CN112793326A - Full-automatic three-hole one-line file binding machine - Google Patents

Full-automatic three-hole one-line file binding machine Download PDF

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Publication number
CN112793326A
CN112793326A CN202110077002.0A CN202110077002A CN112793326A CN 112793326 A CN112793326 A CN 112793326A CN 202110077002 A CN202110077002 A CN 202110077002A CN 112793326 A CN112793326 A CN 112793326A
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China
Prior art keywords
binding
drilling
hook
motor
thread
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CN202110077002.0A
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Chinese (zh)
Inventor
黎向松
庞袁幸
孙禹
郭能承
刘栋
王晓祺
黎思明
郭华龙
陈俊良
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Individual
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Individual
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Priority to CN202110077002.0A priority Critical patent/CN112793326A/en
Publication of CN112793326A publication Critical patent/CN112793326A/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B42BOOKBINDING; ALBUMS; FILES; SPECIAL PRINTED MATTER
    • B42BPERMANENTLY ATTACHING TOGETHER SHEETS, QUIRES OR SIGNATURES OR PERMANENTLY ATTACHING OBJECTS THERETO
    • B42B2/00Permanently attaching together sheets, quires or signatures by stitching with filamentary material, e.g. textile threads
    • B42B2/02Machines for stitching with thread

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  • Engineering & Computer Science (AREA)
  • Textile Engineering (AREA)
  • Mechanical Engineering (AREA)
  • Perforating, Stamping-Out Or Severing By Means Other Than Cutting (AREA)

Abstract

The invention discloses a full-automatic three-hole one-line file binding machine which comprises a rack, a drilling mechanism, a threading mechanism and a thread hooking mechanism, wherein the drilling mechanism is used for drilling three binding holes which are positioned on the same straight line on a file, and the threading mechanism is used for respectively penetrating binding threads through the three binding holes; the line hooking mechanism comprises a first hook component and a second hook component, the first hook component comprises a first hook and a first driving mechanism, and the first driving mechanism drives the first hook to hook the binding line in the middle and enable the binding line to form a line hole; the second hook assembly comprises two second hooks and a second driving mechanism, wherein the two second hooks are respectively positioned on two sides of the first hook, and the second driving mechanism drives the two second hooks to respectively hook the binding threads positioned on two sides and enable the binding threads to penetrate through the thread holes. According to the invention, the drilling mechanism, the threading mechanism and the thread hooking mechanism are used for fully automatically drilling, threading and hooking the files, so that the workload of workers is greatly reduced, and the working efficiency is improved.

Description

Full-automatic three-hole one-line file binding machine
Technical Field
The invention relates to the field of binding machines, in particular to a full-automatic three-hole one-line file binding machine.
Background
With the rapid development of social economy, more and more archives, documents and financial bills need to be processed by some enterprises and public institutions, so that the labor intensity of workers is increased, and the working efficiency is low. Archives book-binding machine is the smart machine who is used for binding archives, file, financial billing etc. and it is mainly for liberation staff's both hands, alleviates staff's work load, improves work efficiency, receives deeply that the unit that needs bind the processing to big data in batches every day likes, especially the file bureau. However, after the drilling and threading of the existing file binding machine, the manual operation of hooking and knotting is needed, so that the workload of workers is increased, and the overall working efficiency is low.
Disclosure of Invention
In order to overcome the defects in the prior art, the invention provides a full-automatic three-hole one-line file binding machine.
The technical scheme adopted by the invention for solving the problems is as follows:
a full-automatic three-hole one-line file binding machine comprises a rack, and a drilling mechanism, a threading mechanism and a hooking mechanism which are arranged on the rack;
the machine frame is provided with a workbench for placing files, the drilling mechanism is used for drilling three binding holes which are positioned on the same straight line on the files, and the threading mechanism is used for respectively penetrating binding threads through the three binding holes;
the line hooking mechanism comprises a first hook component and a second hook component, the first hook component comprises a first hook and a first driving mechanism, and the first driving mechanism drives the first hook to hook the binding line in the middle and enable the binding line to form a line hole; the second hook assembly comprises two second hooks and a second driving mechanism, the two second hooks are respectively located on two sides of the first hook, and the second driving mechanism drives the two second hooks to respectively hook the binding lines located on two sides and enable the binding lines to penetrate through the line holes.
According to the full-automatic three-hole one-line file binding machine, the first hook is driven by the first driving mechanism to hook the binding line in the middle and form the line hole, the second driving mechanism drives the two second hooks to hook the binding lines on the two sides and enable the binding lines to penetrate through the line hole, so that the binding lines are crossed and connected into a knot, and the drilling mechanism and the threading mechanism are combined to realize full-automatic drilling, threading and line hooking of files placed on the workbench, so that the workload of workers is greatly reduced, and the working efficiency is improved.
Further, the first driving mechanism comprises a first motor and a link mechanism, one end of the link mechanism is connected with the output end of the first motor, and the other end of the link mechanism is connected with the first hook; the first hook is movably connected to the rack;
the first motor drives the link mechanism to push the first hook to rotate along the rack, so that the first hook hooks the binding line in the middle and forms a line hole.
Furthermore, the second driving mechanism comprises a second motor, two rotating parts respectively used for fixedly connecting two second hooks, a first synchronous belt used for synchronizing the second motor and one of the rotating parts, and a second synchronous belt used for synchronizing the two rotating parts;
the second motor drives the rotating piece to rotate synchronously through the first synchronous belt and the second synchronous belt, so that the two second hooks are driven by the rotating piece to hook the binding lines on two sides respectively and penetrate through the line holes.
Further, the drilling mechanism comprises a pressing plate module used for pressing the files before drilling and a drilling module used for drilling binding holes in the files;
the pressing plate module comprises a pressing plate and a pressing plate motor, and the pressing plate motor drives the pressing plate to move and tightly press the file;
the drilling module comprises three groups of drilling assemblies and drilling driving motors, wherein the drilling assemblies and the drilling driving motors are located on the same straight line, and the drilling driving motors drive the drilling assemblies to move and drill binding holes.
Furthermore, the pressure plate module also comprises a first screw rod, a first optical axis fixedly connected with the pressure plate and a first synchronous belt;
the pressing plate motor drives the first lead screw to rotate through the first synchronous belt to drive the first optical axis to move so as to realize the displacement of the pressing plate and compress the file.
Furthermore, the drilling module further comprises a connecting piece, a second screw rod, a second optical axis and a second synchronous belt, wherein the connecting piece is connected with the drilling assembly, the connecting piece is movably connected with the second screw rod, and the connecting piece is connected with the second optical axis in a sliding manner;
and the drilling driving motor drives the second screw rod to rotate through the second synchronous belt, drives the connecting piece to displace along the second optical axis, so that the drilling assembly connected with the connecting piece can displace and complete the drilling operation.
Further, the drilling assembly comprises a drilling motor perpendicular to the workbench, and a drill bit for drilling the binding hole and a clamp for clamping the drill bit are connected to the drilling motor.
Therefore, the pressing plate is driven by the pressing plate motor to move and press the files tightly, so that the files are prevented from sliding during drilling; combine the drilling driving motor drive drilling subassembly to remove and bore and get the binding hole, can the accurate control drilling subassembly operation precision, guarantee the quality of drilling, drill out regular binding hole on the archives.
Furthermore, the threading mechanism comprises a thread pulling module for clamping and pulling out the binding thread, a cutter for cutting off the binding thread and three groups of threading modules which are used for enabling the binding thread to pass through the binding hole and are positioned on the same straight line;
the wire drawing module comprises a wire clamping device for clamping the binding wire and a wire drawing motor, and the wire drawing motor drives the wire clamping device to move and draw out the binding wire;
the threading module comprises a thimble and a threading motor, wherein the thimble is used for enabling the binding wire to pass through the binding hole, and the threading motor drives the thimble to move and finishes threading.
Furthermore, the wire pulling module further comprises a third optical axis and a third synchronous belt, and the wire clamp is connected with the third optical axis in a sliding manner;
the wire clamping device comprises a wire clamping piece and a steering engine for driving the wire clamping piece to move;
the steering engine drives the wire clamping piece to clamp the binding wire, and the wire pulling motor drives the third synchronous belt to drive the wire clamping device for clamping the binding wire to displace along the third optical axis and complete the wire pulling operation.
Furthermore, the threading module further comprises a fourth screw rod, a fourth optical axis and a fourth synchronous belt, the thimble is movably connected with the fourth screw rod, and the thimble is connected with the fourth optical axis in a sliding manner;
and the threading motor drives the fourth screw rod to rotate through a fourth synchronous belt so as to drive the thimble to displace along the fourth optical axis and complete threading operation.
Therefore, the wire pulling motor drives the wire clamping device to move and pull out the binding wire, the threading motor drives the thimble to move and penetrate the binding wire into the binding hole, and the binding wire is cut off through the cutter after the threading is finished, so that the automation of the process of obtaining the binding wire and finishing the threading is ensured.
In summary, the fully automatic three-hole one-line file binding machine of the present invention has the following technical effects:
(1) the first hook is driven by the first driving mechanism to hook the binding line in the middle and enable the binding line to form a line hole, the two second hooks are driven by the second driving mechanism to hook the binding lines on two sides and enable the binding lines to penetrate through the line hole, the binding lines are connected in a cross penetrating mode, and a drilling mechanism and a threading mechanism are combined to achieve full-automatic drilling, threading and line hooking of files placed on the workbench, so that the workload of workers is greatly reduced, and the working efficiency is improved.
(2) The pressing plate is driven by the pressing plate motor to move and press the files tightly, so that the files are prevented from sliding during drilling; combine the drilling driving motor drive drilling subassembly to remove and bore and get the binding hole, can the accurate control drilling subassembly operation precision, guarantee the quality of drilling, drill out regular binding hole on the archives.
(3) The thread pulling motor drives the thread clamping device to move and pull out the binding thread, the threading motor drives the thimble to move and penetrate the binding thread into the binding hole, and the binding thread is cut off through the cutter after the threading is finished, so that the automation of the process of obtaining the binding thread and finishing the threading is ensured.
Drawings
FIG. 1 is a schematic structural view of a fully automatic three-hole one-line file binding machine according to the present invention;
FIG. 2 is a schematic view of the fully automatic three-hole one-line file binding machine of the present invention from another perspective;
FIG. 3 is a schematic view of the internal structure of the fully automatic three-hole one-line file binding machine according to the present invention;
FIG. 4 is a schematic structural view of a first hook assembly of the present invention;
FIG. 5 is a schematic view of a first hook according to the present invention;
FIG. 6 is a schematic structural view of a second hook assembly of the present invention;
FIG. 7 is a schematic structural view of a second hook according to the present invention;
FIG. 8 is a schematic structural diagram of a platen module according to the present invention;
FIG. 9 is a schematic structural diagram of a drilling module according to the present invention;
FIG. 10 is a schematic structural diagram of a wire-pulling module according to the present invention;
FIG. 11 is a schematic view of the mechanism of the wire holder of the present invention;
fig. 12 is a schematic structural view of the threading module of the present invention.
Wherein the reference numerals have the following meanings:
1. a frame; 11. a work table; 111. a clamping piece; 112. wire-mounting holes; 12. a wire frame; 121. a support member; 122. a rotating member; 2. a first hook assembly; 21. a first hook; 211. a sharp-nose hook; 212. a through groove; 213. a first through hole; 214. a second through hole; 22. a first drive mechanism; 221. a first motor; 222. a link mechanism; 3. a second hook assembly; 31. a second hook; 311. a first hook; 312. a second hook; 313. connecting holes; 32. a second drive mechanism; 321. a rotating member; 322. a second synchronous belt; 323. a first synchronous belt; 324. a second motor; 4. a platen module; 41. pressing a plate; 42. a platen motor; 43. a first lead screw; 44. a first optical axis; 45. a first timing belt; 46. a first pulley; 5. a drilling module; 51. a drilling assembly; 511. a drilling motor; 512. a drill bit; 513. a clamp; 52. a drilling drive motor; 53. a connecting member; 54. a second lead screw; 55. a second optical axis; 56. a second timing belt; 57. a second pulley; 6. a wire drawing module; 61. a wire clamping device; 611. a wire clamping member; 612. a steering engine; 62. a wire pulling motor; 63. a third optical axis; 64. a third timing belt; 65. a third belt pulley; 7. a cutter; 8. a threading module; 81. a thimble; 82. a threading motor; 83. a fourth screw rod; 84. a fourth optical axis; 85. a fourth timing belt; 86. a fourth belt pulley; 91. a touch control display screen; 92. a power interface; 93. function keys.
Detailed Description
For better understanding and implementation, the technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention.
In the description of the present invention, it should be noted that the terms "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. indicate orientations or positional relationships based on those shown in the drawings, and are only for convenience of description and simplicity of description, but do not indicate or imply that the referred device or element must have a specific orientation, be constructed and operated in a specific orientation, and thus, should not be construed as limiting the present invention.
Unless defined otherwise, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention belongs. The terminology used in the description of the invention herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention.
Referring to fig. 1-11, the invention provides a full-automatic three-hole one-line file binding machine, which comprises a frame 1, a drilling mechanism for drilling three binding holes on a file, a threading mechanism for respectively passing the binding threads through the three binding holes, a thread hooking mechanism for hooking the binding threads into knots, and a control module for controlling the automation of equipment, wherein the three binding holes are positioned on the same straight line; a workbench 11 for placing files is arranged on the rack 1, the drilling mechanism and the thread hooking mechanism are arranged above the workbench 11, and the threading mechanism is arranged below the workbench 11; the control module is respectively electrically connected with the drilling mechanism, the threading mechanism and the thread hooking mechanism so as to realize the full-automatic drilling, threading and thread hooking of the files on the placing workbench 11.
Referring to fig. 4-7, the thread hooking mechanism includes a first hooking component 2 for hooking the binding thread and forming the binding thread into a thread hole and a second hooking component 3 for realizing the hooking and knotting of the binding thread.
The first hook assembly 2 comprises a first hook 21 and a first driving mechanism 22, wherein the first driving mechanism 22 drives the first hook 21 to hook a binding line in the middle and forms a line hole. The first driving mechanism 22 comprises a first motor 221 and a link mechanism 222 for connecting the first motor 221 and the first hook 21; the first hook 21 is movably connected to the frame 1; the first motor 221 drives the link mechanism 222 to push the first hook 21 to rotate along the frame 1, so that the first hook 21 hooks the binding thread in the middle and forms a thread hole. The main body of the first hook 21 is a rectangular body, the tail end of the rectangular body is provided with a sharp-nose hook 211, and the structure is convenient for hooking a binding line and forming a line hole; a through groove 212 is formed in the rectangular body along the sharp-nose hook direction, the thimble 81 penetrates through the through groove 212 during line hooking, the sharp-nose hook 211 hooks the binding line, and the first hook 21 does not collide with the thimble 81; the rectangular body is further provided with a first through hole 213 for connecting with the frame 1 and a second through hole 214 for connecting with the link mechanism 222.
The second hook component 3 comprises two second hooks 31 and a second driving mechanism 32, wherein the two second hooks 31 are respectively located at two sides of the first hook 21, and the second driving mechanism 32 drives the two second hooks 31 to respectively hook the binding threads located at two sides and enable the binding threads to penetrate through the thread holes. The second driving mechanism 32 comprises two rotating parts 321 for fixedly connecting the second hook 31, a second motor 324 for driving the rotating parts 321 to drive the second hook 31 to rotate, a first synchronous belt 323 for synchronizing the second motor 324 with one of the rotating parts 321, and a second synchronous belt 322 for synchronizing the two rotating parts 321; the second motor 324 drives the rotating member 321 to rotate synchronously through the first synchronous belt 323 and the second synchronous belt 322, so that the two second hooks 31 are driven by the rotating member 321 to respectively hook the binding threads on two sides and pass through the thread holes. The second hook 31 is a bidirectional hook structure, and is provided with a first hook 311 and a second hook 312, the first hook 311 and the second hook 312 are symmetrically arranged in directions, and when the second hook rotates in different directions, the hook in the corresponding direction plays a role in hooking a thread; the second hook 31 is further provided with a connection hole 313 connected to the rotation member 321.
Thus, the first hook 21 is driven by the first driving mechanism 22 to hook the binding thread in the middle and form a thread hole, and the second driving mechanism 32 drives the two second hooks 31 to hook the binding threads on the two sides and make the binding threads pass through the thread hole, so that the binding threads are crossed and spliced into a knot.
Referring to fig. 8-9, the drilling mechanism includes a press plate module 4 for compressing the file before drilling and a drilling module 5 for drilling binding holes in the file.
The pressing plate module 4 comprises a pressing plate 41, a pressing plate motor 42, a first screw rod 43, a first optical axis 44, a first bearing, a first synchronous belt 45 and a first belt pulley 46, wherein the pressing plate motor 42 drives the first screw rod 43 to rotate through the first synchronous belt 45 to drive the first optical axis 44 to move, so that the pressing plate 41 moves and the file is pressed.
The drilling module 5 comprises three groups of drilling assemblies 51 which are positioned on the same straight line, a connecting piece 53 connected with the drilling assemblies 51, a drilling driving motor 52, a second screw rod 54, a second optical axis 55, a second bearing, a second synchronous belt 56 and a second belt pulley 57, wherein the connecting piece 53 is movably connected with the second screw rod 54, and the connecting piece 53 is in sliding connection with the second optical axis 55; the drilling driving motor 52 drives the second screw rod 54 to rotate through the second synchronous belt 56, and drives the connecting member 53 to displace along the first optical axis 55, so as to displace the drilling assembly 51 connected with the connecting member 53 and complete the drilling operation. The drilling assembly 51 includes a drilling motor 511 perpendicular to the table 11, the drilling motor 511 being connected with a drill 513 for drilling a binding hole and a clamp 512 for clamping the drill 513.
Referring to fig. 10-12, the thread passing mechanism includes a thread pulling module 6 for gripping and pulling out the binding thread, a cutter 7 for cutting the binding thread, and three sets of thread passing modules 8 for passing the binding thread through the binding holes and in the same line. The wire drawing module 6 comprises a wire clamp 61, a wire drawing motor 62, a third optical axis 63, a third synchronous belt 64 and a third belt pulley 65, wherein the wire clamp 61 is connected with the third optical axis 63 in a sliding manner; the wire clamping device 61 comprises a wire clamping piece 611 and a steering engine 612 for driving the wire clamping piece 611 to move; the steering engine 612 drives the wire clamping piece 611 to clamp the binding wire, and the wire pulling motor 62 drives the third synchronous belt 65 to drive the wire clamping device 61 for clamping the binding wire to displace along the third optical axis 64 and complete the wire pulling operation. The wire clamping device 61 is characterized in that the steering engine 612 drives the wire clamping piece 611 to clamp the binding wire, and the wire clamping piece 611 is provided with a resetting piece, so that the wire clamping piece 611 can reset to release the binding wire after the driving force of the steering engine 612 is removed; the initial position is positioned by the induction of a limit switch. The threading module 8 comprises a thimble 81, a threading motor 82, a fourth screw 83, a fourth optical axis 84, a fourth bearing, a fourth synchronous belt 85 and a fourth belt pulley 86, wherein the thimble 81 is movably connected with the fourth screw 83, and the thimble 81 is slidably connected with the fourth optical axis 84; the threading motor 82 drives the fourth lead screw 83 to rotate through the fourth synchronous belt 85, so as to drive the thimble 81 to displace along the fourth optical axis 84 and complete the threading operation.
Referring to fig. 1-2, the working platform 11 is provided with a locking member 111 for positioning the files and a thread hole 112 for drilling or threading the files.
In this embodiment, the control module includes a touch control display 91 for displaying and inputting specific parameters and operations, a power interface 92 for accessing a power supply, and three function keys 93 for controlling three main operations, i.e., resetting, starting and pausing; the touch control display screen 91 is electrically connected with the power supply interface 92, the functional keys 93, the drilling mechanism, the threading mechanism and the thread hooking mechanism respectively.
Therefore, specific parameters and operations are input through the touch control display screen 91, so that the whole set of operations of drilling, threading and hooking can be automatically carried out in sequence.
In addition, a thread stand 12 for placing binding thread is also arranged on the frame 1. The wire frame 12 comprises a supporting part 121 connected with the frame 1 and a rotating part 122 arranged on the supporting part 121; the supporting member 121 is movably connected with the rotating member 122.
In summary, the fully automatic three-hole one-line file binding machine of the present invention has the following technical effects:
the first hook 21 is driven by the first driving mechanism 22 to hook the binding line in the middle and enable the binding line to form a line hole, the second driving mechanism 32 drives the two second hooks 31 to hook the binding line on the two sides and enable the binding line to penetrate through the line hole, the binding line is crossed and connected into a knot, and a drilling mechanism and a threading mechanism are combined to achieve full-automatic drilling, threading and line hooking of files placed on the workbench 11, so that the workload of workers is greatly reduced, and the working efficiency is improved.
Secondly, the pressing plate 41 is driven by the pressing plate motor 42 to move and press the files tightly, so that the files are prevented from sliding during drilling; the drilling assembly 51 is driven to move and drill binding holes by combining with the drilling driving motor 52, so that the operation precision of the drilling assembly 51 can be accurately controlled, the drilling quality is ensured, and regular binding holes are drilled on files.
And (III) the wire pulling motor 62 drives the wire clamping device 61 to displace and pull out the binding wire, the threading motor 82 drives the thimble 81 to displace and penetrate the binding wire into the binding hole, and the binding wire is cut off by the cutter 7 after the threading is finished, so that the automation of the operation of acquiring the binding wire and finishing the threading is ensured.
The technical means disclosed in the invention scheme are not limited to the technical means disclosed in the above embodiments, but also include the technical scheme formed by any combination of the above technical features. It should be noted that those skilled in the art can make various improvements and modifications without departing from the principle of the present invention, and such improvements and modifications are also considered to be within the scope of the present invention.

Claims (10)

1. The utility model provides a full-automatic three-hole one-line archives book-binding machine which characterized in that includes frame (1) and sets up drilling mechanism, threading mechanism and the mechanism of colluding on frame (1), wherein:
the machine frame (1) is provided with a workbench (11) for placing files, the drilling mechanism is used for drilling three binding holes which are positioned on the same straight line on the files, and the threading mechanism is used for respectively penetrating binding threads through the three binding holes;
the thread hooking mechanism comprises a first hook component (2) and a second hook component (3), the first hook component (3) comprises a first hook (21) and a first driving mechanism (22), and the first driving mechanism (22) drives the first hook (21) to hook a binding thread in the middle and enable the binding thread to form a thread hole; the second hook component (3) comprises two second hooks (31) and a second driving mechanism (32), wherein the two second hooks (31) are respectively located on two sides of the first hook (21), and the second driving mechanism (32) drives the two second hooks (31) to respectively hook binding lines located on two sides and enable the binding lines to penetrate through the line holes.
2. A fully automatic three-aperture one-line archives binding machine according to claim 2, characterized in that said first driving mechanism (22) comprises a first motor (221) and a link mechanism (222) connected to the output of said first motor (221) at one end and to said first hook (21) at the other end; the first hook (21) is movably connected to the rack (1);
the first motor (221) drives the link mechanism (222) to push the first hook (21) to rotate along the rack (1), so that the first hook (21) hooks the binding line in the middle and forms a line hole.
3. A fully automatic three-aperture one-thread file binding machine according to claim 3, characterized in that the second driving mechanism (32) comprises a second motor (324), two rotating members (321) for fixedly connecting the two second hooks (31), respectively, a first synchronizing belt (323) for synchronizing the second motor (324) with one of the rotating members (321), and a second synchronizing belt (322) for synchronizing the two rotating members (321);
the second motor (324) drives the rotating part (321) to rotate synchronously through the first synchronous belt (323) and the second synchronous belt (322), so that the two second hooks (31) are driven by the rotating part (321) to respectively hook binding threads on two sides and penetrate through the thread holes.
4. A fully automatic three-hole one-line file binding machine according to claim 1, wherein the drilling mechanism comprises a pressing plate module (4) for pressing the files before drilling and a drilling module (5) for drilling binding holes for the files;
the pressing plate module (4) comprises a pressing plate (41) and a pressing plate motor (42), and the pressing plate motor (42) drives the pressing plate (41) to move and press the file;
the drilling module (5) comprises three groups of drilling assemblies (51) and drilling driving motors (52), wherein the three groups of drilling assemblies (51) are located on the same straight line, and the drilling driving motors (52) drive the drilling assemblies (51) to move and drill binding holes.
5. The fully automatic three-hole one-line file binding machine according to claim 4, wherein the pressing plate module (4) further comprises a first screw rod (43), a first optical axis (44) fixedly connected with the pressing plate (41) and a first synchronous belt (45);
the pressing plate motor (42) drives the first screw rod (43) to rotate through the first synchronous belt (45), and drives the first optical axis (44) to displace so as to realize displacement of the pressing plate (41) and compress files.
6. The fully automatic three-hole one-line file binding machine according to claim 4 or 5, wherein the drilling module (5) further comprises a connecting member (53) connected with the drilling assembly (51), a second screw rod (54), a second optical axis (55) and a second synchronous belt (56), the connecting member (53) is movably connected with the second screw rod (54), and the connecting member (53) is slidably connected with the second optical axis (55);
and the drilling driving motor (52) drives the second screw rod (54) to rotate through the second synchronous belt (56) to drive the connecting piece (53) to displace along the second optical axis (55), so that the drilling assembly (51) connected with the connecting piece (53) displaces and completes drilling operation.
7. A fully automatic three-hole one-line archive binding machine according to claim 6, characterized in that the drilling assembly (51) comprises a drilling motor (511) perpendicular to the working table (11), the drilling motor (511) being connected with a drill bit (512) for drilling the binding hole and a clamp (513) for clamping the drill bit (512).
8. A fully automatic three-hole one-thread file binding machine according to claim 1, wherein the thread passing mechanism comprises a thread pulling module (6) for clamping and pulling out the binding thread, a cutter (7) for cutting the binding thread, and three sets of thread passing modules (8) for passing the binding thread through the binding holes and located in the same line;
the wire drawing module (6) comprises a wire clamp (61) for clamping the binding wire and a wire drawing motor (62), and the wire drawing motor (62) drives the wire clamp (61) to move and draw out the binding wire;
the threading module (8) comprises a thimble (81) for enabling the binding wire to pass through the binding hole and a threading motor (82), and the threading motor (82) drives the thimble (81) to displace and complete threading.
9. A fully automatic three-aperture one-thread document binding machine according to claim 8, wherein the thread-pulling module (6) further comprises a third optical axis (64) and a third synchronous belt (65), the thread-gripper (61) is slidably connected with the third optical axis (64);
the wire clamping device (61) comprises a wire clamping piece (611) and a steering engine (612) for driving the wire clamping piece (611) to move;
the steering engine (612) drives the wire clamping piece (611) to clamp the binding wire, and the wire pulling motor (62) drives the third synchronous belt (65) to drive the wire clamping device (61) for clamping the binding wire to displace along the third optical axis (64) and complete the wire pulling operation.
10. The fully automatic three-hole one-line file binding machine according to claim 8 or 9, wherein the thread passing module (8) further comprises a fourth screw (83), a fourth optical axis (84) and a fourth synchronous belt (85), the thimble (81) is movably connected with the fourth screw (83), and the thimble (81) is slidably connected with the fourth optical axis (84);
the threading motor (82) drives the fourth screw rod (83) to rotate through a fourth synchronous belt (85) so as to drive the thimble (81) to displace along a fourth optical axis (84) and complete threading operation.
CN202110077002.0A 2021-01-20 2021-01-20 Full-automatic three-hole one-line file binding machine Pending CN112793326A (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114475038A (en) * 2021-12-06 2022-05-13 得力集团有限公司 Control device and control method for wire installation machine

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