is also possible to insert a piece into the hole after the punching blade has perforated the sheet.
Furthermore, the single winding device according to the present invention includes a rotating handle, and the punching blade punches the hole in the sheet while the handle reciprocates, and the winding tool inserts the piece into the hole. May be.
Further, the single winding device according to the present invention includes a rotating handle, and the punching blade pierces the hole in the sheet while the handle moves forward, and the winding tool inserts the piece into the hole. May be.
The single winding device according to the present invention winds a piece attached to one surface of a sheet having holes from one surface of the sheet to the other surface, and inserts the piece into the hole from the other surface of the sheet. .
In addition, when the piece is wound around a sheet having holes, the piece winding device according to the present invention rotates so that the tip moves from the end side of the sheet to the hole of the sheet while pushing the piece. Is provided.
Further, the piece may have an adhesive layer.
Further, a positioning member for positioning the sheet may be further provided.
Furthermore, you may make it further provide the press member which presses the sheet | seat in which the said piece was wound.
Further, the winding tool is provided so as to be movable from one surface of the sheet to the other surface, and a piece attached to one surface of the sheet is wound from one surface of the sheet to the other surface. Then, the sheet may be moved from one surface of the sheet to the other surface and inserted into the hole from the other surface of the sheet.
Further, the winding tool is provided so as to be movable from one surface of the sheet to the other surface, and is attached to one surface of the sheet while being moved from one surface of the sheet to the other surface. A piece may be wound from one side of the sheet to the other side and inserted into the hole from the other side of the sheet.
Moreover, when the piece winding device according to the present invention winds a piece around a sheet having a hole, the winding tool rotates so that the tip moves from the hole of the sheet to the end side of the sheet while pushing the piece. Is provided.
Furthermore, you may make it further provide the other winding tool rotated so that a front-end | tip may move to the hole of this sheet | seat from the edge part side of this sheet | seat, pushing the said piece.
 本発明によれば、本発明は、孔を有するシートに片を巻き付ける際に、巻き具の先端が片を押しながらシートの端部側からシートの孔まで移動するように、巻き具が回動されることで、シートの一方の面に取り付けられた片が、シートの一方の面から他方の面に亘って巻き付けられて、シートの他方の面から孔に挿入されて、孔を有するシートに片が巻き付けられ、四面に亘って片が巻き付けられるので、片を強固にシートに巻き付けることができる。
 更に本発明は、孔を有するシートに片を巻き付ける際に、巻き具の先端が片を押しながらシートの端部側からシートの孔まで移動するように、巻き具が回動されることで、シートの一方の面に取り付けられた片が、シートの一方の面から他方の面に亘って巻き付けられて、シートの他方の面から孔に挿入されて、孔を有するシートに片が巻き付けられるので、どのようなシートであっても、シワや折り曲げ傷を付けずに綺麗な仕上がりで、確実にシートに片を巻き付けることができる。また、穴を開ける手段と、穴にテープを通す手段が違うので、テープを用紙の穴に挿通する負荷が小さく、テープの粘着力も低下しない。
According to the present invention, when winding a piece around a sheet having a hole, the winding tool rotates so that the leading end of the winding tool moves from the sheet end side to the sheet hole while pushing the piece. Thus, a piece attached to one surface of the sheet is wound from one surface of the sheet to the other surface, inserted into the hole from the other surface of the sheet, and into a sheet having a hole. Since the pieces are wound and the pieces are wound over the four surfaces, the pieces can be firmly wound around the sheet.
Furthermore, the present invention, when winding a piece around a sheet having a hole, the winding tool is rotated so that the tip of the winding tool moves from the end side of the sheet to the hole in the sheet while pushing the piece, A piece attached to one side of the sheet is wound from one side of the sheet to the other side, inserted into the hole from the other side of the sheet, and the piece is wound around the sheet having holes. Any sheet can be surely wrapped around the sheet with a beautiful finish without wrinkles or bending scratches. Further, since the means for making the hole is different from the means for passing the tape through the hole, the load for inserting the tape into the hole in the paper is small, and the adhesive strength of the tape is not lowered.
片巻き装置の断面図である。It is sectional drawing of a single winding apparatus. 片巻き装置の斜視図であり、シート束が挿入された状態を示す。It is a perspective view of a single winding device, and shows a state where a sheet bundle is inserted. 孔を有するシート束に片を巻き付けた状態を示しており、図3Aは、シート束の他方の面側からの斜視図である。FIG. 3A is a perspective view from the other surface side of the sheet bundle, showing a state where a piece is wound around the sheet bundle having holes. 孔を有するシート束に片を巻き付けた状態を示しており、図3Bは、シート束の他方の面側からの平面図である。FIG. 3B shows a state in which a piece is wound around a sheet bundle having holes, and FIG. 3B is a plan view from the other surface side of the sheet bundle. 孔を有するシート束に片を巻き付けた状態を示しており、図3Cは、シート束の一方の面側からの斜視図である。FIG. 3C is a perspective view from one surface side of the sheet bundle, showing a state in which a piece is wound around the sheet bundle having holes. 孔を有するシート束に片を巻き付けた状態を示しており、図3Dは、断面図である。FIG. 3D is a cross-sectional view illustrating a state where a piece is wound around a sheet bundle having holes. 図4Aは帯状体を示した平面図である。FIG. 4A is a plan view showing a belt-like body. 図4Bは帯状体を示した断面図である。FIG. 4B is a cross-sectional view showing a belt-like body. 図4Cは片が台座に載置された状態を示した拡大断面図である。FIG. 4C is an enlarged cross-sectional view showing a state in which the piece is placed on the pedestal. ダストケースの斜視図である。It is a perspective view of a dust case. 図6(A)は、片送り機構の断面図であり、図6(B)は、片と上ガイド部材と下ガイド部材の位置関係を示す平面図であり、図6(C)は、上ガイド部材の正面図である。6A is a cross-sectional view of the single feed mechanism, FIG. 6B is a plan view showing the positional relationship between the piece, the upper guide member, and the lower guide member, and FIG. It is a front view of a guide member. ハンドルと片送り機構との関係を示す断面図である。It is sectional drawing which shows the relationship between a handle | steering-wheel and a one-feed mechanism. 巻き具を示す断面図であり、図8Aは待機時の状態を示した断面図である。It is sectional drawing which shows a winding tool, and FIG. 8A is sectional drawing which showed the state at the time of standby. 巻き具を示す断面図であり、図8Bは抜き刃でシート束を打ち抜いているときの状態を示した断面図である。FIG. 8B is a cross-sectional view showing a state when the sheet bundle is punched out with a punching blade. 巻き具を示す断面図であり、図8Cは巻き付け時の状態を示した断面図である。It is sectional drawing which shows a winding tool, and FIG. 8C is sectional drawing which showed the state at the time of winding. 互いに干渉するシート束の孔の孔端面と巻き具の基端側角部との位置関係を示す図であり、図9Aは、少ない枚数のシート束の例を示す。FIG. 9A is a diagram showing the positional relationship between the hole end surface of the hole of the sheet bundle that interferes with each other and the base end side corner of the winding tool, and FIG. 9A shows an example of a small number of sheet bundles. 互いに干渉するシート束の孔の孔端面と巻き具の基端側角部との位置関係を示す図であり、図9Bは、多い枚数の厚いシート束の例を示す。FIG. 9B is a diagram showing the positional relationship between the hole end surface of the hole of the sheet bundle that interferes with each other and the base end side corner of the winding tool, and FIG. 9B shows an example of a large number of thick sheet bundles. 巻付け機構の斜視図である。It is a perspective view of a winding mechanism. 巻付け機構の斜視図である。It is a perspective view of a winding mechanism. 図12Aは巻付け機構の待機状態を示す断面図である。FIG. 12A is a cross-sectional view showing a standby state of the winding mechanism. 図12Bは、穿孔動作が開始した際の巻付け機構の状態を示す断面図である。FIG. 12B is a cross-sectional view showing a state of the winding mechanism when the punching operation is started. 図13Aは、ハンドルが下死点にあるときの巻付け機構の状態を示す断面図である。FIG. 13A is a cross-sectional view showing a state of the winding mechanism when the handle is at the bottom dead center. 図13Bは、巻き爪が片を孔に巻き付けたときの巻付け機構の状態を示す断面図である。FIG. 13B is a cross-sectional view showing a state of the winding mechanism when the winding claw winds the piece around the hole. ハンドルが待機状態に戻ったときの巻付け機構の状態を示す断面図である。It is sectional drawing which shows the state of a winding mechanism when a handle returns to a standby state. ラックリンク部材に緩衝レバーと弾性部材を設けた変形例を示す断面図であり、図15Aは、巻き爪に障害物が当たった状態を示す。It is sectional drawing which shows the modification which provided the buffer lever and the elastic member in the rack link member, and FIG. 15A shows the state in which the obstruction hit the wound claw. ラックリンク部材に緩衝レバーと弾性部材を設けた変形例を示す断面図であり、図15Bは、巻き爪が障害物に当たった状態でハンドルが上昇したときの状態を示す。It is sectional drawing which shows the modification which provided the buffering lever and the elastic member in the rack link member, and FIG. 15B shows the state when a handle | steering-wheel raises in the state which the winding nail | claw contacted the obstruction. 図16Aは、穿孔ユニットのスライド動作を示す側面図である。FIG. 16A is a side view showing the sliding operation of the drilling unit. 図16Bは、穿孔ユニットが待機位置にある状態を示す斜視図である。FIG. 16B is a perspective view showing a state where the punching unit is in the standby position. 穿孔ユニットの正面図である。It is a front view of a perforation unit. シート束1の先端部が穿孔ユニットの載置面の奥にある突当部に突き当てられた状態を示す要部斜視図である。It is a principal part perspective view which shows the state by which the front-end | tip part of the sheet bundle 1 was abutted by the abutting part in the back of the mounting surface of a punching unit. 穿孔ユニットの斜視図である。It is a perspective view of a perforation unit. 穿孔ユニットの斜視図である。It is a perspective view of a perforation unit. シート束が穿孔ユニットと載置面との間に挿入された状態を示す側面図である。It is a side view which shows the state in which the sheet bundle was inserted between the perforation unit and the mounting surface. 押さえ部がシート束を押さえている状態を示す側面図である。It is a side view which shows the state which the holding | suppressing part is pressing the sheet | seat bundle. 押さえ部がシート束を押さえている状態を示す正面図である。It is a front view which shows the state which the holding | suppressing part is pressing the sheet | seat bundle. ダイに凸部を設けた変形例を示す正面図である。It is a front view which shows the modification which provided the convex part in die | dye. ダイに突条部を設けた変形例を示す正面図である。It is a front view which shows the modification which provided the protrusion part in die | dye. 図26Aは、少ない枚数のシート束が挿入された状態を示す側面図である。FIG. 26A is a side view showing a state where a small number of sheet bundles are inserted. 図26Bは、押さえ部が一度最下点まで下りた後、ハンドルの復路の動作に追従しシート束に負荷の加わらない箇所にまで退避した状態を示す側面図である。FIG. 26B is a side view showing a state in which the pressing portion has been lowered to the lowest point and then retracted to a position where a load is not applied to the sheet bundle following the operation of the return path of the handle. 図27Aは、多い枚数の厚いシート束が挿入された状態を示す側面図である。FIG. 27A is a side view showing a state in which a large number of thick sheet bundles are inserted. 図27Bは、押さえ部が一度最下点まで下りた後、ハンドルの復路の動作に追従しシート束に負荷の加わらない箇所にまで退避した状態を示す側面図である。FIG. 27B is a side view showing a state in which the pressing portion is lowered to the lowest point and then retracted to a position where the load is not applied to the sheet bundle following the return path operation of the handle. 図28Aは、シート束を抜き刃の両側2カ所で押さえる押さえ部を示す平面図である。FIG. 28A is a plan view illustrating a pressing portion that presses the sheet bundle at two positions on both sides of the punching blade. 図28Bは、押さえ領域の一例で抜き刃の周辺を押さえる例を示す平面図である。FIG. 28B is a plan view illustrating an example in which the periphery of the punching blade is pressed by an example of a pressing region. 図29Aは、コイルバネで押上部材を押上方向に付勢する変形例を示す側面図である。FIG. 29A is a side view showing a modification in which a push-up member is urged in a push-up direction by a coil spring. 図29Bは、捻りコイルバネで押上部材を押上方向に付勢する変形例を示す側面図である。FIG. 29B is a side view showing a modified example in which the push-up member is biased in the push-up direction by the torsion coil spring. 図29Cは、ギヤで押上部材を昇降する変形例を示す側面図である。FIG. 29C is a side view showing a modification in which the push-up member is moved up and down with a gear. 図30Aは、シート束の押さえ部材を駆動部で駆動する変形例を示す側面図である。FIG. 30A is a side view showing a modification in which the pressing member of the sheet bundle is driven by the drive unit. 図30Bは、シート束の押さえ部材を駆動部で駆動する変形例を示す側面図である。FIG. 30B is a side view illustrating a modification in which the pressing member of the sheet bundle is driven by the driving unit. 図31Aは、巻き爪とシート押さえ部材との関係を示す図である。FIG. 31A is a diagram illustrating a relationship between the wound claw and the sheet pressing member. 図31Bは、巻き爪とシート押さえ部材との関係を示す図である。FIG. 31B is a diagram illustrating a relationship between the winding claw and the sheet pressing member. 図31Cは、巻き爪とシート押さえ部材との関係を示す図である。FIG. 31C is a diagram illustrating a relationship between the winding claws and the sheet pressing member. 図32Aは、図31A~Cの続きで、巻き爪とシート押さえ部材との関係を示す図である。FIG. 32A is a continuation of FIGS. 31A to 31C and shows the relationship between the wound claw and the sheet pressing member. 図32Bは、図31A~Cの続きで、巻き爪とシート押さえ部材との関係を示す図である。FIG. 32B is a continuation of FIGS. 31A to 31C and shows the relationship between the wound claw and the sheet pressing member. 図32Cは、図31A~Cの続きで、巻き爪とシート押さえ部材との関係を示す図である。FIG. 32C is a continuation of FIGS. 31A to 31C and shows the relationship between the wound claw and the sheet pressing member. 図33Aは、押圧接着部材の変形例を説明する図である。FIG. 33A is a diagram illustrating a modification of the pressure bonding member. 図33Bは、押圧接着部材の変形例を説明する図である。FIG. 33B is a diagram illustrating a modification of the pressure bonding member. 図33Cは、押圧接着部材の変形例を説明する図である。FIG. 33C is a diagram illustrating a modification of the pressure bonding member. 図34Aは、押圧接着部材の変形例であり、ローラを用いた例を示す図である。FIG. 34A is a modified example of the pressure bonding member and is a diagram illustrating an example using a roller. 図34Bは、押圧接着部材の変形例であり、ローラを用いた例を示す図である。FIG. 34B is a modified example of the pressure bonding member and is a diagram illustrating an example using a roller. 図35Aは、押圧接着部材の変形例であり、プレスする例を示す図である。FIG. 35A is a modified example of the pressure bonding member and is a diagram illustrating an example of pressing. 図35Bは、押圧接着部材の変形例であり、プレスする例を示す図である。FIG. 35B is a modified example of the pressure bonding member and is a diagram illustrating an example of pressing. 片巻き装置の断面図であり、回動レバーが持ち上がった状態を示す。It is sectional drawing of a single winding apparatus, and shows the state which the rotation lever raised. 片巻き装置の待機状態を示す断面図である。It is sectional drawing which shows the standby state of a single winding apparatus. ハンドルが回動操作され始め、片の送り動作が開始したときの状態を示す断面図である。It is sectional drawing which shows a state when a handle | steering-wheel begins to be operated and a piece feeding operation starts. 図38よりハンドルを回動した状態であり、片の送り動作中を示す断面図である。FIG. 39 is a cross-sectional view showing a state where the handle is rotated from FIG. 38 and during a piece feeding operation. 最大枚数のシート束に抜き刃が接触した状態を示す断面図である。It is sectional drawing which shows the state which the extraction blade contacted the maximum number of sheet bundle. シート押さえ部材が動き出した状態を示す断面図である。It is sectional drawing which shows the state which the sheet | seat pressing member began to move. 抜き刃がシート束を貫通した状態を示す断面図である。It is sectional drawing which shows the state which the punching blade penetrated the sheet | seat bundle. ハンドルが最下点まで回動した状態を示す断面図である。It is sectional drawing which shows the state which the handle | steering-wheel rotated to the lowest point. シート押さえ部材が僅かに上昇した状態を示す断面図である。It is sectional drawing which shows the state which the sheet | seat pressing member raised slightly. 巻き具が回動し始めた状態を示す断面図である。It is sectional drawing which shows the state which the winding tool began to rotate. 抜き刃がシート束から抜けた状態を示す断面図である。FIG. 6 is a cross-sectional view illustrating a state where a punching blade has been removed from a sheet bundle. シート束と巻き爪とが接触した状態を示す断面図である。It is sectional drawing which shows the state which the sheet | seat bundle and the winding nail contacted. 巻き爪が最大に回動した状態を示す断面図である。It is sectional drawing which shows the state which the winding nail rotated to the maximum. 図48より更にハンドルが戻った状態を示す断面図である。It is sectional drawing which shows the state which the handle | steering_wheel returned further from FIG. ハンドルが待機位置に戻った状態を示す断面図である。It is sectional drawing which shows the state which the handle returned to the standby position. 図51Aは、シート押さえ保持機構の分解斜視図である。FIG. 51A is an exploded perspective view of the sheet pressing and holding mechanism. 図51Bは、シート押さえ保持機構の分解斜視図である。FIG. 51B is an exploded perspective view of the sheet pressing and holding mechanism. ハンドルが待機状態にあるときのシート押さえ保持機構の側面図である。It is a side view of a sheet pressing and holding mechanism when the handle is in a standby state. 少ないシート束が挿入された場合において、抜き刃がシート束を打ち抜いているときのシート押さえ保持機構の側面図であり、保持部材によってシート押さえ部材がシート束を抑えた状態を示す。FIG. 9 is a side view of the sheet pressing and holding mechanism when the punching blade punches out the sheet bundle when a small number of sheet bundles are inserted, and shows a state where the sheet pressing member holds the sheet bundle by the holding member. 最大枚数シート束が挿入された場合において、抜き刃がシート束を打ち抜いているときのシート押さえ保持機構の側面図であり、保持部材によってシート押さえ部材がシート束を抑えた状態を示す。FIG. 6 is a side view of the sheet pressing and holding mechanism when the punching blade punches out the sheet bundle when the maximum number of sheet bundles are inserted, and shows a state in which the sheet pressing member holds the sheet bundle by the holding member. 保持部材のロックがハンドルの復路動作で解除された状態を示す側面図である。It is a side view which shows the state which the lock | rock of the holding member was cancelled | released by the return path | trip operation of the handle. 図56Aは、抜き刃と巻き具とをそれぞれモータで駆動する場合を示す図である。FIG. 56A is a diagram illustrating a case where the punching blade and the winding tool are each driven by a motor. 図56Bは、抜き刃と巻き具とをそれぞれモータで駆動する場合を示す図である。FIG. 56B is a diagram illustrating a case where the punching blade and the winding tool are each driven by a motor. 図56Cは、抜き刃と巻き具とをそれぞれモータで駆動する場合を示す図である。FIG. 56C is a diagram illustrating a case where the punching blade and the winding tool are each driven by a motor. 図57Aは、第1乃至第3の押圧レバーを用いた巻付け機構の変形例を示す図である。FIG. 57A is a view showing a modification of the winding mechanism using the first to third pressing levers. 図57Bは、第1乃至第3の押圧レバーを用いた巻付け機構の変形例を示す図である。FIG. 57B is a diagram showing a modification of the winding mechanism using the first to third pressing levers. 図57Cは、第1乃至第3の押圧レバーを用いた巻付け機構の変形例を示す図である。FIG. 57C is a diagram showing a modification of the winding mechanism using the first to third pressing levers. 図57Dは、第1乃至第3の押圧レバーを用いた巻付け機構の変形例を示す図である。FIG. 57D is a diagram showing a modification of the winding mechanism using the first to third pressing levers. 図57Eは、第1乃至第3の押圧レバーを用いた巻付け機構の変形例を示す図である。FIG. 57E is a view showing a modification of the winding mechanism using the first to third pressing levers. 図57Fは、第1乃至第3の押圧レバーを用いた巻付け機構の変形例を示す図である。FIG. 57F is a diagram showing a modification of the winding mechanism using the first to third pressing levers. 図57Gは、第1乃至第3の押圧レバーを用いた巻付け機構の変形例を示す図である。FIG. 57G is a diagram showing a modification of the winding mechanism using the first to third pressing levers. 図57Hは、第1乃至第3の押圧レバーを用いた巻付け機構の変形例を示す図である。FIG. 57H is a diagram showing a modification of the winding mechanism using the first to third pressing levers. 図58Aは、巻き爪を用いて、片を3面に貼着する変形例を示す図である。FIG. 58A is a diagram showing a modification in which pieces are attached to three surfaces using a winding nail. 図58Bは、巻き爪を用いて、片を3面に貼着する変形例を示す図である。FIG. 58B is a diagram showing a modification in which pieces are attached to three surfaces using a winding nail. 図59Aは、第1及び第2の押圧レバーを用いて、片を3面に貼着する変形例を示す図である。FIG. 59A is a diagram illustrating a modification in which pieces are attached to three surfaces using the first and second pressing levers. 図59Bは、第1及び第2の押圧レバーを用いて、片を3面に貼着する変形例を示す図である。FIG. 59B is a diagram showing a modification in which pieces are attached to three surfaces using the first and second pressing levers. 図59Cは、第1及び第2の押圧レバーを用いて、片を3面に貼着する変形例を示す図である。FIG. 59C is a diagram showing a modification in which pieces are attached to three surfaces using the first and second pressing levers. ハンドルの往路の動作で抜き刃と巻き具を動作させる変形例の待機状態を示す断面図である。It is sectional drawing which shows the standby state of the modification which operates a punching blade and a winding tool by operation | movement of the outward path | route of a handle | steering-wheel. 図61Aは、ハンドルが回動され始めた状態を示す断面図である。FIG. 61A is a cross-sectional view showing a state in which the handle starts to rotate. 図61Bは、抜き刃がシート束を穿孔している状態を示す断面図である。FIG. 61B is a cross-sectional view showing a state where the punching blade is perforating the sheet bundle. 図62Aは、抜き刃から押圧操作部材が外れた状態を示す断面図である。FIG. 62A is a cross-sectional view showing a state in which the pressing operation member is detached from the punching blade. 図62Bは、更にハンドルが回動された状態を示す断面図である。FIG. 62B is a cross-sectional view showing a state where the handle is further rotated. 図63Aは、ハンドルのスライド操作片がスライダの係合片を押圧している状態を示す断面図である。FIG. 63A is a cross-sectional view showing a state where the slide operation piece of the handle presses the engagement piece of the slider. 図63Bは、巻き具が片をシート束の孔に巻き付けた状態を示す断面図である。FIG. 63B is a cross-sectional view showing a state in which the winding tool winds the piece around the hole of the sheet bundle. 図64Aは、ベースユニットに対して穿孔ユニットを様々な移動させる変形例を示す図である。FIG. 64A is a diagram illustrating modifications in which the perforation unit is variously moved with respect to the base unit. 図64Bは、ベースユニットに対して穿孔ユニットを様々な移動させる変形例を示す図である。FIG. 64B is a diagram illustrating modifications in which the perforation unit is variously moved with respect to the base unit. 図64Cは、ベースユニットに対して穿孔ユニットを様々な移動させる変形例を示す図である。FIG. 64C is a diagram illustrating modifications in which the perforation unit is variously moved with respect to the base unit. 図64Dは、ベースユニットに対して穿孔ユニットを様々な移動させる変形例を示す図である。FIG. 64D is a diagram illustrating modifications in which the perforation unit is variously moved with respect to the base unit. 図64Eは、ベースユニットに対して穿孔ユニットを様々な移動させる変形例を示す図である。FIG. 64E is a diagram showing modifications in which the perforation unit is moved variously with respect to the base unit. 図64Fは、ベースユニットに対して穿孔ユニットを様々な移動させる変形例を示す図である。FIG. 64F is a diagram illustrating modifications in which the perforation unit is variously moved with respect to the base unit. 図64Gは、ベースユニットに対して穿孔ユニットを様々な移動させる変形例を示す図である。FIG. 64G is a diagram illustrating modifications in which the perforation unit is variously moved with respect to the base unit. 図64Hは、ベースユニットに対して穿孔ユニットを様々な移動させる変形例を示す図である。FIG. 64H is a diagram illustrating modifications in which the perforation unit is variously moved with respect to the base unit. 図64Iは、ベースユニットに対して穿孔ユニットを様々な移動させる変形例を示す図である。FIG. 64I is a diagram showing modifications in which the perforation unit is variously moved with respect to the base unit. 図65Aは、ベースユニットに対して穿孔ユニットを様々な移動させる変形例を示す図である。FIG. 65A is a diagram illustrating modifications in which the perforation unit is variously moved with respect to the base unit. 図65Bは、ベースユニットに対して穿孔ユニットを様々な移動させる変形例を示す図である。FIG. 65B is a diagram illustrating modifications in which the perforation unit is variously moved with respect to the base unit. 図65Cは、ベースユニットに対して穿孔ユニットを様々な移動させる変形例を示す図である。FIG. 65C is a diagram illustrating modifications in which the perforation unit is variously moved with respect to the base unit. 図65Dは、ベースユニットに対して穿孔ユニットを様々な移動させる変形例を示す図である。FIG. 65D is a diagram illustrating modifications in which the perforation unit is variously moved with respect to the base unit. 図65Eは、ベースユニットに対して穿孔ユニットを様々な移動させる変形例を示す図である。FIG. 65E is a diagram showing modifications in which the perforation unit is moved variously with respect to the base unit. 図65Fは、ベースユニットに対して穿孔ユニットを様々な移動させる変形例を示す図である。FIG. 65F is a diagram illustrating modifications in which the perforation unit is variously moved with respect to the base unit. 図65Gは、ベースユニットに対して穿孔ユニットを様々な移動させる変形例を示す図である。FIG. 65G is a diagram illustrating modifications in which the perforation unit is variously moved with respect to the base unit. 図65Hは、ベースユニットに対して穿孔ユニットを様々な移動させる変形例を示す図である。FIG. 65H is a diagram illustrating modifications in which the perforation unit is variously moved with respect to the base unit. 図65Iは、ベースユニットに対して穿孔ユニットを様々な移動させる変形例を示す図である。FIG. 65I is a diagram showing modifications in which the perforation unit is moved variously with respect to the base unit. 図66Aは、ベースユニットに対して穿孔ユニットを様々な移動させる変形例を示す図である。FIG. 66A is a diagram illustrating modifications in which the perforation unit is variously moved with respect to the base unit. 図66Bは、ベースユニットに対して穿孔ユニットを様々な移動させる変形例を示す図である。FIG. 66B is a diagram illustrating modifications in which the perforation unit is variously moved with respect to the base unit. 図66Cは、ベースユニットに対して穿孔ユニットを様々な移動させる変形例を示す図である。FIG. 66C is a diagram illustrating modifications in which the perforation unit is variously moved with respect to the base unit. 図66Dは、ベースユニットに対して穿孔ユニットを様々な移動させる変形例を示す図である。FIG. 66D is a diagram illustrating modifications in which the perforation unit is variously moved with respect to the base unit. 孔を有するシートに片を巻き付けた状態を示しており、図67Aは、シートの一方の面側からの斜視図である。FIG. 67A is a perspective view from one surface side of the sheet, showing a state where a piece is wound around the sheet having holes. 孔を有するシートに片を巻き付けた状態を示しており、図67Bは、シートの一方の面側からの平面図である。FIG. 67B is a plan view from one surface side of the sheet, showing a state where a piece is wound around the sheet having holes. 孔を有するシートに片を巻き付けた状態を示しており、図67Cは、シートの他方の面側からの斜視図である。FIG. 67C is a perspective view from the other surface side of the sheet, showing a state where a piece is wound around the sheet having holes. 孔を有するシートに片を巻き付けた状態を示しており、図67Dは、断面図である。FIG. 67D is a cross-sectional view illustrating a state where a piece is wound around a sheet having holes. 図68Aは帯状体を示した平面図である。FIG. 68A is a plan view showing a belt-like body. 図68Bは帯状体を示した断面図である。FIG. 68B is a cross-sectional view showing a belt-like body. 図68Cは片が台座に載置された状態を示した拡大断面図である。FIG. 68C is an enlarged cross-sectional view showing a state in which the piece is placed on the pedestal. 巻き具を示しており、図69Aは待機時の状態を示した断面図である。FIG. 69A is a cross-sectional view showing a standby state. 巻き具を示しており、図69Bは巻き付け時の状態を示した断面図である。The winding tool is shown, and FIG. 69B is a cross-sectional view showing a state at the time of winding. 本発明を適用した片巻き装置を示した断面図である。It is sectional drawing which showed the single winding apparatus to which this invention is applied. シートが台座に載置された状態を示した断面図である。It is sectional drawing which showed the state in which the sheet | seat was mounted in the base. 剥離紙から剥離された片が台座に向けて送り出された状態を示した断面図である。It is sectional drawing which showed the state from which the piece peeled from the release paper was sent out toward the base. 巻き具によって、片の他端部が、シートの一方の面から他方の面に亘って巻き付けられて、シートの他方の面側からシートの孔に挿入された状態を示した断面図である。It is sectional drawing which showed the state by which the other end part of the piece was wound over the other surface from the one surface of the sheet | seat by the winding tool, and was inserted in the hole of the sheet | seat from the other surface side of the sheet | seat. 巻き具が待機位置に戻された状態を示した断面図である。It is sectional drawing which showed the state in which the winding tool was returned to the standby position. 片が巻き付けられたシートが引き抜かれている状態を示した断面図である。It is sectional drawing which showed the state from which the sheet | seat in which the piece was wound is pulled out. 押圧部によってシート及び片が台座に向けて押圧されて片がシートに貼り付けられた状態を示した断面図である。It is sectional drawing which showed the state by which the sheet | seat and the piece were pressed toward the base by the press part, and the piece was affixed on the sheet | seat. 巻き具が二部材で構成された片巻き装置の第1の変形例を示しており、図77Aは待機時の状態を示した断面図である。The 1st modification of the single winding apparatus with which the winding tool comprised two members is shown, and FIG. 77A is sectional drawing which showed the state at the time of standby. 巻き具が二部材で構成された片巻き装置の第1の変形例を示しており、図77Bは巻き付け開始時の状態を示した断面図である。The 1st modification of the single winding apparatus with which the winding tool comprised by 2 members is shown, and FIG. 77B is sectional drawing which showed the state at the time of a winding start. 巻き具が二部材で構成された片巻き装置の第1の変形例を示しており、図77Cは巻き付け完了時の状態を示した断面図である。The 1st modification of the single winding apparatus with which the winding tool comprised by 2 members is shown, and FIG. 77C is sectional drawing which showed the state at the time of winding completion. 片巻き装置の第3の変形例を示しており、図78Aは待機時の状態を示した断面図である。The 3rd modification of the single winding apparatus is shown, FIG. 78A is sectional drawing which showed the state at the time of standby. 片巻き装置の第3の変形例を示しており、図78Bは巻き付け時の状態を示した断面図である。The 3rd modification of the single winding apparatus is shown, FIG. 78B is sectional drawing which showed the state at the time of winding. 片巻き装置の第4の変形例を示しており、図79Aは待機時の状態を示した断面図である。A fourth modification of the single-winding device is shown, and FIG. 79A is a cross-sectional view showing a standby state. 片巻き装置の第4の変形例を示しており、図79Bは巻き付け時の状態を示した断面図である。The 4th modification of the single winding apparatus is shown, FIG. 79B is sectional drawing which showed the state at the time of winding. 片巻き装置の第5の変形例を示しており、図80Aは待機時の状態を示した断面図である。The 5th modification of the single winding apparatus is shown, and FIG. 80A is sectional drawing which showed the state at the time of standby. 片巻き装置の第5の変形例を示しており、図80Bは巻き付け時の状態を示した断面図である。The 5th modification of the single winding apparatus is shown, and FIG. 80B is sectional drawing which showed the state at the time of winding. 第1の巻き具と第2の巻き具とによって孔を有するシートに片を巻き付ける片巻き装置の第6の変形例を示しており、図81Aは待機時の状態を示した断面図である。FIG. 81A is a cross-sectional view showing a standby state, showing a sixth modified example of a single winding device that winds a piece around a sheet having a hole with a first winding tool and a second winding tool. 第1の巻き具と第2の巻き具とによって孔を有するシートに片を巻き付ける片巻き装置の第6の変形例を示しており、図81Bは第1の巻き具によってシートに片を巻き付けた状態を示した断面図である。FIG. 81B shows a sixth modification of the single-winding device that winds a piece around a sheet having a hole by the first winding tool and the second winding tool, and FIG. 81B winds the piece around the sheet by the first winding tool. It is sectional drawing which showed the state. 第1の巻き具と第2の巻き具とによって孔を有するシートに片を巻き付ける片巻き装置の第6の変形例を示しており、図81Cは第2の巻き具によってシートに片を巻き付けた状態を示した断面図である。FIG. 81C shows a sixth modification of the single winding device that winds a piece around a sheet having a hole with the first winding tool and the second winding tool, and FIG. 81C winds the piece around the sheet with the second winding tool. It is sectional drawing which showed the state. 第1の巻き具と第2の巻き具とによって孔を有するシートに片を巻き付ける片巻き装置の第6の変形例を示しており、図81Dは図81Bの変形例を示した断面図である。FIG. 81D is a cross-sectional view showing a modified example of FIG. 81B, showing a sixth modified example of a single-winding device that winds a piece around a sheet having holes with a first wound tool and a second wound tool. . 巻き具がシートの一方の面側から他方の面側に移動可能に設けられた片巻き装置の第7の変形例を示しており、図82Aは待機時の状態を示した断面図である。FIG. 82A is a cross-sectional view showing a standby state, showing a seventh modification of the single winding device in which the winding tool is movably provided from one surface side of the sheet to the other surface side. 巻き具がシートの一方の面側から他方の面側に移動可能に設けられた片巻き装置の第7の変形例を示しており、図82Bは巻き具がシートの一方の面側から他方の面側に移動された状態を示した断面図である。FIG. 82B shows a seventh modification of the single winding device in which the winding tool is movably provided from one surface side of the sheet to the other surface side, and FIG. 82B shows the winding tool from the one surface side of the sheet to the other surface side. It is sectional drawing which showed the state moved to the surface side. 巻き具がシートの一方の面側から他方の面側に移動可能に設けられた片巻き装置の第7の変形例を示しており、図82Cは巻き具によってシートに片を巻き付けた状態を示した断面図である。Fig. 82C shows a seventh modification of the single winding device in which the winding tool is provided so as to be movable from one surface side of the sheet to the other surface side, and Fig. 82C shows a state where the piece is wound around the sheet by the winding device. FIG. 巻き具が一方の面から他方の面に移動しつつ、片をシートの一方の面から他方の面に巻き付ける片巻き装置の第7の変形例の更なる変形例を示しており、図83Aは待機時の状態を示した断面図である。FIG. 83A shows a further modification of the seventh modification of the single winding device that winds the piece from one surface of the sheet to the other surface while the winding tool moves from one surface to the other surface, It is sectional drawing which showed the state at the time of standby. 巻き具が一方の面から他方の面に移動しつつ、片をシートの一方の面から他方の面に巻き付ける片巻き装置の第7の変形例の更なる変形例を示しており、図83Bは巻き具によってシートに片を巻き付けている状態を示した断面図である。FIG. 83B shows a further modification of the seventh modification of the single winding device that winds the piece from one surface of the sheet to the other surface while the winding tool moves from one surface to the other surface, It is sectional drawing which showed the state which has wound the piece around the sheet | seat with the winding tool. 巻き具が一方の面から他方の面に移動しつつ、片をシートの一方の面から他方の面に巻き付ける片巻き装置の第7の変形例の更なる変形例を示しており、図83Cは巻き具によってシートに片を巻き付けた状態を示した断面図である。FIG. 83C shows a further modification of the seventh modification of the single-winding device that winds the piece from one surface of the sheet to the other surface while the winding tool moves from one surface to the other surface, It is sectional drawing which showed the state which wound the sheet | seat around the sheet | seat with the winding tool. 先端が片を押しながらシートの孔からシートの端部側まで移動するように巻き具が回動する片巻き装置の第8の変形例を示しており、図84Aは待機時の状態を示した断面図である。FIG. 84A shows an eighth modification of the single-winding device in which the winding tool rotates so that the leading edge moves from the hole of the sheet to the edge side of the sheet while pushing the piece, and FIG. 84A shows a standby state. It is sectional drawing. 先端が片を押しながらシートの孔からシートの端部側まで移動するように巻き具が回動する片巻き装置の第8の変形例を示しており、図84Bは巻き具によってシートに片を巻き付けている状態を示した断面図である。FIG. 84B shows an eighth modification of the single winding device in which the winding tool rotates so that the leading edge moves from the hole of the sheet to the edge side of the sheet while pushing the piece. FIG. It is sectional drawing which showed the state wound. 先端が片を押しながらシートの孔からシートの端部側まで移動するように巻き具が回動する片巻き装置の第8の変形例を示しており、図84Cは巻き具によってシートに片を巻き付けた状態を示した断面図である。FIG. 84C shows an eighth modification of the single winding device in which the winding tool rotates so that the tip moves from the hole of the sheet to the edge side of the sheet while pushing the piece. FIG. It is sectional drawing which showed the state wound. 回動方向が異なる巻き具と他の巻き具とを有する片巻き装置の第8の変形例の更なる変形例を示しており、図85Aは待機時の状態を示した断面図である。The further modification of the 8th modification of the single winding apparatus which has the winding tool from which a rotation direction differs, and another winding tool is shown, and FIG. 85A is sectional drawing which showed the state at the time of standby. 回動方向が異なる巻き具と他の巻き具とを有する片巻き装置の第8の変形例の更なる変形例を示しており、図85Bは他の巻き具によってシートに片を巻き付けている状態を示した断面図である。FIG. 85B shows a further modification of the eighth modification of the single-winding device having a winding tool having a different rotation direction and another winding tool, and FIG. 85B shows a state in which the sheet is wound around the sheet by the other winding tool. It is sectional drawing which showed. 回動方向が異なる巻き具と他の巻き具とを有する片巻き装置の第8の変形例の更なる変形例を示しており、図85Cは巻き具によってシートに片を巻き付けている状態を示した断面図である。FIG. 85C shows a further modification of the eighth modification of the single-winding device having a winding tool having a different rotation direction and another winding tool, and FIG. 85C shows a state where the piece is wound around the sheet by the winding tool. FIG.
 以下、本発明を適用した片巻き装置1について図面を参照して説明する。
 <1.片巻き装置の全体構成の説明>
 <2.ベースユニットの構成の説明>
 <3.ハンドルの構成の説明>
 <4.片送り機構の構成の説明>
 <5.巻付け機構の構成の説明>
  <5-1.巻き爪の説明>
  <5-2.回動機構の説明>
 <6.穿孔ユニットの構成の説明>
  <6-1.穿孔ユニットのスライドの説明>
  <6-2.シート束の突当部の説明>
  <6-3.抜き刃の説明>
  <6-4.押さえ部材及び押上部材の説明>
  <6-5.押圧接着部材の説明>
  <6-6.巻き爪とシート押さえ部材との関係の説明>
 <7.動作説明>
  <7-1.ハンドルの往路の動作説明>
  <7-2.ハンドルの復路の動作説明>
 <8.シート押さえ保持機構>
 <9.抜き刃とシート押さえ部材の連動動作の変形例の説明>
 <10.巻付け機構の変形例の説明>
 <11.片を3面に接着する変形例の説明>
 <12.ハンドルの往路の動作で抜き刃と巻き具を動作させる変形例の説明>
 <13.排出部や巻き具を露出させる変形例の説明>
Hereinafter, a single winding device 1 to which the present invention is applied will be described with reference to the drawings.
<1. Description of overall configuration of single-winding device>
<2. Explanation of base unit configuration>
<3. Explanation of the structure of the handle>
<4. Explanation of configuration of single feed mechanism>
<5. Explanation of configuration of winding mechanism>
<5-1. Explanation of wound nails>
<5-2. Explanation of rotation mechanism>
<6. Explanation of configuration of drilling unit>
<6-1. Explanation of drilling unit drill>
<6-2. Explanation of the sheet bundle abutment section>
<6-3. Explanation of the cutting blade>
<6-4. Explanation of holding member and lifting member>
<6-5. Explanation of Press Adhesive Member>
<6-6. Explanation of relationship between winding claw and sheet pressing member>
<7. Operation explanation>
<7-1. Explanation of the operation of the steering wheel>
<7-2. Explanation of steering wheel return path>
<8. Sheet holding mechanism>
<9. Description of Modified Example of Interlocking Operation of Cutting Blade and Sheet Pressing Member>
<10. Description of Modification of Winding Mechanism>
<11. Description of Modified Example of Adhering Pieces to Three Sides>
<12. Description of a modified example in which the punching blade and the winding tool are operated by the operation of the handle forward path>
<13. Description of Modified Example Exposing Discharge Portion and Wrapping Tool>
 <1.片巻き装置の全体構成の説明>
 図1及び図2に示すように、本発明が適用された片巻き装置10は、複数枚のシートが積層されたシート束1に孔2を空け、孔2に片3を巻き付けることで、シート束1を綴じる装置である。シート束1は、図3A~図3Dに示すように、書類等の用紙や、金属材料又は樹脂材料等で形成されたシート状部材等を積層したものである。シート束1の挿入端側の端部の近傍には、厚さ方向に貫通された孔2が形成されている。この孔2は、片巻き装置10にシート束1が挿入された後に抜き刃67によってシート束1に形成されるパンチ孔である。シート束1には、一方の面1a、挿入端側の端面1c、他方の面1b、孔2の孔端面2a、及び、一方の面1aに亘って、片3が1周以上(ここでは5面)巻き付けられている。この際、シート束1は、シートが複数枚重ねられた状態(例えばシートが少ない枚数のシート束~多い枚数の厚いシート束)で片3が巻き付けられる。勿論、シートが一枚だけの状態で片3が巻き付けられるようにしても良い。
<1. Description of overall configuration of single-winding device>
As shown in FIG. 1 and FIG. 2, the single winding device 10 to which the present invention is applied has a hole 2 formed in a sheet bundle 1 in which a plurality of sheets are stacked, and a piece 3 is wound around the hole 2, thereby An apparatus for binding the bundle 1. As shown in FIGS. 3A to 3D, the sheet bundle 1 is formed by laminating paper sheets such as documents, sheet-like members formed of a metal material, a resin material, or the like. In the vicinity of the end of the sheet bundle 1 on the insertion end side, a hole 2 penetrating in the thickness direction is formed. The hole 2 is a punch hole formed in the sheet bundle 1 by the punching blade 67 after the sheet bundle 1 is inserted into the single winding device 10. The sheet bundle 1 includes one surface 1a, an end surface 1c on the insertion end side, the other surface 1b, the hole end surface 2a of the hole 2, and one piece 1 over one surface 1a (here 5 or more). Surface) is wound. At this time, the sheet bundle 1 is wound with the pieces 3 in a state where a plurality of sheets are stacked (for example, a sheet bundle having a small number of sheets to a thick sheet bundle having a large number of sheets). Of course, the piece 3 may be wound with only one sheet.
 片3は、図4A及び図4Bに示すように、例えば、平面視略矩形状に形成されており、他方の面3bに粘着層4を有し、例えば、長尺な剥離紙5に、長手方向に所定の間隔をあけて複数個仮着されている。これにより、片3は、長期間待機された後に使用される場合であっても、粘着層4の粘着力の低下を防止することができる。更に、片3及び剥離紙5で構成される帯状体6は、例えば、ロール状に巻回されロール体8(図1参照)となって、片巻き装置10のベースユニット11に設けられたロール収容部13に回転自在に収容されている。帯状体6の剥離紙5には、帯状体6を送り出すための係合部材36が係合される係合孔7が長手方向に所定の間隔をあけて複数個形成されている。なお、係合孔7は、片3と剥離紙5とを貫通する孔であってもよい。 As shown in FIGS. 4A and 4B, the piece 3 is formed in, for example, a substantially rectangular shape in plan view, and has an adhesive layer 4 on the other surface 3b. A plurality are temporarily attached at predetermined intervals in the direction. Thereby, even if it is a case where the piece 3 is used after having waited for a long period of time, the fall of the adhesive force of the adhesion layer 4 can be prevented. Furthermore, the belt-like body 6 composed of the piece 3 and the release paper 5 is wound into a roll shape to form a roll body 8 (see FIG. 1), for example, and a roll provided in the base unit 11 of the piece winding device 10. The container 13 is rotatably accommodated. A plurality of engagement holes 7 are formed in the release paper 5 of the belt-like body 6 at predetermined intervals in the longitudinal direction to engage with an engagement member 36 for feeding the belt-like body 6. The engagement hole 7 may be a hole that penetrates the piece 3 and the release paper 5.
 なお、片3の長さは、シート束1の孔2にどれだけ巻くかによって決められるものであり、ここでは、一方の面1a、挿入端側の端面1c、他方の面1b、孔2の孔端面2a、及び、一方の面1aに亘って、片3が1周以上(ここでは5面)巻き付け可能な長さに形成されている。したがって、一方の面1a、挿入端側の端面1c、他方の面1b、及び、孔2の孔端面2aの4面巻く場合には、それに応じて短くなり、また、一方の面1a、挿入端側の端面1c、及び、他方の面1bの3面を巻く場合には、それに応じて更に短くなる。また、片3は、孔2に6面以上巻くようにしてもよい。片3は、孔2により多く巻かれる方が、より強固にシート束1を結束することができる。 Note that the length of the piece 3 is determined by how much the sheet 3 is wound around the hole 2 of the sheet bundle 1. Here, the one surface 1 a, the end surface 1 c on the insertion end side, the other surface 1 b, The piece 3 is formed in such a length that it can be wound around one or more rounds (here, 5 surfaces) over the hole end surface 2a and the one surface 1a. Therefore, when one surface 1a, the end surface 1c on the insertion end side, the other surface 1b, and the hole end surface 2a of the hole 2 are wound on four surfaces, the length is shortened accordingly, and the one surface 1a, the insertion end When winding the three surfaces of the side end surface 1c and the other surface 1b, the length is further shortened accordingly. Further, the piece 3 may be wound around the hole 2 by six or more surfaces. When the piece 3 is wound more in the hole 2, the sheet bundle 1 can be bound more firmly.
 図1及び図2に示すように、片巻き装置10は、綴じるシート束1が載置されるベース部となるベースユニット11と、このベースユニット11に対して回動可能に設けられる操作部となるハンドル12とを備える。また、ベースユニット11には、ハンドル12の回動支点側に、シート束1を綴じる片3の帯状体6をロール状に巻回してなるロール体8を回転自在に収容するロール収容部13が設けられている。ベースユニット11とハンドル12に跨る位置には、ロール収容部13から導出された帯状体6から片3を抽出する片送り機構14が設けられている。更に、ベースユニット11には、ハンドル12の回動支点近傍に、片3をシート束1の孔2に巻き付ける巻付け機構15が設けられている。更に、ベースユニット11上には、シート束1に孔2を穿孔する穿孔ユニット16が設けられている。 As shown in FIGS. 1 and 2, the single-winding device 10 includes a base unit 11 serving as a base portion on which the sheet bundle 1 to be bound is placed, and an operation unit provided to be rotatable with respect to the base unit 11. And a handle 12. Further, the base unit 11 has a roll accommodating portion 13 that rotatably accommodates a roll body 8 formed by winding a strip 6 of the pieces 3 binding the sheet bundle 1 in a roll shape on the rotation fulcrum side of the handle 12. Is provided. At a position straddling the base unit 11 and the handle 12, a one-feed mechanism 14 that extracts the piece 3 from the belt-like body 6 led out from the roll housing portion 13 is provided. Further, the base unit 11 is provided with a winding mechanism 15 for winding the piece 3 around the hole 2 of the sheet bundle 1 in the vicinity of the rotation fulcrum of the handle 12. Further, a punching unit 16 for punching holes 2 in the sheet bundle 1 is provided on the base unit 11.
 片巻き装置10では、ベースユニット11と穿孔ユニット16との間に、シート束1が挿入され、ハンドル12が回動操作されると、片送り機構14から1枚の片3が巻付け機構15に排出される。これと共に、シート束1には、穿孔ユニット16によって、孔2が穿孔され、次いで、孔2には、図3Dに示すように、片3が巻付け機構15によって一方の面1a、挿入端側の端面1c、他方の面1b、孔2の孔端面2aに亘って巻き付けられる。この後、ハンドル12が元の位置に戻り、シート束1が引き出されると、シート束1は、最後に片3が、該一方の面1aに貼着された片3に更に重なるように貼着されることで、綴じられた状態となる。以下、片巻き装置10を構成する各機構について図面を参照して説明する。 In the single winding device 10, when the sheet bundle 1 is inserted between the base unit 11 and the punching unit 16 and the handle 12 is rotated, one piece 3 is wound from the single feeding mechanism 14 to the winding mechanism 15. To be discharged. At the same time, the hole 2 is punched in the sheet bundle 1 by the punching unit 16, and then, in the hole 2, as shown in FIG. Is wound around the end surface 1c of the first surface, the other surface 1b, and the hole end surface 2a of the hole 2. Thereafter, when the handle 12 returns to the original position and the sheet bundle 1 is pulled out, the sheet bundle 1 is pasted so that the piece 3 finally overlaps the piece 3 stuck on the one surface 1a. By doing so, it becomes a bound state. Hereinafter, each mechanism which comprises the piece winding apparatus 10 is demonstrated with reference to drawings.
 <2.ベースユニットの構成の説明>
 図1及び図2に示すように、ベースユニット11は、例えば矩形箱状に形成されており、長手方向の一端側に、ロール収容部13が設けられていると共に、ベースユニット11の相対する立ち上がり片に設けられた支軸22によって、ハンドル12が回動可能に支持されている。ベースユニット11には、ハンドル12の回動支点側に、片3の巻付け機構15が内蔵されており、また、巻付け機構15と対向するようにして、ベースユニット11の上面23に、穿孔ユニット16が設けられている。穿孔ユニット16は、この上面23上を、スライド可能に取り付けられている。詳細は省略するが、穿孔ユニット16は、上面23上を、巻付け機構15と対向する穿孔位置とベースユニット11の他端側(シート束1の挿入側)のメンテナンス位置とに亘ってスライドし、メンテナンス位置にあるとき、巻付け機構15を外部に露出させ、メンテナンス作業を容易に行うことができるようにしている(図16A及びB参照)。
<2. Explanation of base unit configuration>
As shown in FIGS. 1 and 2, the base unit 11 is formed in a rectangular box shape, for example, and is provided with a roll accommodating portion 13 on one end side in the longitudinal direction, and the base unit 11 is opposed to each other. The handle 12 is rotatably supported by a support shaft 22 provided on the piece. The base unit 11 incorporates a winding mechanism 15 of the piece 3 on the pivot fulcrum side of the handle 12, and the upper surface 23 of the base unit 11 is perforated so as to face the winding mechanism 15. A unit 16 is provided. The punching unit 16 is slidably mounted on the upper surface 23. Although details are omitted, the punching unit 16 slides on the upper surface 23 between a punching position facing the winding mechanism 15 and a maintenance position on the other end side of the base unit 11 (insertion side of the sheet bundle 1). When in the maintenance position, the winding mechanism 15 is exposed to the outside so that maintenance work can be easily performed (see FIGS. 16A and B).
 図1及び図5に示すように、ベースユニット11には、その底面側に、穿孔ユニット16の抜き刃67によってシート束1に孔2を穿孔した際に発生した略円形のダストを貯めるダストケース24が配設されている。ダストケース24に貯まるダストを拡散させないと、ダストが一箇所にたまってしまい、ダストケース24の容積を十分に活用できないことがある。ダストがダストケース内からあふれると片3にダストが貼り付き、綴り不良が発生する可能性がある。そのため、ダストケース24は、ベースユニット11の底面側に設けられたケース収納部24aに収納可能であり、ベースユニット11の他端側(シート束1の挿入側)からスライドさせてベースユニット11の底面部に取り付けられる。ダストケース24は、少なくとも、穿孔ユニット16の抜き刃67と対向する位置が開口されており、ダストを受容できるように構成されている。 As shown in FIGS. 1 and 5, the base unit 11 has a dust case for storing substantially circular dust generated when the holes 2 are punched in the sheet bundle 1 by the punching blade 67 of the punching unit 16 on the bottom surface side thereof. 24 is arranged. If the dust accumulated in the dust case 24 is not diffused, the dust accumulates in one place, and the capacity of the dust case 24 may not be fully utilized. If the dust overflows from inside the dust case, the dust may stick to the piece 3 and a spelling failure may occur. Therefore, the dust case 24 can be stored in a case storage portion 24 a provided on the bottom surface side of the base unit 11, and is slid from the other end side (insertion side of the sheet bundle 1) of the base unit 11. Attached to the bottom. The dust case 24 is opened at least at a position facing the punching blade 67 of the punching unit 16 and is configured to receive dust.
 このダストの落下地点の底面25bには、ケース収納部24aへの挿入面25cとのコーナ部に突出部25が形成されている。突出部25は、穿孔ユニット16の抜き刃67側が高く形成され、抜き刃67から離れるに連れて低くなるように形成されている。また、突出部25の頂面は、例えば、平面で構成された傾斜面25aとなっている。抜き刃67によって打ち抜かれたダストは、最初に、突出部25の高い部分に当たり、その後、突出部25の左右に別れ底面25bに落ち、また、傾斜面25aに沿って底面25bに滑り落ちたりする。これにより、ダストは、ダストケース24内に分散して落下されることになり、ダストが穿孔ユニット16の抜き刃67の下に積もることによって、抜き刃が動作不良になることを防止することができる。このダストケース24は、ベースユニット11の他端側(シート束1の挿入側)から突出部25側の側面を挿入端として、ケース収納部24aにスライドさせて収納され、また、出し入れされる。勿論、ダストケース24の突出部25は、傾斜面25aが設けられていない矩形片で構成されていてもよいし、頂面が平面ではなく断面視山切り状になっていてもよい。 A protruding portion 25 is formed on the bottom surface 25b of the dust drop point at a corner portion with the insertion surface 25c to the case storage portion 24a. The protruding portion 25 is formed so that the side of the punching blade 67 of the punching unit 16 is high, and is lowered as the distance from the punching blade 67 increases. Moreover, the top surface of the protrusion part 25 is the inclined surface 25a comprised by the plane, for example. The dust punched out by the punching blade 67 first hits a high portion of the projecting portion 25, and then divides into the left and right sides of the projecting portion 25 and falls to the bottom surface 25b, and slides down to the bottom surface 25b along the inclined surface 25a. . As a result, the dust is dispersed and dropped in the dust case 24, and it is possible to prevent the punching blade from malfunctioning by being accumulated under the punching blade 67 of the punching unit 16. it can. The dust case 24 is accommodated by being slid in and out of the case accommodating portion 24a with the side surface on the protruding portion 25 side from the other end side (sheet bundle 1 insertion side) of the base unit 11 as an insertion end. Of course, the protrusion part 25 of the dust case 24 may be comprised by the rectangular piece in which the inclined surface 25a is not provided, and the top surface may be not a plane but a cross-sectional view mountain shape.
 <3.ハンドルの構成の説明>
 ベースユニット11に回動可能に設けられるハンドル12は、図1に示すように、ベースユニット11の相対する立ち上がり片に設けられた支軸22によって、ハンドル12が回動可能に支持されている。ハンドル12は、捻りコイルバネやコイルバネ等の付勢部材によって、ベースユニット11の上面23から離間する方向に回動付勢されている。付勢部材は、一端をハンドル12に係止し他端をベースユニット11の立ち上がり片に係止することによって、支軸22を中心にハンドル12をベースユニット11の上面23から離間する図1中A方向に回動付勢する。
<3. Explanation of the structure of the handle>
As shown in FIG. 1, the handle 12 provided rotatably on the base unit 11 is rotatably supported by a support shaft 22 provided on a rising piece facing the base unit 11. The handle 12 is urged to rotate in a direction away from the upper surface 23 of the base unit 11 by an urging member such as a torsion coil spring or a coil spring. The urging member has one end locked to the handle 12 and the other end locked to the rising piece of the base unit 11 so that the handle 12 is separated from the upper surface 23 of the base unit 11 in FIG. Turn biased in the A direction.
 <4.片送り機構の構成の説明>
 図1に示すように、ベースユニット11には、長手方向の一端側に、ロール収容部13が設けられ、ロール収容部13からは、回転自在に収納されたロール体8から片3を支持した帯状体6がハンドル12の回動に連動して片送り機構14によって送られる。そして、1枚の片3が巻付け機構15上に排出される。この際、片3の送り量を一定にしないと片3の巻き付け位置が変化し、安定して片3を巻くことができない虞がある。具体的に、片送り機構14は、ベースユニット11には、図1及び図6(A)に示すように、片3を排出する排出部31の位置で帯状体6を折り返す折り返しガイド部材32を有する。折り返しガイド部材32は、ベースユニット11側に設けられたロール体8から延出され帯状体6を下側から支持する支持ガイド部材33と対向して設けられている。折り返しガイド部材32は、片3の排出部31の近傍において、C字状の折り返し部32aを有し、折り返し部32aの両側に、支持ガイド部材33と対向する前半ガイド部32bと片3が剥がれた帯状体6をガイドする後半ガイド部32cとが設けられている。
<4. Explanation of configuration of single feed mechanism>
As shown in FIG. 1, the base unit 11 is provided with a roll accommodating portion 13 on one end side in the longitudinal direction, and the roll accommodating portion 13 supports the piece 3 from a roll body 8 that is rotatably accommodated. The belt-like body 6 is fed by the one-feed mechanism 14 in conjunction with the rotation of the handle 12. Then, one piece 3 is discharged onto the winding mechanism 15. At this time, if the feed amount of the piece 3 is not constant, the winding position of the piece 3 changes, and there is a possibility that the piece 3 cannot be wound stably. Specifically, as shown in FIGS. 1 and 6A, the single feed mechanism 14 includes a folding guide member 32 that folds the belt-like body 6 at the position of the discharge portion 31 that discharges the piece 3 in the base unit 11. Have. The folding guide member 32 is provided to face the support guide member 33 that extends from the roll body 8 provided on the base unit 11 side and supports the belt-like body 6 from below. The folding guide member 32 has a C-shaped folding portion 32a in the vicinity of the discharge portion 31 of the piece 3, and the first half guide portion 32b facing the support guide member 33 and the piece 3 are peeled off on both sides of the folding portion 32a. And a second half guide portion 32c for guiding the belt-like body 6.
 片3が剥離されていない帯状体6は、支持ガイド部材33と前半ガイド部32bとの間を通って排出部31へと送り出され、折り返し部32aで走行路が折り返される。このとき、帯状体6は、折り返し部32aに沿って折れ曲がることによって、片3が剥離紙5から剥離され、片3のみが排出部31へ排出される。片3が剥離された剥離紙5でなる帯状体6は、後半ガイド部32cにガイドされて外部に排出されていく。片3は、シート束1の一方の面1aと対向するように、粘着層4が上向きの状態、すなわち、粘着層4が前半ガイド部32bと対向する状態で、排出部31から排出されることになる。 The belt-like body 6 from which the piece 3 is not peeled is sent to the discharge portion 31 through the space between the support guide member 33 and the first half guide portion 32b, and the travel path is folded at the turn-back portion 32a. At this time, the strip 6 is bent along the folded portion 32 a, whereby the piece 3 is peeled from the release paper 5, and only the piece 3 is discharged to the discharge portion 31. The belt-like body 6 made of the release paper 5 from which the piece 3 is peeled is guided by the latter half guide portion 32c and discharged to the outside. The piece 3 is discharged from the discharge unit 31 so that the adhesive layer 4 faces upward, that is, the adhesive layer 4 faces the front half guide portion 32b so as to face the one surface 1a of the sheet bundle 1. become.
 剥離紙5から剥離された片3を排出する排出部31は、図6(A)-図6(C)に示すように、下ガイド部材34と上ガイド部材35とがほぼ片3が通過できる距離だけ離間して対向配置されている。下ガイド部材34は、図6(A)及び(B)に示すように、剥離紙5から剥離された片3の粘着層4とは反対側の面を支持する。上ガイド部材35は、片3の粘着層4と対応する部材であるため、粘着層4との接触を避けるべく、図6(C)に示すように、断面C字状に形成されている。また、上ガイド部材35は、各端部が山切りされており、内側の傾斜面35a,35aが片3の長手方向両側縁に当接し、ガイドする。ロール体8は、片3が内側となるように帯状体6を巻回しており、したがって、帯状体6は、ロール体8から引き出されると、下ガイド部材34の方向に巻き癖が付いた状態で引き出され、剥離紙5から片3が剥離された際にも粘着層4が上ガイド部材35に付きにくくなっている。上ガイド部材35は、剥離する片3が上下する挙動を抑えて確実にシート束の下方に片を挿入できる。 As shown in FIGS. 6 (A) to 6 (C), the discharge section 31 for discharging the piece 3 peeled from the release paper 5 allows the lower guide member 34 and the upper guide member 35 to pass almost the piece 3. Opposite positions are spaced apart by a distance. As shown in FIGS. 6A and 6B, the lower guide member 34 supports the surface of the piece 3 peeled from the release paper 5 opposite to the adhesive layer 4. Since the upper guide member 35 is a member corresponding to the adhesive layer 4 of the piece 3, as shown in FIG. 6C, the upper guide member 35 is formed in a C-shaped cross section so as to avoid contact with the adhesive layer 4. Further, each end of the upper guide member 35 is cut into a mountain, and the inner inclined surfaces 35a, 35a are in contact with and guide both side edges of the piece 3 in the longitudinal direction. The roll body 8 is wound around the belt-like body 6 so that the piece 3 is on the inside. Therefore, when the belt-like body 6 is pulled out from the roll body 8, a state in which a curl is attached in the direction of the lower guide member 34. The adhesive layer 4 is difficult to attach to the upper guide member 35 even when the piece 3 is peeled off from the release paper 5. The upper guide member 35 can reliably insert the piece below the sheet bundle while suppressing the movement of the peeling piece 3 up and down.
 片送り機構14は、更に、図6及び図7に示すように、帯状体6を送る係合部材36と、係合部材36を移動する送り部材37とを備えている。係合部材36は、ロール収容部13又はベースユニット11に設けられた移動ガイド部材36aに移動可能に設けられており、連結ピン36bが送り部材37の連結溝37dに係合されることで連結される。係合部材36は、帯状体6の係合孔7に係合する係合突起36cが形成されている。係合突起36cは、帯状体6の送り方向である矢印B方向が開口した鈎状の突起であり、帯状体6の係合孔7(図4参照)と容易に係合し得る形状をなし、さらに片3が外れにくい形状になっている。また、係合部材36は、コイルバネ等の弾性体36dによって、帯状体6の方向に弾性付勢され、係合突起36cが帯状体6の係合孔7に容易に係合できるようにしている。 As shown in FIGS. 6 and 7, the single feed mechanism 14 further includes an engaging member 36 that sends the belt-like body 6 and a feeding member 37 that moves the engaging member 36. The engaging member 36 is movably provided on a movement guide member 36 a provided in the roll accommodating portion 13 or the base unit 11, and is connected by the connecting pin 36 b being engaged with the connecting groove 37 d of the feeding member 37. Is done. The engaging member 36 is formed with an engaging protrusion 36 c that engages with the engaging hole 7 of the belt-like body 6. The engagement protrusion 36c is a hook-shaped protrusion that opens in the direction of arrow B, which is the feeding direction of the belt-like body 6, and has a shape that can be easily engaged with the engagement hole 7 (see FIG. 4) of the belt-like body 6. Further, the shape of the piece 3 is difficult to come off. The engaging member 36 is elastically biased in the direction of the belt-like body 6 by an elastic body 36d such as a coil spring so that the engaging protrusion 36c can be easily engaged with the engaging hole 7 of the belt-like body 6. .
 以上のような係合部材36は、送り部材37によってハンドル12の回動に連動して矢印B方向に移動される。送り部材37は、第1の部材37aと第2の部材37bとが回動可能に連結されて構成されている。具体的に、第1の部材37aと第2の部材37bとは、それぞれの軸孔がベースユニット11の立ち上がり片に架け渡された支軸37cに挿通されて回動可能に軸支されている。図1及び図7に示すように、第1の部材37aは、先端部がハンドル12の回動時に、ハンドル12の内面に押圧される被押圧部材である。第1の部材に対して回動可能な第2の部材37bは、係合部材36を操作する操作部材である。第2の部材37bは、係合部材36の連結ピン36bが長孔状の連結溝37dと係合することで連結される。第1の部材37aと第2の部材37bとは、支軸37cの位置で、捻りコイルバネ等の付勢部材38によって矢印C方向に付勢され、待機状態において、直線的な位置関係となるようにしいる。 The engaging member 36 as described above is moved in the arrow B direction by the feed member 37 in conjunction with the rotation of the handle 12. The feed member 37 includes a first member 37a and a second member 37b that are rotatably connected. Specifically, the first member 37 a and the second member 37 b are pivotally supported so that their respective shaft holes are inserted into a support shaft 37 c spanning the rising piece of the base unit 11 and are rotatable. . As shown in FIGS. 1 and 7, the first member 37 a is a pressed member whose tip is pressed against the inner surface of the handle 12 when the handle 12 is rotated. The second member 37 b that can rotate with respect to the first member is an operation member that operates the engagement member 36. The second member 37b is connected when the connecting pin 36b of the engaging member 36 engages with the long connecting hole 37d. The first member 37a and the second member 37b are urged in the direction of the arrow C by the urging member 38 such as a torsion coil spring at the position of the support shaft 37c, and have a linear positional relationship in the standby state. I am.
 図1に示すように、ハンドル12がベースユニット11から離間した待機状態にあるとき、送り部材37の第1の部材37aに先端部は、ハンドル12の内面に押圧されていない状態にある。ハンドル12が矢印A方向に回動されると、ハンドル12の内面は、第1の部材37aの先端部に当接し、ハンドル12が更に回動されると、付勢部材38に抗して、第1の部材37aが第2の部材37bに対して支軸37cを中心に回動する。すると、第2の部材37bを介して連結されている係合部材36は、図6Bに示すように、矢印B方向に移動し、これにより、片3の一枚分を送り操作する。係合部材36の送り動作は、図7に示すように、第2の部材37bがストッパとなる支軸22に突き当たることで停止する。係合部材36は付勢部材38により付勢されながら支軸22に突き当たることで、他の部品の寸法精度に影響されず、1回の片3の送り量を一定にすることができ、送り不良等によるジャム等を防止することができる。ハンドル12は、更に矢印A方向に回動されることで、シート束1に孔2を形成する穿孔動作に移るが、この際には、第1の部材37aがストッパとなる支軸22に突き当たっていることで、この後は、付勢部材38の付勢力に抗して第1の部材37aに対して第2の部材37bが支軸37cを中心に更に回動する。これにより、ハンドル12が更に回動した際に、片巻き装置10は、穿孔動作に移行することが可能となる。 As shown in FIG. 1, when the handle 12 is in a standby state separated from the base unit 11, the tip of the first member 37 a of the feed member 37 is not pressed against the inner surface of the handle 12. When the handle 12 is rotated in the counter direction of arrow A, the inner surface of the handle 12 is in contact with the distal end portion of the first member 37a, when the handle 12 is further rotated against the urging member 38 The first member 37a rotates around the support shaft 37c with respect to the second member 37b. Then, as shown in FIG. 6B, the engaging member 36 connected via the second member 37b moves in the direction of arrow B, thereby feeding and feeding one piece 3. As shown in FIG. 7, the feeding operation of the engaging member 36 stops when the second member 37b hits the support shaft 22 serving as a stopper. By engaging the engaging member 36 against the support shaft 22 while being urged by the urging member 38, the feeding amount of one piece 3 can be made constant without being affected by the dimensional accuracy of other parts. A jam or the like due to a defect or the like can be prevented. The handle 12 is further rotated in the direction of the arrow A to move to a punching operation for forming the hole 2 in the sheet bundle 1. At this time, the first member 37 a hits the support shaft 22 that serves as a stopper. Thus, thereafter, the second member 37b further rotates around the support shaft 37c with respect to the first member 37a against the urging force of the urging member 38. Thereby, when the handle | steering-wheel 12 rotates further, the piece winding apparatus 10 can transfer to punching operation | movement.
 <5.巻付け機構の構成の説明>
  <5-1.巻き爪の説明>
 図1及び図8に示すように、排出部31より排出された片3をシート束1の孔2に巻き付ける巻付け機構15は、巻き具40を有する。この巻き具40には、排出部31より排出された片3をシート束1の孔2に巻き付ける巻き爪41が設けられている。この巻き爪41は、図8A~Cに示すように、例えばC字状に湾曲又は折り曲げられて形成されており、回転軸42を中心に回動自在に設けられている。具体的に、巻き爪41は、先端部41aが、ベースユニット11の上面23側に位置するように設けられた待機状態から、図8Cに示すように回動されて、シート束1の一方の面1aに貼着された片3の自由端(シート束1の一方の面1aに貼着されていない部分)を、押しながら、シート束1の端面1c、シート束1の他方の面1b、孔2の孔端面2aの順に巻き付ける。なお、片3の巻き付けが終了すると、巻き具40は逆転し、待機状態に戻る。
<5. Explanation of configuration of winding mechanism>
<5-1. Explanation of wound nails>
As shown in FIGS. 1 and 8, the winding mechanism 15 that winds the piece 3 discharged from the discharge unit 31 around the hole 2 of the sheet bundle 1 includes a winding tool 40. The winding tool 40 is provided with a winding claw 41 for winding the piece 3 discharged from the discharge portion 31 around the hole 2 of the sheet bundle 1. As shown in FIGS. 8A to 8C, the wound claw 41 is formed, for example, by being bent or bent in a C shape, and is provided so as to be rotatable around a rotation shaft. Specifically, the winding pawl 41 is rotated as shown in FIG. 8C from a standby state in which the tip end portion 41a is located on the upper surface 23 side of the base unit 11, and one of the sheet bundles 1 is rotated. While pressing the free end of the piece 3 adhered to the surface 1a (the portion not adhered to one surface 1a of the sheet bundle 1), the end surface 1c of the sheet bundle 1, the other surface 1b of the sheet bundle 1, It winds in order of the hole end surface 2a of the hole 2. FIG. When the winding of the piece 3 is completed, the winding tool 40 reverses and returns to the standby state.
 なお、図9A及びBに示すように、巻き爪41は、先端部41aが片3の自由端を押しながら、シート束1の端面1c、シート束1の他方の面1b、孔2の孔端面2aの順に巻き付ける際に、巻き爪41の内周面の中程の内周押圧面41bが孔端面2aの位置を押圧することによって、シート束1の枚数に拘わらず、片3の粘着層4を孔端面2aに押し付ける。このように、巻き爪41の内周押圧面41bがシート束1の孔2の孔端面2aと互いに干渉することによって、片2をシート束1の厚さに拘わらずに確実に貼り付けることができる。例えば、図9Aでは、少ない枚数のシート束の場合を示し、図9Bでは、多い枚数の厚いシート束1の場合を示している。何れの場合においても、巻き爪41の内周押圧面41bは、シート束1の孔2の孔端面2aの位置において、片3の粘着層4を確実に押圧し、接着することができる。 As shown in FIGS. 9A and 9B, the winding claw 41 has an end surface 1 c of the sheet bundle 1, the other surface 1 b of the sheet bundle 1, and a hole end surface of the hole 2 while the tip end portion 41 a presses the free end of the piece 3. When winding in the order of 2a, the inner peripheral pressing surface 41b in the middle of the inner peripheral surface of the winding claw 41 presses the position of the hole end surface 2a, so that the adhesive layer 4 of the piece 3 regardless of the number of sheets 1 Is pressed against the hole end surface 2a. In this way, the inner peripheral pressing surface 41b of the winding claw 41 interferes with the hole end surface 2a of the hole 2 of the sheet bundle 1 so that the pieces 2 can be reliably attached regardless of the thickness of the sheet bundle 1. it can. For example, FIG. 9A shows the case of a small number of sheet bundles, and FIG. 9B shows the case of a large number of thick sheet bundles 1. In any case, the inner peripheral pressing surface 41b of the wound claw 41 can reliably press and adhere the adhesive layer 4 of the piece 3 at the position of the hole end surface 2a of the hole 2 of the sheet bundle 1.
  <5-2.回動機構の説明>
 次に、以上のように構成された巻き爪41を有する巻き具40を回動する巻付け機構15の一部を構成する回動機構51について図10~図15を参照して説明する。図10~図14に示すように、回動機構51は、ハンドル12の基端側に設けられた円弧状ギヤ52と、ハンドル12の円弧状ギヤ52によって回転される駆動ギヤ部材53と、駆動ギヤ部材53によりスライドされるラックリンク部材54と、ラックリンク部材54と一体的にスライドし巻き具40を回動するラック部材55とを備える。
<5-2. Explanation of rotation mechanism>
Next, a rotation mechanism 51 that constitutes a part of the winding mechanism 15 that rotates the winding tool 40 having the winding pawl 41 configured as described above will be described with reference to FIGS. As shown in FIGS. 10 to 14, the rotation mechanism 51 includes an arcuate gear 52 provided on the proximal end side of the handle 12, a drive gear member 53 rotated by the arcuate gear 52 of the handle 12, and a drive. A rack link member 54 slid by the gear member 53 and a rack member 55 that slides integrally with the rack link member 54 and rotates the winding tool 40 are provided.
 駆動ギヤ部材53は、ベースユニット11の立ち上がり片に回転自在に軸支されており、ハンドル12の円弧状ギヤ52と噛合されるギヤ部53aを有する。また、駆動ギヤ部材53には、ラックリンク部材54やラック部材55をスライドさせる駆動ピン53bが形成されている。ラックリンク部材54は、長尺な矩形状部材であり、ベースユニット11の立ち上がり片にスライド自在に取り付けられている。このラックリンク部材54には、駆動ギヤ部材53の駆動ピン53bが係合される第1の係合片54aが形成されている。ラック部材55は、ラックリンク部材54と重なるようにベースユニット11の立ち上がり片に取り付けられ、ラックリンク部材54と一体的にスライドする。ラック部材55は、駆動ギヤ部材53の駆動ピン53bが係合される第2の係合片55aが形成されている。また、ラックリンク部材54とラック部材55とは、コイルバネ等の弾性体56で接続されており、ラックリンク部材54は、この弾性体56の弾性力に抗して、ラック部材55に対してスライドする。また、ラックリンク部材54は、ラック部材55とのスライドをガイドするガイドピン54bが形成されており、ガイドピン54bは、ラック部材55のガイド孔55bに係合されている。 The drive gear member 53 is rotatably supported by the rising piece of the base unit 11 and has a gear portion 53a that meshes with the arcuate gear 52 of the handle 12. The drive gear member 53 is formed with drive pins 53b for sliding the rack link member 54 and the rack member 55. The rack link member 54 is a long rectangular member, and is slidably attached to the rising piece of the base unit 11. The rack link member 54 is formed with a first engagement piece 54a with which the drive pin 53b of the drive gear member 53 is engaged. The rack member 55 is attached to the rising piece of the base unit 11 so as to overlap the rack link member 54 and slides integrally with the rack link member 54. The rack member 55 is formed with a second engagement piece 55a with which the drive pin 53b of the drive gear member 53 is engaged. The rack link member 54 and the rack member 55 are connected by an elastic body 56 such as a coil spring, and the rack link member 54 slides against the rack member 55 against the elastic force of the elastic body 56. To do. Further, the rack link member 54 is formed with guide pins 54 b that guide the slide with the rack member 55, and the guide pins 54 b are engaged with the guide holes 55 b of the rack member 55.
 また、ラック部材55には、第1~第3の係合凹部55c,55d,55eが並んで形成されている。第1~第3の係合凹部55c,55d,55eには、順次、巻き具40の係合ピンが係合する。これにより、巻き具40は、ラック部材55のスライドに合わせて回動する。巻き具40は、回転軸42に円形状の回動駆動部43が形成されている。回動駆動部43には、第1~第3の係合凹部55c,55d,55eに係合する係合部44,44,44が複数形成されている。ラック部材55がスライドすることで、第1~第3の係合凹部55c,55d,55eには、係合部44,44,44の何れか一が順に係合する。これにより、巻き具40は、係合部44,44,44が第1~第3の係合凹部55c,55d,55eの立壁を押すことで、ラック部材55のスライドに合わせて回動することになる。 Also, the rack member 55 is formed with first to third engaging recesses 55c, 55d, and 55e arranged side by side. The engagement pins of the winding tool 40 are sequentially engaged with the first to third engagement recesses 55c, 55d, and 55e. Thereby, the winding tool 40 rotates in accordance with the slide of the rack member 55. In the winding tool 40, a circular rotation drive unit 43 is formed on a rotation shaft 42. A plurality of engaging portions 44, 44, 44 that engage with the first to third engaging recesses 55 c, 55 d, 55 e are formed in the rotation drive portion 43. As the rack member 55 slides, any one of the engaging portions 44, 44, 44 is sequentially engaged with the first to third engaging recesses 55c, 55d, 55e. Thereby, the winding tool 40 rotates according to the slide of the rack member 55 by the engaging portions 44, 44, 44 pushing the standing walls of the first to third engaging recesses 55c, 55d, 55e. become.
 次に、巻き具40を回動する動作について説明する。図12Aに示すように、ハンドル12が待機位置にあるときは、巻き爪41がベースユニット11の上面23の下側に退避した状態にある。ハンドル12の回動操作を開始すると、図12Bに示すように、ハンドル12の円弧状ギヤ52がD1方向に移動することで、円弧状ギヤ52と噛合している駆動ギヤ部材53は、E1方向に回転する。この際、駆動ギヤ部材53の駆動ピン53bは、第1の係合片54aから離間するE1方向に移動する。すなわち、駆動ギヤ部材53は、回転を開始してから暫くの間空転する。図12Bに示すように、駆動ギヤ部材53の駆動ピン53bがラックリンク部材54の第1の係合片54aに当接すると、駆動ピン53bは、駆動ギヤ部材53のE1方向の回転に従って第1の係合片54aを押圧する。これにより、ラックリンク部材54は、弾性体56を圧縮してラック部材55に対して矢印F1方向にスライドする。図13Aに示すように、ハンドル12が下死点に降下するまで、駆動ギヤ部材53がE1方向に回転し続け、駆動ピン53bが第1の係合片54aを押し続け、第1の係合片54aから離れると、ラックリンク部材54は、弾性体56の弾性復帰力に従って矢印F2方向にスライドし元の位置に戻る。なお、この図12B~図13Aの状態では、後述する抜き刃67が降下し、シート束1に孔2を空ける動作をしている。 Next, the operation of rotating the winding tool 40 will be described. As shown in FIG. 12A, when the handle 12 is in the standby position, the winding pawl 41 is in a state of being retracted below the upper surface 23 of the base unit 11. When the turning operation of the handle 12 is started, as shown in FIG. 12B, the arcuate gear 52 of the handle 12 moves in the D1 direction, so that the drive gear member 53 meshing with the arcuate gear 52 is moved in the E1 direction. Rotate to. At this time, the drive pin 53b of the drive gear member 53 moves in the E1 direction away from the first engagement piece 54a. That is, the drive gear member 53 idles for a while after starting to rotate. As shown in FIG. 12B, when the drive pin 53b of the drive gear member 53 comes into contact with the first engagement piece 54a of the rack link member 54, the drive pin 53b is first driven according to the rotation of the drive gear member 53 in the E1 direction. The engaging piece 54a is pressed. Thereby, the rack link member 54 compresses the elastic body 56 and slides relative to the rack member 55 in the direction of arrow F1. As shown in FIG. 13A, the drive gear member 53 continues to rotate in the E1 direction until the handle 12 descends to the bottom dead center, the drive pin 53b continues to push the first engagement piece 54a, and the first engagement When separated from the piece 54a, the rack link member 54 slides in the direction of arrow F2 according to the elastic restoring force of the elastic body 56 and returns to the original position. In the state shown in FIGS. 12B to 13A, a punching blade 67, which will be described later, is lowered and the sheet bundle 1 is opened.
 図13Bに示すように、ハンドル12が下死点から上昇するときには、ハンドル12の円弧状ギヤ52がD2方向に移動することで、円弧状ギヤ52と噛合している駆動ギヤ部材53がE2方向に回転する。すると、駆動ギヤ部材53の駆動ピン53bは、第1の係合片54aを押圧し、ラックリンク部材54と一体的なラック部材55を矢印F2方向にスライドする。ラック部材55の矢印F2方向のスライドにより、最初、ラック部材55の第1の係合凹部55cに係合している1番目の係合部44が押され、巻き具40がG1方向に回転する。次いで、2番目の係合部44が第2の係合凹部55dに係合し、2番目の係合部44が押されることで、更に、巻き具40がG1方向に回転する。更に、3番面の係合部44が第3の係合凹部55eに係合し、3番目の係合部44が押されることで、更に巻き具40がG1方向に回転する。かくして、巻き具40の巻き爪41は、ハンドル12が上昇するときに回転し、先端部41aで片3の自由端を押圧し、片3を、シート束1の端面1c、シート束1の他方の面1b、孔2の孔端面2aの順に巻き付けることができる。 As shown in FIG. 13B, when the handle 12 rises from the bottom dead center, the arcuate gear 52 of the handle 12 moves in the D2 direction, so that the drive gear member 53 engaged with the arcuate gear 52 moves in the E2 direction. Rotate to. Then, the drive pin 53b of the drive gear member 53 presses the first engagement piece 54a and slides the rack member 55 integral with the rack link member 54 in the direction of arrow F2. As the rack member 55 slides in the direction of arrow F2, the first engagement portion 44 engaged with the first engagement recess 55c of the rack member 55 is first pushed, and the winding tool 40 rotates in the G1 direction. . Next, when the second engagement portion 44 is engaged with the second engagement recess 55d and the second engagement portion 44 is pushed, the winding tool 40 further rotates in the G1 direction. Furthermore, the third engaging portion 44 engages with the third engaging recess 55e and the third engaging portion 44 is pushed, whereby the winding tool 40 further rotates in the G1 direction. Thus, the winding claw 41 of the winding tool 40 rotates when the handle 12 is raised, presses the free end of the piece 3 with the tip end portion 41 a, and the piece 3 becomes the other end of the sheet bundle 1 and the other end of the sheet bundle 1. Can be wound in the order of the surface 1b and the hole end surface 2a of the hole 2.
 更に、ハンドル12が上昇すると、図13B及び図14に示すように、円弧状ギヤ52と噛合している駆動ギヤ部材53は、更にE2方向に回転する。すると、駆動ギヤ部材53の駆動ピン53bは、第1の係合片54aから離れ、空転の後、ラック部材55の第2の係合片55aを押圧する。すると、ラック部材55は、矢印F1方向にスライドする。すると、巻き具40の係合部44,44,44が第3の係合凹部55eから順に第2の係合凹部55d、第1の係合凹部55cに係合する。これにより、巻き具40は、矢印G2方向に回転して、片3を巻き付けた位置から上面23の下の待機位置に戻ることになる。 Further, when the handle 12 is raised, as shown in FIGS. 13B and 14, the drive gear member 53 meshing with the arcuate gear 52 further rotates in the E2 direction. Then, the drive pin 53b of the drive gear member 53 moves away from the first engagement piece 54a and presses the second engagement piece 55a of the rack member 55 after idling. Then, the rack member 55 slides in the arrow F1 direction. Then, the engaging portions 44, 44, 44 of the winding tool 40 are engaged with the second engaging concave portion 55d and the first engaging concave portion 55c in order from the third engaging concave portion 55e. Thereby, the winding tool 40 rotates in the arrow G2 direction and returns to the standby position below the upper surface 23 from the position where the piece 3 is wound.
 片3は、抜き刃67によってシート束1に孔2が穿孔された後、抜き刃67によって穿孔された孔2に、巻き爪41で巻き付けられる。したがって、回動機構51では、巻き爪41の可動領域が、抜き刃67の可動領域と重なり、同時に動作すると、互いに衝突してしまう。そこで、回動機構51は、ハンドル12の往動作のとき、抜き刃67でシート束1に孔2を穿孔するようにし、戻りの復動作のとき、巻き爪41を回転し、往動作で穿孔された孔2に片3を挿通し巻き付けるようにし、互いに干渉することを防止している。この構成によれば、ハンドル12を動作途中で上下動させたとしても、抜き刃67と巻き爪41とは干渉することが無い。 The piece 3 is wound around the hole 2 punched by the punching blade 67 with the winding claw 41 after the hole 2 is punched in the sheet bundle 1 by the punching blade 67. Therefore, in the rotation mechanism 51, the movable area of the winding claw 41 overlaps with the movable area of the punching blade 67, and if they operate simultaneously, they collide with each other. Therefore, the rotating mechanism 51 is configured to pierce the hole 2 in the sheet bundle 1 with the punching blade 67 when the handle 12 moves forward, and rotates the winding claw 41 when performing the return return operation, and pierces with the forward operation. The pieces 3 are inserted and wound around the formed holes 2 to prevent interference with each other. According to this configuration, even if the handle 12 is moved up and down during the operation, the punching blade 67 and the winding claw 41 do not interfere with each other.
 ところで、巻き爪41の可動領域に異物45が存在した場合に無理にハンドル12を回動すると、巻き具40、ラックリンク部材54、ラック部材55等が破損してしまうおそれがある。そこで、図15A及びBの例では、緩衝レバー57と弾性部材58とを設けるようにしている。すなわち、緩衝レバー57は、ラックリンク部材54と一体的な部材であって、ラックリンク部材54に設けられた支軸57aに回動自在に設けられている。この緩衝レバー57には、先の例ではラックリンク部材54に形成されていた第1の係合片54aが設けられている。ラックリンク部材54と緩衝レバー57との間には、捻りコイルバネといった弾性部材58が架け渡されている。弾性部材58は、図15A中反矢印H方向に緩衝レバー57を回動付勢している。 Incidentally, if the handle 12 is forcibly rotated when the foreign matter 45 exists in the movable region of the winding pawl 41, the winding tool 40, the rack link member 54, the rack member 55, etc. may be damaged. Therefore, in the example of FIGS. 15A and 15B, the buffer lever 57 and the elastic member 58 are provided. That is, the buffer lever 57 is an integral member with the rack link member 54 and is rotatably provided on a support shaft 57 a provided on the rack link member 54. The buffer lever 57 is provided with a first engagement piece 54a formed on the rack link member 54 in the previous example. An elastic member 58 such as a torsion coil spring is bridged between the rack link member 54 and the buffer lever 57. The elastic member 58 urges the buffer lever 57 in a direction opposite to the arrow H in FIG. 15A.
 図15Aに示すように、巻き爪41の可動領域内に異物45がある場合、巻き爪41の先端部41aが異物45に当接すると、巻き爪41は、更にG1方向に回動することができなくなる。一方で、ハンドル12は上昇し、円弧状ギヤ52はD2方向に移動し、駆動ギヤ部材53は、矢印E2方向に回転し、駆動ピン53bで緩衝レバー57の第1の係合片54aを押圧し、ラックリンク部材54を矢印F2方向にスライドさせようとする。すると、緩衝レバー57は、弾性部材58の付勢力に抗して支軸57aを中心に矢印H方向に回動し、駆動ピン53bは、図15Bに示すように、第1の係合片54aを乗り越えることができる。これにより、駆動ピン53bは、第1の係合片54aを無理に押圧することがなくなり、折れたり、巻き爪41が折れたりすることを防止することができる。この後は、図14に示すように、駆動ギヤ部材53の駆動ピン53bが、第1の係合片54aから離れ、空転の後、ラック部材55の第2の係合片55aを押圧し、ラック部材55が、矢印F1方向にスライドし、巻き具40が、矢印G2方向に回転して、片3を巻き付けた位置から上面23の下の待機位置に戻ることになる。 As shown in FIG. 15A, when there is a foreign object 45 in the movable area of the wound claw 41, when the tip 41a of the wound claw 41 comes into contact with the foreign object 45, the wound claw 41 can further rotate in the G1 direction. become unable. On the other hand, the handle 12 is raised, the arcuate gear 52 moves in the direction D2, the drive gear member 53 rotates in the direction of the arrow E2, and the drive pin 53b presses the first engagement piece 54a of the buffer lever 57. Then, the rack link member 54 is slid in the arrow F2 direction. Then, the buffer lever 57 rotates in the direction of the arrow H about the support shaft 57a against the urging force of the elastic member 58, and the drive pin 53b moves to the first engagement piece 54a as shown in FIG. 15B. Can be overcome. As a result, the drive pin 53b does not force the first engagement piece 54a and can prevent the drive pin 53b from being bent or the winding claw 41 from being broken. Thereafter, as shown in FIG. 14, the drive pin 53b of the drive gear member 53 moves away from the first engagement piece 54a, and after idling, presses the second engagement piece 55a of the rack member 55, The rack member 55 slides in the direction of the arrow F1, and the winding tool 40 rotates in the direction of the arrow G2 to return from the position where the piece 3 is wound to the standby position below the upper surface 23.
 <6.穿孔ユニットの構成の説明>
  <6-1.穿孔ユニットのスライドの説明>
 シート束1に孔2を穿孔する穿孔ユニット16は、図2、図16A及びBに示すように、ベースユニット11の上面23に長手方向にスライド可能に取り付けられている。穿孔ユニット16が固定されている場合には、片3が巻き付け装置内に付着してしまった場合などに、付着した片の除去が困難となるためである。すなわち、穿孔ユニット16は、ベースユニット11の巻付け機構15と対向する穿孔位置とベースユニット11の他端側(シート束1の挿入側)のメンテナンス位置とに亘ってスライドし、メンテナンス位置にあるとき、排出部31や巻付け機構15を外部に露出させ、メンテナンス作業を容易に行うことができるようにしている。すなわち、穿孔ユニット16が待機位置にあるときには、巻付け機構15が外部に露出しているので、巻付け機構15の巻き爪41に付着した接着剤や、巻き爪41に貼り付いた片3や、穿孔ユニット16の抜き刃67及びその周辺に付着してしまった片3等を取り除く作業を容易に行うことができる。また、巻き具40の交換等も容易に行うことができる。
<6. Explanation of configuration of drilling unit>
<6-1. Explanation of drilling unit drill>
As shown in FIGS. 2, 16A and B, the punching unit 16 for punching holes 2 in the sheet bundle 1 is attached to the upper surface 23 of the base unit 11 so as to be slidable in the longitudinal direction. This is because, when the punching unit 16 is fixed, it is difficult to remove the attached piece when the piece 3 is attached in the winding device. That is, the punching unit 16 slides across the punching position facing the winding mechanism 15 of the base unit 11 and the maintenance position on the other end side (the insertion side of the sheet bundle 1) of the base unit 11 and is in the maintenance position. At this time, the discharge unit 31 and the winding mechanism 15 are exposed to the outside so that maintenance work can be easily performed. That is, since the winding mechanism 15 is exposed to the outside when the punching unit 16 is in the standby position, the adhesive attached to the winding claw 41 of the winding mechanism 15, the piece 3 attached to the winding claw 41, The operation of removing the punching blade 67 of the perforating unit 16 and the pieces 3 attached to the periphery thereof can be easily performed. Further, the winding tool 40 can be easily replaced.
 図17に示すように、穿孔ユニット16は、スライドベース61を有し、このスライドベース61は、ベースユニット11の上面23上を長手方向にスライドする。スライドベース61は、ベースユニット11の上面23の両側に形成されたガイドレール62a,62aに係合するガイド片62b,62bが形成され、ガイド片62b,62bは、ガイドレール62a,62aの外側の面と係合している。更に、ガイド片62b,62bの内側には、係合ガイド片63b,63bが形成され、係合ガイド片63b,63bは、ベースユニット11の上面に長手方向に沿って形成されたガイド溝63a,63aに係合される。かくして、穿孔ユニット16は、ベースユニット11の上面23において、ベースユニット11の長手方向に沿って移動することができる。 As shown in FIG. 17, the perforating unit 16 has a slide base 61, and the slide base 61 slides on the upper surface 23 of the base unit 11 in the longitudinal direction. The slide base 61 is formed with guide pieces 62b and 62b that engage with guide rails 62a and 62a formed on both sides of the upper surface 23 of the base unit 11, and the guide pieces 62b and 62b are located outside the guide rails 62a and 62a. Engage with the surface. Furthermore, engagement guide pieces 63b and 63b are formed inside the guide pieces 62b and 62b. The engagement guide pieces 63b and 63b are formed on the upper surface of the base unit 11 along the longitudinal direction. 63a is engaged. Thus, the punching unit 16 can move along the longitudinal direction of the base unit 11 on the upper surface 23 of the base unit 11.
 また、スライドベース61には、図19及び図20に示すように、両側に、穿孔ユニット16を穿孔位置にロックするロック部材64が設けられている。ロック部材64は、図示しないが、ベースユニット11の上面23のガイドレール62a,62aに形成された係合部に係合することによって、穿孔ユニット16を穿孔位置にロックする。ロック部材64は、ガイドレール62a,62a側の係合部に係合するロック方向に常時付勢されており、ユーザによって操作されることによって、係合部とのロック状態が解除され、待機位置の方向にスライド可能となる。勿論、ロック部材64は、一方の側に設けるだけでもよい。 Further, as shown in FIGS. 19 and 20, the slide base 61 is provided with lock members 64 for locking the drilling unit 16 at the drilling position on both sides. Although not shown, the locking member 64 engages with the engaging portions formed on the guide rails 62a and 62a on the upper surface 23 of the base unit 11, thereby locking the drilling unit 16 in the drilling position. The lock member 64 is always urged in the locking direction to engage with the engaging portions on the guide rails 62a and 62a side, and is operated by the user to release the locked state with the engaging portion, and the standby position. It becomes possible to slide in the direction. Of course, the lock member 64 may be provided only on one side.
  <6-2.シート束の突当部の説明>
 ところで、この穿孔ユニット16は、スライドベース61の上側に抜き刃が設けられ、更に、スライドベース61の上面に、抜き刃67の受けとなるダイ67bが一体的に設けられ、抜き刃とダイ67bとをスライドするユニットに設けることで、ダイ67bをベースユニット11側に設けた場合よりも、抜き刃とダイ67bとの位置精度を高めている。具体的に、スライドベース61の上面は、シート束1が載置される載置面65となっており、載置面65の奥は、図18に示すように、立ち上がり片が形成されており、シート束1の先端部が突き当てられる突当部66,66となっている。これは、シート束1の端面に対して、片3が傾いて貼られると、後工程でシート束1の孔にテープを挿通できないためである。そのため、突当部66,66は、外部に露出し、ユーザが挿入したシート束1が確実に突当部66,66に突き当たっているかどうかを確認できるようになっている。
<6-2. Explanation of the sheet bundle abutment section>
By the way, this punching unit 16 is provided with a punching blade on the upper side of the slide base 61, and further, a die 67b that receives the punching blade 67 is integrally provided on the upper surface of the slide base 61. Are provided in the unit that slides, so that the positional accuracy between the punching blade and the die 67b is increased as compared with the case where the die 67b is provided on the base unit 11 side. Specifically, the upper surface of the slide base 61 is a placement surface 65 on which the sheet bundle 1 is placed, and the back of the placement surface 65 is formed with rising pieces as shown in FIG. The abutting portions 66 and 66 against which the leading end portion of the sheet bundle 1 is abutted. This is because if the piece 3 is attached to the end surface of the sheet bundle 1 at an angle, the tape cannot be inserted into the hole of the sheet bundle 1 in a later process. Therefore, the abutting portions 66 and 66 are exposed to the outside, and it is possible to confirm whether or not the sheet bundle 1 inserted by the user has abutted against the abutting portions 66 and 66.
  <6-3.抜き刃の説明>
 以上のようなスライドベース61には、図1や図8A~Cに示すように、抜き刃67が載置面65に対して直交する方向にスライド可能に取り付けられており、抜き刃67は、コイルバネといった弾性体68によって、ダイ67bと離間する矢印I方向に弾性付勢されている。抜き刃67は、ハンドル12の回動操作に従って押圧されて、シート束1を穿孔する矢印I方向に押圧されスライドされる。抜き刃67は、一端側がシート束1を打ち抜く刃部となっており、ダイ67bの貫通孔67cに進入する。他端部67aがハンドル12によって押圧される被押圧部となっている。この他端部67aは、外側に張り出して形成されている。抜き刃67を押圧するハンドル12には、図1、図2及び図7に示すように、その内面に、抜き刃67の他端部67aを押圧する抜き刃押圧部70が設けられている。抜き刃押圧部70は、穿孔時(ハンドル12が往路にあるとき)、抜き刃67を矢印I方向に押圧する。抜き刃67の他端部67aは、ハンドル12が戻るとき、復路動作の前半において、抜き刃押圧部70に形成された係合片70aと係合し、後半において係合片70aと係合した状態が解除される。この後、抜き刃67は、弾性体68の弾性復帰力によって最初の位置に戻ることになる。
<6-3. Explanation of the cutting blade>
As shown in FIG. 1 and FIGS. 8A to 8C, the above-described slide base 61 has a punching blade 67 slidably attached thereto in a direction perpendicular to the mounting surface 65. An elastic body 68 such as a coil spring is elastically biased in the direction of arrow I that is separated from the die 67b. The punching blade 67 is pressed according to the turning operation of the handle 12 and is pressed and slid in the direction of arrow I for punching the sheet bundle 1. One end of the punching blade 67 is a blade portion for punching the sheet bundle 1 and enters the through hole 67c of the die 67b. The other end 67 a is a pressed portion that is pressed by the handle 12. The other end 67a is formed to protrude outward. As shown in FIGS. 1, 2, and 7, the handle 12 that presses the punching blade 67 is provided with a punching blade pressing portion 70 that presses the other end 67 a of the punching blade 67 on the inner surface thereof. The punching blade pressing unit 70 presses the punching blade 67 in the direction of arrow I during drilling (when the handle 12 is in the forward path). When the handle 12 returns, the other end 67a of the punching blade 67 is engaged with the engagement piece 70a formed on the punching blade pressing portion 70 in the first half of the return path operation, and is engaged with the engagement piece 70a in the second half. The state is released. Thereafter, the punching blade 67 returns to the initial position by the elastic restoring force of the elastic body 68.
 スライドベース61には、図8A~Cに示すように、シート束1が挿入される空間を挟んでダイ67bと対向する位置に、抜き刃67が移動するガイド孔69が形成されている。ガイド孔69の先端部には、シート束1が載置される載置空間に位置する空間部に臨むようにして、シート束1を穿孔した際、上昇する抜き刃67につられて浮き上がるシート束1を押さえ付ける浮き上がり規制部69aが形成されている。 As shown in FIGS. 8A to 8C, the slide base 61 is formed with a guide hole 69 through which the punch blade 67 moves at a position facing the die 67b across the space in which the sheet bundle 1 is inserted. When the sheet bundle 1 is perforated so as to face the space portion where the sheet bundle 1 is placed at the front end portion of the guide hole 69, the sheet bundle 1 that is lifted by the lifting blade 67 that rises is provided. A lifting restricting portion 69a to be pressed is formed.
  <6-4.押さえ部材及び押上部材の説明>
 図19及び図20に示すように、スライドベース61には、抜き刃67の周囲に、挿入され突当部66,66に突き当てられ位置決めがされたシート束1を押さえるシート押さえ部材71が設けられている。このシート押さえ部材71は、図示しないがスライドベース61と一体的なガイド手段によって、抜き刃67と同方向のスライドがガイドされている。シート押さえ部材71は、抜き刃67が挿通される貫通孔72が形成され、この貫通孔72の両側には、抜き刃67の移動量を規制する移動量規制溝73が形成されている。移動量規制溝73は、抜き刃67に形成された規制突起74が係合されている。移動量規制溝73は、ハンドル12によって抜き刃67が押された際に、下側の一端部73aに規制突起74が突き当り、シート押さえ部材71を矢印I方向に押圧する。これにより、抜き刃67の穿孔動作と連動して、シート押さえ部材71も、打ち抜き方向にスライドしている抜き刃67と同方向にスライドする。
<6-4. Explanation of holding member and lifting member>
As shown in FIGS. 19 and 20, the slide base 61 is provided with a sheet pressing member 71 around the punching blade 67 to press the sheet bundle 1 inserted and abutted against the abutting portions 66 and 66 and positioned. It has been. Although not shown, the sheet pressing member 71 is guided to slide in the same direction as the punching blade 67 by guide means integrated with the slide base 61. The sheet pressing member 71 has a through hole 72 through which the punching blade 67 is inserted, and movement amount regulating grooves 73 for restricting the moving amount of the punching blade 67 are formed on both sides of the through hole 72. The movement amount regulation groove 73 is engaged with a regulation projection 74 formed on the punching blade 67. When the punching blade 67 is pushed by the handle 12, the movement amount regulating groove 73 presses the sheet pressing member 71 in the direction of arrow I with the regulating projection 74 hitting the lower end 73 a. Thus, in conjunction with the punching operation of the punching blade 67, the sheet pressing member 71 also slides in the same direction as the punching blade 67 sliding in the punching direction.
 図21及び図23に示すように、シート押さえ部材71は、抜き刃67を挟んで両側に一対のシート押さえ部75,75を有する。シート押さえ部75,75は、抜き刃67でシート束1を打ち抜くとき、抜き刃67の両側を押さえ付け、打ち抜き時に、シート束1が位置ずれすることを防止する。また、片3を孔2に巻き付けるときには、若干、孔2が形成されたシート束1から離間した状態に位置して、シート束の上面を枚数に係わらず一定の位置にすることができる。 21 and 23, the sheet pressing member 71 has a pair of sheet pressing portions 75 and 75 on both sides with the punching blade 67 interposed therebetween. The sheet pressing portions 75, 75 press both sides of the punching blade 67 when punching the sheet bundle 1 with the punching blade 67, and prevent the sheet bundle 1 from being displaced during punching. Further, when the piece 3 is wound around the hole 2, the sheet 3 is slightly positioned away from the sheet bundle 1 in which the hole 2 is formed, and the upper surface of the sheet bundle can be set at a fixed position regardless of the number of sheets.
 シート押さえ部75,75と対向する位置には、スライドベース61の載置面65にあるシート束1を押し上げるシート押上部材76,76が設けられている。シート押上部材76,76は、載置面65に設けられた例えば板バネであり、シート束1が挿入されたとき、シート束1の挿入端を載置面65から離間させるように持ち上げる。載置面65とシート束1の下面との間には、隙間80が形成され、この隙間80において、一対のシート押上部材76,76の間には、片送り機構14から送られ排出部31から排出された片3が進入する。片3は、粘着層4がシート束1の一方の面1aと対向して、一方の面1aの下側に挿入されるが、シート束1は、シート押上部材76に押し上げられ、十分な隙間80が形成されているので、片3が排出されている最中に、シート束1の一方の面1aに貼り付いてしまうことを防止することができ、シート束1の一方の面1aに安定して片3を貼り付けることができる。 Sheet push-up members 76 and 76 that push up the sheet bundle 1 on the placement surface 65 of the slide base 61 are provided at positions facing the sheet press portions 75 and 75. The sheet push-up members 76, 76 are, for example, leaf springs provided on the placement surface 65, and lift the insertion end of the sheet bundle 1 away from the placement surface 65 when the sheet bundle 1 is inserted. A gap 80 is formed between the placement surface 65 and the lower surface of the sheet bundle 1, and the gap 80 is fed from the one-feed mechanism 14 between the pair of sheet push-up members 76, 76 to the discharge unit 31. The piece 3 discharged from enters. The piece 3 is inserted below the one surface 1a with the adhesive layer 4 facing the one surface 1a of the sheet bundle 1, but the sheet bundle 1 is pushed up by the sheet push-up member 76 and has a sufficient gap. Since 80 is formed, it is possible to prevent sticking to one surface 1a of the sheet bundle 1 while the piece 3 is being discharged, and stable to one surface 1a of the sheet bundle 1. Then, the piece 3 can be pasted.
 図22及び図23に示すように、ハンドル12が操作されると、抜き刃67が矢印I方向に押され、更に、抜き刃67のスライドに連動してシート押さえ部材71も同方向にスライドする。これにより、シート押さえ部材71のシート押さえ部75,75は、抜き刃67の両側を、シート押上部材76とでシート束1を挟み込む。この際、ダイ67bに支持されているシート束1の抜き刃67の両側は、シート押さえ部75,75に押圧されることで、シート押上部材76の押上力に抗して沈み込む。これによって、シート押さえ部75,75の両側に位置する片3の粘着層4は、シート束1の一方の面1aにしっかりと貼り付けられる。 As shown in FIGS. 22 and 23, when the handle 12 is operated, the punching blade 67 is pushed in the direction of arrow I, and the sheet pressing member 71 slides in the same direction in conjunction with the sliding of the punching blade 67. . As a result, the sheet pressing portions 75 and 75 of the sheet pressing member 71 sandwich the sheet bundle 1 with the sheet lifting member 76 on both sides of the punching blade 67. At this time, both sides of the extraction blade 67 of the sheet bundle 1 supported by the die 67 b are pressed against the sheet pressing portions 75, 75, and sink against the pressing force of the sheet pressing member 76. Thereby, the adhesive layer 4 of the piece 3 located on both sides of the sheet pressing portions 75 and 75 is firmly attached to one surface 1 a of the sheet bundle 1.
 ところで、シート束1がシート押さえ部75,75で押され沈み込んだ位置とダイ67bの位置の距離は、大きいほど、片3の粘着層4をシート束1の一方の面1aの面に押さえ付ける力が大きくなる。そこで、図24に示すように、載置面65のダイ67b近傍には、シート押さえ部75,75でシート束1を押さえ込んでいるときに、ダイ67bの位置においてシート束1の位置を高くする凸部77,77を形成してもよい。また、図25に示すように、所定幅の突条部78を形成してもよい。 By the way, the larger the distance between the position where the sheet bundle 1 is pressed and sunk by the sheet pressing portions 75, 75 and the position of the die 67b, the more the adhesive layer 4 of the piece 3 is pressed against the one surface 1a of the sheet bundle 1. The power to apply increases. Therefore, as shown in FIG. 24, in the vicinity of the die 67b of the placement surface 65, when the sheet bundle 1 is pressed by the sheet pressing portions 75, 75, the position of the sheet bundle 1 is increased at the position of the die 67b. The convex portions 77 and 77 may be formed. Further, as shown in FIG. 25, a protrusion 78 having a predetermined width may be formed.
 ここで、図26Aは、少ない枚数のシート束が挿入された状態を示す。シート押さえ部75,75は、最下点がシート束1より下に設定されており、図27Aに示すように、最大枚数である多い枚数の厚いシート束1が挿入されたときには、最下点で最大荷重が加わるようになる。そして、図26Bに示すように、シート押さえ部75,75は、一度最下点まで下りた後、ハンドル12の復路の動作に追従しシート束1に負荷の加わらない箇所にまで退避する。図27Bに示すように、多い枚数の厚いシート束1のときには、丁度、シート束1とシート押さえ部75,75の押さえ面とが当接する程度となる。 Here, FIG. 26A shows a state where a small number of sheet bundles are inserted. The sheet pressing portions 75 and 75 have a lowermost point set below the sheet bundle 1, and as shown in FIG. 27A, when a large number of thick sheet bundles 1 are inserted, the lowest point is reached. The maximum load will be applied. Then, as shown in FIG. 26B, after the sheet pressing portions 75 and 75 are once lowered to the lowest point, the sheet pressing portions 75 and 75 are retracted to a position where no load is applied to the sheet bundle 1 following the operation of the return path of the handle 12. As shown in FIG. 27B, in the case of a large number of thick sheet bundles 1, the sheet bundle 1 just contacts the pressing surfaces of the sheet pressing portions 75 and 75.
 なお、以上説明したシート押さえ部75,75は、図28Aに示すように、抜き刃67を挟んで両側に設けた例を説明したが、図28Bに示すように、抜き刃の周囲をC字状の箇所で示される領域内の一部をシート押さえ部75で構成してもよい。この場合、シート押さえ部75は、対峙するシート押上部材76と略同じ形状となり、また、抜き刃67の3方向を囲むことができ、2カ所で押さえる場合よりも、一層確実に、シート束1をダイ67bの下まで沈み込ませることができる。 In addition, although the sheet | seat holding | suppressing parts 75 and 75 demonstrated above demonstrated the example provided in both sides on both sides of the punching blade 67 as shown to FIG. 28A, as shown to FIG. 28B, the circumference | surroundings of a punching blade are C-shaped. Part of the area indicated by the shape portion may be constituted by the sheet pressing portion 75. In this case, the sheet pressing portion 75 has substantially the same shape as the facing sheet lifting member 76, and can surround the three directions of the punching blade 67, so that the sheet bundle 1 can be more reliably compared to the case where the pressing is performed at two places. Can be sunk to the bottom of the die 67b.
 また、以上の例で説明したシート押上部材76は、板バネで形成した場合を説明したが、図29Aに示すように、傾斜面の押上面76aを有する樹脂成形等されたシート押上部材76を、コイルバネ76bで押上方向に弾性付勢するようにしてもよい。また、シート押上部材76を平板を、く字状に折曲して形成し、これを載置面65に回動自在に取り付ける。シート押上部材76は、シート束1を押し上げる一方の片を捻りコイルバネ76cで押上方向に弾性付勢するようにしてもよい。更に、図29Cに示すように、押上面76aを有するシート押上部材76にラック76dを形成し、このラック76dにギヤ76eを噛合し、ギヤ76eをモータで回転するようにして、シート押上部材76を昇降させるようにしてもよい。 In addition, the sheet push-up member 76 described in the above example has been described as being formed of a leaf spring. However, as shown in FIG. 29A, the sheet push-up member 76 made of resin or the like having an inclined push-up surface 76a is provided. The coil spring 76b may be elastically biased in the push-up direction. Further, the sheet push-up member 76 is formed by bending a flat plate into a square shape, and is attached to the placement surface 65 so as to be rotatable. The sheet push-up member 76 may be configured such that one piece that pushes up the sheet bundle 1 is twisted and elastically biased in the push-up direction by the coil spring 76c. Further, as shown in FIG. 29C, a rack 76d is formed on a sheet push-up member 76 having a push-up surface 76a, a gear 76e is engaged with the rack 76d, and the gear 76e is rotated by a motor so that the sheet push-up member 76 is rotated. You may make it raise / lower.
 更に、上述したシート押さえ部材71は、図19及び図20に示すように、抜き刃67の規制突起74を移動量規制溝73に係合させて、一端部73aが押圧されることで、抜き刃67と連動してスライドしたが、図30A及び図30Bに示すように、モータ等を駆動源とする駆動部79で、シート押さえ部材71を抜き刃67と連動させてスライドさせるようにしてもよい。この場合、ハンドル12で押される抜き刃67のスライドをスイッチで検出して、駆動部79でシート押さえ部材71をスライドさせるようにすればよい。勿論、駆動部79は、モータに代えて、コイルバネ等の弾性体で、シート束1の押圧方向に押圧付勢するようにしてもよい。 Further, as shown in FIGS. 19 and 20, the sheet pressing member 71 described above engages the restricting projection 74 of the punching blade 67 with the movement amount restricting groove 73 and presses the one end 73 a, thereby removing the sheet pressing member 71. 30A and 30B, the sheet pressing member 71 may be slid in conjunction with the extraction blade 67 by a drive unit 79 using a motor or the like as a drive source. Good. In this case, the slide of the punching blade 67 pushed by the handle 12 may be detected by a switch, and the sheet pressing member 71 may be slid by the driving unit 79. Needless to say, the drive unit 79 may be pressed and urged in the pressing direction of the sheet bundle 1 by an elastic body such as a coil spring instead of the motor.
  <6-5.押圧接着部材の説明>
 図31A~C及び図32A~Cに示すように、穿孔ユニット16には、抜き刃67に対してシート束1の挿入方向の上流側に、巻き爪41によって孔2に巻かれた片3を、シート束1を引き抜く際に押圧し、片3を確実にシート束1に接着する押圧接着部材81が設けられている。この押圧接着部材81は、C字状の弾性片で、図31A中K方向から挿入されるシート束1に対して矢印J方向に弾性変位可能に設けられている。すなわち、押圧接着部材81は、挿入されるシート束1を迎え入れる側の片と挿入されるシート束1とのなす角θが鋭角となるように設けられ、シート束1を円滑に、すなわち小さい力で挿入できるようになっている。一方、シート束1を引き抜く際には、挿入されるシート束1を迎え入れる側の片3の角度による楔効果によって、孔2に巻き付けられた片3を扱くようにして押圧するようになっている。この押圧接着部材81は、シート束1との接触部81aも円弧状をなし、シート束1や片3の表面を汚損しないようにしている。これにより、片3の先端部は、シート束1の一方の面1aにおいて、片3の巻き始めの部分に重なる貼り付けられることになる。
<6-5. Explanation of Press Adhesive Member>
As shown in FIGS. 31A to 31C and FIGS. 32A to 32C, the punching unit 16 has a piece 3 wound around the hole 2 by the winding claw 41 on the upstream side in the insertion direction of the sheet bundle 1 with respect to the punching blade 67. A pressing adhesive member 81 is provided that presses the sheet bundle 1 when it is pulled out to securely bond the piece 3 to the sheet bundle 1. This pressing adhesive member 81 is a C-shaped elastic piece and is provided so as to be elastically displaceable in the arrow J direction with respect to the sheet bundle 1 inserted from the K direction in FIG. 31A. That is, the pressure bonding member 81 is provided so that an angle θ formed by the piece on the side for receiving the inserted sheet bundle 1 and the inserted sheet bundle 1 becomes an acute angle, and the sheet bundle 1 can be smoothly moved, that is, with a small force. Can be inserted. On the other hand, when the sheet bundle 1 is pulled out, it is pressed so as to handle the piece 3 wound around the hole 2 by the wedge effect due to the angle of the piece 3 on the side for receiving the inserted sheet bundle 1. Yes. In the pressing adhesive member 81, the contact portion 81a with the sheet bundle 1 is also formed in an arc shape so that the surface of the sheet bundle 1 or the piece 3 is not soiled. As a result, the tip of the piece 3 is affixed on the one surface 1 a of the sheet bundle 1 so as to overlap the winding start portion of the piece 3.
 また、図17に示すように、穿孔ユニット16には、シート束1の挿入側に回動自在に設けられた回動レバー86に、一対のシート送りローラ87,87が設けられている。一対のシート送りローラ87,87は、図36に示すように、シート束1を挿入するとき、回動レバー86を持ち上げることで、載置面65から離間するように回動され、シート束1を挿入する際の抵抗にならないようにする。シート束1を引き抜くときには、図1に示すように回動レバー86が下がった状態にして、シート送りローラ87,87をシート束1に接触させて、真っ直ぐにシート束1を引き抜くことができるようにする。また、穿孔ユニット16には、孔2に巻かれた片3の通路上に、片3を押圧する押圧ローラ88が設けられている。この押圧ローラ88は、シート送りローラ87,87と異なり、シート束1の挿入時も引き抜き時も、シート束1と接触するローラであり、シート束1の挿入時には、真っ直ぐに挿入できるようにする、シート束1の挿入ガイドローラとしても機能する。なお、この押圧ローラ88は、押圧接着部材81と略同じ機能を有するものであり、穿孔ユニット16には、押圧接着部材81と押圧ローラ88の両方を設けてもよいし、何れか一方だけを設けるようにしてもよい。 Further, as shown in FIG. 17, the punching unit 16 is provided with a pair of sheet feeding rollers 87 and 87 on a rotation lever 86 that is rotatably provided on the insertion side of the sheet bundle 1. As shown in FIG. 36, the pair of sheet feeding rollers 87 and 87 are rotated so as to be separated from the placement surface 65 by lifting the rotation lever 86 when the sheet bundle 1 is inserted. Do not become resistance when inserting. When pulling out the sheet bundle 1, the sheet feeding rollers 87 and 87 are brought into contact with the sheet bundle 1 with the rotating lever 86 lowered as shown in FIG. 1, so that the sheet bundle 1 can be pulled out straight. To. The punching unit 16 is provided with a pressing roller 88 that presses the piece 3 on the passage of the piece 3 wound around the hole 2. Unlike the sheet feeding rollers 87 and 87, the pressing roller 88 is a roller that contacts the sheet bundle 1 when the sheet bundle 1 is inserted or pulled out, and can be inserted straight when the sheet bundle 1 is inserted. Also, it functions as an insertion guide roller for the sheet bundle 1. The pressing roller 88 has substantially the same function as the pressing adhesive member 81, and the punching unit 16 may be provided with both the pressing adhesive member 81 and the pressing roller 88, or only one of them. You may make it provide.
 なお、押圧接着部材81は、図33A~Cのように構成することもできる。すなわち、図33A~Cの例では、押圧接着部材81は、半円柱状に形成され、円弧状面がシート束1と接触する接触部となる。また、押圧接着部材81は、円弧状面の反対側の平面にガイド片81bが形成されている。また、この押圧接着部材81は、傾斜ガイド部材82によってガイドされている。傾斜ガイド部材82は、ガイド溝82aが形成され、ガイド溝82aには、ガイド片81bが係合される。ガイド片81bは、固定部84との間に架け渡された弾性体であるコイルバネ83によって引っ張られており、押圧接着部材81は、常時、シート束1を押圧する方向に弾性付勢されている。図33Aに示すように、シート束1は、挿入されるときには、円滑に、すなわち小さい力で押圧接着部材81を押し上げることができ、図33Bに示すように、シート束1を引き出す際は、楔効果で、孔2に巻かれた片3の部分を扱くようにして押圧する。 The pressing adhesive member 81 can also be configured as shown in FIGS. 33A to 33C. That is, in the example of FIGS. 33A to 33C, the press bonding member 81 is formed in a semi-cylindrical shape, and the arcuate surface serves as a contact portion that contacts the sheet bundle 1. Further, the pressing adhesive member 81 has a guide piece 81b formed on a plane opposite to the arcuate surface. The pressing adhesive member 81 is guided by an inclined guide member 82. The inclined guide member 82 is formed with a guide groove 82a, and a guide piece 81b is engaged with the guide groove 82a. The guide piece 81b is pulled by a coil spring 83 which is an elastic body spanned between the fixed portion 84, and the pressing adhesive member 81 is always elastically biased in the direction of pressing the sheet bundle 1. . As shown in FIG. 33A, when the sheet bundle 1 is inserted, the pressing adhesive member 81 can be pushed up smoothly, that is, with a small force. When the sheet bundle 1 is pulled out, as shown in FIG. The effect is to press the piece 3 wound around the hole 2 so as to handle it.
 図34A及びBの例では、押圧接着部材81がローラで構成されており、このローラが傾斜ガイド部材82によってガイドされている。また、この押圧接着部材81は、コイルバネ83によって引っ張られており、常時、シート束1を押圧する方向に弾性付勢されている。図34Aに示すように、シート束1は、挿入されるときには、円滑に、すなわち小さい力で押圧接着部材81を押し上げることができ、図34Bに示すように、シート束1を引き出す際は、傾斜ガイド部材82の斜面の構成による楔効果で、孔2に巻かれた片3の部分を扱くようにして押圧する。 34A and 34B, the pressure bonding member 81 is composed of a roller, and this roller is guided by the inclined guide member 82. The pressing adhesive member 81 is pulled by a coil spring 83 and is always elastically biased in the direction of pressing the sheet bundle 1. As shown in FIG. 34A, when the sheet bundle 1 is inserted, the pressing adhesive member 81 can be pushed up smoothly, that is, with a small force, and when the sheet bundle 1 is pulled out, as shown in FIG. By the wedge effect due to the configuration of the inclined surface of the guide member 82, the portion 3 of the piece wound around the hole 2 is pressed so as to be handled.
 図35A及びBの例では、押圧接着部材81は、プレス機構となっており、モータ等の駆動部85によって昇降される。図35Aに示すように、シート束1を挿入するときには、載置面65から離間しており、円滑に挿入できるようになっている。図35Bに示すように、シート束1を引き抜くときには、押圧接着部材81は、シート束1を扱くようため降下し、孔2に巻かれた片3を扱くようになっている。シート束1の引抜き時に押圧ローラ等で弾性的に片3を押圧しようとした場合、厚いシート束1を片巻き装置10に挿入する際の負荷が大きくなってしまっていたが、これらの構成からシート束1を挿入際の負荷を低減し、シート束1に片3を巻いた後に、シート束1を引き抜くときには、片3に荷重をかけて扱くことができ、片3のはがれを防止することができる。 35A and 35B, the pressure bonding member 81 is a press mechanism and is moved up and down by a driving unit 85 such as a motor. As shown in FIG. 35A, when the sheet bundle 1 is inserted, it is separated from the placement surface 65 so that it can be inserted smoothly. As shown in FIG. 35B, when pulling out the sheet bundle 1, the pressure bonding member 81 is lowered to handle the sheet bundle 1 and handles the pieces 3 wound around the holes 2. When trying to elastically press the piece 3 with a pressing roller or the like when the sheet bundle 1 is pulled out, the load when the thick sheet bundle 1 is inserted into the piece winding device 10 has increased. The load at the time of inserting the sheet bundle 1 is reduced, and when the sheet bundle 1 is pulled out after the piece 3 is wound around the sheet bundle 1, the piece 3 can be handled with a load, and peeling of the piece 3 is prevented. be able to.
  <6-6.巻き爪とシート押さえ部材との関係の説明>
 図31Aに示すように、シート束1が挿入される前は、巻き爪41が載置面65の下側に位置しており、また、抜き刃67及びシート押さえ部75も、載置面65から離間した状態にある。そして、シート束1が矢印K方向から挿入されると、シート束1は、突当部66,66に突き当てられるまで挿入され、これにより、穿孔位置の位置決めがされる。この際、シート束1の挿入端は、押上部材76によって押し上げられ、載置面65との間に隙間80が形成され、片送り機構14から送り出される片3が進入可能な状態となる。
<6-6. Explanation of relationship between winding claw and sheet pressing member>
As shown in FIG. 31A, before the sheet bundle 1 is inserted, the winding pawl 41 is positioned below the placement surface 65, and the punching blade 67 and the sheet pressing portion 75 are also placed on the placement surface 65. It is in the state separated from. When the sheet bundle 1 is inserted from the direction of the arrow K, the sheet bundle 1 is inserted until it abuts against the abutting portions 66 and 66, and thereby the punching position is positioned. At this time, the insertion end of the sheet bundle 1 is pushed up by the push-up member 76 and a gap 80 is formed between the insertion surface 65 and the piece 3 fed from the one-feed mechanism 14 can enter.
 ハンドル12が回動されると、図31Bに示すように、先ず、片送り機構14の排出部31から片3が送り出される。片3は、粘着層4がシート束1の一方の面1aと対向して、一方の面1aの下側に挿入されるが、シート束1は、シート押上部材76に押し上げられ、載置面65との間に十分な隙間が形成されているので、片3が排出されている最中に誤って、シート束1の一方の面1aに貼り付いてしまうことはない。 When the handle 12 is rotated, as shown in FIG. 31B, first, the piece 3 is sent out from the discharge portion 31 of the one-feed mechanism 14. The piece 3 is inserted below the one surface 1a with the adhesive layer 4 facing the one surface 1a of the sheet bundle 1, but the sheet bundle 1 is pushed up by the sheet push-up member 76, and the placement surface Since a sufficient gap is formed between the sheet bundle 65 and the sheet 3, the sheet 3 is not accidentally stuck to one surface 1 a of the sheet bundle 1 while the piece 3 is being discharged.
 更に、ハンドル12が回動されると、図31Cに示すように、押上部材76がシート束1を押し上げている部分に、シート押さえ部材71のシート押さえ部75,75が降下する。そして、シート束1は、シート押さえ部75,75によって押圧されると共に、押上部材76とシート押さえ部75,75によって挟み込まれる。これにより、片3の一部は、シート束1の一方の面1aに確実に貼り付けられる。シート押さえ部材71の動作に連動して、抜き刃67も、シート束1の方向に降下し、シート束1を打ち抜いて孔2を形成する。なお、シート押上部材76の降下する動作と抜き刃67の降下する動作は、どちらが先行していてもよい。 Further, when the handle 12 is rotated, as shown in FIG. 31C, the sheet pressing portions 75 and 75 of the sheet pressing member 71 are lowered to the portion where the push-up member 76 pushes up the sheet bundle 1. The sheet bundle 1 is pressed by the sheet pressing portions 75 and 75 and sandwiched between the push-up member 76 and the sheet pressing portions 75 and 75. Thereby, a part of the piece 3 is securely attached to one surface 1 a of the sheet bundle 1. In conjunction with the operation of the sheet pressing member 71, the punching blade 67 also descends in the direction of the sheet bundle 1 and punches the sheet bundle 1 to form the hole 2. Note that either the lowering operation of the sheet push-up member 76 or the lowering operation of the punching blade 67 may be preceded.
 ハンドル12が下死点まで回動された後、戻り始めると、図32Aに示すように、ハンドル12の回動に連動して巻き爪41が矢印G1方向に回動し始める。このとき、抜き刃67は、抜き刃67の昇降領域と巻き爪41の可動領域と重なるので、巻き爪41の回動前に上昇し、巻き爪41が回動可能な状態にする。そして、巻き爪41は、上述した回動機構51によってハンドル12の回動に連動して回動する。これにより、シート束1の一方の面1aに貼着された片3は、シート束1の一方の面1aに貼着されていない自由端が巻き爪41の先端部41aに押されることで、シート束1の端面1c、シート束1の他方の面1b、孔2の孔端面2aの順に巻き付ける。図32Bに示すように、片3の巻き付けが終了すると、巻き具40は逆転し、待機状態に戻る。 When the handle 12 is rotated to the bottom dead center and then returns, as shown in FIG. 32A, the winding claw 41 starts to rotate in the arrow G1 direction in conjunction with the rotation of the handle 12. At this time, since the punching blade 67 overlaps the lifting / lowering region of the punching blade 67 and the movable region of the winding pawl 41, the punching blade 67 rises before the winding pawl 41 is rotated, so that the winding pawl 41 is rotatable. Then, the winding claw 41 is rotated in conjunction with the rotation of the handle 12 by the rotation mechanism 51 described above. Thereby, the piece 3 stuck to one surface 1a of the sheet bundle 1 is pushed by the tip 41a of the winding claw 41 by the free end not stuck to the one surface 1a of the sheet bundle 1; The end surface 1c of the sheet bundle 1, the other surface 1b of the sheet bundle 1, and the hole end surface 2a of the hole 2 are wound in this order. As shown in FIG. 32B, when the winding of the piece 3 is completed, the winding tool 40 reverses and returns to the standby state.
 図32Cに示すように、ハンドル12が元に戻り、シート束1は、反矢印K方向に引き抜かれる。すると、押圧接着部材81は、楔効果などの押圧構造によって、孔2に巻き付けられた片3を扱くようにして押圧する。これにより、片3は、シート束1の一方の面1a側に、最初に貼着された片3の部分に重なるようにして貼着される。これにより、片3は、孔2に、略1周以上巻き付けられることになる。 32C, the handle 12 returns to the original position, and the sheet bundle 1 is pulled out in the direction of the opposite arrow K. Then, the pressing adhesive member 81 presses the piece 3 wound around the hole 2 by a pressing structure such as a wedge effect. Thereby, the piece 3 is stuck on the one surface 1a side of the sheet bundle 1 so as to overlap the portion of the piece 3 that is stuck first. As a result, the piece 3 is wound around the hole 2 by approximately one turn or more.
 <7.動作説明>
  <7-1.ハンドルの往路の動作説明>
 図37に示すように、シート束1を挿入する前は、ハンドル12がベースユニット11に対して例えば45°矢印A方向に回動した待機状態にある。また、穿孔ユニット16は、図16Aに示すように、穿孔位置に移動した状態にある。この状態で、シート束1は、矢印K方向から穿孔ユニット16の載置面65に沿うように、図18に示す突当部66,66に突き当たるまで挿入され、挿入方向の位置決めがされる。この際、シート束1が挿入される際、回動レバー86は、図36に示すように、ユーザによって持ち上げられる。また、図31Aに示すように、押圧接着部材81は、挿入されるシート束1を迎え入れる側の片3と挿入されるシート束1とのなす角θが鋭角となるように設けられているので、円滑に、すなわち小さい力で挿入できる。また、挿入されたシート束1は、図31Aに示すように、シート押上部材76によって押し上げられ、載置面65との間に間隙が形成され、片送り機構14から送り出される片3が進入可能な状態となる。
<7. Operation explanation>
<7-1. Explanation of the operation of the steering wheel>
As shown in FIG. 37, before the sheet bundle 1 is inserted, the handle 12 is in a standby state in which the handle 12 is rotated with respect to the base unit 11 in the direction of arrow A, for example, 45 °. Further, as shown in FIG. 16A, the drilling unit 16 is in a state of being moved to the drilling position. In this state, the sheet bundle 1 is inserted from the direction of the arrow K along the placement surface 65 of the punching unit 16 until it abuts against the abutting portions 66 and 66 shown in FIG. At this time, when the sheet bundle 1 is inserted, the rotation lever 86 is lifted by the user as shown in FIG. Further, as shown in FIG. 31A, the pressure bonding member 81 is provided so that the angle θ formed by the piece 3 on the side for receiving the inserted sheet bundle 1 and the inserted sheet bundle 1 is an acute angle. Can be inserted smoothly, that is, with a small force. Further, as shown in FIG. 31A, the inserted sheet bundle 1 is pushed up by the sheet push-up member 76, and a gap is formed between the sheet bundle 1 and the piece 3 fed from the one-feed mechanism 14 can enter. It becomes a state.
 図38に示すように、ハンドル12が反矢印A方向に回動され始めると、図7に示すように、片3を送る片送り機構14の第1の部材37aと第2の部材37bとが回動可能に連結された送り部材37は、第1の部材37aの先端部がハンドル12の内面に押圧されることで、支軸37cを中心に回動し始める。更に、図39に示すように、ハンドル12が回動されると、付勢部材38に抗して、第1の部材37aが第2の部材37bに対して支軸37cを中心に回動する。すると、第2の部材37bを介して連結されている係合部材36は、図6Bに示すように、矢印B方向に移動し、これにより、片3の一枚分を送り操作する。これにより、片3は、排出部31からシート押上部材76によって押し上げられたシート束1と載置面65との間に隙間80に粘着層4がシート束1の一方の面1aと対向するようにして排出される。 As shown in FIG. 38, when the handle 12 starts to rotate in the direction of the counter arrow A, as shown in FIG. 7, the first member 37a and the second member 37b of the one-feed mechanism 14 for feeding the piece 3 are moved. The feed member 37 that is rotatably connected starts to rotate around the support shaft 37c when the tip of the first member 37a is pressed against the inner surface of the handle 12. Further, as shown in FIG. 39, when the handle 12 is rotated, the first member 37a rotates about the support shaft 37c with respect to the second member 37b against the biasing member 38. . Then, as shown in FIG. 6B, the engaging member 36 connected via the second member 37b moves in the direction of arrow B, thereby feeding and feeding one piece 3. As a result, in the piece 3, the adhesive layer 4 faces the one surface 1 a of the sheet bundle 1 in the gap 80 between the sheet bundle 1 pushed up by the sheet push-up member 76 from the discharge portion 31 and the placement surface 65. And then discharged.
 なお、係合部材36の送り動作は、図7に示すように、第2の部材37bがストッパである支軸22に突き当たることで停止する。ハンドル12が更に回動されることで、シート束1に孔2を形成する穿孔動作に移るが、この際には、第1の部材37aがストッパとなる支軸22に突き当たっていることで、この後は、付勢部材38の付勢力に抗して第1の部材37aに対して第2の部材37bが支軸37cを中心に更に回動する。これにより、ハンドル12が更に回動した際に、片巻き装置10は、穿孔動作に移行することが可能となる。 The feeding operation of the engaging member 36 is stopped when the second member 37b hits the support shaft 22 as a stopper, as shown in FIG. When the handle 12 is further rotated, the operation moves to a punching operation for forming the hole 2 in the sheet bundle 1. At this time, the first member 37 a abuts against the support shaft 22 serving as a stopper, Thereafter, the second member 37b further rotates around the support shaft 37c with respect to the first member 37a against the urging force of the urging member 38. Thereby, when the handle | steering-wheel 12 rotates further, the piece winding apparatus 10 can transfer to punching operation | movement.
 図40に示すように、ハンドル12が更に回動されると、ハンドル12の内面にある抜き刃押圧部70によって、抜き刃67の他端部67aが押圧され、抜き刃67は、シート束1を打ち抜く矢印Iにスライドされる。図40に示す例では、最大枚数である多い枚数の厚いシート束1が挿入されており、抜き刃67の刃先がシート束1に接触した状態を示している。更に、ハンドル12が回動されると、図41に示すように、抜き刃67の規制突起74がシート押さえ部材71の移動量規制溝73の一端部73aをI方向に押圧する(図19及び図20参照)。これにより、抜き刃67の穿孔動作と連動して、シート押さえ部材71も、打ち抜き方向にスライドしている抜き刃67と同方向にスライドする。そして、更に、ハンドル12が回動されることで、図42に示すように、抜き刃67がシート束1を貫通し、シート束1に孔2を穿孔する。 As shown in FIG. 40, when the handle 12 is further rotated, the other end 67a of the punching blade 67 is pressed by the punching blade pressing portion 70 on the inner surface of the handle 12, and the punching blade 67 Is slid to the arrow I that punches out. In the example shown in FIG. 40, a large number of thick sheet bundles 1 as the maximum number are inserted, and the cutting edge of the punching blade 67 is in contact with the sheet bundle 1. Further, when the handle 12 is rotated, as shown in FIG. 41, the restricting projection 74 of the punching blade 67 presses the one end 73a of the movement amount restricting groove 73 of the sheet pressing member 71 in the I direction (FIG. 19 and FIG. 19). FIG. 20). Thus, in conjunction with the punching operation of the punching blade 67, the sheet pressing member 71 also slides in the same direction as the punching blade 67 sliding in the punching direction. Further, when the handle 12 is further rotated, as shown in FIG. 42, the punching blade 67 penetrates the sheet bundle 1 and punches the hole 2 in the sheet bundle 1.
 図43に示すように、ハンドル12が下死点まで回動したときには、シート押さえ部材71のシート押さえ部75,75は、抜き刃67の両側を、シート押上部材76とでシート束1を挟み込む。この際、ダイ67bに支持されているシート束1の抜き刃67の両側は、シート押さえ部75,75に押圧されることで、シート押上部材76の押上力に抗して沈み込む(図22及び図23参照)。これによって、シート押さえ部75,75の両側に位置する片3の粘着層4は、シート束1の一方の面1aにしっかりと貼り付けられる(第1接着工程)。図44に示すように、ハンドル12が下死点から上昇し始めると、弾性体68の付勢力によって若干シート束1から離間する。 As shown in FIG. 43, when the handle 12 is rotated to the bottom dead center, the sheet pressing portions 75 and 75 of the sheet pressing member 71 sandwich the sheet bundle 1 with the sheet lifting member 76 on both sides of the punching blade 67. . At this time, both sides of the punching blade 67 of the sheet bundle 1 supported by the die 67b are pressed against the sheet pressing portions 75, 75 and sink against the pressing force of the sheet pressing member 76 (FIG. 22). And FIG. 23). Thereby, the adhesive layer 4 of the piece 3 located on both sides of the sheet pressing portions 75 and 75 is firmly attached to one surface 1a of the sheet bundle 1 (first bonding step). As shown in FIG. 44, when the handle 12 starts to rise from the bottom dead center, the handle 12 is slightly separated from the sheet bundle 1 by the urging force of the elastic body 68.
  <7-2.ハンドルの復路の動作説明>
 ところで、図37に示すハンドル12を回動操作し始めてから下死点に至るまでの間は、巻付け機構15の巻き具40は回動しない。図12A及びBに示すように、ラックリンク部材54及びラック部材55が矢印F2方向にスライドせず、巻き具40の係合部44,44,44が第1乃至第3の係合凹部55c,55d,55eに係合して接続されている巻き具40がG1方向に回転しないからである。
<7-2. Explanation of steering wheel return path>
Incidentally, the winding tool 40 of the winding mechanism 15 does not rotate during the period from when the handle 12 shown in FIG. As shown in FIGS. 12A and 12B, the rack link member 54 and the rack member 55 do not slide in the direction of arrow F2, and the engaging portions 44, 44, 44 of the winding tool 40 have first to third engaging recesses 55c, This is because the winding tool 40 engaged and connected to 55d and 55e does not rotate in the G1 direction.
 図13A及びB並びに図15に示すように、ハンドル12が下死点から上昇するときには、ハンドル12の円弧状ギヤ52がD2方向に移動することで、円弧状ギヤ52と噛合している駆動ギヤ部材53がE2方向に回転し、駆動ギヤ部材53の駆動ピン53bが、第1の係合片54aを押圧し、ラックリンク部材54と一体的なラック部材55を矢印F2方向にスライドする。これにより、最初、ラック部材55の第1の係合凹部55cに係合している1番目の係合部44が押され、巻き具40が矢印G1方向に回転する。次いで、2番目の係合部44が第2の係合凹部55dに係合し、2番目の係合部44が押されることで、更に、巻き具40が矢印G1方向に回転する。更に、3番面の係合部44が第3の係合凹部55eに係合し、3番目の係合部44が押されることで、更に巻き具40が矢印G1方向に回転する。かくして、巻き具40の巻き爪41は、ハンドル12が上昇するときに矢印G1方向に回転し、先端部41aで片3の自由端を押圧し、片3を、シート束1の端面1c、シート束1の他方の面1b、孔2の孔端面2aの順に巻き付けることができる。 As shown in FIGS. 13A and 13 and FIG. 15, when the handle 12 is lifted from the bottom dead center, the arcuate gear 52 of the handle 12 moves in the D2 direction, so that the drive gear meshes with the arcuate gear 52. The member 53 rotates in the E2 direction, the drive pin 53b of the drive gear member 53 presses the first engagement piece 54a, and the rack member 55 integrated with the rack link member 54 slides in the arrow F2 direction. Thereby, first, the first engaging portion 44 engaged with the first engaging recess 55c of the rack member 55 is pushed, and the winding tool 40 rotates in the arrow G1 direction. Next, when the second engagement portion 44 is engaged with the second engagement recess 55d and the second engagement portion 44 is pushed, the winding tool 40 further rotates in the direction of the arrow G1. Further, the third engaging portion 44 engages with the third engaging recess 55e, and the third engaging portion 44 is pushed, so that the winding tool 40 further rotates in the arrow G1 direction. Thus, the winding claw 41 of the winding tool 40 rotates in the direction of the arrow G1 when the handle 12 is raised, presses the free end of the piece 3 with the tip end portion 41a, and the piece 3 becomes the end surface 1c of the sheet bundle 1, the sheet The other surface 1b of the bundle 1 and the hole end surface 2a of the hole 2 can be wound in this order.
 これを、ハンドル12の動作と合わせて説明すると、図45に示すように、図44の状態よりハンドル12が矢印A方向に回動すると、ラック部材55の第1の係合凹部55cに係合している1番目の係合部44が押され始め、巻き具40の巻き爪41が矢印G1方向に回転し始める。次いで、図46に示すように、回転し始めた巻き爪41の先端部41aとシート束1を貫通している抜き刃67との干渉を避けるべく、抜き刃67が弾性体68の復帰力によって反矢印I方向にスライドし、シート束1から退避する。巻き爪41は、抜き刃67が穿孔したシート束1の孔2に進入することによって、片3を孔2に巻き付けるものであり、抜き刃67が退避しないと、先端部41aが抜き刃67と衝突するからである。 This will be explained together with the operation of the handle 12. As shown in FIG. 45, when the handle 12 rotates in the direction of arrow A from the state shown in FIG. 44, it engages with the first engaging recess 55c of the rack member 55. The first engaging portion 44 is started to be pushed, and the winding claw 41 of the winding tool 40 starts to rotate in the arrow G1 direction. Next, as shown in FIG. 46, in order to avoid interference between the leading end portion 41a of the winding claw 41 and the punching blade 67 penetrating the sheet bundle 1, the punching blade 67 is moved by the restoring force of the elastic body 68. Slide in the opposite direction of arrow I and retract from the sheet bundle 1. The winding claw 41 is configured to wind the piece 3 around the hole 2 by entering the hole 2 of the sheet bundle 1 perforated by the punching blade 67. If the punching blade 67 does not retract, the tip 41a is connected to the punching blade 67. Because it collides.
 更に、ハンドル12が矢印A方向に回動すると、図47に示すように、回転する巻き爪41は、片3を持ち上げながら回転し、その内周押圧面41bがシート束1の挿入端側の端面1c(図3参照)に接触する。更に、ハンドル12が矢印A方向に回動すると、図48に示すように、巻き爪41の先端部41aは、片3の自由端を孔2に押し込むようにして孔2に進入する(図8C参照)。これにより、巻き爪41は、シート束1の上面23側の面1aに貼着された片3を、押しながら、シート束1の端面1c、シート束1の他方の面1b、孔2の孔端面2aの順に巻き付ける。この際に、巻き爪41の内周面の中程の内周押圧面41bが孔端面2aの位置を押圧することによって、シート束1の枚数に拘わらず、片3の粘着層4を孔端面2aに押し付けることができる(第2接着工程)。 Further, when the handle 12 rotates in the direction of arrow A, as shown in FIG. 47, the rotating winding claw 41 rotates while lifting the piece 3, and its inner circumferential pressing surface 41 b is on the insertion end side of the sheet bundle 1. It contacts the end face 1c (see FIG. 3). Further, when the handle 12 rotates in the direction of arrow A, as shown in FIG. 48, the tip 41a of the wound claw 41 enters the hole 2 so that the free end of the piece 3 is pushed into the hole 2 (FIG. 8C). reference). Thus, the winding claw 41 pushes the piece 3 attached to the surface 1a on the upper surface 23 side of the sheet bundle 1 while pressing the end surface 1c of the sheet bundle 1, the other surface 1b of the sheet bundle 1, and the hole 2 It winds in order of the end surface 2a. At this time, the inner peripheral pressing surface 41b in the middle of the inner peripheral surface of the winding claw 41 presses the position of the hole end surface 2a, so that the adhesive layer 4 of the piece 3 is attached to the hole end surface regardless of the number of sheet bundles 1. 2a can be pressed (second bonding step).
 更に、ハンドル12が矢印A方向に回動すると、図49に示すように、巻き爪41は、矢印G2方向に回動し始める。具体的に、図14に示すように、ラック部材55が、矢印F1方向にスライドし、巻き具40の係合部44,44,44が第3の係合凹部55eから順に第2の係合凹部55d、第1の係合凹部55cに係合する。これにより、巻き具40は、矢印G2方向に回転して、図50に示すように、片3を巻き付けた位置から上面23の下の待機位置に戻る。また、この状態において、ハンドル12は初期の待機位置に戻る。この後、シート束1は、図32Cに示すように、反矢印K方向に引き抜かれる。すると、押圧接着部材81は、楔効果によって、孔2に巻き付けられた片3を扱くようにして押圧する。片3は、押圧ローラ88によっても押圧される(図17参照)。これにより、片3は、シート束1の一方の面1a側に、最初に貼着された片3の部分に重なるようにして貼着される(第3接着工程)。これにより、片3は、孔2に、略1周半巻き付けられることになる。 Further, when the handle 12 is rotated in the direction of arrow A, the winding claw 41 starts to rotate in the direction of arrow G2, as shown in FIG. Specifically, as shown in FIG. 14, the rack member 55 slides in the direction of the arrow F1, and the engaging portions 44, 44, 44 of the winding tool 40 are second engaged in order from the third engaging recess 55e. The recess 55d engages with the first engagement recess 55c. Thereby, the winding tool 40 rotates in the arrow G2 direction, and returns to the standby position below the upper surface 23 from the position where the piece 3 is wound, as shown in FIG. In this state, the handle 12 returns to the initial standby position. Thereafter, the sheet bundle 1 is pulled out in the opposite arrow K direction as shown in FIG. 32C. Then, the pressure bonding member 81 presses the piece 3 wound around the hole 2 by the wedge effect. The piece 3 is also pressed by the pressing roller 88 (see FIG. 17). Thereby, the piece 3 is stuck on the one surface 1a side of the sheet bundle 1 so as to overlap the portion of the piece 3 that is stuck first (third bonding step). As a result, the piece 3 is wound around the hole 2 by approximately one and a half rounds.
 以上のように、片巻き装置10は、孔2を有するシート束1に片3を巻き付ける際に、巻き爪41の先端部41aが片3の自由端を押しながらシート束1の端部側からシート束1の孔2まで移動するように、巻き爪41が回動されることで、シート束1の一方の面1aに取り付けられた片3が、シート束1の一方の面1aから他方の面1bに亘って巻き付けられ、シート束1の他方の面1bから孔端面2aに挿入されて、孔2を有するシート束1に片3が巻き付けられ、四面に亘って片が巻き付けられるので、片3を強固にシート束1に巻き付けることができる。 As described above, when the piece winding device 10 winds the piece 3 around the sheet bundle 1 having the hole 2, the end portion 41 a of the winding claw 41 pushes the free end of the piece 3 from the end side of the sheet bundle 1. When the winding claw 41 is rotated so as to move to the hole 2 of the sheet bundle 1, the piece 3 attached to one surface 1 a of the sheet bundle 1 is moved from one surface 1 a of the sheet bundle 1 to the other. Since the sheet 3 is wound over the surface 1b, inserted into the hole end surface 2a from the other surface 1b of the sheet bundle 1, the piece 3 is wound around the sheet bundle 1 having the hole 2, and the piece is wound over the four surfaces. 3 can be firmly wound around the sheet bundle 1.
 また、片巻き装置10は、ハンドル12が回動操作されると、ハンドル12に押圧される抜き刃67のスライドに連動して、巻き爪41を有する巻き具40も回動し、片3を、シート束1の孔2に巻き付ける。すなわち、ハンドル12が回動する動作の中で、抜き刃67の動作と巻き具40の動作が連動するので,正確な位置に孔2を穿孔し、孔2に正確に片3を巻き付けることができる。また、ハンドル12の一連の回動操作の中で、穿孔動作と片3の巻き付け動作を行うことができ、操作性の向上を図ることができる。穿孔動作後にシート束1が動いてしまうと、片3を巻く際の動作が行えなくなることがあるが、この構成によれば、穿孔動作後にシート束1が動くことが無いので、シート束1の孔2の位置と片3の巻き付け位置がずれることがなく、片3を巻きつける際に、ずれたシート束1の孔2に挿入された片3が衝突し、ジャムが発生することを防止できる。 In addition, when the handle 12 is turned, the single-winding device 10 also rotates the winding tool 40 having the winding pawl 41 in conjunction with the sliding of the punching blade 67 pressed by the handle 12, And wound around the hole 2 of the sheet bundle 1. That is, since the operation of the punching blade 67 and the operation of the winding tool 40 are interlocked during the rotation of the handle 12, the hole 2 can be drilled at an accurate position and the piece 3 can be accurately wound around the hole 2. it can. Further, in a series of turning operations of the handle 12, the punching operation and the winding operation of the piece 3 can be performed, and the operability can be improved. If the sheet bundle 1 moves after the punching operation, the operation when winding the piece 3 may not be performed. However, according to this configuration, the sheet bundle 1 does not move after the punching operation. The position of the hole 2 and the winding position of the piece 3 are not shifted, and when the piece 3 is wound, it is possible to prevent the piece 3 inserted into the hole 2 of the shifted sheet bundle 1 from colliding and jamming. .
 <8.シート押さえ保持機構>
 図26A及びB並びに図27A及びBに示すように、シート押さえ部材71のシート押さえ部75,75は、最下点がシート束1より下に設定されており、図27Aに示すように、最大枚数である多い枚数の厚いシート束1が挿入されたときには、最下点で最大荷重が加わるようになる。そして、図26Bに示すように、シート押さえ部75,75は、一度最下点まで下りた後、ハンドル12の復路の動作に追従しシート束1に負荷の加わらない箇所にまで退避する。図27Bに示すように、多い枚数の厚いシート束1のときには、丁度、シート束1とシート押さえ部75,75の押さえ面とが当接する程度となる。
<8. Sheet holding mechanism>
As shown in FIGS. 26A and B and FIGS. 27A and 27B, the sheet pressing portions 75 and 75 of the sheet pressing member 71 have the lowest point set below the sheet bundle 1, and as shown in FIG. When a large number of thick sheet bundles 1 are inserted, the maximum load is applied at the lowest point. Then, as shown in FIG. 26B, after the sheet pressing portions 75 and 75 are once lowered to the lowest point, the sheet pressing portions 75 and 75 are retracted to a position where no load is applied to the sheet bundle 1 following the operation of the return path of the handle 12. As shown in FIG. 27B, in the case of a large number of thick sheet bundles 1, the sheet bundle 1 just contacts the pressing surfaces of the sheet pressing portions 75 and 75.
 このようなシート押さえ部材71の動作は、図51~図55に示すように、シート押さえ保持機構91によって制御される。シート押さえ保持機構91を構成するシート押さえ部材71は、上述のように、抜き刃67の動作に連動してスライドするものであり、図51A及びB並びに図52に示すように、上述のようにシート押さえ部75,75の他に、保持部材94を押圧する押圧突起92が設けられている。また、シート押さえ部材71は、保持部材94によって、シート束1から離間する反矢印I方向にスライドすることを制御する制御突起93が設けられている。 The operation of the sheet pressing member 71 is controlled by a sheet pressing and holding mechanism 91 as shown in FIGS. The sheet pressing member 71 constituting the sheet pressing and holding mechanism 91 slides in conjunction with the operation of the punching blade 67 as described above, and as described above, as shown in FIGS. 51A and 51 and FIG. In addition to the sheet pressing portions 75, 75, a pressing protrusion 92 that presses the holding member 94 is provided. Further, the sheet pressing member 71 is provided with a control projection 93 that controls the holding member 94 to slide in the direction of the opposite arrow I that is separated from the sheet bundle 1.
 シート押さえ保持機構91は、更に、シート押さえ部材71のスライドをロックする保持部材94を有する。保持部材94は、スライドベース61に支軸94aによって回動可能に取り付けられている。保持部材94は、コイルバネ等の弾性体でなる切換部材95によって、図52に示す位置と図53に示す位置に切り換えられる。切換部材95は、一端がスライドベース61に係止され、他端が保持部材94に係止されている。更に、保持部材94には、シート押さえ部材71の押圧突起92によって押圧される被押圧部96が形成されている。更に、保持部材94には、シート押さえ部材71の制御突起93が当接される係合段部97が形成されている。 The sheet pressing and holding mechanism 91 further includes a holding member 94 that locks the slide of the sheet pressing member 71. The holding member 94 is rotatably attached to the slide base 61 by a support shaft 94a. The holding member 94 is switched between the position shown in FIG. 52 and the position shown in FIG. 53 by a switching member 95 made of an elastic body such as a coil spring. The switching member 95 has one end locked to the slide base 61 and the other end locked to the holding member 94. Further, the holding member 94 is formed with a pressed portion 96 that is pressed by the pressing protrusion 92 of the sheet pressing member 71. Further, the holding member 94 is formed with an engaging step portion 97 with which the control protrusion 93 of the sheet pressing member 71 is brought into contact.
 図52に示すように、ハンドル12が待機状態にあるとき、シート押さえ部材71は、抜き刃67と共に弾性体68によって反矢印I方向に弾性付勢された状態にある。この際、保持部材94は、支軸94aを中心に、切換部材95によって、矢印L方向に回動付勢されており、シート押さえ部材71の押圧突起92は、保持部材94の被押圧部96から離間した状態にある。 As shown in FIG. 52, when the handle 12 is in the standby state, the sheet pressing member 71 is elastically urged in the counter arrow I direction by the elastic body 68 together with the punching blade 67. At this time, the holding member 94 is urged to rotate in the direction of the arrow L by the switching member 95 around the support shaft 94 a, and the pressing protrusion 92 of the sheet pressing member 71 is pressed by the pressed portion 96 of the holding member 94. It is in the state separated from.
 ハンドル12が回動され、抜き刃67がシート束1を打ち抜くとき(図26A及びB並びに図27A及びB参照)、抜き刃67と共に矢印I方向にスライドするシート押さえ部材71は、押圧突起92で保持部材94の被押圧部96を押圧する。すると、図52及び図53に示すように、保持部材94は、支軸94aを中心に反矢印L方向に回動する。すると、保持部材94の係合段部97の下側に、シート押さえ部材71の制御突起93が僅かに離間して位置する。図26A及びBに示すように、シート束1の枚数が少ないときには、制御突起93と係合段部97との間の隙間97aの分だけがたつきを有し、シート押上部材76によって、シート束1がシート押さえ部75,75側に押し上げられた状態となり、この状態で、シート束1を軽く押さえ付けるようにしている。 When the handle 12 is rotated and the punching blade 67 punches the sheet bundle 1 (see FIGS. 26A and B and FIGS. 27A and B), the sheet pressing member 71 that slides in the direction of arrow I together with the punching blade 67 is a pressing protrusion 92. The pressed portion 96 of the holding member 94 is pressed. Then, as shown in FIGS. 52 and 53, the holding member 94 rotates in the counter arrow L direction around the support shaft 94a. Then, the control protrusion 93 of the sheet pressing member 71 is positioned slightly below the engagement step portion 97 of the holding member 94. As shown in FIGS. 26A and 26B, when the number of sheet bundles 1 is small, only the gap 97a between the control projection 93 and the engagement step portion 97 has a wobble, and the sheet push-up member 76 The bundle 1 is pushed up toward the sheet pressing portions 75 and 75, and in this state, the sheet bundle 1 is lightly pressed.
 図27A及びBに示すように、最大枚数のシート束1が挿入されているときには、図54に示すように、シート押さえ部材71の制御突起93は、保持部材94の係合段部97と当接する程度まで押し上げられ、この状態で、シート束1を押さえ付けるようにする。 As shown in FIGS. 27A and 27B, when the maximum number of sheet bundles 1 are inserted, as shown in FIG. 54, the control protrusion 93 of the sheet pressing member 71 is in contact with the engagement step portion 97 of the holding member 94. The sheet bundle 1 is pushed up to the extent of contact, and the sheet bundle 1 is pressed in this state.
 ハンドル12が復路において上昇するとき、ハンドル12の解除片98は、図54に示すように、保持部材94の係合突起99を蹴り上げる。すると、保持部材94は、切換部材95の付勢力によって、矢印L方向に回動し、図55の初期状態に戻る。シートの枚数が少ないときと枚数が多いとき、すなわちシート束の厚みが薄いときと厚いときにシート束の位置が一定の位置にないと片3をシート束1の孔2に挿入するのが不安定になるが、この構成により、シート束1の枚数が少ないときと枚数が多いとき、すなわちシート束1の厚みが薄いときと厚いときに係わらず、シート束1の他方の面の高さを一定の位置に保つことができ、片3をシート束1の孔2に挿入する際の動作を安定させることができる。 When the handle 12 is raised in the return path, the release piece 98 of the handle 12 kicks up the engaging protrusion 99 of the holding member 94 as shown in FIG. Then, the holding member 94 is rotated in the arrow L direction by the urging force of the switching member 95, and returns to the initial state of FIG. When the number of sheets is small or large, that is, when the thickness of the sheet bundle is thin or thick, it is impossible to insert the piece 3 into the hole 2 of the sheet bundle 1 unless the position of the sheet bundle is in a certain position. Although stable, this configuration allows the height of the other surface of the sheet bundle 1 to be increased regardless of whether the sheet bundle 1 is small or large, that is, whether the sheet bundle 1 is thin or thick. It can be maintained at a fixed position, and the operation when inserting the piece 3 into the hole 2 of the sheet bundle 1 can be stabilized.
 <9.抜き刃とシート押さえ部材の連動動作の変形例の説明>
 以上の例では、抜き刃67のスライドと巻き具40の回転を、機械的にハンドル12の回動に連動させて行う場合を説明したが、図56A~Cに示すように、抜き刃67のスライドと巻き具40の回転をモータ101,102を用いて行い、コントローラ100で、モータ101,102の駆動を連動させるようにしてもよい。すなわち、図56Aに示すように、抜き刃67は、ラック103が設けられており、モータ101の出力と接続されたギヤ104と噛合されている。また、巻き具40も、駆動ギヤ105が設けられており、モータ102の出力と接続されたギヤ106と噛合されている。
<9. Description of Modified Example of Interlocking Operation of Cutting Blade and Sheet Pressing Member>
In the above example, the case where the slide of the punching blade 67 and the rotation of the winding tool 40 are mechanically interlocked with the rotation of the handle 12 has been described. However, as shown in FIGS. The slide and the winding tool 40 may be rotated by using the motors 101 and 102, and the drive of the motors 101 and 102 may be interlocked by the controller 100. That is, as shown in FIG. 56A, the punching blade 67 is provided with a rack 103 and meshed with a gear 104 connected to the output of the motor 101. The winding tool 40 is also provided with a driving gear 105 and meshed with a gear 106 connected to the output of the motor 102.
 以上のように電動で抜き刃67のスライドと巻き具40の回転を行う場合、コントローラ100は、図56Aに示すように、抜き刃67と巻き具40とを待機状態にする。すなわち、抜き刃67は、反矢印I方向にスライドされ、巻き具40は、矢印G2方向に回動され、載置面65より下側に退避している。図56Bに示すように、シート束1を穿孔するとき、コントローラ100は、モータ101を駆動し、抜き刃67を矢印I方向にスライドさせる。図56Cに示すように、片3を巻き付けるとき、コントローラ100は、モータ101を逆転駆動し、抜き刃67を反矢印I方向にスライドさせて、退避させる。この後、コントローラ100は、モータ102を駆動し、巻き具40を矢印G1方向に回転させて、シート束1に穿孔された孔2に片3を巻き付ける。なお、シート押上部材76のスライド動作は、抜き刃67のスライド動作と機械的に又は電動で連動させることができる。 When the sliding of the punching blade 67 and the rotation of the winding tool 40 are performed electrically as described above, the controller 100 places the punching blade 67 and the winding tool 40 in a standby state as shown in FIG. 56A. That is, the punching blade 67 is slid in the direction of the opposite arrow I, and the winding tool 40 is rotated in the direction of the arrow G2 and retracted below the placement surface 65. As shown in FIG. 56B, when punching the sheet bundle 1, the controller 100 drives the motor 101 to slide the punching blade 67 in the arrow I direction. As shown in FIG. 56C, when the piece 3 is wound, the controller 100 drives the motor 101 in the reverse direction and slides the punching blade 67 in the counter arrow I direction to retract. Thereafter, the controller 100 drives the motor 102 to rotate the winding tool 40 in the direction of the arrow G1 and wind the piece 3 around the hole 2 punched in the sheet bundle 1. The slide operation of the sheet push-up member 76 can be mechanically or electrically interlocked with the slide operation of the punching blade 67.
 この後、シート束1は、図32Cに示すように、反矢印K方向に引き抜かれる。すると、押圧接着部材81は、楔効果によって、孔2に巻き付けられた片3を扱くようにして押圧する。これにより、片3は、シート束1の一方の面1a側に、最初に貼着された片3の部分に重なるようにして貼着される(第3接着工程)。 Thereafter, the sheet bundle 1 is pulled out in the direction of the opposite arrow K as shown in FIG. 32C. Then, the pressure bonding member 81 presses the piece 3 wound around the hole 2 by the wedge effect. Thereby, the piece 3 is stuck on the one surface 1a side of the sheet bundle 1 so as to overlap the portion of the piece 3 that is stuck first (third bonding step).
 <10.巻付け機構の変形例の説明>
 以上の例では、巻き具40の巻き爪41によって、片3を、シート束1の孔2に巻き付ける場合を説明したが、更に、複数の部材によって、片3を、シート束1の孔2に巻き付けるようにしてもよい。これを、図57A~D及びE~Hを参照して説明する。なお、図57A~DとE~Hは、A~Dにはシート押さえ部75があり、E~Hにはシート押さえ部75がないだけの相違なので、以下、まとめて説明する。
<10. Description of Modification of Winding Mechanism>
In the above example, the case where the piece 3 is wound around the hole 2 of the sheet bundle 1 by the winding claw 41 of the winding tool 40 has been described, but the piece 3 is further turned into the hole 2 of the sheet bundle 1 by a plurality of members. You may make it wind. This will be described with reference to FIGS. 57A to 57D and E to H. 57A to 57D and E to H are different from each other only in that the sheet pressing portion 75 is provided in A to D and the sheet pressing portion 75 is not provided in E to H, and will be described collectively below.
 この巻付け機構111は、シート束1の一方の面1aに貼着された片3を押圧し、シート束1の挿入端側の端面1cに沿うように略垂直に折曲する第1の押圧レバー112と、第1の押圧レバー112で折曲された片3をシート束1の他方の面1bに沿うように略垂直に折曲する第2の押圧レバー113と、第2の押圧レバー113で折曲された片3を孔2内に挿入する第3の押圧レバー114とを有する。 The winding mechanism 111 presses the piece 3 attached to one surface 1a of the sheet bundle 1 and bends substantially perpendicularly along the end surface 1c on the insertion end side of the sheet bundle 1. A lever 112, a second pressing lever 113 for bending the piece 3 bent by the first pressing lever 112 substantially perpendicularly along the other surface 1b of the sheet bundle 1, and a second pressing lever 113 And a third pressing lever 114 for inserting the bent piece 3 into the hole 2.
 片3を孔2に巻き付ける前は、図57A及びEに示すように、第1乃至第3の押圧レバー112~114が退避した状態にあり、シート束1に孔2が穿孔されると、図57B及びFに示すように、第1の押圧レバー112が一方の面1aに対して略垂直に進出し、片3を、シート束1の一方の面1aに対して略垂直に折曲し、シート束1の挿入端側の端面1cに接着する。次いで、図57C及びGに示すように、第2の押圧レバー113が第1の押圧レバー112とは略垂直な方向に進出し、片3を略垂直に折曲し、シート束1の他方の面1bに接着する。次いで、図57D及びHに示すように、第3の押圧レバー114が他方の面1bに対して略垂直に進出し、片3を略垂直に折曲し、片3を孔2に挿入し孔端面2aに接着する。 Before the piece 3 is wound around the hole 2, as shown in FIGS. 57A and 57E, when the first to third pressing levers 112 to 114 are retracted and the hole 2 is punched in the sheet bundle 1, As shown in 57B and F, the first pressing lever 112 advances substantially perpendicularly to the one surface 1a, and the piece 3 is bent substantially perpendicularly to the one surface 1a of the sheet bundle 1, The sheet bundle 1 is adhered to the end surface 1c on the insertion end side. Next, as shown in FIGS. 57C and 57G, the second pressing lever 113 advances in a direction substantially perpendicular to the first pressing lever 112, bends the piece 3 substantially perpendicularly, Adhere to surface 1b. Next, as shown in FIGS. 57D and 57H, the third pressing lever 114 advances substantially perpendicularly to the other surface 1b, bends the piece 3 substantially vertically, inserts the piece 3 into the hole 2, and inserts the hole. Adhere to the end face 2a.
 この後、シート束1は、図32Cに示すように、反矢印K方向に引き抜かれる。すると、押圧接着部材81は、楔効果等の押圧構造によって、孔2に巻き付けられた片3を扱くようにして押圧する。これにより、片3は、シート束1の一方の面1a側に、最初に貼着された片3の部分に重なるようにして貼着される(第3接着工程)。 Thereafter, the sheet bundle 1 is pulled out in the direction of the opposite arrow K as shown in FIG. 32C. Then, the pressing adhesive member 81 presses the piece 3 wound around the hole 2 by a pressing structure such as a wedge effect. Thereby, the piece 3 is stuck on the one surface 1a side of the sheet bundle 1 so as to overlap the portion of the piece 3 that is stuck first (third bonding step).
 <11.片を3面に接着する変形例の説明>
 以上の例では、片3を、一方の面1a、挿入端側の端面1c、他方の面1b、孔2の孔端面2a、及び、一方の面1a(5面)に亘って、片3が巻回された場合を説明したが、片3は、3面に巻かれるものであってもよい。図58Aに示すように、片3は、シート束1の一方の面1a上に孔2上に延在するようにして仮着されており、巻き爪41が矢印G1方向に回動されると、孔2上の片3を先端部41aで押圧し、孔2内に進入させる。図58Bに示すように、更に、巻き爪41が矢印G1方向に回動されると、孔2内に進入した片3は、シート束1の他方の面1bに押し付けられる。これにより、片3は、シート束1の一方の面1a、孔2の孔端面2a、及び、他方の面1bの3面に貼り付けられることになる。
<11. Description of Modified Example of Adhering Pieces to Three Sides>
In the above example, the piece 3 extends over the one surface 1a, the end surface 1c on the insertion end side, the other surface 1b, the hole end surface 2a of the hole 2, and the one surface 1a (five surfaces). Although the case where it was wound was demonstrated, the piece 3 may be wound by 3 surfaces. As shown in FIG. 58A, the piece 3 is temporarily attached on one surface 1a of the sheet bundle 1 so as to extend over the hole 2, and when the winding claw 41 is rotated in the direction of the arrow G1. Then, the piece 3 on the hole 2 is pressed by the tip portion 41 a to enter the hole 2. As shown in FIG. 58B, when the winding claw 41 is further rotated in the arrow G1 direction, the piece 3 that has entered the hole 2 is pressed against the other surface 1b of the sheet bundle 1. Thereby, the piece 3 is affixed to three surfaces of the one surface 1a of the sheet bundle 1, the hole end surface 2a of the hole 2, and the other surface 1b.
 また、片3をシート束1の3面に貼着する場合であっても、上述したように、図57で示したように押圧レバーを用いてもよい。具体的に、図59Aに示すように、この巻付け機構121は、シート束1の一方の面1aに貼着された片3を押圧し、シート束1の孔2の孔端面2aに沿うように略垂直に折曲する第1の押圧レバー122と、第1の押圧レバー122で折曲された片3をシート束1の他方の面1bに沿うように略垂直に折曲する第2の押圧レバー123とを有する。 Further, even when the piece 3 is stuck on the three surfaces of the sheet bundle 1, as described above, a pressing lever may be used as shown in FIG. Specifically, as shown in FIG. 59A, the winding mechanism 121 presses the piece 3 attached to one surface 1 a of the sheet bundle 1 so as to follow the hole end surface 2 a of the hole 2 of the sheet bundle 1. A first pressing lever 122 that bends substantially perpendicularly to the first pressing lever 122, and a second piece that bends the piece 3 bent by the first pressing lever 122 substantially perpendicularly along the other surface 1b of the sheet bundle 1. And a pressing lever 123.
 片3を孔2に巻き付ける前は、図59Aに示すように、第1及び第2の押圧レバー122,123が退避した状態にあり、シート束1に孔2が穿孔されると、図59Bに示すように、第1の押圧レバー122がシート束1の一方の面1aに対して略垂直に進出し、片3を、シート束1の一方の面1aに対して略垂直に折曲し、シート束1の孔2の孔端面2aに接着する。次いで、図59Cに示すように、第2の押圧レバー123が第1の押圧レバー122とは略垂直な方向に進出し、片3を略垂直に折曲し、シート束1の他方の面1bに接着する。これにより、片3は、シート束1の一方の面1a、孔端面2a、及び、他方の面1bの3面に貼着されることになる。 Before the piece 3 is wound around the hole 2, as shown in FIG. 59A, the first and second pressing levers 122 and 123 are retracted, and when the hole 2 is punched in the sheet bundle 1, FIG. As shown, the first pressing lever 122 advances substantially perpendicular to one surface 1a of the sheet bundle 1, and the piece 3 is bent substantially perpendicular to the one surface 1a of the sheet bundle 1, The sheet bundle 1 is adhered to the hole end surface 2a of the hole 2 of the sheet bundle 1. Next, as shown in FIG. 59C, the second pressing lever 123 advances in a direction substantially perpendicular to the first pressing lever 122, bends the piece 3 substantially vertically, and the other surface 1b of the sheet bundle 1 Adhere to. As a result, the piece 3 is adhered to the three surfaces of the one surface 1a, the hole end surface 2a, and the other surface 1b of the sheet bundle 1.
 なお、図58及び図59の例では、片3を、シート束1の一方の面1a、孔端面2a、他方の面1bの順に巻く場合を説明したが、この他に、片3を、一方の面1a、孔端面2aとは反対側の端面1c、他方の面1bの順に巻くようにしてもよい。また、片3を、他方の面1b、孔端面2a/端面1c、一方の面1aの順に巻くようにしてもよい。 58 and 59, the case where the piece 3 is wound in the order of the one surface 1a of the sheet bundle 1, the hole end surface 2a, and the other surface 1b has been described. The surface 1a, the end surface 1c opposite to the hole end surface 2a, and the other surface 1b may be wound in this order. Moreover, you may make it wind the piece 3 in order of the other surface 1b, the hole end surface 2a / end surface 1c, and the one surface 1a.
 <12.ハンドルの往路の動作で抜き刃と巻き具を動作させる変形例の説明>
 以上の例では、ハンドル12の往動作で抜き刃67をスライドしてシート束1に孔2を穿孔し、ハンドル12の復路で巻き具40を回転して片3を孔2に巻き付ける場合を説明したが、次に説明するように、ハンドル12の往動作のみで、抜き刃67をスライドしてシート束1に孔2を穿孔し、更に、巻き具40を回転して片3を孔2に巻き付けるようにしてもよい。
<12. Description of a modified example in which the punching blade and the winding tool are operated by the operation of the handle forward path>
In the above example, the case in which the punching blade 67 is slid by the forward movement of the handle 12 to punch the hole 2 in the sheet bundle 1, and the winding tool 40 is rotated in the return path of the handle 12 to wind the piece 3 around the hole 2. However, as will be described below, the punching blade 67 is slid to punch the hole 2 in the sheet bundle 1 only by the forward movement of the handle 12, and the winding tool 40 is further rotated to turn the piece 3 into the hole 2. You may make it wind.
 図60に示すように、この片巻き装置200は、ベースユニット201にハンドル202が支軸203で回動可能に取り付けられている。ハンドル202は、コイルバネ等の付勢部材204によって、待機状態となる矢印A方向に付勢されている。ベースユニット201には、抜き刃205が取り付けられており、抜き刃205は、コイルバネ等の弾性体206によって、待機位置の方向となる反矢印I方向に付勢されている。 As shown in FIG. 60, in the single winding device 200, a handle 202 is attached to a base unit 201 so as to be rotatable by a support shaft 203. The handle 202 is urged in the direction of arrow A that is in a standby state by an urging member 204 such as a coil spring. A punching blade 205 is attached to the base unit 201, and the punching blade 205 is urged by an elastic body 206 such as a coil spring in a direction opposite to the arrow I which is a direction of a standby position.
 また、ベースユニット201には、巻き具210が矢印G1方向に回動可能に取り付けられている。巻き具210は、ベースユニット201に設けられたスライダ207のラック部208に、ギヤ部209が噛合している。ハンドル202には、スライダ207の係合片211に係合して、スライダ207を矢印X方向に操作するスライド操作片212が設けられている。ハンドル202は、スライド操作片212がベースユニット201側に設けられたストッパ218に係合されることによって、矢印A方向に回動範囲が規制されている。ハンドル202には、抜き刃205を押圧する押圧操作部材213が設けられている。 Further, a winding tool 210 is attached to the base unit 201 so as to be rotatable in the direction of the arrow G1. In the winding tool 210, a gear portion 209 is engaged with a rack portion 208 of a slider 207 provided in the base unit 201. The handle 202 is provided with a slide operation piece 212 that engages with the engagement piece 211 of the slider 207 and operates the slider 207 in the arrow X direction. The handle 202 has its rotation range restricted in the direction of arrow A by engaging the slide operation piece 212 with a stopper 218 provided on the base unit 201 side. The handle 202 is provided with a pressing operation member 213 that presses the punching blade 205.
 押圧操作部材213は、ハンドル202の内面に支軸214によって回動可能に取り付けられており、また、引っ張り部材であるコイルバネ215によって矢印Y方向に回動付勢されている。押圧操作部材213は、内部に、操作体216がコイルバネである付勢部材217によって矢印Z方向に付勢されている。操作体216は、倣いピン219が設けられており、倣いピン219は、ハンドル202が矢印A方向に回動した際に、ベースユニット201側の受け部221に当接する。 The pressing operation member 213 is rotatably attached to the inner surface of the handle 202 by a support shaft 214 and is urged to rotate in the arrow Y direction by a coil spring 215 that is a pulling member. The pressing operation member 213 is urged in the arrow Z direction by an urging member 217 whose operating body 216 is a coil spring. The operating body 216 is provided with a copying pin 219, and the copying pin 219 contacts the receiving portion 221 on the base unit 201 side when the handle 202 rotates in the arrow A direction.
 図60に示すように、ハンドル202が矢印A方向に回動し待機状態にあるとき、抜き刃205は、弾性体206の弾性力によって、反矢印I方向にスライドしており、押圧操作部材213は、抜き刃205に対して傾いた状態で、操作体216が抜き刃205の先端部に当接した状態にある。また、スライダ207は、反矢印X方向にスライドした状態にあり、巻き具210は、反矢印G1方向に回動し、退避した状態にある。 As shown in FIG. 60, when the handle 202 is rotated in the arrow A direction and is in a standby state, the punching blade 205 is slid in the counter arrow I direction by the elastic force of the elastic body 206, and the pressing operation member 213. Is in a state where the operating body 216 is in contact with the tip of the punching blade 205 while being tilted with respect to the punching blade 205. Further, the slider 207 is slid in the counter arrow X direction, and the winding tool 210 is rotated in the counter arrow G1 direction and retracted.
 図61Aに示すように、ハンドル202が反矢印A方向に回動操作されると、先ず、押圧操作部材213が支軸214を中心に反矢印Y方向に回動し、抜き刃205と押圧操作部材213とが直線状となる。更に、ハンドル202が回動操作されると、図61Bに示すように、押圧操作部材213は、弾性体206の弾性力に抗して抜き刃205を矢印I方向に押圧する。この状態で、シート束1には、抜き刃205によって孔2が穿孔される。このとき、押圧操作部材213は、抜き刃205に対して更に反対側に傾く。 As shown in FIG. 61A, when the handle 202 is rotated in the counter arrow A direction, first, the pressing operation member 213 rotates in the counter arrow Y direction around the support shaft 214, and the punching blade 205 and the pressing operation are performed. The member 213 is linear. Further, when the handle 202 is rotated, as shown in FIG. 61B, the pressing operation member 213 presses the extraction blade 205 in the direction of arrow I against the elastic force of the elastic body 206. In this state, a hole 2 is punched in the sheet bundle 1 by the punching blade 205. At this time, the pressing operation member 213 is further inclined to the opposite side with respect to the punching blade 205.
 図62Aに示すように、ハンドル202が更に回動操作されると、押圧操作部材213は、抜き刃205に対する傾きが更に大きくなり、操作体216は、押圧している抜き刃205の先端部から外れ、倣いピン219がベースユニット201側の受け部221に当接する。すると、抜き刃205は、弾性体206の弾性復帰力によって反矢印I方向にスライドし、待機位置に戻る。これにより、孔2が開いたシート束1からは、抜き刃205が退避し、巻き具210が動作可能な状態になる。 As shown in FIG. 62A, when the handle 202 is further rotated, the pressing operation member 213 is further inclined with respect to the punching blade 205, and the operating body 216 is moved from the tip of the pressing blade 205 being pressed. The copy pin 219 comes into contact with the receiving portion 221 on the base unit 201 side. Then, the punching blade 205 slides in the direction opposite to the arrow I by the elastic restoring force of the elastic body 206 and returns to the standby position. Thereby, the punching blade 205 is retracted from the sheet bundle 1 in which the hole 2 is opened, and the winding tool 210 is operable.
 図62Bに示すように、ハンドル202が更に回動され続け、図63Aに示す状態にまで移動されると、ハンドル202のスライド操作片212がスライダ207の係合片211に係合する。更に、ハンドル202が回動され続けると、図63Bに示すように、スライダ207は、ハンドル202のスライド操作片212によって押されることで、矢印X方向にスライドする。すると、スライダ207のラック部208にギヤ部209が噛合している巻き具210は、矢印G1方向に回動する。これにより、抜き刃205によって穿孔されたシート束1の孔2には、片3が巻き付けられることになる。この後、ハンドル202は、付勢部材204の付勢力によって、矢印A方向に回動し、待機状態に戻る。 As shown in FIG. 62B, when the handle 202 is further rotated and moved to the state shown in FIG. 63A, the slide operation piece 212 of the handle 202 is engaged with the engagement piece 211 of the slider 207. When the handle 202 continues to rotate, the slider 207 slides in the arrow X direction by being pushed by the slide operation piece 212 of the handle 202 as shown in FIG. 63B. Then, the winding tool 210 in which the gear portion 209 is engaged with the rack portion 208 of the slider 207 rotates in the arrow G1 direction. As a result, the piece 3 is wound around the hole 2 of the sheet bundle 1 perforated by the punching blade 205. Thereafter, the handle 202 is rotated in the direction of arrow A by the urging force of the urging member 204 and returns to the standby state.
 なお、ここで巻き付けられる片3は、3面に巻き付けられるものであってもよいし、4面以上巻き付けられるものであってもよい。 In addition, the piece 3 wound here may be wound around three surfaces, or may be wound around four or more surfaces.
 <13.排出部や巻き具を露出させる変形例の説明>
 図16A及びBに示すように、シート束1に孔2を穿孔する穿孔ユニット16は、ベースユニット11の上面23に長手方向にスライド可能に取り付けられ、ベースユニット11の他端側(シート束1の挿入側)のメンテナンス位置にスライドしたとき、排出部31や巻付け機構15の巻き具40の巻き爪41や抜き刃67を外部に露出させ、メンテナンス作業を容易に行うことができるようにしている。
<13. Description of Modified Example Exposing Discharge Portion and Wrapping Tool>
As shown in FIGS. 16A and 16B, the punching unit 16 for punching holes 2 in the sheet bundle 1 is attached to the upper surface 23 of the base unit 11 so as to be slidable in the longitudinal direction, and the other end side of the base unit 11 (sheet bundle 1). When the slide is moved to the maintenance position on the insertion side), the winding claw 41 and the punching blade 67 of the winding part 40 of the discharge part 31 and the winding mechanism 15 are exposed to the outside so that the maintenance work can be easily performed. Yes.
 このように片巻き装置10では、片3を排出する排出部31や巻き爪41をメンテナンスのため露出できればよいので、穿孔ユニット16が図16A及びBに示すスライド動作以外の動作をしてもよい。 In this way, in the single-winding device 10, it is only necessary to expose the discharge unit 31 and the winding pawl 41 for discharging the piece 3 for maintenance, so the punching unit 16 may perform an operation other than the sliding operation shown in FIGS. 16A and 16B. .
 例えば、図64Aは、穿孔ユニット16が穿孔位置に装着された基本状態を示しており、図64Bのように、穿孔ユニット16を、ベースユニット11の他端側(シート束1の挿入側)のメンテナンス位置にスライドさせてもよい(図16A及びBと同じ動き)。また、図64Cに示すように、穿孔ユニット16は、ロール収容部13と共に、反対側にスライドさせてもよい。 For example, FIG. 64A shows a basic state in which the punching unit 16 is mounted at the punching position. As shown in FIG. 64B, the punching unit 16 is connected to the other end side of the base unit 11 (the insertion side of the sheet bundle 1). You may slide to a maintenance position (the same movement as FIG. 16A and B). Further, as shown in FIG. 64C, the punching unit 16 may be slid to the opposite side together with the roll housing unit 13.
 図64Dは、穿孔ユニット16が着脱可能であり、穿孔ユニット16がベースユニット11に装着された状態を示している。穿孔ユニット16は、図64Eに示すように、ベースユニット11から取り外すことで、排出部31や巻き爪41や抜き刃67を露出させることができる。 FIG. 64D shows a state in which the drilling unit 16 is detachable and the drilling unit 16 is attached to the base unit 11. As shown in FIG. 64E, the punching unit 16 can be removed from the base unit 11 to expose the discharge unit 31, the winding pawl 41, and the punching blade 67.
 更に、図64Fは、穿孔ユニット16がベースユニット11に対して近接離間するように昇降可能であり、穿孔ユニット16がベースユニット11に装着された状態を示している。図64Gに示すように、穿孔ユニット16は、ベースユニット11に対して上昇させ離間させることで、排出部31や巻き爪41や抜き刃67を露出させることができる。 Further, FIG. 64F shows a state in which the perforation unit 16 can be moved up and down so as to approach and separate from the base unit 11 and the perforation unit 16 is attached to the base unit 11. As shown in FIG. 64G, the punching unit 16 can be exposed to the discharge unit 31, the winding pawl 41, and the punching blade 67 by being raised and separated from the base unit 11.
 更に、図64Hは、穿孔ユニット16がベースユニット11に対して回動可能であり、穿孔ユニット16がベースユニット11に装着された状態を示している。図64Iに示すように、穿孔ユニット16は、ベースユニット11に対して回動されることで、排出部31や巻き爪41や抜き刃67を露出させることができる。 Furthermore, FIG. 64H shows a state in which the drilling unit 16 is rotatable with respect to the base unit 11 and the drilling unit 16 is mounted on the base unit 11. As shown in FIG. 64I, the punching unit 16 can be rotated with respect to the base unit 11 to expose the discharging unit 31, the winding pawl 41, and the punching blade 67.
 図65A~Iでは、排出部31がベースユニット11に設けられ、片3がベースユニット11の下側の排出部31からからベースユニット11に対して略垂直に排出される例を示している。図65Aは、ベースユニット11に排出部31が設けられており、穿孔ユニット16が穿孔位置に装着された基本状態を示している。そして、図65Bのように、穿孔ユニット16を、ベースユニット11の他端側(シート束1の挿入側)のメンテナンス位置にスライドさせてもよい。また、図65Cに示すように、穿孔ユニット16は、ロール収容部13と共に、反対側にスライドさせてもよい。 65A to I show an example in which the discharge unit 31 is provided in the base unit 11, and the piece 3 is discharged from the discharge unit 31 on the lower side of the base unit 11 substantially perpendicularly to the base unit 11. FIG. 65A shows a basic state where the discharge unit 31 is provided in the base unit 11 and the punching unit 16 is mounted at the punching position. Then, as shown in FIG. 65B, the punching unit 16 may be slid to the maintenance position on the other end side (the insertion side of the sheet bundle 1) of the base unit 11. In addition, as shown in FIG. 65C, the punching unit 16 may be slid to the opposite side together with the roll housing unit 13.
 図65Dは、穿孔ユニット16が着脱可能であり、穿孔ユニット16がベースユニット11に装着された状態を示している。穿孔ユニット16は、図65Eに示すように、ベースユニット11から取り外すことで、排出部31や抜き刃67を露出させることができる。 FIG. 65D shows a state in which the drilling unit 16 is detachable and the drilling unit 16 is attached to the base unit 11. As shown in FIG. 65E, the punching unit 16 can be removed from the base unit 11 to expose the discharge unit 31 and the punching blade 67.
 更に、図65Fは、穿孔ユニット16がベースユニット11に対して近接離間するように昇降可能であり、穿孔ユニット16がベースユニット11に装着された状態を示している。図65Gに示すように、穿孔ユニット16は、ベースユニット11に対して上昇させ離間させることで、排出部31や抜き刃67を露出させることができる。 Furthermore, FIG. 65F shows a state in which the drilling unit 16 can be moved up and down so as to approach and separate from the base unit 11, and the drilling unit 16 is attached to the base unit 11. As shown in FIG. 65G, the punching unit 16 can be lifted and separated from the base unit 11 to expose the discharge portion 31 and the punching blade 67.
 更に、図65Hは、穿孔ユニット16がベースユニット11に対して回動可能であり、穿孔ユニット16がベースユニット11に装着された状態を示している。図65Iに示すように、穿孔ユニット16は、ベースユニット11に対して回動させることで、排出部31や抜き刃67を露出させることができる。 Furthermore, FIG. 65H shows a state in which the punching unit 16 is rotatable with respect to the base unit 11 and the punching unit 16 is attached to the base unit 11. As shown in FIG. 65I, the punching unit 16 can expose the discharge portion 31 and the punching blade 67 by rotating with respect to the base unit 11.
 更に、図66A~Dでは、排出部31が穿孔ユニット16に設けられている。図66A及びCでは、穿孔ユニット16がベースユニット11に対して回動可能であり、穿孔ユニット16がベースユニット11に装着された状態を示している。図66B及びDに示すように、排出部31が設けられた穿孔ユニット16は、ベースユニット11に対して回動されることで、排出部31や抜き刃67を露出させることができる。 Further, in FIGS. 66A to 66D, the discharge unit 31 is provided in the punching unit 16. 66A and 66C show a state in which the punching unit 16 is rotatable with respect to the base unit 11, and the punching unit 16 is attached to the base unit 11. As shown in FIGS. 66B and 66D, the punching unit 16 provided with the discharge unit 31 can be rotated with respect to the base unit 11 to expose the discharge unit 31 and the punching blade 67.
 以下、本発明を適用した片巻き装置について、図面を参照しながら詳細に説明する。なお、本発明は以下の例に限定されるものではなく、本発明の要旨を逸脱しない範囲で任意に変更可能である。 Hereinafter, a single winding device to which the present invention is applied will be described in detail with reference to the drawings. In addition, this invention is not limited to the following examples, It can change arbitrarily in the range which does not deviate from the summary of this invention.
<14.片巻き装置の構成の説明>
 本発明を適用した片巻き装置1001は、図67A~図67Dに示すように、例えば、孔1011を有するシート1010の一方の面1010aに取り付けられた片1020を、シート1010の一方の面1010aから他方の面1010bに亘って巻き付けて、シート1010の他方の面1010bからシート1010の孔1011に挿入することで、孔1011を有するシート1010に片1020を巻き付けるものである。
<14. Description of the configuration of the single winding device>
As shown in FIGS. 67A to 67D, the single winding device 1001 to which the present invention is applied includes, for example, a piece 1020 attached to one surface 1010a of a sheet 1010 having a hole 1011 from one surface 1010a of the sheet 1010. The piece 1020 is wound around the sheet 1010 having the hole 1011 by being wound around the other surface 1010b and being inserted into the hole 1011 of the sheet 1010 from the other surface 1010b of the sheet 1010.
 これにより、片巻き装置1001は、孔1011を有するシート1010に片1020を巻き付けて、シート1010を片1020で綴じることができるので、例えば、シート1010を綴じる綴じ装置として用いることができる。また、片巻き装置1001は、孔1011を有するシート1010に片1020を巻き付けて、シート1010の孔1011を片1020で補強することができるので、例えば、孔1011を有するシート1010に補強具(片1020)を取り付ける補強具の取付装置として用いることができる。更に、片巻き装置1001は、孔1011を有するシート1010に、例えば異なる色の片1020や異なる目印を付した片1020を巻き付けることで、シート1010を片1020で識別することができる。したがって、片巻き装置1001は、例えば、孔1011を有するシート1010に識別具(片1020)を取り付ける識別具の取付装置として用いることができる。 Thus, the single winding device 1001 can wind the piece 1020 around the sheet 1010 having the hole 1011 and bind the sheet 1010 with the piece 1020, and thus can be used as, for example, a binding device that binds the sheet 1010. Further, the single-winding device 1001 can wrap the piece 1020 around the sheet 1010 having the hole 1011 and reinforce the hole 1011 of the sheet 1010 with the piece 1020. 1020) can be used as a mounting device for a reinforcing tool. Further, the piece winding device 1001 can identify the sheet 1010 by the piece 1020 by winding the piece 1020 having a different color or a piece 1020 with a different mark around the sheet 1010 having the hole 1011. Therefore, the single-winding device 1001 can be used, for example, as a discriminator attachment device that attaches the discriminator (piece 1020) to the sheet 1010 having the hole 1011.
 具体的に、片巻き装置1001は、図70に示すように、シート挿入口1001aから挿入されたシート1010が他方の面1030bに載置される台座1030を備えている。 Specifically, as shown in FIG. 70, the single-winding device 1001 includes a pedestal 1030 on which the sheet 1010 inserted from the sheet insertion port 1001a is placed on the other surface 1030b.
 更に、片巻き装置1001は、台座1030よりもシート挿入方向Xの奥側に配置され、シート1010の挿入端側の端部と一部が重なるように片1020を送り出す片送り出し部1040を備えている。 Further, the single winding device 1001 includes a single feeding unit 1040 that is disposed on the far side in the sheet insertion direction X from the pedestal 1030 and that feeds the piece 1020 so as to partially overlap the end of the sheet 1010 on the insertion end side. Yes.
 更に、片巻き装置1001は、台座1030の一方の面1030a側に配置され、シート挿入方向Xの奥側に回動可能に設けられ、孔1011を有するシート1010に片1020を巻き付ける巻き具1070を備えている。 Further, the single-winding device 1001 is disposed on the one surface 1030a side of the pedestal 1030, is provided rotatably on the back side in the sheet insertion direction X, and has a winding tool 1070 for winding the piece 1020 around the sheet 1010 having the hole 1011. I have.
 更に、片巻き装置1001は、台座1030の他方の面1030b側に配置され、巻き具1070によって片1020が巻き付けられたシート1010を押圧する押圧部1080を備えている。 Further, the single winding device 1001 includes a pressing unit 1080 that is disposed on the other surface 1030b side of the pedestal 1030 and presses the sheet 1010 around which the piece 1020 is wound by the winding tool 1070.
 シート1010は、図67A~図67Dに示すように、書類等の用紙や、金属材料又は樹脂材料等で形成されたシート状部材等で構成されている。更に、シート1010の挿入端側の端部の近傍には、厚さ方向に貫通された孔1011が形成されている。この孔1011は、片巻き装置1001にシート1010が挿入された後に図示しないパンチ部によってシート1010に形成されるパンチ穴であっても良く、片巻き装置1001にシート1010が挿入される前に、別体のパンチ装置等によって予めシート1010に形成されたパンチ穴等の貫通孔であっても良い。 As shown in FIGS. 67A to 67D, the sheet 1010 is composed of paper such as a document, a sheet-like member formed of a metal material, a resin material, or the like. Further, a hole 1011 penetrating in the thickness direction is formed in the vicinity of the end of the sheet 1010 on the insertion end side. The hole 1011 may be a punch hole formed in the sheet 1010 by a punch unit (not shown) after the sheet 1010 is inserted into the single winding device 1001, and before the sheet 1010 is inserted into the single winding device 1001, It may be a through hole such as a punch hole formed in the sheet 1010 in advance by a separate punch device or the like.
 更に、シート1010には、一方の面1010a、挿入端側の端面1010c、他方の面1010b及び孔1011の孔縁端面1011aに亘って、片1020が1周巻き付けられている。この際、シート1010は、複数枚重ねられた状態で片1020が巻き付けられるようにしても良く、一枚だけの状態で片1020が巻き付けられるようにしても良い。 Furthermore, a piece 1020 is wound once around the sheet 1010 across one surface 1010a, the end surface 1010c on the insertion end side, the other surface 1010b, and the hole edge end surface 1011a of the hole 1011. At this time, a plurality of sheets 1010 may be wound with the piece 1020 being stacked, or the piece 1020 may be wound with only one sheet.
 片1020は、図68A及び図68Bに示すように、平面視略矩形状に形成されており、他方の面1020bに粘着層1021を有し、例えば、長尺な剥離紙1022に、長手方向に所定の間隔をあけて複数個仮着されている。これにより、片1020は、長期間待機された後に使用される場合であっても、粘着層1021の粘着力の低下を防止することができる。更に、片1020及び剥離紙1022で構成される帯状体1023は、例えば、ロール状に巻回されて、巻き具1070よりもシート挿入方向Xの奥側に設けられている帯状体収容部(不図示)に収容されている。更に、帯状体1023の片1020及び/又は剥離紙1022には、帯状体1023を送り出すための係合部材(不図示)が係合される係合孔1024が長手方向に所定の間隔をあけて複数個形成されている。 68A and 68B, the piece 1020 is formed in a substantially rectangular shape in plan view, and has an adhesive layer 1021 on the other surface 1020b. For example, the piece 1020 is provided on a long release paper 1022 in the longitudinal direction. A plurality are temporarily attached at a predetermined interval. Thereby, even if it is a case where the piece 1020 is used after waiting for a long period of time, the adhesive force of the adhesion layer 1021 can be prevented from being lowered. Further, the band-like body 1023 composed of the piece 1020 and the release paper 1022 is wound in a roll shape, for example, and is provided on the back side of the sheet insertion direction X with respect to the winding tool 1070 (non-band-like body housing portion (Shown). Further, an engagement hole 1024 in which an engagement member (not shown) for feeding the band-like body 1023 is engaged with the strip 1020 and / or the release paper 1022 of the band-like body 1023 is spaced apart at a predetermined interval in the longitudinal direction. A plurality are formed.
 台座1030は、図70示すように、例えば、板部材で構成され、シート挿入口1001aから挿入されたシート1010が他方の面1030bに載置される。これにより、シート1010は、高さ方向Zについて位置決めされる。更に、台座1030は、巻き具1070の先端1070aに対応する位置に貫通孔1031が形成されている。 As shown in FIG. 70, the pedestal 1030 is made of, for example, a plate member, and the sheet 1010 inserted from the sheet insertion port 1001a is placed on the other surface 1030b. As a result, the sheet 1010 is positioned in the height direction Z. Further, the pedestal 1030 has a through hole 1031 at a position corresponding to the tip 1070 a of the winding tool 1070.
 片送り出し部1040は、図70に示すように、台座1030よりもシート挿入方向Xの奥側に配置され、帯状体収容部と台座1030とを結ぶ片搬送路1041から分岐された剥離紙搬送路1042に設けられている。片送り出し部1040は、例えば、一対の搬送ローラや帯状体1023の係合孔1024に係合しつつ摺動する係合部材等で構成されている。 As shown in FIG. 70, the one-feed section 1040 is disposed on the back side in the sheet insertion direction X with respect to the pedestal 1030, and the release paper conveyance path branched from the single conveyance path 1041 that connects the strip-shaped body accommodation section and the pedestal 1030. 1042 is provided. The one-feed unit 1040 is constituted by, for example, a pair of conveying rollers or an engaging member that slides while engaging with the engaging hole 1024 of the belt-like body 1023.
 そして、片送り出し部1040は、例えば、使用者によってハンドル(不図示)が回動操作される等の機械的な駆動操作又は使用者によって操作ボタンが押圧される等して駆動モータ等の駆動部が駆動される等の電気的な駆動操作に連動して、図示しない送り出し駆動機構が駆動されると、片搬送路1041から分岐された剥離紙搬送路1042に帯状体1023を所定長さ送り出し、分岐地点において剥離紙1022から片1020を剥離して、剥離した片1020を片搬送路1041の排出口1041aから台座1030に送り出す。具体的に、片送り出し部1040は、平面視でシート1010の挿入端側の端部と片1020の一端部が重なるように、図68Cに示すように、片1020を、粘着層1021をシート1010側に向けて台座1030の他方の面1030bに載置する。更に、この際、片送り出し部1040は、片1020が剥離された剥離紙1022を、剥離紙搬送路1042と連通する剥離紙収容部(不図示)に収容する。 The one-feed unit 1040 is, for example, a drive unit such as a drive motor by a mechanical drive operation such as a handle (not shown) being rotated by the user or an operation button being pressed by the user. When a feed drive mechanism (not shown) is driven in conjunction with an electrical drive operation such as driving the belt, the belt-like body 1023 is sent out to the release paper transport path 1042 branched from the one transport path 1041 by a predetermined length. The piece 1020 is peeled from the release paper 1022 at the branching point, and the peeled piece 1020 is sent from the discharge port 1041a of the piece conveyance path 1041 to the base 1030. Specifically, as shown in FIG. 68C, the one-feed-out portion 1040 has the piece 1020 and the adhesive layer 1021 attached to the sheet 1010 so that the end on the insertion end side of the sheet 1010 and one end of the piece 1020 overlap in plan view. It is placed on the other surface 1030b of the pedestal 1030 toward the side. Further, at this time, the one-feed unit 1040 stores the release paper 1022 from which the piece 1020 has been released in a release paper storage unit (not shown) that communicates with the release paper transport path 1042.
 巻き具1070は、図70に示すように、台座1030の一方の面1030a側のシート挿入方向Xの奥側に配置されている。更に、巻き具1070は、幅方向Yにおいて、台座1030の貫通孔1031と対応するように配置されている。更に、巻き具1070は、図69Aに示すように、例えば側面視略C字状又は略L字状等、湾曲又は折り曲げられて設けられている。更に、巻き具1070は、幅方向Yと略平行な回転軸1071を中心に回動自在に設けられている。具体的に、巻き具1070は、先端1070aが、図69Aに示すように、台座1030の一方の面1030a側に位置するように設けられた待機状態から、図69A中の矢印Aのように、台座1030のシート挿入方向Xの奥側の端部に向けて回動されて、台座1030の一方の面1030a側からシート挿入方向Xの奥側の端部を介して他方の面1030b側に移動され、次いで、他方の面1030b側において、台座1030のシート挿入方向Xの奥側の端部から台座1030の貫通孔1031まで移動するように、回動自在に設けられている。 As shown in FIG. 70, the winding tool 1070 is disposed on the back side in the sheet insertion direction X on the one surface 1030a side of the base 1030. Further, the winding tool 1070 is arranged in the width direction Y so as to correspond to the through hole 1031 of the base 1030. Furthermore, as shown in FIG. 69A, the winding tool 1070 is provided by being bent or bent, for example, in a substantially C shape or a substantially L shape in a side view. Further, the winding tool 1070 is provided so as to be rotatable about a rotation shaft 1071 substantially parallel to the width direction Y. Specifically, as shown in FIG. 69A, the winding tool 1070 is moved from a standby state in which the tip 1070a is positioned on the one surface 1030a side of the pedestal 1030 as shown in FIG. Rotate toward the back end of the seat 1030 in the sheet insertion direction X, and move from the one surface 1030a side of the base 1030 to the other surface 1030b side through the back end of the sheet insertion direction X Then, on the other surface 1030b side, the pedestal 1030 is rotatably provided so as to move from the back end in the sheet insertion direction X to the through hole 1031 of the pedestal 1030.
 そして、巻き具1070は、機械的又は電気的な駆動操作に連動して図示しない巻き具駆動機構によって、図69Aに示すように、シート1010の挿入端側の端部の一方の面1010aに一端部が貼り付けられた片1020の他端部を先端1070aが押しながら、その先端1070aが、シート1010の一方の面1010a側からシート1010の挿入端側の端部を介して他方の面1010b側に移動して、次いで、他方の面1010b側において、シート1010の挿入端側の端部側からシート1010の孔1011まで移動するように回動し、図69Bに示すように、片1020の他端部を、シート1010の一方の面1010aから他方の面1010bに亘って巻き付けて、シート1010の他方の面1010b側からシート1010の孔1011に挿入させる。更に、その後、巻き具1070は、図示しない巻き具駆動機構によって、逆方向に回動されて、先端1070aが台座1030の一方の面1030a側に位置するような待機状態に設けられる。 Then, as shown in FIG. 69A, the winding tool 1070 has one end on one surface 1010a on the insertion end side of the sheet 1010 by a winding tool driving mechanism (not shown) in conjunction with a mechanical or electrical driving operation. While the tip 1070a pushes the other end of the piece 1020 to which the portion is attached, the tip 1070a is connected to the other surface 1010b side from the one surface 1010a side of the sheet 1010 through the end portion on the insertion end side of the sheet 1010. Then, on the other surface 1010b side, the sheet 1010 is rotated so as to move from the end side on the insertion end side to the hole 1011 of the sheet 1010, and as shown in FIG. An end is wound from one surface 1010a of the sheet 1010 to the other surface 1010b, and the sheet is formed from the other surface 1010b side of the sheet 1010. It is inserted into the 010 holes 1011. Further, thereafter, the winding tool 1070 is rotated in the reverse direction by a winding tool driving mechanism (not shown), and is provided in a standby state in which the tip 1070a is positioned on the one surface 1030a side of the base 1030.
 なお、巻き具1070は、図69A及び図69Bに示すように、先端1070aが台座1030の他方の面1030b側から台座1030の貫通孔1031に挿入され、片1020の他端部が、シート1010の他方の面1010bからシート1010の孔1011に挿入された際に、巻き具1070の内周面の基端側の角部(湾曲部)の基端側押圧部1070bがシート1010の挿入端側の端面1010cと一方の面1010aとの角部1010d又はこの角部1010dに対応する片1020と当接し、巻き具1070の内周面の先端側の角部(湾曲部)の先端側押圧部1070cがシート1010の一方の面1010aと孔1011との角部(縁部)1010e又はこの角部1010eに対応する片1020と当接するように設けても良い。これにより、巻き具1070は、孔1011を有するシート1010に片1020を巻きつつ、巻かれた片1020を基端側押圧部1070b及び先端側押圧部1070cによって押圧することができ、確実に片1020をシート1010に貼り付けることができる。 69A and 69B, the winding tool 1070 has a tip 1070a inserted into the through hole 1031 of the pedestal 1030 from the other surface 1030b side of the pedestal 1030, and the other end of the piece 1020 is connected to the sheet 1010. When inserted into the hole 1011 of the sheet 1010 from the other surface 1010b, the proximal end pressing portion 1070b of the corner (curved portion) on the proximal end side of the inner peripheral surface of the winding tool 1070 is on the insertion end side of the sheet 1010. A corner 1010d between the end surface 1010c and one surface 1010a or a piece 1020 corresponding to the corner 1010d is brought into contact with a distal end side pressing portion 1070c of a corner portion (curved portion) on the distal end side of the inner peripheral surface of the winding tool 1070. Provided so as to contact a corner (edge) 1010e between one surface 1010a of the sheet 1010 and the hole 1011 or a piece 1020 corresponding to the corner 1010e. It may be. As a result, the winding tool 1070 can press the wound piece 1020 by the proximal-side pressing portion 1070b and the distal-side pressing portion 1070c while winding the piece 1020 around the sheet 1010 having the hole 1011. Can be attached to the sheet 1010.
 押圧部1080は、図70に示すように、台座1030の他方の面1030b側のシート挿入方向Xの最も手前側に配置されている。押圧部1080は、例えば、台座1030に向けて付勢されたローラや弾性片で構成されている。そして、押圧部1080は、巻き具1070によって片1020が巻き付けられたシート1010がシート挿入方向Xの手前側に向けて引き抜かれる際に、シート1010及び片1020を台座1030に向けて押圧して、片1020をシート1010に確実に接着させる。 As shown in FIG. 70, the pressing portion 1080 is disposed on the front side in the sheet insertion direction X on the other surface 1030b side of the base 1030. The pressing unit 1080 is configured by, for example, a roller or an elastic piece biased toward the pedestal 1030. The pressing unit 1080 presses the sheet 1010 and the piece 1020 toward the base 1030 when the sheet 1010 around which the piece 1020 is wound by the winding tool 1070 is pulled out toward the front side in the sheet insertion direction X. The piece 1020 is securely bonded to the sheet 1010.
<15.片巻き装置を用いた片巻き方法の説明>
 次に、片巻き装置1001を用いて、シート1010を片1020で巻き付ける片巻き付け方法について説明する。
<15. Description of a single winding method using a single winding device>
Next, a single winding method for winding the sheet 1010 with the piece 1020 using the single winding device 1001 will be described.
 先ず、図70に示すように、片巻き装置1001は、シート1010がシート挿入口1001aからシート挿入方向Xの奥側に向けて挿入される。すると、図71に示すように、片巻き装置1001には、シート1010が台座1030の他方の面1030bに載置される。更に、シート1010は、台座1030によって、高さ方向Zについて位置決めされる。 First, as shown in FIG. 70, in the single winding device 1001, the sheet 1010 is inserted from the sheet insertion opening 1001a toward the back side in the sheet insertion direction X. 71, the sheet 1010 is placed on the other surface 1030b of the pedestal 1030 in the single winding device 1001. Further, the seat 1010 is positioned in the height direction Z by the pedestal 1030.
 次いで、片巻き装置1001は、例えば、使用者によって機械的又は電気的な駆動操作が行われると、図72に示すように、片送り出し部1040によって、帯状体1023が所定長さ送り出されて、片搬送路1041と剥離紙搬送路1042との分岐地点において剥離紙1022から片1020が剥離される。そして、片巻き装置1001は、図68Cに示すように、片送り出し部1040によって、剥離紙1022から剥離された片1020が粘着層1021をシート1010側に向けて台座1030に向けて送り出されて、平面視でシート1010の挿入端側の端部と片1020の一端部とが重なるように設けられる。そして、シート1010の挿入端側の端部の一方の面1010aが片1020と当接されて、シート1010の挿入端側の端部の一方の面1010aに片1020の一端部が貼り付けられる。 Next, for example, when a mechanical or electrical driving operation is performed by the user, the single-winding device 1001 is configured to send the belt-like body 1023 by a predetermined length by the single-feed unit 1040 as shown in FIG. The piece 1020 is peeled off from the release paper 1022 at a branch point between the piece transport path 1041 and the release paper transport path 1042. Then, as shown in FIG. 68C, the single-winding device 1001 has a piece 1020 peeled from the release paper 1022 sent out toward the base 1030 with the adhesive layer 1021 facing the sheet 1010 by the one-feeding unit 1040. The sheet 1010 is provided so that the end on the insertion end side of the sheet 1010 and the one end of the piece 1020 overlap each other in plan view. Then, one surface 1010a of the end portion on the insertion end side of the sheet 1010 is brought into contact with the piece 1020, and one end portion of the piece 1020 is attached to one surface 1010a of the end portion on the insertion end side of the sheet 1010.
 次いで、図73に示すように、片巻き装置1001は、巻き具1070が幅方向Yと略平行な回転軸1071を中心に図73中の矢印A方向に回動される。この際、片巻き装置1001は、シート1010の挿入端側の端部の一方の面1010aに一端部が貼り付けられた片1020の他端部を巻き具1070の先端1070aが押しながら、その先端1070aが、シート1010の一方の面1010a側からシート1010の挿入端側の端部を介して他方の面1010b側に移動して、次いで、他方の面1010b側において、シート1010の挿入端側の端部側からシート1010の孔1011まで移動するように、巻き具1070が回動される。これにより、片巻き装置1001は、巻き具1070によって、片1020の他端部が、シート1010の一方の面1010aから他方の面1010bに亘って巻き付けられて、シート1010の他方の面1010b側からシート1010の孔1011に挿入される。したがって、シート1010には、片1020が、一方の面1010a、挿入端側の端面1010c、他方の面1010b及び孔1011の孔縁端面1011aに亘って巻き付けられる。 Next, as shown in FIG. 73, in the single winding device 1001, the winding tool 1070 is rotated in the direction of arrow A in FIG. 73 around a rotation shaft 1071 substantially parallel to the width direction Y. At this time, the single-winding device 1001 is configured such that the tip 1070a of the winding tool 1070 pushes the other end of the piece 1020 with one end affixed to one surface 1010a of the end of the sheet 1010 on the insertion end side, 1070a moves from the one surface 1010a side of the sheet 1010 to the other surface 1010b side through the end portion on the insertion end side of the sheet 1010, and then on the other surface 1010b side on the insertion end side of the sheet 1010. The winding tool 1070 is rotated so as to move from the end side to the hole 1011 of the sheet 1010. Accordingly, the one-sided winding device 1001 is wound from the one surface 1010a of the sheet 1010 to the other surface 1010b by the winding tool 1070 so that the other surface 1010b of the sheet 1010 is wound from the other surface 1010b side. The sheet 1010 is inserted into the hole 1011. Therefore, the piece 1020 is wound around the sheet 1010 across the one surface 1010 a, the end surface 1010 c on the insertion end side, the other surface 1010 b, and the hole edge end surface 1011 a of the hole 1011.
 次いで、図74に示すように、片巻き装置1001は、巻き具1070が、幅方向Yと略平行な回転軸1071を中心に図74中の矢印B方向に回動されて、先端1070aが台座1030の一方の面1030a側に配置された待機位置に戻される。 Next, as shown in FIG. 74, in the single winding device 1001, the winding tool 1070 is rotated in the direction of arrow B in FIG. 74 around the rotation shaft 1071 substantially parallel to the width direction Y, and the tip 1070 a is a pedestal. 1030 is returned to the standby position arranged on the one surface 1030a side.
 次いで、図75に示すように、片巻き装置1001は、片1020が巻き付けられたシート1010がシート挿入方向Xの手前側に向けて引き抜かれると、シート1010に巻き付けられている片1020の他端部が、台座1030によって、シート1010の一方の面1010a側に折り曲げられて巻き付けられる。そして、図76に示すように、片巻き装置1001は、シート1010の一方の面1010aに巻き付けられている片1020上に重ねて巻き付けられる。これにより、シート1010には、一方の面1010a、挿入端側の端面1010c、他方の面1010b及び孔1011の孔縁端面1011aに亘って、片1020が1周巻き付けられる。 Next, as shown in FIG. 75, when the sheet 1010 around which the piece 1020 is wound is pulled out toward the front side in the sheet insertion direction X, the one-side winding device 1001 is connected to the other end of the piece 1020 that is wound around the sheet 1010. The portion is bent and wound around the one surface 1010a side of the sheet 1010 by the pedestal 1030. And as shown in FIG. 76, the piece winding apparatus 1001 is piled up on the piece 1020 currently wound around the one surface 1010a of the sheet | seat 1010, and is wound. As a result, the sheet 1010 is wound once around the sheet 1010 over the one surface 1010a, the end surface 1010c on the insertion end side, the other surface 1010b, and the hole edge end surface 1011a of the hole 1011.
 次いで、図76に示すように、片巻き装置1001は、さらにシート1010がシート挿入方向Xの手前側に向けて引き抜かれると、押圧部1080によってシート1010及び片1020が台座1030に向けて押圧されて、片1020がシート1010に貼り付けられる。 Next, as illustrated in FIG. 76, when the sheet 1010 is further pulled out toward the front side in the sheet insertion direction X, the sheet 1010 and the piece 1020 are pressed toward the base 1030 by the pressing unit 1080. Then, the piece 1020 is attached to the sheet 1010.
 以上のようにして、片巻き装置1001は、孔1011を有するシート1010が片1020に巻き付けられる。 As described above, in the single winding device 1001, the sheet 1010 having the hole 1011 is wound around the piece 1020.
<16.片巻き装置の作用効果の説明>
 以上のように、本発明を適用した片巻き装置1001は、孔1011を有するシート1010に片1020を巻き付ける際に、巻き具1070の先端1070aが孔1011を有するシート1010の一方の面1010aに取り付けられた片1020を押しながら、その先端1070aが、シート1010の一方の面1010a側からシート1010の挿入端側の端部を介して他方の面1010b側に移動して、次いで、他方の面1010b側において、シート1010の挿入端側の端部側からシート1010の孔1011まで移動するように、巻き具1070が回動されることで、孔1011を有するシート1010の一方の面1010aに取り付けられた片1020を、シート1010の一方の面1010aから他方の面1010bに亘って巻き付けて、シート1010の他方の面1010b側からシート1010の孔1011に挿入して、シート1010に片1020を巻き付けるので、どのようなシートであっても、シワや折り曲げ傷を付けずに綺麗な仕上がりで、確実にシート1010に片1020を巻き付けることができる。
<16. Explanation of the effect of the single winding device>
As described above, when the piece 1020 is wound around the sheet 1010 having the hole 1011, the tip end 1070 a of the winding tool 1070 is attached to one surface 1010 a of the sheet 1010 having the hole 1011. While pushing the formed piece 1020, the tip 1070a moves from the one surface 1010a side of the sheet 1010 to the other surface 1010b side through the end of the insertion end side of the sheet 1010, and then the other surface 1010b. On the side, the winding tool 1070 is rotated so as to move from the end side of the insertion end side of the sheet 1010 to the hole 1011 of the sheet 1010, so that the sheet 1010 having the hole 1011 is attached to one surface 1010 a. The piece 1020 extends from one surface 1010a of the sheet 1010 to the other surface 1010b. Since the sheet 1010 is inserted into the hole 1011 of the sheet 1010 from the other surface 1010b side of the sheet 1010 and the piece 1020 is wound around the sheet 1010, any sheet is beautiful without being wrinkled or bent. The piece 1020 can be reliably wound around the sheet 1010 with a satisfactory finish.
<17.片巻き装置の第1の変形例の説明>
 なお、片巻き装置1001は、図77Aに示すように、巻き具が二部材で構成されるようにしても良い。例えば、二部材で構成される巻き具1090は、幅方向Yと略平行な回転軸1091を中心に回動自在に設けられた第1の巻き部材1092と、第1の巻き部材1092に回動自在に連結された第2の巻き部材1093とを有している。更に、巻き具1090は、図77B及び図77Cに示すように、全体として、巻き具1070と同様に、例えば側面視略C字状又は略L字状等に設けられている。
<17. Description of First Modification of Single-Wound Device>
In addition, as shown in FIG. 77A, the single-winding device 1001 may be configured such that the winding tool is composed of two members. For example, a two-member winding tool 1090 is rotated about a first winding member 1092 that is rotatable about a rotation shaft 1091 that is substantially parallel to the width direction Y, and a first winding member 1092. And a second winding member 1093 that is freely connected. Furthermore, as shown in FIGS. 77B and 77C, the winding tool 1090 is provided as a whole in, for example, a substantially C shape or a substantially L shape in a side view as in the case of the winding tool 1070.
 そして、巻き具1090は、図77Aに示すように、巻き具1070と同様に、機械的又は電気的な駆動操作に連動して図示しない巻き具駆動機構によって、シート1010の挿入端側の端部の一方の面1010aに一端部が貼り付けられた片1020の他端部を第2の巻き部材1093の先端1093aが押しながら、図77B及び図77Cに示すように、第2の巻き部材1093の先端1093aが、シート1010の一方の面1010a側からシート1010の挿入端側の端部を介して他方の面1010b側に移動して、次いで、他方の面1010b側において、シート1010の挿入端側の端部側からシート1010の孔1011まで移動するように回動されて、片1020の他端部を、シート1010の一方の面1010aから他方の面1010bに亘って巻き付けて、シート1010の他方の面1010b側からシート1010の孔1011に挿入して、シート1010に片1020を巻き付ける。 77A, as shown in FIG. 77A, the winding tool 1090 has an end portion on the insertion end side of the sheet 1010 by a winding tool driving mechanism (not shown) in conjunction with a mechanical or electrical driving operation. As shown in FIGS. 77B and 77C, the other end of the piece 1020 whose one end is attached to one surface 1010a of the second surface 1010a is pushed by the tip 1093a of the second winding member 1093. The leading end 1093a moves from the one surface 1010a side of the sheet 1010 to the other surface 1010b side through the end portion on the insertion end side of the sheet 1010, and then on the other surface 1010b side, the insertion end side of the sheet 1010 The other end of the piece 1020 is moved from one surface 1010a of the sheet 1010 by being rotated so as to move from the end side of the sheet 1010 to the hole 1011 of the sheet 1010. Wound over the square face 1010b, is inserted from the other surface 1010b side of the sheet 1010 into the hole 1011 of the sheet 1010, wound strip 1020 sheets 1010.
 以上のように、片巻き装置1001は、巻き具1090が二部品で構成されるものであっても、一部品で構成される巻き具1070と同様に、どのようなシートであっても、シワや折り曲げ傷を付けずに綺麗な仕上がりで、確実にシート1010に片1020を巻き付けることができる。 As described above, the single-winding device 1001 has a wrinkle on any sheet, regardless of whether the winding tool 1090 is composed of two parts or the winding tool 1070 composed of one part. The piece 1020 can be reliably wound around the sheet 1010 with a beautiful finish without causing any bending damage.
<18.片巻き装置の第2の変形例の説明>
 更に、片巻き装置1001は、パンチ部を設けても良く、別体のパンチ装置等によって予め孔1011が形成されたシート1010を使用することで、パンチ部を省略するようにしても良い。
<18. Description of Second Modification of Single Roller>
Further, the single winding device 1001 may be provided with a punch portion, or the punch portion may be omitted by using a sheet 1010 in which holes 1011 are formed in advance by a separate punch device or the like.
<19.片巻き装置の第3の変形例の説明>
 更に、片巻き装置1001は、図78Aに示すように、台座1030の他方の面1030bに、シート1010の挿入端側の端面1010cと当接してシート1010の位置決めを行う位置決め部材1100を設けるようにしても良い。この位置決め部材1100は、例えば、柱部材又は板部材等で構成され、巻き具1070(巻き具1090)の回動を妨げないように、幅方向Yにおいて、巻き具1070と位置を異ならせて設けられている。ここでは、略L字状の板部材で構成され、台座1030の他方の面1030bのシート挿入方向Xの奥側の端部に設けられている。これにより、位置決め部材1100は、高さ方向Zに向けて立設された当接部1100aによって、シート1010のシート挿入方向Xについて位置決めを行い、当接部1100aの上端に設けられた抑え部1100bによって、シート1010の挿入端側の端部の浮き上がりを防止する。
<19. Description of Third Modification of Single-Wound Device>
Further, as shown in FIG. 78A, the single-winding device 1001 is provided with a positioning member 1100 for positioning the sheet 1010 in contact with the end surface 1010c on the insertion end side of the sheet 1010 on the other surface 1030b of the base 1030. May be. The positioning member 1100 is formed of, for example, a pillar member or a plate member, and is provided at a position different from that of the winding tool 1070 in the width direction Y so as not to hinder the rotation of the winding tool 1070 (winding tool 1090). It has been. Here, it is formed of a substantially L-shaped plate member, and is provided at the end on the far side in the sheet insertion direction X of the other surface 1030b of the pedestal 1030. Accordingly, the positioning member 1100 positions the sheet 1010 in the sheet insertion direction X by the contact portion 1100a standing in the height direction Z, and the holding portion 1100b provided at the upper end of the contact portion 1100a. Thus, the end of the sheet 1010 on the insertion end side is prevented from rising.
 以上のように、片巻き装置1001は、位置決め部材1100を設けることにより、シート1010を、高さ方向Zに加え、シート1010のシート挿入方向Xについても位置決めすることができるので、図78Bに示すように、どのようなシートであっても、シワや折り曲げ傷を付けずに綺麗な仕上がりで、確実にシート1010に片1020を巻き付けることができる。 As described above, the single-winding device 1001 can position the sheet 1010 not only in the height direction Z but also in the sheet insertion direction X of the sheet 1010 by providing the positioning member 1100, which is illustrated in FIG. 78B. Thus, whatever the sheet, the piece 1020 can be reliably wound around the sheet 1010 with a beautiful finish without wrinkling or bending damage.
<20.片巻き装置の第4の変形例の説明>
 更に、片巻き装置1001は、図79Aに示すように、巻き具1070(巻き具1090)と、片送り出し部1040(図79では不図示)と、シート1010の挿入端側の端面1010cと当接してシート1010の位置決めを行う位置決め部材1110とを備え、台座1030、押圧部1080等を省略するようにしても良い。この位置決め部材1110は、例えば、柱部材又は板部材等で構成され、巻き具1070の回動を妨げないように、幅方向Yにおいて、巻き具1070と位置を異ならせて設けられている。ここでは、柱部材で構成され、巻き具1070の上方に設けられている。このような片巻き装置1001であっても、図79Bに示すように、孔1011を有するシート1010に片1020を巻き付けることができる。
<20. Description of Fourth Modified Example of Single Roller>
Further, as shown in FIG. 79A, the single winding device 1001 abuts on a winding tool 1070 (winding tool 1090), a single feeding portion 1040 (not shown in FIG. 79), and an end surface 1010c on the insertion end side of the sheet 1010. The positioning member 1110 for positioning the sheet 1010 may be provided, and the pedestal 1030, the pressing unit 1080, and the like may be omitted. The positioning member 1110 is constituted by, for example, a pillar member or a plate member, and is provided at a position different from that of the winding tool 1070 in the width direction Y so as not to prevent the rotation of the winding tool 1070. Here, it is composed of a pillar member and is provided above the winding tool 1070. Even in such a single winding device 1001, the piece 1020 can be wound around the sheet 1010 having the hole 1011 as shown in FIG. 79B.
<21.片巻き装置の第5の変形例の説明>
 更に、片巻き装置1001は、図80Aに示すように、少なくとも巻き具1070(巻き具1090)と、片送り出し部1040とを備えるものであれば良く、例えば、台座1030、押圧部1080等を省略しても良い。このような片巻き装置1001であっても、図80Bに示すように、孔1011を有するシート1010に片1020を巻き付けることができる。
<21. Description of the fifth modification of the single winding device>
Further, as shown in FIG. 80A, the single winding device 1001 only needs to include at least a winding tool 1070 (winding tool 1090) and a single feeding portion 1040. For example, the base 1030, the pressing portion 1080, and the like are omitted. You may do it. Even in such a single winding device 1001, the piece 1020 can be wound around the sheet 1010 having the hole 1011 as shown in FIG. 80B.
<22.片巻き装置の第6の変形例の説明>
 更に、片巻き装置1001は、巻き具1070(巻き具1090)だけで、孔1011を有するシート1010に片1020を巻き付けることに限定されるものではなく、図81A~図81Cに示すように、第1の巻き具1070と第2の巻き具1120とで、孔1011を有するシート1010に片1020を巻き付けるようにしても良い。すなわち、巻き具1070を回動させるといった、一部品一工程ではなく、第1の巻き具1070を回動させると共に第2の巻き具1120を駆動させるといった、二部品二工程によって、孔1011を有するシート1010に片1020を巻き付けるようにしても良い。
<22. Description of Sixth Modification of Single Roller>
Further, the single winding device 1001 is not limited to winding the piece 1020 around the sheet 1010 having the hole 1011 with only the winding tool 1070 (winding tool 1090). As shown in FIGS. 81A to 81C, The piece 1020 may be wound around the sheet 1010 having the hole 1011 with the first winding tool 1070 and the second winding tool 1120. In other words, the hole 1011 is formed not by one component one step such as rotating the winding tool 1070 but by two component two steps such as rotating the first winding tool 1070 and driving the second winding tool 1120. The piece 1020 may be wound around the sheet 1010.
 第2の巻き具1120は、図81Aに示すように、台座1030の他方の面1030b側の台座1030の貫通孔1031に対応する位置に配置されている。ここでは、第2の巻き具1120は、シート挿入方向Xの奥側に傾斜して配置されている。更に、第2の巻き具1120は、例えば、柱部材(ピン部材)等で構成されている。更に、第2の巻き具1120は、巻き具駆動機構1121等によって台座1030に対して近接離間可能に設けられ、台座1030の貫通孔1031に挿通可能に設けられている。 The second winding tool 1120 is disposed at a position corresponding to the through hole 1031 of the base 1030 on the other surface 1030b side of the base 1030, as shown in FIG. 81A. Here, the second winding tool 1120 is disposed to be inclined to the back side in the sheet insertion direction X. Furthermore, the 2nd winding tool 1120 is comprised by the pillar member (pin member) etc., for example. Further, the second winding tool 1120 is provided so as to be able to approach and separate from the pedestal 1030 by the winding tool driving mechanism 1121 and the like, and is provided so as to be able to be inserted into the through hole 1031 of the pedestal 1030.
 そして、片巻き装置1001は、孔1011を有するシート1010に片1020を巻き付ける際に、先ず、図81Bに示すように、巻き具1070を回動させることで、巻き具1070によって、シート1010の一方の面1010aに取り付けられた片1020の他端部をシート1010の一方の面1010aから他方の面1010bに亘って巻き付ける。次いで、片巻き装置1001は、図81Cに示すように、第2の巻き具1120を台座1030に近接するように移動させて、第2の巻き具1120によって、片1020の他端部をシート1010の他方の面1010bからシート1010の孔1011に挿入させる。以上のようにして、片巻き装置1001は、二部品二工程で孔1011を有するシート1010に片1020を巻き付けるようにしても良い。 Then, when winding the piece 1020 around the sheet 1010 having the hole 1011, the piece winding device 1001 first rotates the winding tool 1070 as shown in FIG. The other end of the piece 1020 attached to the surface 1010a is wound from one surface 1010a of the sheet 1010 to the other surface 1010b. Next, as illustrated in FIG. 81C, the single winding device 1001 moves the second winding tool 1120 so as to be close to the base 1030, and the second winding tool 1120 moves the other end of the piece 1020 to the sheet 1010. The other surface 1010b is inserted into the hole 1011 of the sheet 1010. As described above, the piece winding device 1001 may wind the piece 1020 around the sheet 1010 having the hole 1011 in two parts and two steps.
 更に、片巻き装置1001は、図81Bに示すように、巻き具1070による片1020の他端部の巻き付けが完了した後に、第2の巻き具1120を台座1030に近接するように移動させて、片1020の他端部をシート1010の他方の面1010bからシート1010の孔1011に挿入させることに限定されるものではなく、図81Dに示すように、巻き具1070によって片1020の他端部をシート1010の他方の面1010bに巻き付けている際に、第2の巻き具1120を台座1030に近接するように移動させて、片1020の他端部をシート1010の他方の面1010bからシート1010の孔1011に挿入させるようにしても良い。 Further, as shown in FIG. 81B, the single winding device 1001 moves the second winding tool 1120 so as to be close to the base 1030 after the winding of the other end portion of the piece 1020 by the winding tool 1070 is completed. The other end of the piece 1020 is not limited to being inserted into the hole 1011 of the sheet 1010 from the other surface 1010b of the sheet 1010, and as shown in FIG. When the sheet 1010 is wound around the other surface 1010b, the second winding tool 1120 is moved closer to the pedestal 1030, and the other end of the piece 1020 is moved from the other surface 1010b of the sheet 1010 to the sheet 1010. It may be inserted into the hole 1011.
<23.片巻き装置の第7の変形例の説明>
 更に、片巻き装置1001は、図82A~図82Cに示すように、巻き具1070をシート1010の一方の面1010a側から他方の面1010b側に移動可能に設けるようにしても良い。
<23. Description of Seventh Modification of Single-Wound Device>
Further, as shown in FIGS. 82A to 82C, the single-winding device 1001 may be provided so that the winding tool 1070 is movable from the one surface 1010a side of the sheet 1010 to the other surface 1010b side.
 具板的に、先ず、巻き具1070は、図82Aに示すような、シート1010の一方の面1010a側に配置され且つ先端1070aがシート1010の一方の面1010a側に位置する第1の待機状態から、機械的又は電気的な駆動操作に連動して図示しない巻き具駆動機構によって回動されて、図82Bに示すように、先端1070aがシート1010の挿入端側の端部の一方の面1010aに一端部が貼り付けられた片1020の他端部を押しながら、シート1010の一方の面1010a側からシート1010の挿入端側の端部を介して他方の面1010b側に移動する。これにより、巻き具1070は、片1020の他端部を、シート1010の一方の面1010aからシート1010の挿入端側の端部を介して他方の面1010bに亘って巻き付ける。次いで、巻き具1070は、図示しない巻き具駆動機構によって逆方向に回動されて、第1の待機状態に戻される。 First, the winding tool 1070 is arranged on the one surface 1010a side of the sheet 1010 and the leading end 1070a is located on the one surface 1010a side of the sheet 1010 as shown in FIG. 82A. Then, the leading end 1070a is rotated by a winding tool driving mechanism (not shown) in conjunction with the mechanical or electrical driving operation, and the leading end 1070a is one surface 1010a at the end of the insertion end side of the sheet 1010 as shown in FIG. 82B. While the other end of the piece 1020 having one end attached thereto is pushed, the sheet 1010 moves from the one surface 1010a side to the other surface 1010b side through the end portion on the insertion end side of the sheet 1010. Thereby, the winding tool 1070 winds the other end portion of the piece 1020 from the one surface 1010a of the sheet 1010 to the other surface 1010b via the end portion on the insertion end side of the sheet 1010. Next, the winding tool 1070 is rotated in the reverse direction by a winding tool driving mechanism (not shown) and returned to the first standby state.
 次いで、巻き具1070は、第1の待機状態から、図示しない巻き具移動機構によって、図82Bに示すように、例えば回転軸1071がシート1010の一方の面1010a側から他方の面1010b側に移動されることで、シート1010の他方の面1010a側に配置され且つ先端1070aがシート1010の他方の面1010a側に位置する第2の待機状態に設けられる。この際、巻き具1070は、例えば、回転軸1071を中心に第1の待機状態から所定角度回動されながら、回転軸1071がシート1010から迂回するように円弧状やU字状やコ字状に移動される。例えば、巻き具1070は、これに限定されるものではないが、回転軸1071を中心に第1の待機状態から180度回動されながら回転軸1071が円弧状に移動されて、任意の点を中心に点対象の位置に移動される。 Next, the winding tool 1070 is moved from the first standby state by a winding tool moving mechanism (not shown), for example, the rotating shaft 1071 is moved from one surface 1010a side of the sheet 1010 to the other surface 1010b side as shown in FIG. 82B. As a result, the second surface 1010a of the sheet 1010 is disposed on the other surface 1010a side, and the leading end 1070a is provided on the other surface 1010a side of the sheet 1010. At this time, the winding tool 1070 is, for example, arcuate, U-shaped, or U-shaped so that the rotating shaft 1071 bypasses the seat 1010 while being rotated by a predetermined angle from the first standby state around the rotating shaft 1071. Moved to. For example, the winding tool 1070 is not limited to this, but the rotary shaft 1071 is moved in an arc shape while being rotated 180 degrees from the first standby state around the rotary shaft 1071, and an arbitrary point is set. It is moved to the point target position in the center.
 次いで、シート1010の他方の面1010b側に移動された巻き具1070は、第2の待機状態から、図示しない巻き具駆動機構によって回動されて、先端1070aが一方の面1010aから他方の面1010bに亘って巻き付けられた片1020の他端部を押しながら、図82Cに示すように、シート1010の他方の面1010b側からシート1010の孔1011を介して一方の面1010a側に移動する。これにより、巻き具1070は、片1020の他端部を、シート1010の他方の面1010b側からシート1010の孔1011を介して一方の面1010aに亘って巻き付ける。次いで、巻き具1070は、図示しない巻き具駆動機構によって逆方向に回動されて第2の待機状態に戻され、その後、図示しない巻き具移動機構によってシート1010の他方の面1010b側から一方の面1010a側に移動されて第1の待機状態に戻される。 Next, the winding tool 1070 moved to the other surface 1010b side of the sheet 1010 is rotated from the second standby state by a winding tool driving mechanism (not shown), and the leading end 1070a is moved from the one surface 1010a to the other surface 1010b. As shown in FIG. 82C, the sheet 1010 is moved from the other surface 1010b side of the sheet 1010 to the one surface 1010a side through the hole 1011 of the sheet 1010 while pushing the other end of the piece 1020 wound over the sheet 1020. Thereby, the winding tool 1070 winds the other end portion of the piece 1020 from the other surface 1010b side of the sheet 1010 over the one surface 1010a through the hole 1011 of the sheet 1010. Next, the winding tool 1070 is rotated in the reverse direction by a winding tool driving mechanism (not shown) and returned to the second standby state. Thereafter, the winding tool 1070 is moved from the other surface 1010b side of the sheet 1010 to one side by the winding tool moving mechanism (not shown). It is moved to the surface 1010a side and returned to the first standby state.
 以上のように、片巻き装置1001は、巻き具1070がシート1010の一方の面1010a側から他方の面1010b側に移動可能に設けられるものであっても、シワや折り曲げ傷を付けずに綺麗な仕上がりで、確実にシート1010に片1020を巻き付けることができる。 As described above, the single-winding device 1001 is clean without wrinkles or bending damage even if the winding tool 1070 is provided so as to be movable from the one surface 1010a side of the sheet 1010 to the other surface 1010b side. The piece 1020 can be reliably wound around the sheet 1010 with a satisfactory finish.
 なお、巻き具1070は、シート1010の一方の面1010a側にある際に、片1020の他端部を、シート1010の一方の面1010aからシート1010の挿入端側の端部及び他方の面1010bを介して孔1011に亘って巻き付けて、その後、シート1010の他方の面1010a側に移動された際に、片1020の他端部を、シート1010の孔1011から一方の面1010aに亘って巻き付けるようにしても良い。 When the winding tool 1070 is on the one surface 1010a side of the sheet 1010, the other end portion of the piece 1020 is changed from the one surface 1010a of the sheet 1010 to the end portion on the insertion end side of the sheet 1010 and the other surface 1010b. And then the other end of the piece 1020 is wound from the hole 1011 of the sheet 1010 to the one surface 1010a when the sheet 1010 is moved to the other surface 1010a side. You may do it.
 また、巻き具1070は、シート1010の一方の面1010aに取り付けられた片1020を、シート1010の一方の面1010aから他方の面1010bに亘って巻き付けた後、シート1010の一方の面1010a側から他方の面1010b側に移動させて、シート1010の他方の面1010bから孔1011に挿入させることに限定されるものではなく、図83A~図83Cに示すように、シート1010の一方の面1010a側から他方の面1010b側に移動させつつ、シート1010の一方の面1010aに取り付けられた片1020を、シート1010の一方の面1010aから他方の面1010bに亘って巻き付けて、シート1010の他方の面1010bから孔1011に挿入させるようにしても良い。 Further, the winding tool 1070 winds the piece 1020 attached to one surface 1010a of the sheet 1010 from one surface 1010a of the sheet 1010 to the other surface 1010b, and then from the one surface 1010a side of the sheet 1010. It is not limited to being moved to the other surface 1010b side and inserted into the hole 1011 from the other surface 1010b of the sheet 1010, but as shown in FIGS. 83A to 83C, the one surface 1010a side of the sheet 1010 The piece 1020 attached to one surface 1010a of the sheet 1010 is wound from one surface 1010a to the other surface 1010b of the sheet 1010 while moving from the other surface 1010b to the other surface 1010b side. You may make it insert in the hole 1011 from 1010b.
 具体的に、先ず、巻き具1070は、図83Aに示すような第1の待機状態から、図示しない巻き具移動機構によって、図83Bに示すように、シート1010の一方の面1010a側から他方の面1010b側に移動させる。それと同時に、巻き具1070は、図示しない巻き具駆動機構によって回動され、図83Bに示すように、先端1070aがシート1010の挿入端側の端部の一方の面1010aに一端部が貼り付けられた片1020の他端部を押しながら、シート1010の一方の面1010a側からシート1010の挿入端側の端部を介して他方の面1010b側に移動し、他方の面1010b側において、シート1010の挿入端側の端部側からシート1010の孔1011まで移動する。更に、巻き具1070は、図83Cに示すように、先端1070aがシート1010の孔1011からシート1010の一方の面1010a側に移動する。これらの一連の動きによって、巻き具1070は、片1020の他端部を、シート1010の一方の面1010aからシート1010の挿入端側の端部を介して他方の面1010bに亘って巻き付け、その後、シート1010の他方の面1010b側からシート1010の孔1011を介して一方の面1010aに亘って巻き付ける。次いで、巻き具1070は、図示しない巻き具移動機構及び図示しない巻き具駆動機構によって逆方向に回動されて、第1の待機状態に戻される。 Specifically, first, the winding tool 1070 is moved from the first standby state as shown in FIG. 83A by the winding tool moving mechanism (not shown) to the other side from the one surface 1010a side of the sheet 1010 as shown in FIG. 83B. Move to the surface 1010b side. At the same time, the winding tool 1070 is rotated by a winding tool driving mechanism (not shown), and as shown in FIG. 83B, one end of the leading end 1070a is affixed to one surface 1010a on the insertion end side of the sheet 1010. While pressing the other end portion of the sheet 1020, the sheet 1010 moves from the one surface 1010a side to the other surface 1010b side through the end portion on the insertion end side of the sheet 1010, and on the other surface 1010b side, the sheet 1010 From the end side of the insertion end side to the hole 1011 of the sheet 1010. Further, as shown in FIG. 83C, the leading end 1070a of the winding tool 1070 moves from the hole 1011 of the sheet 1010 to the one surface 1010a side of the sheet 1010. By these series of movements, the winding tool 1070 winds the other end portion of the piece 1020 from the one surface 1010a of the sheet 1010 to the other surface 1010b through the end portion on the insertion end side of the sheet 1010. The sheet 1010 is wound around the one surface 1010a through the hole 1011 of the sheet 1010 from the other surface 1010b side. Next, the winding tool 1070 is rotated in the reverse direction by a winding tool moving mechanism (not shown) and a winding tool driving mechanism (not shown), and returned to the first standby state.
 以上のように、片巻き装置1001は、巻き具1070をシート1010の一方の面1010a側から他方の面1010b側に移動可能に設けると共に、シート1010の一方の面1010aから他方の面1010bに移動させつつ回転軸1071を中心に回動させてシート1010に片1020を巻き付けるものであっても、シワや折り曲げ傷を付けずに綺麗な仕上がりで、確実にシート1010に片1020を巻き付けることができる。 As described above, the single-winding device 1001 is provided so that the winding tool 1070 can be moved from the one surface 1010a side of the sheet 1010 to the other surface 1010b side, and moved from the one surface 1010a of the sheet 1010 to the other surface 1010b. Even if the sheet 1010 is wound around the sheet 1010 while rotating around the rotation shaft 1071, the sheet 1010 can be reliably wound around the sheet 1010 with a beautiful finish without causing wrinkles or bending damage. .
<24.片巻き装置の第8の変形例の説明>
 更に、片巻き装置1001は、シート1010に片1020を巻き付ける際に、先端1070aが片1020を押しながらシート1010の挿入端側の端部側からシート1010の孔1011まで移動するように回動する巻き具1070の代わりに、図84A~図84Cに示すように、シート1010に片1020を巻き付ける際に、先端1130aが片1020を押しながらシート1010の孔1011からシート1010の挿入端側の端部側まで移動するように回動する巻き具1130を備えるようにしても良い。
<24. Explanation of Eighth Modification of Single-winding Device>
Further, when the piece 1020 is wound around the sheet 1010, the piece winding device 1001 rotates so that the tip 1070a moves from the end side on the insertion end side of the sheet 1010 to the hole 1011 of the sheet 1010 while pushing the piece 1020. As shown in FIGS. 84A to 84C instead of the winding tool 1070, when the piece 1020 is wound around the sheet 1010, the end 1130a pushes the piece 1020 while pushing the piece 1020 to the end of the sheet 1010 on the insertion end side. You may make it provide the winding tool 1130 rotated so that it may move to the side.
 この巻き具1130は、図84Aに示すように、シート1010の一方の面1010a側のシート挿入方向Xの奥側に、先端1130aをシート挿入方向Xの手前側に向けて配置されることと、回動方向が異なる以外は巻き具1070とほぼ同じ構成を有する。そして、巻き具1130は、巻き具1070の先端1070aが、シート1010の一方の面1010a側、挿入端側の端部側、他方の面1010b側、孔1011の順に移動していたのに対して、先端1130aが、一方の面1010a側、孔1011、他方の面1010b側、挿入端側の端部側の順に移動する。 As shown in FIG. 84A, the winding tool 1130 is disposed on the back side in the sheet insertion direction X on the one surface 1010a side of the sheet 1010 with the tip 1130a facing the front side in the sheet insertion direction X; It has substantially the same configuration as the winding tool 1070 except that the rotation direction is different. In the winding tool 1130, the tip 1070a of the winding tool 1070 moves in the order of the one surface 1010a side of the sheet 1010, the end side on the insertion end side, the other surface 1010b side, and the hole 1011. The tip 1130a moves in the order of the one surface 1010a side, the hole 1011, the other surface 1010b side, and the end side on the insertion end side.
 具体的に、先ず、巻き具1130は、図84Aに示すような、シート1010の一方の面1010a側に配置され且つ先端1130aがシート1010の一方の面1010a側に位置する待機状態から、機械的又は電気的な駆動操作に連動して図示しない巻き具駆動機構によって回動されて、図84Bに示すように、先端1130aがシート1010の挿入端側の端部の一方の面1010aに貼り付けられた片1020の一端部を押しながら、シート1010の一方の面1010a側からシート1010の孔1011を介して他方の面1010b側に移動する。更に、巻き具1070は、図84Cに示すように、他方の面1010b側において、先端1130aがシート1010の孔1011からシート1010の挿入端側の端部側まで移動する。これらの一連の動きによって、巻き具1130は、片1020の一端部を、シート1010の一方の面1010aから孔1011を介して他方の面1010bに3面に亘って巻き付ける。次いで、巻き具1130は、図示しない巻き具駆動機構によって逆方向に回動されて待機状態に戻される。 Specifically, first, the winding tool 1130 is mechanically moved from a standby state in which the front end 1130a is located on the one surface 1010a side of the sheet 1010 and the front end 1130a is disposed on the one surface 1010a side of the sheet 1010 as shown in FIG. Alternatively, the leading end 1130a is attached to one surface 1010a of the end portion on the insertion end side of the sheet 1010 as shown in FIG. 84B by being rotated by a winding tool driving mechanism (not shown) in conjunction with the electric driving operation. While pressing one end of the piece 1020, the sheet 1010 moves from the one surface 1010 a side to the other surface 1010 b side through the hole 1011 of the sheet 1010. Further, as shown in FIG. 84C, the winding tool 1070 has the leading end 1130a moving from the hole 1011 of the sheet 1010 to the end side of the insertion end side of the sheet 1010 on the other surface 1010b side. By these series of movements, the winding tool 1130 winds one end of the piece 1020 from the one surface 1010a of the sheet 1010 to the other surface 1010b through the hole 1011 over three surfaces. Next, the winding tool 1130 is rotated in the reverse direction by a winding tool driving mechanism (not shown) and returned to the standby state.
 以上のように、片巻き装置1001は、シート1010に片1020を巻き付ける際に、先端1130aが片1020を押しながらシート1010の孔1011からシート1010の挿入端側の端部側まで移動するように回動する巻き具1130を備えるものであっても、シワや折り曲げ傷を付けずに綺麗な仕上がりで、確実にシート1010に片1020を巻き付けることができる。 As described above, when the piece 1020 is wound around the sheet 1010, the single-winding device 1001 is configured so that the tip 1130a moves from the hole 1011 of the sheet 1010 to the end side on the insertion end side of the sheet 1010 while pushing the piece 1020. Even with the rotating winding tool 1130, the piece 1020 can be reliably wound around the sheet 1010 with a beautiful finish without causing wrinkles or bending scratches.
 なお、片巻き装置1001は、図85A~図85Cに示すように、シート1010に片1020を巻き付ける際に、先端1130aが片1020を押しながらシート1010の孔1011からシート1010の挿入端側の端部側まで移動するように回動する巻き具1130を備えると共に、巻き具1130とは回動方向が異なり、シート1010に片1020を巻き付ける際に、先端1070aが片1020を押しながらシート1010の挿入端側の端部側からシート1010の孔1011まで移動するように回動する巻き具1070を備えるようにしても良い。 As shown in FIGS. 85A to 85C, when the piece 1020 is wound around the sheet 1010, the one-sided winding device 1001 pushes the piece 1020 while the tip 1130a pushes the piece 1020 to the end on the insertion end side of the sheet 1010. A winding tool 1130 that rotates so as to move to the section side, and the rotation direction is different from that of the winding tool 1130. When the piece 1020 is wound around the sheet 1010, the tip 1070a inserts the sheet 1010 while pressing the piece 1020. You may make it provide the winding tool 1070 rotated so that it may move to the hole 1011 of the sheet | seat 1010 from the edge part side of an end side.
 具体的に、先ず、巻き具1130は、図85Aに示すような、シート1010の一方の面1010a側に配置され且つ先端1130aがシート1010の一方の面1010a側に位置する待機状態から、図示しない巻き具駆動機構によって回動されて、図85Bに示すように、先端1130aがシート1010の挿入端側の端部の一方の面1010aに貼り付けられた片1020の一端部を押しながら、シート1010の一方の面1010a側からシート1010の孔1011を介して他方の面1010b側又はシート1010の挿入端側の端部側まで移動する。これにより、巻き具1130は、片1020の一端部を、シート1010の一方の面1010aから孔1011を介して他方の面1010bに亘って巻き付ける。次いで、巻き具1130は、図示しない巻き具駆動機構によって逆方向に回動されて、待機状態に戻される。 Specifically, first, the winding tool 1130 is not illustrated from a standby state in which the winding 1130 is disposed on the one surface 1010a side of the sheet 1010 and the leading end 1130a is positioned on the one surface 1010a side of the sheet 1010 as shown in FIG. As shown in FIG. 85B, the sheet 1010 is rotated while being pushed by the one end portion of the piece 1020 attached to the one surface 1010a of the end portion on the insertion end side of the sheet 1010 by being rotated by the winding drive mechanism. It moves from the one surface 1010a side to the other surface 1010b side or the end side of the insertion end side of the sheet 1010 through the hole 1011 of the sheet 1010. Thereby, the winding tool 1130 winds one end portion of the piece 1020 from the one surface 1010a of the sheet 1010 to the other surface 1010b through the hole 1011. Next, the winding tool 1130 is rotated in the reverse direction by a winding tool driving mechanism (not shown) and returned to the standby state.
 次いで、巻き具1070は、図85Bに示すような、シート1010の一方の面1010a側に配置され且つ先端1070aがシート1010の一方の面1010a側に位置する待機状態から、図示しない巻き具駆動機構によって回動されて、図85Cに示すように、先端1070aが片1020の他端部を押しながらシート1010の一方の面1010a側からシート1010の挿入端側の端部を介して他方の面1010b側又はシート1010の孔1011まで移動する。これにより、巻き具1070は、片1020の他端部を、シート1010の一方の面1010aからシート1010の挿入端側の端部を介して他方の面1010bに亘って巻き付ける。その後、巻き具1070は、図示しない巻き具駆動機構によって逆方向に回動されて、待機状態に戻される。 Next, the winding tool 1070 is disposed on the one surface 1010a side of the sheet 1010 and the leading end 1070a is positioned on the one surface 1010a side of the sheet 1010 as shown in FIG. 85C, the leading end 1070a pushes the other end of the piece 1020 and the other surface 1010b from the one surface 1010a side of the sheet 1010 through the end portion on the insertion end side of the sheet 1010 as shown in FIG. Move to the side or hole 1011 of the sheet 1010. Thereby, the winding tool 1070 winds the other end portion of the piece 1020 from the one surface 1010a of the sheet 1010 to the other surface 1010b via the end portion on the insertion end side of the sheet 1010. Thereafter, the winding tool 1070 is rotated in the reverse direction by a winding tool driving mechanism (not shown) and returned to the standby state.
 以上のように、片巻き装置1001は、先端1130aが片1020を押しながらシート1010の孔1011からシート1010の挿入端側の端部側まで移動するように回動する巻き具1130と、巻き具1130とは回動方向が異なり、先端1070aが片1020を押しながらシート1010の挿入端側の端部側からシート1010の孔1011まで移動するように回動する巻き具1070とを備えるものであっても、シワや折り曲げ傷を付けずに綺麗な仕上がりで、確実にシート1010に片1020を巻き付けることができる。 As described above, the single winding device 1001 includes the winding tool 1130 that rotates so that the tip 1130a moves from the hole 1011 of the sheet 1010 to the end side on the insertion end side of the sheet 1010 while pushing the piece 1020. 1130 is provided with a winding tool 1070 that rotates so that the leading end 1070a moves from the end side of the insertion end side of the sheet 1010 to the hole 1011 of the sheet 1010 while pushing the piece 1020. However, the piece 1020 can be reliably wound around the sheet 1010 with a beautiful finish without causing wrinkles or bending scratches.
 なお、片巻き装置1001は、巻き具1130を回動させた後に巻き具1070を回動させることに限定されるものではなく、巻き具1070を回動させた後に巻き具1130を回動させるようにしても良い。また、片巻き装置1001は、先に回動させた一方の巻き具が完全に待機状態に戻る前に他方の巻き具を回動させるようにしても良い。
  本発明を詳細にまた特定の実施態様を参照して説明したが、本発明の精神と範囲を逸脱することなく様々な変更や修正を加えることができることは当業者にとって明らかである。
 本出願は、2013年10月30日出願の日本特許出願特願2013-225349、2014年02月28日出願の日本特許出願特願2014-038040及び2014年04月23日の日本特許出願特願2014-089403に基づくものであり、その内容はここに参照として取り込まれる。
Note that the single-winding device 1001 is not limited to rotating the winding tool 1070 after rotating the winding tool 1130, but rotating the winding tool 1130 after rotating the winding tool 1070. Anyway. Further, the single winding device 1001 may rotate the other winding tool before the one winding tool previously rotated returns completely to the standby state.
Although the present invention has been described in detail and with reference to specific embodiments, it will be apparent to those skilled in the art that various changes and modifications can be made without departing from the spirit and scope of the invention.
This application is filed with Japanese Patent Application No. 2013-225349 filed on Oct. 30, 2013, Japanese Patent Application No. 2014-038040 filed on Feb. 28, 2014, and Japanese Patent Application No. 2014/0423 filed on Apr. 23, 2014. Based on 2014-089403, the contents of which are incorporated herein by reference.
1 シート束、1a 一方の面、1b 他方の面、1c 挿入端側の端面、2 孔、2a 孔端面、3 片、3b 他方の面、4 粘着層、5 剥離紙、6 帯状体、7 係合孔、8 ロール体、10 片巻き装置、11 ベースユニット、12 ハンドル、13 ロール収容部、14 片送り機構、15 巻付け機構、16 穿孔ユニット、22 支軸、23 上面、24 ダストケース、24a ケース収納部、25 突出部、25a 傾斜面、25b 底面、25c 挿入面、31 排出部、32 ガイド部材、32a 折り返し部、32b 前半ガイド部、32c 後半ガイド部、33 支持ガイド部材、34 下ガイド部材、35 上ガイド部材、35a 傾斜面、36 係合部材、36a 移動ガイド部材、36b 連結ピン、36c 係合突起、36d 弾性体、37 送り部材、37a 第1の部材、37b 第2の部材、37c 支軸、37d 連結溝、38 付勢部材、40 巻き具、41 巻き爪、41a 先端部、41b 内周押圧面、42 回転軸、43 回動駆動部、44 係合部、45 異物、51 回動機構、52 円弧状ギヤ、53 駆動ギヤ部材、53a ギヤ部、53b 駆動ピン、54 ラックリンク部材、54a 係合片、54b ガイドピン、55 ラック部材、55a 係合片、55b ガイド孔、55c~55e 係合凹部、56 弾性体、57 緩衝レバー、57a 支軸、58 弾性部材、61 スライドベース、62a ガイドレール、62b ガイド片、63a ガイド溝、63b 係合ガイド片、64 ロック部材、65 載置面、66 突当部、67 抜き刃、67a 他端部、67b ダイ、68 弾性体、69 ガイド孔、69a 浮き上がり規制部、70 刃押圧部、70a 係合片、71 シート押さえ部材、72 貫通孔、73 移動量規制溝、73a 一端部、74 規制突起、75 シート押さえ部、75 シート押さえ部、76 シート押上部材、76a 押上面、76b コイルバネ、76c 捻りコイルバネ、76d ラック、76e ギヤ、77 凸部、78 突条部、79 駆動部、80 隙間、81 押圧接着部材、81a 接触部、81b ガイド片、82 傾斜ガイド部材、82a ガイド溝、83 コイルバネ、84 固定部、85 駆動部、86 回動レバー、87 シート送りローラ、88 押圧ローラ、91 保持機構、92 押圧突起、93 制御突起、94 保持部材、94 支軸、95 切換部材、96 被押圧部、97 係合段部、97a 隙間、98 解除片、99 係合突起、100 コントローラ、101 モータ、101,102 モータ、103 ラック、104 ギヤ、105 駆動ギヤ、106 ギヤ、111 巻付け機構、112 第1の押圧レバー、113 第2の押圧レバー、114 第3の押圧レバー、121 巻付け機構、122 第1の押圧レバー、123 第2の押圧レバー、200 片巻き装置、201 ベースユニット、202 ハンドル、203 支軸、204 付勢部材、205 抜き刃、206 弾性体、207 スライダ、208 ラック部、209 ギヤ部、210 巻き具、211 係合片、212 スライド操作片、213 押圧操作部材、214 支軸、215 コイルバネ、216 操作体、217 付勢部材、218 ストッパ、219 倣いピン、221 受け部
1001 片巻き装置、1001a シート挿入口、1010 シート、1010a 一方の面、1010b 他方の面、1010c 端面、1010d 角部、1010e 角部、1011 孔、1011a 孔縁端面、1020 片、1020b 他方の面、1021 粘着層、1022 剥離紙、1023 帯状体、1024 係合孔、1030 台座、1030a 一方の面、1030b 他方の面、1031 貫通孔、1040 片送り出し部、1041 片搬送路、1041a 排出口、1042 剥離紙搬送路、1070 巻き具、1070a 先端、1070b 基端側押圧部、1070c 先端側押圧部、1071 回転軸、1080 押圧部、1090 巻き具、1091 回転軸、1092 第1の巻き部材、1093 第2の巻き部材、1093a 先端、1100 位置決め部材、1100a 当接部、1100b 抑え部、1110 位置決め部材、1120 第2の巻き具、1121 巻き具駆動機構、1130 巻き具、1130a 先端
1 sheet bundle, 1a one surface, 1b other surface, 1c end surface on the insertion end side, 2 holes, 2a hole end surface, 3 pieces, 3b the other surface, 4 adhesive layer, 5 release paper, 6 strip, 7 Joint hole, 8 roll body, 10 piece winding device, 11 base unit, 12 handle, 13 roll accommodating portion, 14 piece feeding mechanism, 15 winding mechanism, 16 punching unit, 22 spindle, 23 upper surface, 24 dust case, 24a Case storage portion, 25 projecting portion, 25a inclined surface, 25b bottom surface, 25c insertion surface, 31 discharge portion, 32 guide member, 32a folded portion, 32b front half guide portion, 32c latter half guide portion, 33 support guide member, 34 lower guide member , 35 Upper guide member, 35a Inclined surface, 36 Engaging member, 36a Moving guide member, 36b Connecting pin, 36c Engaging projection, 36d Elastic body, 37 Feeding member, 37a 1 member, 37b second member, 37c support shaft, 37d connecting groove, 38 urging member, 40 winding tool, 41 winding claw, 41a tip portion, 41b inner peripheral pressing surface, 42 rotating shaft, 43 rotating drive unit , 44 engaging part, 45 foreign matter, 51 rotating mechanism, 52 arc gear, 53 driving gear member, 53a gear part, 53b driving pin, 54 rack link member, 54a engaging piece, 54b guide pin, 55 rack member, 55a engagement piece, 55b guide hole, 55c to 55e engagement recess, 56 elastic body, 57 buffer lever, 57a support shaft, 58 elastic member, 61 slide base, 62a guide rail, 62b guide piece, 63a guide groove, 63b Joint guide piece, 64 lock member, 65 mounting surface, 66 abutting portion, 67 punching blade, 67a other end portion, 67b die, 68 elastic body, 69 guide hole, 69a floating Edge regulating part, 70 blade pressing part, 70a engaging piece, 71 sheet pressing member, 72 through hole, 73 movement amount regulating groove, 73a one end part, 74 regulating projection, 75 sheet pressing part, 75 sheet pressing part, 76 sheet lifting Member, 76a Pushing surface, 76b Coil spring, 76c Torsion coil spring, 76d Rack, 76e Gear, 77 Convex part, 78 Projection part, 79 Drive part, 80 Clearance, 81 Press adhesive member, 81a Contact part, 81b Guide piece, 82 Inclination Guide member, 82a Guide groove, 83 Coil spring, 84 Fixed portion, 85 Drive portion, 86 Rotating lever, 87 Sheet feed roller, 88 Press roller, 91 Holding mechanism, 92 Press projection, 93 Control projection, 94 Holding member, 94 Support Shaft, 95 switching member, 96 pressed portion, 97 engaging step, 97a clearance, 98 release piece, 99 engaging protrusion, 100 connection Roller, 101 motor, 101, 102 motor, 103 rack, 104 gear, 105 drive gear, 106 gear, 111 winding mechanism, 112 first pressing lever, 113 second pressing lever, 114 third pressing lever, 121 Winding mechanism, 122 first pressing lever, 123 second pressing lever, 200 single winding device, 201 base unit, 202 handle, 203 spindle, 204 biasing member, 205 punching blade, 206 elastic body, 207 slider, 208 rack part, 209 gear part, 210 winding tool, 211 engagement piece, 212 slide operation piece, 213 pressing operation member, 214 support shaft, 215 coil spring, 216 operation body, 217 urging member, 218 stopper, 219 copying pin, 221 Receiving portion 1001 Single-winding device, 1001a Sheet insertion port, 1010 1010a One surface, 1010b The other surface, 1010c End surface, 1010d Corner portion, 1010e Corner portion, 1011 hole, 1011a Hole edge end surface, 1020 piece, 1020b The other surface, 1021 Adhesive layer, 1022 Release paper, 1023 Strip 1024 engagement hole, 1030 pedestal, 1030a one surface, 1030b the other surface, 1031 through-hole, 1040 one-feed section, 1041 one-conveyance path, 1041a discharge port, 1042 release paper conveyance path, 1070 winding tool, 1070a tip, 1070b Base end side pressing part, 1070c Tip side pressing part, 1071 Rotating shaft, 1080 Pressing part, 1090 Winding tool, 1091 Rotating shaft, 1092 First winding member, 1093 Second winding member, 1093a Tip, 1100 Positioning member, 1100a Contact portion, 1100b Holding portion, 111 0 positioning member, 1120 second winding tool, 1121 winding tool drive mechanism, 1130 winding tool, 1130a tip

Claims (7)

  1.  シートの一方の面に片の一部を貼着し、巻き具によって、該片の自由端側を該シートの孔に挿入し、該片を、該シートの一方の面、該シートの端面、他方の面、及び、孔の端面の少なくとも四面に亘って巻き付ける片巻き装置。 A part of the piece is attached to one surface of the sheet, and the free end side of the piece is inserted into the hole of the sheet by a winding tool, and the piece is inserted into one surface of the sheet, the end surface of the sheet, A single-winding device that winds over at least four surfaces of the other surface and the end surface of the hole.
  2.  上記巻き具は、回動して、上記片を上記シートに巻き付ける際に、先端部で上記片を押しながら上記シートの端面側から、上記他方の面、上記孔の端面の順に、上記シートに巻き付けて、上記片の一部を上記孔に挿入する請求項1に記載の片巻き装置。 When the winding tool rotates and winds the piece around the sheet, the end of the sheet is pressed from the end surface side of the sheet while pressing the piece at the tip, and the end surface of the hole is sequentially applied to the sheet. The piece winding apparatus according to claim 1, wherein a part of the piece is wound and inserted into the hole.
  3.  更に、上記片を上記シートに巻き付ける際に、上記シートを押さえる押さえ部材を備える請求項1又は請求項2に記載の片巻き装置。 Furthermore, when winding the said piece around the said sheet | seat, the piece winding apparatus of Claim 1 or Claim 2 provided with the pressing member which presses down the said sheet | seat.
  4.  上記押さえ部材は、上記巻き具の可動領域と重ならない位置に設けられている請求項3に記載の片巻き装置。 The single-winding device according to claim 3, wherein the pressing member is provided at a position that does not overlap the movable region of the winding tool.
  5.  シートに孔を穿孔する抜き刃と、
     上記抜き刃の動作に連動して、上記シートの一方の面に一部が貼着された片を、上記シートの孔に挿入する巻き具とを備え、
     上記抜き刃が上記シートに穿孔してから、上記巻き具が片を上記孔に挿入する片巻き装置。
    A punching blade for punching holes in the sheet;
    In conjunction with the operation of the punching blade, a piece partially attached to one surface of the sheet, and a winding tool for inserting into the hole of the sheet,
    A single winding device in which the winding tool inserts a piece into the hole after the punching blade has perforated the sheet.
  6.  更に、回動するハンドルを備え、
     上記ハンドルが往復動作する間に、抜き刃が上記シートに上記孔を穿孔し、上記巻き具が上記孔に、上記片を挿入する請求項1又は請求項2又は請求項5に記載の片巻き装置。
    In addition, it has a rotating handle,
    6. The single winding according to claim 1, wherein the punching blade pierces the hole in the sheet while the handle reciprocates, and the winding tool inserts the piece into the hole. apparatus.
  7.  更に回動するハンドルを備え、
     上記ハンドルが往動作する間に、抜き刃が上記シートに上記孔を穿孔し、上記巻き具が上記孔に、上記片を挿入する請求項1又は請求項2又は請求項5に記載の片巻き装置。 
    Furthermore, it has a handle that turns,
    6. The single winding according to claim 1, wherein the punching blade pierces the hole in the sheet while the handle moves forward, and the winding tool inserts the piece into the hole. apparatus.
PCT/JP2014/078670 2013-10-30 2014-10-28 Strip-winding device WO2015064593A1 (en)

Applications Claiming Priority (6)

Application Number Priority Date Filing Date Title
JP2013225349 2013-10-30
JP2013-225349 2013-10-30
JP2014-038040 2014-02-28
JP2014038040A JP5696800B2 (en) 2014-02-28 2014-02-28 Single winding device
JP2014-089403 2014-04-23
JP2014089403A JP5700157B2 (en) 2013-10-30 2014-04-23 Single winding device

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WO2015064593A1 true WO2015064593A1 (en) 2015-05-07

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Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH07101178A (en) * 1993-10-01 1995-04-18 Pitsukaade:Kk Binder with tape
JPH1024669A (en) * 1996-07-10 1998-01-27 Mizunami Seiki Kk Binding device
JPH10217631A (en) * 1997-02-05 1998-08-18 Pitsukaade:Kk Method of binding sheet
JP2014168955A (en) * 2014-02-28 2014-09-18 Max Co Ltd Clip winding device

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH07101178A (en) * 1993-10-01 1995-04-18 Pitsukaade:Kk Binder with tape
JPH1024669A (en) * 1996-07-10 1998-01-27 Mizunami Seiki Kk Binding device
JPH10217631A (en) * 1997-02-05 1998-08-18 Pitsukaade:Kk Method of binding sheet
JP2014168955A (en) * 2014-02-28 2014-09-18 Max Co Ltd Clip winding device

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