WO2015128962A1 - Appareil d'assemblage de fermetures à glissière - Google Patents

Appareil d'assemblage de fermetures à glissière Download PDF

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Publication number
WO2015128962A1
WO2015128962A1 PCT/JP2014/054680 JP2014054680W WO2015128962A1 WO 2015128962 A1 WO2015128962 A1 WO 2015128962A1 JP 2014054680 W JP2014054680 W JP 2014054680W WO 2015128962 A1 WO2015128962 A1 WO 2015128962A1
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WO
WIPO (PCT)
Prior art keywords
slider
stopper
holder
component
slide fastener
Prior art date
Application number
PCT/JP2014/054680
Other languages
English (en)
Japanese (ja)
Inventor
和樹 久世
幸智代 川村
Original Assignee
Ykk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
Application filed by Ykk株式会社 filed Critical Ykk株式会社
Priority to CN201480022304.6A priority Critical patent/CN105188459B/zh
Priority to PCT/JP2014/054680 priority patent/WO2015128962A1/fr
Priority to TW104105944A priority patent/TWI556765B/zh
Publication of WO2015128962A1 publication Critical patent/WO2015128962A1/fr

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Classifications

    • AHUMAN NECESSITIES
    • A44HABERDASHERY; JEWELLERY
    • A44BBUTTONS, PINS, BUCKLES, SLIDE FASTENERS, OR THE LIKE
    • A44B19/00Slide fasteners
    • A44B19/42Making by processes not fully provided for in one other class, e.g. B21D53/50, B21F45/18, B22D17/16, B29D5/00
    • A44B19/60Applying end stops upon stringer tapes
    • AHUMAN NECESSITIES
    • A44HABERDASHERY; JEWELLERY
    • A44BBUTTONS, PINS, BUCKLES, SLIDE FASTENERS, OR THE LIKE
    • A44B19/00Slide fasteners
    • A44B19/42Making by processes not fully provided for in one other class, e.g. B21D53/50, B21F45/18, B22D17/16, B29D5/00
    • A44B19/62Assembling sliders in position on stringer tapes
    • A44B19/64Slider holders for assemblage of slide fasteners

Definitions

  • the present invention relates to a slide fastener assembling apparatus that sequentially processes a continuous fastener chain to finish it into a slide fastener.
  • a stopper supplying device for supplying a stopper to the component mounting device, a second gripper for transferring a fastener chain to which the slider and the stopper are attached, and a fastener chain transferred by the second gripper is cut into a predetermined length.
  • a cutting device including a cutting device see, for example, Patent Document 1).
  • the stopping portion supply device includes a pair of chutes that supply the stopping portion to the component mounting device, and the pair of chutes are provided to swing around the upper end portion. It is comprised so that a stop may be supplied to a component attachment apparatus.
  • the present invention has been made in view of the above-described problems, and an object of the present invention is to prevent a defective supply of the stop from the chute to the component mounting device and to supply the stop from the parts feeder to the chute.
  • An object of the present invention is to provide a slide fastener assembling apparatus that can prevent defects.
  • a stop fastener supply device comprising: a stop fastener supply device, wherein the stop supply device includes a pair of chutes loaded with a plurality of stop portions, and a stop portion in the pair of chutes.
  • a slide fastener assembling apparatus comprising: a pair of stopper supply parts to be supplied to the slide fastener.
  • the transfer device includes a first transfer device that transfers the fastener chain to the component mounting device, and a second transfer device that transfers the fastener chain to which the slider and the stopper are attached, and is transferred by the second transfer device.
  • the slide fastener assembling apparatus according to (1) further comprising a cutting device that cuts the formed fastener chain.
  • the component attachment device is disposed above the transfer line of the fastener chain, and is disposed below the transfer holder and the component holder that holds the slider and the stop portion supplied from the slider supply device and the stop portion supply device. (1) characterized by comprising: a slider support portion for supporting the slider held by the component holder from below; and a caulking portion disposed below the transfer line and caulking the stop portion held by the component holder.
  • the slide fastener assembling apparatus as described.
  • the component holder is configured to be displaced between a component supply position for supplying the slider and the stopper to the component holder and a component mounting position for attaching the slider and the stopper to the fastener chain.
  • the slide fastener assembling apparatus according to (3) characterized in that (5) The component holder is provided at the tip of the holder body that is pivotable in the vertical direction, the slider holder that holds the slider, and the tip of the holder body that holds the stopper.
  • the slider holder is slidably provided on the holder main body, and a pair of slider holding pieces for holding the slider is provided at the tip of the slider holder, and the slider is sandwiched between the pair of slider holding pieces.
  • the slide fastener assembling apparatus according to (5).
  • the stopper holder includes an upper anvil fixed to the holder main body and a lower anvil provided to be slidable with respect to the upper anvil, and the stopper is accommodated between the upper and lower anvils.
  • a slide fastener assembling apparatus as set forth in (5) or (6), wherein a pair of stop portion receiving recesses are provided.
  • the stopper supply portion is attached to the tip of the rod of the cylinder, provided with a plunger that pushes the stopper into the stopper housing recess of the stopper holder, and slidable along the longitudinal direction of the plunger.
  • the slider supply device includes a chute loaded with a plurality of sliders, a first stopper disposed at an intermediate portion of the chute, and a slider disposed at a lower end portion of the chute and passing through the first stopper.
  • a second stopper that stops the slider a first slider transfer section that transfers the slider stopped by the first stopper to the second stopper side, and a second slider transfer section that transfers the slider stopped by the second stopper to the slider holder
  • a slide fastener assembling apparatus according to any one of (5) to (8).
  • the stopping portion supply device that supplies the stopping portion to the component mounting device includes a pair of chutes loaded with a plurality of stopping portions, and a pair of stops that are provided in the pair of chutes to the component mounting device. Since the stop portion supply portion is provided, the stop portion can be supplied to the component mounting device without the swing movement of the chute as in the prior art. For this reason, it is possible to prevent the supply failure of the stop portion from the chute to the component mounting device, and it is possible to prevent the supply failure of the stop portion from the parts feeder to the chute.
  • FIG. 4 It is a side view explaining one embodiment of a slide fastener assembling device concerning the present invention. It is a rear view of the slide fastener assembling apparatus shown in FIG. It is a surface view explaining an example of a slide fastener. It is an enlarged side view of the periphery of the component mounting apparatus shown in FIG. It is a figure explaining the component holder shown in FIG. 4, (a) is a side view of the downward rotation state of a component holder, (b) is a rear view of the downward rotation state of a component holder. It is an enlarged side view of the periphery of the slider supply apparatus shown in FIG. FIG. 7 is an enlarged rear view of the periphery of the slider supply device shown in FIG. 6.
  • FIG. 13 is an enlarged rear view of a state in which the component holder of FIG. 12 is turned downward.
  • the upper side is the upper side with respect to the paper surface of FIG. 1
  • the lower side is the lower side with respect to the paper surface of FIG. 1
  • the front side is with respect to the paper surface of FIG.
  • the left side and the rear side are the right side with respect to the paper surface of FIG. 1
  • the left side is the front side with respect to the paper surface of FIG. 1
  • the right side is the back side with respect to the paper surface of FIG.
  • the front side of the slide fastener assembling apparatus is also referred to as the upstream side
  • the rear side is also referred to as the downstream side.
  • the left-right direction of a slide fastener assembly apparatus is also called the width direction.
  • the front side is the front side with respect to the paper surface of FIG. 3
  • the back side is the back side with respect to the paper surface of FIG. 3
  • the upper side is the upper side with respect to the paper surface of FIG.
  • the lower side with respect to the paper surface the left side is the left side with respect to the paper surface of FIG. 3
  • the right side is the right side with respect to the paper surface of FIG.
  • the left-right direction of a slide fastener is also called the width direction.
  • the vertical direction of the slide fastener is also called the length direction.
  • the slide fastener assembling apparatus 10 of the present embodiment includes a first transfer device 20 that transfers the fastener chain C ⁇ b> 1, and a slider S and a fastener S that are transferred to the fastener chain C ⁇ b> 1 transferred by the first transfer device 20.
  • a second transfer device 70 for transferring the fastener chain C1 to which the upper stopper P1 is attached, and a cutting device 80 for cutting the fastener chain C1 transferred by the second transfer device 70 are provided.
  • symbol L in a figure is a transfer line to which the fastener chain C1 and slide fastener SF are transferred. 1, 6, and 8, the stopper supply device 60 is not described in order to facilitate understanding of the drawings.
  • the slide fastener SF assembled by the slide fastener assembling apparatus 10 of the present embodiment will be described.
  • the slide fastener SF includes a pair of left and right fastener tapes T, a pair of left and right fastener element rows E provided at opposite tape side edges of the pair of left and right fastener tapes T, and a pair of left and right fasteners T.
  • the top stopper P1 is a substantially U-shaped metal member.
  • the fastener element row E is a coiled fastener element row according to the present embodiment.
  • the fastener element row E is not limited to the present embodiment, and may be a fastener element row formed by injection molding of a synthetic resin or a metal fastener element row.
  • the bottom stop P2 may be an opening tool composed of a box bar, a box body, and a butterfly bar.
  • the fastener chain C1 has a pair of left and right fastener tapes T, a pair of left and right fastener element rows E, and a plurality of bottom stops P2 attached at a predetermined interval.
  • the pair of left and right fastener element rows E are in a meshed state.
  • the first transfer device 20 holds the fastener chain C1 and transfers the fastener chain C1 to a predetermined position of the component mounting device 30.
  • the first transfer device 20 includes a pair of left and right grippers 21 that respectively grip the left and right fastener tapes T of the fastener chain C1, and a pair of left and right gripper bodies 22 that respectively support the left and right grippers 21.
  • a moving device (not shown) that moves the left and right gripper bodies 22 in the upstream direction and the downstream direction.
  • the left and right grippers 21 are configured to grip the front and back surfaces of the left and right fastener tapes T at both ends in the width direction of the fastener chain C1.
  • the component mounting device 30 is disposed above the transfer line L, and holds the slider S and the left and right top stoppers P ⁇ b> 1 supplied from the slider supply device 50 and the stopper supply device 60. 31, a slider support 41 that is disposed below the transfer line L and supports the slider S held by the component holder 31 from below, and an upper stopper that is disposed below the transfer line L and is held by the component holder 31. A caulking portion 42 for caulking P1.
  • the component holder 31 includes a rotation shaft 32 a extending in the left-right direction, a substantially rectangular parallelepiped holder body 32 coupled to the rotation shaft 32 a, and a tip portion of the holder body 32.
  • a slider holder 33 that holds the slider S, and a stopper holder 34 that is provided at the tip of the holder body 32 and holds the left and right top stoppers P1.
  • the holder main body 32 can be turned in the vertical direction by rotating the rotary shaft 32a.
  • the component holder 31 is rotated by the holder main body 32 to supply a component supply position for supplying the slider S and the left and right top stoppers P1 to the component holder 31, and the component holder 31 to the fastener chain C1. It is comprised so that it may displace between the components attachment position which attaches the part P1.
  • the component supply position is a state in which the longitudinal direction of the component holder 31 is parallel to the transfer line L and the component holder 31 is turned upward and downstream.
  • the component attachment position is a state in which the longitudinal direction of the component holder 31 is orthogonal to the transfer line L, and the component holder 31 is turned downward and upstream.
  • the slider holder 33 is disposed substantially at the center in the front-rear direction of the holder main body 32 at the component mounting position, and is provided to slide along the longitudinal direction of the holder main body 32.
  • a pair of left and right slider holding pieces 33 a that hold the slider S are provided at the tip of the slider holder 33.
  • the slider S is sandwiched between the left and right slider holding pieces 33a.
  • the left and right slider holding pieces 33a sandwich the upper wing plate S1 (see FIG. 18) and the lower wing plate S2 (see FIG. 18) of the slider S.
  • the slider holder 33 has a pair of left and right slide rods 33b that extend to the left and right outer sides and slide the slider holder 33 relative to the holder body 32.
  • a roller 33c is provided at each end of the left and right slide rods 33b. Each roller 33c contacts the cam surface 35a of the cam member 35 and the cam surface 22a of the first transfer device 20, which will be described later.
  • the component mounting device 30 includes a cam member 35 that guides the roller 33 c of the right slide rod 33 b and slides the slider holder 33.
  • the cam member 35 has a cam surface 35a for guiding the roller 33c of the right slide rod 33b when the component holder 31 is located at the component supply position.
  • the cam surface 35a pushes the roller 33c of the right slide rod 33b when the component holder 31 is located at the component supply position. Thereby, the slider holder 33 slides in the extending direction.
  • the slider holding piece 33 a of the slider holder 33 is disposed immediately below the chute 51 of the slider supply device 50.
  • cam surfaces 22 a are respectively formed on the inner surfaces of the left and right gripper bodies 22 of the first transfer device 20 facing each other.
  • the cam surface 22a guides the rollers 33c of the left and right slide rods 33b. 14 to 18, only the gripper 21 and the gripper body 22 on the right side (the back side with respect to the paper surface) are shown for easy understanding of the drawings.
  • the cam surface 22a pushes up the rollers 33c of the left and right slide rods 33b when the first transfer device 20 transfers the fastener chain C1 to the component mounting device 30 with the component holder 31 positioned at the component mounting position.
  • the slider holder 33 slides in the shrinking direction.
  • the left and right slider holding pieces 33 a of the slider holder 33 are retracted upward from the transfer line L.
  • the slider S does not fall off the slider holder 33 even if the left and right slider holding pieces 33a are retracted above the transfer line L. This is because, as shown in FIG. 14, the left and right slider holding pieces 33a sandwich the lower blade plate S2 of the slider S, and the slider support portion 41 supports the upper blade plate S1 of the slider S from below.
  • the stopper holder 34 is arranged adjacent to the downstream side of the slider holder 33 of the holder main body 32 at the component mounting position, and includes an upper anvil 34 a fixed to the holder main body 32, A lower anvil 34b provided to be slidable up and down with respect to the anvil 34a. A pair of left and right stop receiving recesses 34c are provided between the upper and lower anvils 34a, 34b.
  • the upper stopper P1 is accommodated in the left and right stopper accommodating recesses 34c, respectively.
  • the lower anvil 34b moves upward toward the upper anvil 34a.
  • the left and right top stoppers P1 are caulked between the upper and lower anvils 34a, 34b and attached to the left and right fastener tapes T of the fastener chain C1.
  • the component mounting apparatus 30 of the present embodiment has a tape insertion slit S ⁇ b> 3 of the slider S set on the slider holder 33 when the component holder 31 is displaced from the component supply position to the component mounting position. (See FIG. 14), and left and right top stoppers P1 set in the stopper holder 34 are arranged on the transfer line L.
  • the slider S is supported from below by the slider support portion 41 in a state where the component holder 31 is located at the component mounting position.
  • the slider support portion 41 has a slider support recess 41a for accommodating a part of the slider S at the upper end thereof and supporting the upper blade S1 of the slider S from below.
  • the slider support portion 41 is driven up and down by a cylinder device (not shown).
  • the caulking part 42 can be moved in the vertical direction by a cylinder device (not shown).
  • the caulking portion 42 moves upward toward the lower anvil 34b of the stopper holder 34, thereby pressing the lower anvil 34b upward. Accordingly, the caulking portion 42 moves the lower anvil 34b upward toward the upper anvil 34a and caulks the left and right upper stoppers P1 accommodated in the left and right stopper accommodating recesses 34c.
  • the slider supply device 50 is arranged along the vertical direction, and a chute 51 in which a plurality of sliders S are loaded in a predetermined posture, and an intermediate portion of the chute 51.
  • a first stopper 52 arranged to stop a plurality of sliders S supplied from above; a second stopper 53 arranged at the lower end of the chute 51 to stop the slider S passing through the first stopper 52;
  • the first slider transfer section 54 that drops the slider S positioned at the lowermost end among the plurality of sliders S stopped by the stopper 52 to the second stopper 53 side, and the slider S stopped by the second stopper 53 is moved to the slider holder.
  • a second slider transfer section 55 that supplies to 33.
  • a parts feeder (not shown) is connected to the upper end of the chute 51.
  • the first stopper 52 and the second stopper 53 have a pair of stopper members 52a and 53a arranged to face the chute 61 in the left-right direction.
  • Each stopper member 52a, 53a is displaceable in the direction which approaches mutually and the direction which separates. And each stopper member 52a, 53a is always urged
  • the first slider transfer section 54 is provided with a cylinder 54a, a push rod 54c attached to the tip of the rod 54b of the cylinder 54a, a swinging claw 54d attached to the lower end of the push rod 54c, and pushing the slider S. And a spring 54e disposed between the push rod 54c and the push pawl 54d and biasing the push pawl 54d in the counterclockwise direction in FIG.
  • the first slider transfer section 54 moves the push rod 54c downward by the cylinder 54a extending the rod 54b.
  • the push pawl 54d moves downward together with the push rod 54c.
  • the push claw 54d pushes one slider S stopped by the first stopper 52 downward. Accordingly, one slider S pushes the gap between the left and right stopper members 52a against the urging force of the spring 52b, passes through the first stopper 52, and falls to the second stopper 53 side.
  • the first slider transfer unit 54 moves the push rod 54c upward by the cylinder 54a contracting the rod 54b.
  • the push claw 54d moves up together with the push rod 54c.
  • the push pawl 54d rides on the slider S stopped by the first stopper 52, and rotates clockwise while resisting the biasing force of the spring 54e. Then, the push pawl 54d moves above the slider S and enters between adjacent sliders S.
  • the second slider transfer section 55 includes a cylinder 55a, a bracket 55c attached to the tip of the rod 55b of the cylinder 55a, a swingable attachment to the bracket 55c, a push claw 55d for pushing the slider S, a bracket 55c and a push And a spring 55e disposed between the claws 55d and biasing the push claw 55d in the counterclockwise direction in FIG.
  • the cylinder 55a extends the rod 55b, and moves down the bracket 55c.
  • the push claw 55d moves downward together with the bracket 55c.
  • the push claw 55d pushes the slider S stopped by the second stopper 53 downward.
  • the slider S pushes and widens the gap between the left and right stopper members 53 a against the urging force of the spring 53 b, passes through the second stopper 53, and between the left and right slider holding pieces 33 a of the slider holder 33. Get in.
  • the first slider transfer unit 54 pushes the slider S only once after the second slider transfer unit 55 supplies the slider S to the slider holder 33. Therefore, there is always only one slider S between the first stopper 52 and the second stopper 53. For this reason, the second slider transfer part 55 can supply the slider S to the slider holder 33 more reliably.
  • the second slider transfer section 55 moves the bracket 55c upward by the cylinder 55a contracting the rod 55b.
  • the push claw 55d moves up together with the bracket 55c.
  • the push claw 55d rides on the slider S stopped by the second stopper 53, and rotates clockwise while resisting the urging force of the spring 55e. Then, the push claw 55d moves above the slider S.
  • the stopper supply device 60 is arranged in a V shape in rear view, and a pair of left and right chutes 61 in which a plurality of upper stoppers P1 are loaded in a predetermined posture, and left and right chutes.
  • a pair of left and right stop supply portions 62 that are attached to the lower end portions of 61 and that supply the upper stop portion P1 located at the lowermost end in the left and right chutes 61 to the stop portion holder 34, respectively.
  • unillustrated parts feeders are connected to the upper ends of the left and right chutes 61, respectively.
  • the stop supply portion 62 is attached to the tip of the cylinder 63 and the rod 63 a of the cylinder 63, and pushes the upper stop P ⁇ b> 1 into the stop receiving recess 34 c of the stop holder 34.
  • the plunger 64 is provided between the lower surface of the plunger 64 so as to be slidable along the longitudinal direction of the plunger 64, and is disposed between the chute 61 and the plunger 64, and is disposed between the chute 61 and the plunger 64.
  • a first spring 66 that biases 64 toward the cylinder 63
  • a second spring 67 that is disposed between the plunger 64 and the stopper support member 65, and biases the stopper support member 65 away from the cylinder 63; Is provided.
  • the stopper supply portion 62 is configured such that when the rod 63 a of the cylinder 63 contracts, the plunger 64 retracts from the lowermost end of the chute 61 and the stopper supporting member 65 is positioned at the lowermost end.
  • the part P1 is supported from below. Thereby, the stopper support member 65 prevents the upper stopper P ⁇ b> 1 from dropping from the chute 61.
  • the stop part supply part 62 moves the plunger 64 to the lowest end of the chute
  • the upper stopper P ⁇ b> 1 located at the lowermost end in the chute 61 is pushed by the plunger 64 and pushed into the stopper receiving recess 34 c of the stopper holder 34.
  • the tip of the stopper support member 65 is inserted between the upper and lower anvils 34a and 34b of the stopper holder 34.
  • the stopper support member 65 always supports the upper stopper P1 that is pushed into the stopper accommodating recess 34c from below.
  • the stop support member 65 prevents the top stop P1 from falling and keeps the top stop P1 in a predetermined posture until the top stop P1 is pushed into the stop receiving recess 34c. To do.
  • the first spring 66 contracts between the chute 61 and the plunger 64 when the plunger 64 pushes the upper stopper P1 into the stopper accommodating recess 34c.
  • the second spring 67 contracts between the plunger 64 and the stopper support member 65 when the stopper support member 65 is inserted between the upper and lower anvils 34a and 34b.
  • the second transfer device 70 grips the fastener chain C1 to which the slider S and the upper stopper P1 are attached, and transfers the fastener chain C1 to the downstream side.
  • the second transfer device 70 includes a gripper 71 that grips the left and right fastener tapes T of the fastener chain C ⁇ b> 1 and a moving device (not shown) that moves the gripper 71 in the upstream direction and the downstream direction.
  • the gripper 71 is configured to grip the front and back surfaces of the fastener tape T at the downstream end in the length direction of the fastener chain C1.
  • the cutting device 80 is disposed on the upstream side of the component mounting device 30, the blade portion 81 disposed above the transfer line L, and the table disposed below the transfer line L. Unit 82.
  • the blade portion 81 and the base portion 82 are driven up and down by a cylinder device (not shown). Then, the base portion 82 moves up and the blade portion 81 moves down, whereby the fastener chain C1 is cut. Further, in the slide fastener assembling apparatus 10 of the present embodiment, the fastener chain C1 to which the slider S and the upper stopper P1 are attached is cut into a predetermined length by the cutting device 80, so that the slide fastener SF is finished.
  • the slider S is moved to the slider holder 33 of the component holder 31 by the second slider transfer unit 55 of the slider supply device 50 as shown in FIGS. Supplied. At this time, the slider S is sandwiched between the left and right slider holding pieces 33a. Further, the left and right top stoppers P ⁇ b> 1 are supplied to the stopper holder 34 of the component holder 31 by the stopper supply part 62 of the stopper supply device 60, as shown in FIGS. 10 and 11. At this time, the left and right top stoppers P1 are housed in the left and right stopper housing recesses 34c.
  • the component holder 31 pivots downward as the rotating shaft 32 a rotates and is disposed at the component mounting position.
  • the tape insertion slit S3 of the slider S held by the slider holder 33 and the left and right upper stoppers P1 held by the stopper holder 34 are arranged on the transfer line L.
  • the fastener chain C1 is transferred to a predetermined position of the component mounting device 30 by the first transfer device 20, as shown in FIG.
  • the fastener chain C1 passes through the slider S supported by the slider holder 33 and the slider support portion 41.
  • the slider S is attached to the fastener chain C1.
  • the fastener chain C1 is inserted into the left and right upper stoppers P1 held by the stopper holder 34.
  • the cam surfaces 22a of the first transfer device 20 slightly push up the slider holder 33 via the left and right rollers 33c and the left and right slide rods 33b. Thereby, the slider holding piece 33a of the slider holder 33 is retracted upward from the transfer line L.
  • the lower anvil 34b moves upward toward the upper anvil 34a as the caulking portion 42 moves upward.
  • the left and right top stoppers P1 are caulked between the upper and lower anvils 34a, 34b and attached to the left and right fastener tapes T of the fastener chain C1.
  • the second transfer device 70 moves to a position where it holds the fastener chain C1.
  • the second transfer device 70 grips the fastener chain C1, and the first transfer device 20 releases the grip of the fastener chain C1.
  • the second transfer device 70 receives the fastener chain C1 from the first transfer device 20.
  • the first transfer device 20 is returned to the original position on the upstream side.
  • the component holder 31 pivots upward by the rotation of the rotating shaft 32a and is positioned at the component supply position. Thereby, since the component holder 31 retracts from the transfer line L, the second transfer device 70 can transfer the fastener chain C1 along the transfer line. Further, as shown in FIGS. 8 to 11, the slider S and the left and right top stoppers P1 attached to the next fastener chain C1 are held in the component holder 31 located at the component supply position.
  • the second transfer device 70 transfers the fastener chain C1 by a predetermined length while the component holder 31 is retracted from the transfer line L.
  • the transfer stop and cutting position of the fastener chain C1 are positioned by a positioning device (not shown).
  • the fastener chain C1 is cut into a predetermined length by the cutting device 80 and finished into a slide fastener SF.
  • the slide fastener SF is transferred to a discharge unit (not shown) by the second transfer device 70. Further, the assembly of the next slide fastener SF is started immediately after the slide fastener SF that has been finished is transferred to the outside of the swivel range of the component holder 31.
  • the step in which the slider S and the upper stopper P1 are supplied to the component holder 31, and the second transfer device 70 receives the fastener chain C1 from the first transfer device 20, and the slide The process until the fastener SF is discharged is performed in parallel.
  • the stopper supply device 60 includes the pair of chutes 61 loaded with the plurality of top stoppers P1 and the top stoppers in the pair of chutes 61.
  • a pair of stop portion supply portions 62 that supply one of the portions P1 to the stop portion holder 34 of the component mounting device 30, so that the top stop portion P1 can be used as a component without swinging the chute as in the prior art.
  • the attachment device 30 can be supplied.
  • the stop part supply device 60 can prevent the supply failure of the top stop part P1 from the chute 61 to the component mounting device 30, and also prevents the supply failure of the top stop part P1 from the parts feeder to the chute 61. can do.
  • the component holder 31 includes the component supply position for supplying the slider S and the top stopper P1 to the component holder 31, and the component holder 31 moves the slider S and the fastener chain C1. Since it is configured to be displaced between the component mounting position to which the top stopper P1 is attached, another assembly process is performed in parallel while the slider S and the top stopper P1 are supplied to the component holder 31. Thus, the assembly time of the slide fastener SF can be shortened.
  • the stopper supplying portion 62 pushes the upper stopper P1 into the stopper receiving recess 34c of the stopper holder 34, and the plunger 64 on the lower surface of the plunger 64.
  • a stopper supporting member 65 that is provided so as to be slidable along the longitudinal direction of the chute 61 and supports the upper stopper P1 in the chute 61 from below, so that the upper stopper P1 is dropped into the stopper accommodating recess 34c. It can be pushed in reliably.
  • the first transfer device 20 and the second transfer device 70 since the first transfer device 20 and the second transfer device 70 are provided, the first transfer device 20 starts transferring the fastener chain C1, and the slider S and the upper
  • the process in which the stopper P1 is supplied to the component holder 31 and the process in which the second transfer device 70 receives the fastener chain C1 from the first transfer device 20 and the slide fastener SF is discharged can be performed in parallel. And the assembly time of the slide fastener SF can be shortened.
  • the present invention is not limited to those exemplified in the above embodiment, and can be appropriately changed without departing from the gist of the present invention.
  • the 1st transfer apparatus 20 bears all the transfers of the fastener chain C and the slide fastener SF.
  • the transfer device may be a feed roll and a press roll arranged to face each other across the transfer line. In this case, the fastener chain C1 is clamped by the feed roll and the press roll, and is transferred by rotating the feed roll and the press roll.
  • Slide Fastener Assembly Device 20 First Transfer Device (Transfer Device) DESCRIPTION OF SYMBOLS 30 Component mounting device 31 Component holder 32 Holder main body 33 Slider holder 33a Slider holding piece 34 Stop part holder 34a Upper anvil 34b Lower side anvil 34c Stop part accommodating recessed part 41 Slider support part 42 Caulking part 50 Slider supply apparatus 51 Chute 52 First stopper 53 2nd stopper 54 1st slider transfer part 55 2nd slider transfer part 60 stop part supply apparatus 61 chute 62 stop part supply part 63 cylinder 63a rod 64 plunger 65 stop part support member 70 2nd transfer apparatus (transfer apparatus) 80 Cutting device L Transfer line C1 Fastener chain SF Slide fastener S Slider P1 Top stop (stop)

Landscapes

  • Slide Fasteners (AREA)

Abstract

 L'invention concerne un appareil d'assemblage de fermetures à glissière capable d'empêcher une pièce de butée d'être incorrectement distribuée par une goulotte à un dispositif de fixation de composants, et capable également d'empêcher la pièce de butée d'être incorrectement distribuée à partir d'un distributeur de pièces à la goulotte. La présente invention comprend : un dispositif de transport (20, 70) pour transporter une chaîne de fermeture (C1) ; un dispositif de fixation de composants (30) pour fixer un curseur (S) et une pièce de butée (P1) à la chaîne de fermeture transportée (C1) ; un dispositif de fourniture de curseurs (50) pour fournir le curseur (S) au dispositif de fixation de composants (30) ; et un dispositif de fourniture de pièces de butée (60) pour fournir la pièce de butée (P1) au dispositif de fixation de composants (30). Le dispositif de fourniture de pièces de butée (60) est pourvu d'une paire de goulottes (61) dans lesquelles une pluralité de pièces de butée (P1) sont chargées, et d'une paire d'unités de fourniture de pièces de butées (62) pour fournir les pièces de butée (P1) dans la paire de goulottes (61) au dispositif de fixation de composants (30).
PCT/JP2014/054680 2014-02-26 2014-02-26 Appareil d'assemblage de fermetures à glissière WO2015128962A1 (fr)

Priority Applications (3)

Application Number Priority Date Filing Date Title
CN201480022304.6A CN105188459B (zh) 2014-02-26 2014-02-26 拉链组装装置
PCT/JP2014/054680 WO2015128962A1 (fr) 2014-02-26 2014-02-26 Appareil d'assemblage de fermetures à glissière
TW104105944A TWI556765B (zh) 2014-02-26 2015-02-25 拉鏈組裝裝置

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
PCT/JP2014/054680 WO2015128962A1 (fr) 2014-02-26 2014-02-26 Appareil d'assemblage de fermetures à glissière

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WO2015128962A1 true WO2015128962A1 (fr) 2015-09-03

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Cited By (3)

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Publication number Priority date Publication date Assignee Title
CN108145437A (zh) * 2018-02-05 2018-06-12 嘉成伟业无锡智能装备科技有限公司 拉链装配机链耳夹总成协作装置
CN110652080A (zh) * 2018-06-29 2020-01-07 Ykk株式会社 打开件供给方法及打开件供给装置
CN114603323A (zh) * 2020-12-07 2022-06-10 福建浔兴拉链科技股份有限公司 一种用于拉头组装机的推拉头装置及拉头组装机

Families Citing this family (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TWI616153B (zh) * 2017-03-07 2018-03-01 Ykk Corp 拉頭保持裝置
CN108652143B (zh) * 2017-03-28 2021-03-02 Ykk株式会社 拉链组装装置的零件安装装置
CN110753500B (zh) * 2017-06-27 2022-09-27 Ykk株式会社 用于保持拉头的保持件及保持方法

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US3530563A (en) * 1966-06-27 1970-09-29 Yoshida Kogyo Kk Apparatus for automatically assembling slide fasteners
JPS4842582B1 (fr) * 1969-12-02 1973-12-13
JP2005102715A (ja) * 2003-09-26 2005-04-21 Ykk Corp スライドファスナーの製造装置

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JPS61187105A (ja) * 1985-02-15 1986-08-20 Victor Co Of Japan Ltd 雑音低減回路
JPS61273675A (ja) * 1985-05-29 1986-12-03 Nippon Hoso Kyokai <Nhk> 3次元アドレス発生回路
JPS6277689A (ja) * 1985-09-30 1987-04-09 Yokogawa Electric Corp 一般化ハフ変換回路

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3530563A (en) * 1966-06-27 1970-09-29 Yoshida Kogyo Kk Apparatus for automatically assembling slide fasteners
JPS4842582B1 (fr) * 1969-12-02 1973-12-13
JP2005102715A (ja) * 2003-09-26 2005-04-21 Ykk Corp スライドファスナーの製造装置

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108145437A (zh) * 2018-02-05 2018-06-12 嘉成伟业无锡智能装备科技有限公司 拉链装配机链耳夹总成协作装置
CN108145437B (zh) * 2018-02-05 2023-08-08 嘉成伟业无锡智能装备科技有限公司 拉链装配机链耳夹总成协作装置
CN110652080A (zh) * 2018-06-29 2020-01-07 Ykk株式会社 打开件供给方法及打开件供给装置
CN114603323A (zh) * 2020-12-07 2022-06-10 福建浔兴拉链科技股份有限公司 一种用于拉头组装机的推拉头装置及拉头组装机

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CN105188459B (zh) 2018-05-18
CN105188459A (zh) 2015-12-23
TWI556765B (zh) 2016-11-11
TW201532548A (zh) 2015-09-01

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