Slider hook hanging machine
By designing a multifunctional slider hooking machine, the problem that the existing technology cannot adapt to sliders of various types and sizes is solved, and efficient hooking and surface treatment of various sliders are achieved.
Patent Information
- Application Number
- CN201910398177.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Priority Date
- 2018-05-17
- Filing Date
- 2019-05-14
- Publication Date
- 2025-10-10
- Estimated Expiration
- 2039-05-14
AI Technical Summary
In the prior art, the slider hook hanging machine cannot effectively handle sliders of various types and sizes and is difficult to adapt to sliders of multiple types and sizes.
A slider hooking machine is designed, which includes a frame, a conveying device, a slider hooking device and a slider supply device. Through sliding, rotating and holding devices, it can realize the hooking of sliders of multiple types and sizes.
The effective hooking of sliders of various types and sizes is achieved, and the plating efficiency and surface treatment effect are improved.
Smart Images

Figure CN110496750B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to a slider hooking machine for hooking sliders for a slide fastener onto a plurality of hooking portions of a slider hooking member. Background Art
[0002] As a previous slider hook hanging machine, the following slider hook hanging machine is known, which includes: a groove, which accommodates multiple sliders; a slider conveying and hook alignment detection device, which is arranged at the outlet of the groove; and a slider hanger control device, which moves the slider hanger, and the slider hook hanging machine hooks the slider to multiple hooks of the slider hanger respectively (see, for example, patent document 1).
[0003] Prior art literature
[0004] Patent Literature
[0005] Patent Document 1: Chinese Patent No. 102433580 Summary of the Invention
[0006] Problems to be solved by the invention
[0007] However, the slider hooking machine described in Patent Document 1 is configured to handle only one type and one size of slider, and therefore a device that can handle multiple types and multiple sizes of sliders is desired.
[0008] The present invention has been made in view of the above-mentioned situation, and an object of the present invention is to provide a slider hooking machine capable of hooking sliders of multiple types and multiple sizes to a hooking portion of a slider hooking member.
[0009] Solutions for solving problems
[0010] The above-mentioned object of the present invention is achieved by the following structure.
[0011] (1) A slider hooking machine that hooks a slider to a plurality of hooking parts of a slider hooking member, and is characterized in that a plurality of hooking parts are arranged in a left-right direction on the slider hooking member, and the slider hooking machine comprises: a frame that arranges and accommodates a plurality of slider hooking members; a conveying device that moves the slider hooking member in the frame; a slider hooking device that hooks the slider to a plurality of hooking parts of the slider hooking member moved by the conveying device; and a slider supplying device that supplies the slider to the slider hooking device.
[0012] (2) The slider hook hanging machine according to (1) is characterized in that:
[0013] The puller hooking device comprises: a first sliding device arranged in the front-rear direction; a second sliding device arranged orthogonally to the first sliding device; a rotating device mounted to the first sliding device or the second sliding device; and a puller holder mounted to the rotating device and holding the puller.
[0014] (3) The puller hooking machine according to (1), wherein
[0015] The conveying device intermittently conveys the puller hooking member in a manner in which the open top end of each hooking portion and the rear opening of the puller are aligned in a straight line within a range in which the puller hooking device hooks the puller.
[0016] (4) The puller hooking machine according to (2), wherein
[0017] The puller holder has a recess that holds the puller,
[0018] The recess holds the puller in a state in which the guide post of the puller and the shoulder opening are exposed to the outside of the recess.
[0019] (5) The puller hooking machine according to (1), wherein
[0020] The puller supply device comprises: a slot that accommodates a plurality of pullers; a conveying claw provided at a lower end portion of the slot and that loads the puller at the lowermost end within the slot toward the puller holder; and a cylinder device that drives the conveying claw.
[0021] (6) The puller hooking machine according to any one of (1) to (5), wherein
[0022] The hooking portion is a hook.
[0023] (7) The puller hooking machine according to (6), wherein
[0024] The hook has at least one bent portion that is arranged at 30° to 45° with respect to the vertical direction.
[0025] (8) The puller hooking machine according to any one of (1) to (5), wherein
[0026] The hooking portion is a notch that is formed by partially cutting a hooking plate of the puller hooking member,
[0027] (9) The puller hooking machine according to any one of (8), wherein
[0028] A space that allows good flow of plating liquid is provided below the notch.
[0029] Effects of the Invention
[0030] According to the present invention, it is provided with: a rack which arranges and stores a plurality of slider hooking members; a conveying device which moves the slider hooking members in the rack; a slider hooking device which hooks the sliders respectively to a plurality of hooking parts of the slider hooking members moved by the conveying device; and a slider supplying device which supplies sliders to the slider hooking device, thereby being able to hook sliders of a plurality of types and a plurality of sizes to the hooking parts of the slider hooking members. BRIEF DESCRIPTION OF THE DRAWINGS
[0031] Figure 1 This is a schematic side view illustrating a slider hooking unit to which one embodiment of the slider hooking machine according to the present invention is applied.
[0032] Figure 2 yes Figure 1 The front view of the slider hook hanging machine is shown.
[0033] Figure 3 Viewed from the lower left Figure 2 Figure 1 shows the slider hooking device.
[0034] Figure 4 Observed from the front Figure 3 Figure 1 shows a slider holder.
[0035] Figure 5 Observed from the bottom Figure 4 Figure 1 shows a slider holder.
[0036] Figure 6 This is an enlarged view of the slider held in the recess of the slider holder, as viewed from the front.
[0037] Figure 7 This is an enlarged view of the slider held in the recess of the slider holder, as seen from the bottom side.
[0038] Figure 8 This is an enlarged front view showing the positional relationship between the hook and the slider.
[0039] Figure 9 This is a schematic diagram illustrating the movement of a slider when a slider corresponding to a metal fastener element is hooked onto a hook.
[0040] Figure 10 This is a schematic diagram illustrating the movement of the slider when the slider corresponding to the spiral fastener element is hooked on the hook.
[0041] Figure 11 This is a schematic diagram illustrating the movement of the slider when the slider corresponding to the synthetic resin fastener element is hooked on the hook.
[0042] Figure 12 It is a top view explaining the slider.
[0043] Figure 13 It is a side view explaining the slider.
[0044] Figure 14 It is a front view explaining the slider support tool.
[0045] Figure 15 It is the front view of the slider hook component.
[0046] Figure 16 It is a side view of the slider hook component.
[0047] Figures 17A to 17D This is a diagram showing another form of the hook portion.
[0048] Description of Reference Numerals
[0049] 10. Slider hooking unit; 11. Hanger setting part; 12. Robot; 20. Slider hooking machine; 30. Rack; 40. Conveying device; 41. Holding device; 42. Moving device; 50. Slider hooking device; 51. First sliding device; 52. Second sliding device; 53. Rotating device; 60. Slider holder; 61. Recess; 70. Slider supply device; 71. Groove; 72. Conveying claw; 73. Cylinder device; A. Slider supporting device; E. Slider hooking member; F. Hook; H. Hanger; SL, Slider; D. Slider body; D3. Guide column; D7. Shoulder mouth; D8. Back mouth; P. Pull tab. DETAILED DESCRIPTION
[0050] Hereinafter, a slider hook unit of one embodiment of the slider hook machine of the present invention will be described in detail based on the accompanying drawings. Figure 2 The upper side of the paper refers to the lower side relative to Figure 2 The lower side of the paper, the front side refers to the Figure 2 The front side refers to the paper side, and the back side refers to the side relative to Figure 2 The left side refers to the inner side of the paper. Figure 2 The left side of the paper refers to the right side relative to Figure 2 In addition, regarding the slider, it is assumed that the upper side refers to the right side relative to the Figure 12 The front side of the paper refers to the front side, and the bottom side refers to the side relative to Figure 12 The front side refers to the inner side relative to the paper surface. Figure 12 The upper side of the paper, the back side refers to the Figure 12 The lower side of the paper, the left side refers to the Figure 12 The left side of the paper refers to the right side relative to Figure 12 The right side of the paper.
[0051] like Figure 1 As shown, the slider hooking unit 10 includes: a slider hooking machine 20, which hooks the slider SL to multiple hooks F of the slider hooking component E respectively; a hanger setting part 11, which is provided with a hanger H, and the hanger H is provided for installing multiple slider hooking components E; a robot 12, which holds the slider hooking component E with the slider SL hooked in the slider hooking machine 20, and installs the slider hooking component E to the hanger H of the hanger setting part 11.
[0052] Here, the slider SL will be described. Figure 12 and Figure 13 As shown, the slider SL includes a slider body D and a pull tab P attached to the slider body D. The slider body D includes an upper wing plate D1 and a lower wing plate D2, which are separated and arranged opposite each other in the vertical direction; a guide post D3 connecting the upper and lower wing plates D1 and D2 at their front ends; an upper flange D4 provided along the left and right edges of the upper wing plate D1; a lower flange D5 provided along the left and right edges of the lower wing plate D2; and a pull tab mounting portion D6 provided on the upper wing plate D1 for mounting the pull tab P. Furthermore, left and right shoulder openings D7 are formed at the front of the slider body D, separated by the guide post D3, and a rear opening D8 is formed at the rear of the slider body D. Furthermore, a generally Y-shaped fastener element guide path D9 is formed between the upper and lower wing plates D1 and D2, connecting the left and right shoulder openings D7 and the rear opening D8. In addition, a tape groove D10 for passing the fastener tape is formed between the upper flange D4 and the lower flange D5. Figure 12 and Figure 13 The slider SL shown is a slider corresponding to a metal zipper element, but is not limited thereto and may also be a slider Figure 10 The slider corresponding to the spiral zipper element shown, and Figure 11 The slider corresponding to the synthetic resin zipper element shown in FIG. Figure 3 、 Figure 5 、 Figure 7 In order to easily understand the drawings, the pull-tab P is omitted.
[0053] In addition, a slider support device A including a hanger H and a plurality of slider hook members E will be described. Figure 14As shown, the slider support device A includes: a slider hooking member E having a plurality of (in this embodiment, eight) hooks F for hooking the slider SL; and a hanger H on which a plurality of (in this embodiment, seven) slider hooking members E are mounted. The hanger H is formed by assembling a frame into a ladder shape, and a plurality of slider hooking members E are arranged and mounted in an up-down direction. In addition, the hanger H is installed in a manner that stands upright on the hanger installation portion 11. Alternatively, the slider support device A may have four hangers H arranged in a quadrilateral shape when viewed from above, and the slider hooking members E are mounted on each of the four hangers H. In addition, the shape of the hanger H may also be a shape other than a ladder shape.
[0054] like Figure 15 and Figure 16 As shown in FIG. 1 , a plurality of hooks F are arranged along the left and right directions on the slider hooking member E. The hook F is formed by bending a metal wire in a plane. The bending portion of the hook F may be one, but as shown in FIG. Figure 9 and Figure 10 As shown, two or more curved portions may be provided so that the slider SL is not close to the slider hook member E. This improves the circulation of the plating solution between the slider SL and the slider hook member E, and with this, the plating efficiency is improved. In addition, the guide post D3 of the slider SL is hooked to the hook F. In addition, the hook F is arranged at θ = 45° relative to the vertical direction (vertical direction) within the plane along the vertical and horizontal directions. Therefore, as Figure 8 As shown, when the slider SL is hooked to the hook F, the tab P can be separated from the slider body D, allowing the entire surface of the slider SL to be surface treated in the subsequent surface treatment process. Surface treatment processes include, for example, plating, electrostatic coating, and painting. Furthermore, the angle θ of the hook F relative to the vertical direction is not limited, as long as it is an angle such that the tab P of the slider SL hooked to the hook F does not contact the slider body D. Specifically, it is preferably 30° to 45°, and more preferably 45°. If the angle θ of the hook F is less than 30°, the likelihood of the tab P contacting the slider body D during the surface treatment process due to aeration and other factors increases, resulting in surface treatment defects. If the angle θ of the hook F exceeds 45°, the likelihood of the slider SL detaching from the hook F increases. Furthermore, if the slider hook member E is reversed in its vertical orientation, the slider SL detaches from the hook F and falls. Furthermore, the diameter of the hook F can be set larger than the width of the groove D10 of the slider SL. Furthermore, the hooks F may be arranged not only in the horizontal direction but also in the vertical direction. Furthermore, the hooks F may be replaceable. Furthermore, the slider hook member E may have a plurality of holes formed therethrough in the front-to-back direction for allowing the treatment liquid in the surface treatment process to flow.
[0055] In addition, the hook F may be arranged in a direction perpendicular to the longitudinal direction of the second sliding device 52 described later when the device is viewed from the front. Figure 2 The hook F is bent at a desired angle (in the upper right direction). In this case, the upper surface of the slider SL hooked to the hook F faces outward, allowing the surface treatment liquid to easily adhere to the upper surface of the slider SL during the surface treatment process. Furthermore, the hook F is replaceable. Alternatively, the slider hook member E may be formed with multiple holes extending through it in the front-to-back direction for circulating the treatment liquid during the surface treatment process.
[0056] like Figure 1 As shown, the robot 12 is a robot arm having a plurality of rotation axes, and a holding device 12 a for holding the slider hooking member E is attached to the tip portion of the robot arm.
[0057] like Figure 2 As shown, the slider hooking machine 20 includes: a frame 30, which stores a plurality of slider hooking components E arranged in the up-down direction; a conveying device 40, which moves the slider hooking component E of the bottom layer in the frame 30 to the left; a slider hooking device 50, which hooks the slider SL to a plurality of hooks F of the slider hooking component E moved by the conveying device 40; and a slider supplying device 70, which supplies the slider SL to the slider hooking device 50.
[0058] like Figure 2 As shown, the conveying device 40 is used to hold the slider hooking member E at the bottom layer in the frame 30 and convey it toward the slider hooking device 50. The conveying device 40 includes a holding device 41 that holds the slider hooking member E and a moving device 42 that moves the holding device 41 in the left-right direction. The moving device 42 includes a guide rail 42a extending in the left-right direction and a sliding member 42b slidably mounted on the guide rail 42a. The holding device 41 is mounted on the sliding member 42b.
[0059] Furthermore, the conveying device 40 intermittently conveys the slider hooking member E within the range where the slider hooking device 50 hooks the slider SL, such that the orientation of the open top end of each hook F is aligned with the orientation of the rear opening D8 of the slider SL (or, in other words, the direction of the slider conveyance). Furthermore, the slider hooking device 50 operates to hook the slider SL onto the hooks F during a pause during the intermittent conveyance of the slider hooking member E. This allows the slider SL to be sequentially hooked onto the multiple hooks F of the slider hooking member E. Furthermore, after the slider SL is hooked onto all of the hooks F, the conveying device 40 conveys the slider hooking member E to the position where the robot 12 holds the slider hooking member E (in this embodiment, the left end of the moving device 42). The range where the slider hooking device 50 hooks the slider SL refers to the range from when the leftmost hook F of the multiple hooks F arranged in the left-right direction of the slider hooking member E reaches the slider hooking position until when the rightmost hook F reaches the slider hooking position. In addition, regarding the open top end of the hook F, Figure 9 and Figure 10 In the case of the hook F shown in FIG. 1 , the portion from the third curved portion F3 to the top of the hook is Figure 11 In the case of the hook F shown in FIG. 1 , the hook portion is from the second curved portion F2 to the top of the hook. Figures 17A to 17D As shown, the shape of the portion of the hooking slider SL can be changed from a hook to a notch H formed by partially cutting out the hooking plate G. Such a shape is not easy to break. Figure 17C As shown, a space may be provided below the notch H to facilitate the flow of the plating solution.
[0060] like Figure 3 As shown, the slider hooking device 50 includes: a first sliding device 51, which is arranged along the front-to-back direction; a second sliding device 52, which is arranged orthogonal to the first sliding device 51; a rotating device 53, which is installed on the second sliding device 52; and a slider retaining member 60, which is installed on the rotating device 53 to hold the slider SL.
[0061] The first slide device 51 includes a guide rail 51a, which is mounted on a base (not shown) and extends in the front-rear direction; and a slide member 51b, which is mounted on the guide rail 51a in a slidable manner. The second slide device 52 is mounted on the slide member 51b. In addition, the direction in which the second slide device 52 is slidably moved by the first slide device 51 is referred to as the X direction (refer to FIG. Figure 3 ).
[0062] The second sliding device 52 includes a guide rail 52a, which is attached to the sliding member 51b of the first sliding device 51 and extends obliquely in the vertical direction; and a sliding member 52b, which is slidably attached to the guide rail 52a. In addition, the rotating device 53 is attached to the sliding member 52b. In addition, the direction in which the rotating device 53 is slidably moved by the second sliding device 52 is set as the Y direction (refer to Figure 3 ).
[0063] The rotating device 53 is mounted on the sliding member 52b of the second sliding device 52 and has a rotating shaft 53a. The rotating shaft 53a is arranged orthogonally to the second sliding device 52 and protrudes downward. The slider holder 60 is mounted on the rotating shaft 53a. In addition, the direction in which the slider holder 60 is rotated by the rotating device 53 is set as the Z rotation direction (refer to Figure 3 ) In addition, the rotating shaft 53a is driven by a motor (not shown) disposed in the rotating device 53.
[0064] like Figure 4 and Figure 5 As shown, the slider holder 60 is attached to the rotating shaft 53a of the rotating device 53, and a recess 61 for holding the slider SL is provided at the top end thereof.
[0065] like Figure 6 and Figure 7 As shown, the recess 61 is formed by the following components: a pair of side supports 61a, which support the left and right sides of the slider SL; an upper surface support 61b, integrally formed with the pair of side supports 61a, which supports the upper surface of the slider SL; a lower surface support 61c, which supports the lower surface of the slider SL; and a rear surface support 61d, integrally formed with the lower surface support 61c, which supports the rear surface of the slider SL. Furthermore, the recess 61 holds the slider SL with its guide post D3 and shoulder D7 exposed to the outside. Furthermore, the recess 61 holds the slider SL with its front-to-back and left-to-right directions perpendicular to the rotation axis 53a of the rotating device 53.
[0066] And, as Figure 2 and Figure 8As shown, the slider hooking device 50 is arranged at θ=45° relative to the vertical direction in the same manner as the hook F in order to hook the slider SL to the hook F, and is arranged so that the position of the hook F during the temporary stop process of the intermittent transportation by the conveying device 40 and the position of the guide column D3 of the slider SL are aligned on a straight line. In addition, the slider supply device 70 described later is also arranged at θ=45° relative to the vertical direction in order to directly supply the slider SL to the slider hooking device 50 arranged at an angle relative to the transportation direction of the hook member E. In the case where the hook portion is in the shape of a notch H formed by partially cutting out the hook plate G, as shown in FIG. Figure 17D As shown, the hook portion is arranged at θ=45° with respect to the vertical direction, similarly to the case of the hook shape.
[0067] In the slider hooking device 50 thus constructed, the slider SL held by the slider holder 60 can be freely moved in the X direction, the Y direction, and the Z rotation direction by means of the first sliding device 51, the second sliding device 52, and the rotating device 53. In other words, the slider SL can be moved and hooked onto the hook F according to the shapes of sliders SL of various types and sizes (see Figures 9 to 11 ). In addition, the action of hooking the slider SL to the hook F is performed by simultaneously driving the first sliding device 51, the second sliding device 52 and the rotating device 53, thereby enabling the slider SL to be hooked to the hook F with the shortest distance.
[0068] exist Figure 9 and Figure 10 The hook F, which is used to hook a slider SL compatible with metal zipper elements and spiral zipper elements, is shown. The hook F has, from its base, a first curved portion F1 to a third curved portion F3. Therefore, a recess F4 is formed between the first curved portion F1 and the hook's tip. When the slider is hooked, the guide post D3 of the slider SL enters this recess F4. Furthermore, even if the slider SL floats due to aeration during the surface treatment process, the second and third curved portions F2, F3 of the hook F can be prevented from contacting the inner surfaces of the slider's flanges D4 and D5, preventing the slider SL from being dislodged from the hook F.
[0069] exist Figure 11 The figure shows a hook F for hooking a slider SL corresponding to a synthetic resin zipper element. The hook F has a first curved portion F1 and a second curved portion F2 in order from the base. Therefore, a recess F4 is formed between the first curved portion F1 and the top of the hook F. When the slider is hooked, the guide post D3 of the slider SL enters the recess F4. Figure 11In the case of the hook F, the front ends of the flanges D4 and D5 of the slider SL are in contact with the hook F. Therefore, the slider SL does not float due to aeration or the like in the surface treatment process, thereby preventing the slider SL from being detached from the hook F. In addition, the lengths of the flanges D4 and D5 of the slider SL corresponding to the synthetic resin zipper elements are formed to be longer than Figure 9 and Figure 10 The lengths of the flanges D4 and D5 of the slider SL are long.
[0070] like Figure 2 As shown, the slider supply device 70 includes a groove 71 that stores a plurality of sliders SL in a predetermined position; a feed claw 72 provided at the lower end of the groove 71 and loading the slider SL located at the lower end of the groove 71 into the recess 61 of the slider holder 60; and a cylinder device 73 that drives the feed claw 72 in the vertical direction. The cylinder device 73 moves the feed claw 72 downward, causing the feed claw 72 to deliver the slider SL toward the slider holder 60 and load it into the recess 61.
[0071] As described above, the slider hooking machine 20 according to this embodiment is provided with: a frame 30, which arranges and stores a plurality of slider hooking components E in the up and down directions; a conveying device 40, which moves the slider hooking component E of the bottom layer in the frame 30 to the left; a slider hooking device 50, which hooks the slider SL to a plurality of hooks F of the slider hooking component E moved by the conveying device 40; and a slider supply device 70, which supplies the slider SL to the slider hooking device 50, so that sliders SL of multiple types and multiple sizes can be hooked to the hooks F of the slider hooking component E.
[0072] Furthermore, according to the slider hooking machine 20 of this embodiment, the conveying device 40 intermittently conveys the slider hooking member E, and therefore, there is no need to move the slider hooking device 50 in accordance with the plurality of hooks F arranged on the slider hooking member E. Thus, there is no need to provide a device for moving the slider hooking device 50, thereby reducing manufacturing costs.
[0073] Furthermore, according to the slider hooking machine 20 of this embodiment, the slider SL held by the slider holder 60 can be freely moved in the X direction by the first slide 51 , the Y direction by the second slide 52 , and the Z rotation direction by the rotation device 53 .
[0074] In addition, according to the slider hooking machine 20 of this embodiment, the recess 61 of the slider holder 60 holds the slider SL in a state where the guide post D3 and the shoulder D7 of the slider SL are exposed to the outside, so that the guide post D3 of the slider SL can be hooked on the hook F.
[0075] In addition, the slider hooking machine 20 according to the present embodiment is provided with a slot 71 that houses a plurality of sliders SL, a conveying claw 72 that is provided at a lower end portion of the slot 71 and that loads the slider SL at the lowermost end within the slot 71 toward the slider holder 60, and a cylinder device 73 that drives the conveying claw 72, and thus it is possible to supply the sliders SL one by one toward the slider holder 60.
[0076] Furthermore, the present application is not limited to the contents exemplified by the above-described embodiments, and can be appropriately changed within a range not departing from the gist of the present application.
[0077] For example, the arrangement angle θ of the slider hooking device 50 and the slider supply device 70 is not limited to 45° with respect to the vertical direction, and is appropriately changed in correspondence with the arrangement angle θ of the hook F.
[0078] In addition, in the slider hooking device 50, the mounting positions of the first sliding device 51 and the second sliding device 52 can be reversed, and the rotating device 53 can be mounted to the first sliding device 51.
Claims
1. A slider hooking machine (20) for hooking a slider (SL) to a plurality of hooking portions of a slider hooking member (E), wherein the slider hooking member (E) is arranged in a vertical direction and mounted on a slider support device (A), characterized in that: The slider hooking member (E) is provided with a plurality of hooking portions arranged in a left-right direction. The slider hook hanging machine (20) has: a rack (30) for arranging and accommodating a plurality of the slider hooking members (E); a conveying device (40) for moving the slider hooking member (E) within the frame (30); a slider hooking device (50) for hooking the slider (SL) to the plurality of hooking portions of the slider hooking member (E) moved by the conveying device (40); and a slider supply device (70) for supplying the slider (SL) to the slider hooking device (50), The conveying device (40) is used to hold the slider hooking member (E) stored in the frame (30) and convey it toward the slider hooking device (50). The conveying device (40) intermittently conveys the slider hooking member (E) in a manner such that the directions of the open top ends of the hooking portions and the direction of the rear opening (D8) of the slider (SL) are aligned in a straight line within the range where the slider hooking device (50) hooks the slider (SL). The action of the slider hooking device (50) for hooking the slider (SL) to the hook portion is performed during a temporary stop during the intermittent conveyance of the slider hooking member (E).
2. The slider hook hanging machine (20) according to claim 1, characterized in that: The slider hooking member (E) at the bottom layer in the frame (30) is moved.
3. The slider hook hanging machine (20) according to claim 1, characterized in that: The slider hooking device (50) comprises: a first sliding device (51) which is arranged along the front-to-back direction; a second sliding device (52) which is arranged orthogonal to the first sliding device (51); a rotating device (53) which is installed on the first sliding device (51) or the second sliding device (52); and a slider retaining member (60) which is installed on the rotating device (53) to retain the slider (SL).
4. The slider hook hanging machine (20) according to claim 3, characterized in that: The slider holder (60) has a recess (61) for holding the slider (SL). The recess (61) holds the slider (SL) in a state where the guide post (D3) and the shoulder (D7) of the slider (SL) are exposed to the outside of the recess (61).
5. The slider hook hanging machine (20) according to claim 3, characterized in that: The slider supply device (70) comprises: a groove (71) for accommodating the plurality of sliders (SL); a conveying claw (72) provided at the lower end of the groove (71) for loading the slider (SL) at the lower end of the groove (71) into the slider holder (60); and a cylinder device (73) for driving the conveying claw (72).
6. The slider hook hanging machine (20) according to any one of claims 1 to 5, characterized in that: The hooking portion is a hook (F).
7. The slider hook hanging machine (20) according to claim 6, characterized in that: The hook (F) has at least one bent portion (F1 to F3) and is arranged at an angle of 30° to 45° relative to the vertical direction.
8. The slider hook hanging machine (20) according to any one of claims 1 to 5, characterized in that: The hook portion is a notch (H) formed by partially cutting out the hook plate (G) of the slider hook member (E).
9. The slider hook hanging machine (20) according to claim 8, characterized in that: A space is provided below the notch (H) to facilitate the flow of the plating solution.
Citation Information
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