Zipper assembling equipment

By setting up a chain belt, chain head and chain piece mechanism on the assembly line, the automatic assembly of the zipper is realized, which solves the problems of low automation and low production efficiency in the assembly process of existing zippers, significantly reduces manual labor and improves production efficiency.

CN222898483UActive Publication Date: 2025-05-27DECHENG ZIPPER (DONGGUAN) CO LTD
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Patent Information

Application Number
CN202421760929.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-24
Publication Date
2025-05-27
Estimated Expiration
2034-07-24

AI Technical Summary

Technical Problem

The lack of automation in the assembly process of existing zippers leads to low production efficiency and high labor intensity.

Method used

A zipper assembly device is designed, including an assembly line with a channel, and a chain belt mechanism, a chain head mechanism and a chain plate mechanism are arranged in sequence along the assembly line. Through these mechanisms, the sequential assembly of the chain belt and the chain head, the chain head and the chain plate are realized.

Benefits of technology

Through this equipment, labor labor is greatly reduced and the automation and efficiency of zipper production is improved.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN222898483U_ABST
    Figure CN222898483U_ABST
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Abstract

The utility model relates to the technical field of zipper production, in particular to zipper assembly equipment, which is characterized in that a zipper belt mechanism, a zipper head mechanism and a zipper sheet mechanism are sequentially arranged on an assembly line with a channel in the center, so that the sequential assembly of a zipper belt and a zipper head as well as the zipper head and a zipper sheet can be realized; and all parts of the zipper are assembled and arranged on the same equipment, so that the manual labor is greatly reduced, and the production efficiency and automation of the zipper are improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of zipper production, in particular to a zipper assembly device. Background Art

[0002] A zipper is a common device for connecting the edges of two items, usually used for items such as clothing, backpacks, tents, etc. It consists of two tape strips and a series of toothed metal or plastic elements that can engage and disengage with each other to easily open or close the zipper, bringing great convenience to people's lives.

[0003] A zipper mainly consists of two parallel tape strips, a slider, and sliders provided on the slider. Each tape strip is composed of a pull tape and engaging elements arranged along one side of the pull tape. The engaging elements are in a toothed structure (usually called "chain teeth") and are designed with specific shapes and angles so that they can engage with each other, and there is a link provided above the slider that is snap-connected to the slider.

[0004] Currently, the various components of existing zippers are produced separately. During assembly, workers use tools to achieve the snap connection of the two pull rings on the slider and the slider, and then transfer to other workstations for the next process. Workers then use corresponding tools to assemble the slider and the tape strip so that the chain teeth can engage. Based on this, although the production efficiency can be improved through tools, it still requires a large amount of manual cooperation, resulting in a relatively high labor intensity due to manual operation, and low overall automation and production efficiency. Content of the Utility Model

[0005] The purpose of the utility model is to provide a zipper assembly device, aiming at the deficiencies existing in the above-mentioned prior art, and aiming to solve the technical problem of low overall automation and production efficiency in the current assembly of existing zippers.

[0006] To achieve the above purpose, the technical solution adopted by the utility model is:

[0007] A zipper assembly device includes an assembly line with a channel in the center, and a tape strip mechanism, a slider mechanism, and a slider mechanism are sequentially arranged along the assembly line;

[0008] The tape strip mechanism is arranged at the inlet end of the assembly line. The tape strip structure includes two feeding tapes for feeding the tape strip, and there is a gap between the two feeding tapes for accommodating the chain teeth;

[0009] The slider mechanism is arranged on one side of the feeding tape. The slider mechanism includes a first carrier for accommodating the slider and a clamping structure arranged in cooperation with the first carrier for clamping the slider;

[0010] The link plate mechanism is arranged at the outlet end of the production line. The link plate structure includes a second carrier plate for accommodating the link plates and an extrusion structure arranged in cooperation with the second carrier plate for extruding the link plates.

[0011] Wherein, the feeding belt corresponds to the production line, the channel is communicated with the gap, both the first carrier plate and the second carrier plate are arranged above the production line, and the clamping structure and the extrusion structure are both arranged corresponding to the channel to sequentially assemble the chain belt, the chain head and the link plates.

[0012] The utility model is further arranged as: two pressing plates are further arranged at the inlet end of the production line. The pressing plates are arranged between the chain belt mechanism and the chain head mechanism, and the pressing plates correspond to the feeding belt, so that the chain belt is tightly fixed after entering the production line.

[0013] The utility model is further arranged as: the clamping structure includes a sliding rod, a first telescopic rod slidably connected with the sliding rod, and two clamping pieces fixedly connected with the first telescopic rod. The clamping pieces are arranged above the carrier plate.

[0014] The utility model is further arranged as: the chain head mechanism further includes a second telescopic rod, a first rotating rod and a first fixing rod respectively fixedly connected with the second telescopic rod. The first fixing rod is fixedly connected with one side surface of the sliding rod, and the first rotating rod is fixedly connected with the first carrier plate.

[0015] The utility model is further arranged as: the chain head mechanism further includes a first feeder fixedly connected with the other side surface of the sliding rod. The first feeder corresponds to the first carrier plate, and a plurality of accommodating grooves are formed in the first carrier plate.

[0016] The utility model is further arranged as: the extrusion structure includes two pushing members symmetrically distributed along the channel and third telescopic rods respectively fixedly connected with the two pushing members. The two third telescopic rods are respectively fixedly connected to two symmetrical side surfaces of the production line.

[0017] The utility model is further arranged as: the pushing member includes a fixed block, a fourth telescopic rod fixedly connected with the fixed block, and a pressing block fixedly connected with the fourth telescopic rod. The third telescopic rod is fixedly connected with the fixed block, and the third telescopic rod and the fourth telescopic rod are perpendicular to each other.

[0018] The utility model is further arranged as: a first groove and two second grooves which are symmetrically distributed and communicated with the first groove are formed in one side surface of the pressing block facing the production line. The first groove is perpendicular to the second grooves. An expandable extrusion block is arranged in the first groove, and an expandable clamping block is arranged in the second grooves.

[0019] The utility model is further arranged as: the link plate mechanism further includes a fifth telescopic rod and a second rotating rod fixedly connected with the fifth telescopic rod. The second rotating rod is fixedly connected with the second carrier plate.

[0020] The utility model is further configured as follows: The link plate mechanism further includes a second feeder and a second fixing rod fixedly connected to the second feeder. The second fixing rod is fixedly connected to the fifth telescopic rod. The second feeder corresponds to the second bearing plate, and the second bearing plate is provided with a plurality of accommodating holes. The accommodating holes above the two pressing members are perpendicular to the channel.

[0021] Compared with the prior art, the beneficial effects of the present application are as follows:

[0022] By arranging a chain belt mechanism, a chain head mechanism and a link plate mechanism on a production line provided with a channel, the utility model realizes the sequential assembly of the chain belt and the chain head, and the chain head and the link plate. Moreover, by assembling the various components of the zipper on the same device, the labor of workers is greatly reduced, and the automation and efficiency of zipper production are improved. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the following will briefly introduce the drawings required for the embodiments or the description of the prior art. Obviously, the following drawings are only some embodiments of the present application. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0024] Figure 1 It is a perspective view of the overall structure of the utility model;

[0025] Figure 2 It is another perspective view of the overall structure of the utility model;

[0026] Figure 3 It is a schematic structural view of the pressing member in the utility model.

[0027] The label details involved in the above drawings are as follows:

[0028] 1 - Production line, 11 - Channel, 12 - Inlet end, 13 - Outlet end;

[0029] 2 - Chain belt mechanism, 21 - Feeding belt, 22 - Gap;

[0030] 3 - Chain head mechanism, 31 - First bearing plate, 311 - Accommodating groove, 32 - Clamping structure, 321 - Sliding rod, 322 - First telescopic rod, 323 - Clamping piece, 33 - Second telescopic rod, 34 - First rotating rod, 35 - First fixing rod, 36 - First feeder;

[0031] 4-link mechanism, 41-second bearing plate, 411-receiving hole, 42-extrusion structure, 43-third telescopic rod, 44-pushing member, 441-fixed block, 442-fourth telescopic rod, 443-pressing block, 444-first groove, 445-extrusion block, 446-second groove, 447-clamping block, 45-fifth telescopic rod, 46-second rotating rod, 47-second fixing rod, 48-second feeder;

[0032] 5-pressing sheet. Specific implementation manner

[0033] In the description of the present application, the technical term "a plurality" means two or more (including two); the technical terms "first", "second", "third", etc. are only used to distinguish different objects, and cannot be understood as indicating or implying relative importance or implicitly indicating the quantity, specific order or primary-secondary relationship of the indicated technical features. Terms such as "installation", "connection", "connection", "fixation", etc. should be understood in a broad sense. For example, "connection" can be a fixed connection, a detachable connection, or an integral connection; "connection" can be a direct connection or an indirect connection through an intermediate medium. For those of ordinary skill in the art, the specific meanings of the above terms in the present application can be understood according to specific circumstances.

[0034] In the description of the present application, the orientation or positional relationship indicated by technical terms such as "center", "upper", "lower", "vertical", "horizontal", "top", "bottom", "inner", etc. is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the embodiments of the present application and simplifying the description, rather than indicating or implying that the indicated device or element must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the embodiments of the present application.

[0035] In order to more clearly understand the above objects, technical solutions and advantages of the present application, the technical solutions in the embodiments of the present application will be clearly and completely described below in conjunction with the drawings in the embodiments of the present application, and a detailed understanding of how to solve the problems raised in the above background art.

[0036] Embodiment

[0037] Such as Figures 1 to 3As shown in the figure, a zipper assembly device includes an assembly line 1 with a channel 11 provided in the center. Along the assembly line 1, a chain tape mechanism 2, a slider mechanism 3, and a link plate mechanism 4 are sequentially arranged. The chain tape mechanism 2 is arranged at the inlet end 12 of the assembly line 1. The chain tape structure includes two feeding tapes 21 for feeding the chain tape, and there is a gap 22 between the two feeding tapes 21 for accommodating the teeth of the zipper. The slider mechanism 3 is arranged on one side of the feeding tape 21. The slider mechanism 3 includes a first carrier plate 31 for accommodating the slider and a clamping structure 32 arranged in cooperation with the first carrier plate 31 for clamping the slider. The link plate mechanism 4 is arranged at the outlet end 13 of the assembly line 1. The link plate structure includes a second carrier plate 41 for accommodating the link plate and a pressing structure 42 arranged in cooperation with the second carrier plate 41 for pressing the link plate. Among them, the feeding tape 21 corresponds to the assembly line 1, the channel 11 is communicated with the gap 22, both the first carrier plate 31 and the second carrier plate 41 are arranged above the assembly line 1, and both the clamping structure 32 and the pressing structure 42 are arranged corresponding to the channel 11 to sequentially assemble the chain tape, the slider, and the link plate.

[0038] Specifically, including but not limited to, an operating platform for support is provided at the bottom of the assembly line 1. A driver is fixed to the operating platform, and the driver is used to drive the movement of the assembly line 1. At the same time, the chain tape mechanism 2, the slider mechanism 3, and the link plate mechanism 4 are also correspondingly provided with drivers for driving. Moreover, a display screen and a controller can also be provided for the assembly device of this embodiment, so as to control the cooperation between the assembly line 1 and the chain tape mechanism 2, the slider mechanism 3, and the link plate mechanism 4, improve the intelligence and automation. At the same time, a slope and a collection structure of a receiving frame can also be installed at the outlet end 13 of the assembly line 1 to improve the convenience of the device.

[0039] Specifically, including but not limited to, in this embodiment, the gap 22 is communicated with the channel 11. Of course, it is also necessary to ensure that the overall width of the assembly line 1 is greater than the overall width of the two feeding tapes 21. The teeth of the zipper are directly accommodated in the channel 11, and the pulling tape is placed on the assembly line 1 to realize the accurate entry of the chain tape and avoid situations such as the chain tape being skewed. At the same time, in order to further improve the accuracy of feeding, the feeding tape 21 can be set as a groove structure matching the chain tape, so as to ensure that the chain tape is in a straight line when entering the assembly line 1. At this time, the gap 22 between the two chain tapes is smaller than the channel 11, and the chain tape is positioned and fixed by directly pressing the pulling tape through two pressing pieces 5.

[0040] Specifically, including but not limited to, the upper plane of the chain head is provided with an arc-shaped chain link, and the bottom surface is a flat structure, then a first carrier plate 31 is provided to store the chain head, and then the chain link is clamped by a clamping structure 32 to realize the transfer of the chain head, and the first carrier plate 31 can be rotated relative to the clamping structure 32, and a sensor can be installed above the first carrier plate 31 to determine whether there is a chain head on the first carrier plate 31. At the same time, after the clamping structure 32 clamps the chain head, the chain head can be sent to the channel 11. At this time, the chain head and the chain belt are in the same straight line, and when the chain belt and the chain head are assembled and the chain belt moves a certain distance, the clamping structure 32 is released, and the moving distance of the chain belt is the length of the chain belt produced in actual application.

[0041] Specifically, including but not limited to, the chain mechanism 4 is arranged at the outlet end 13 of the assembly line 1, so as to ensure the actual required length of the chain belt. At the same time, the chain plate is a rectangular structure and the bottom is a Y-shaped structure. At this time, the opening of the chain belt faces downward, and then it is stored through the second supporting plate 41. At this time, the length of the Y-shaped chain belt opening is greater than the width of the chain ring above the chain head, ensuring that the Y-shaped chain belt is opened and closed under the extrusion of the extrusion structure 42 to achieve the card connection with the chain ring, thereby realizing the assembly of the chain plate and the chain head. In order to further improve the automation of the equipment, a cutting mechanism can be arranged on the assembly line 1. At this time, the cutting mechanism can be arranged between the chain belt mechanism 2 and the chain head mechanism 3, and the accurate cutting of the required length of the zipper can also be ensured.

[0042] Through the above scheme, the chain belt mechanism 2, the chain head mechanism 3 and the chain plate mechanism 4 are sequentially arranged on the assembly line 1 provided with the channel 11, so that the chain belt and the chain head, and the chain head and the chain plate can be assembled sequentially, which greatly reduces manual labor and improves the efficiency, automation and intelligence of zipper production.

[0043] As an improved specific implementation, two pressing plates 5 are further provided at the inlet end 12 of the assembly line 1. The pressing plates 5 are arranged between the chain belt mechanism 2 and the chain head mechanism 3, and the pressing plates 5 correspond to the feeding belt 21 so that the chain belt can be tightened and fixed after entering the assembly line 1.

[0044] Specifically, including but not limited to, the pressing sheet 5 is a rectangular structure, the pressing sheet 5 can move along the assembly line 1, and the pressing sheet 5 can rise or fall, the thickness of the pressing sheet 5 can be set according to actual needs to avoid conflict with the second carrier plate 41 or the extrusion structure 42, the pressing sheet 5 can move with the chain belt, that is, the pressing sheet 5 and the assembly line 1 can also move synchronously, the bottom of the pressing sheet 5 presses the drawstring of the chain belt, and the side edge conflicts along the chain teeth, so as to realize the positioning and fixation of the chain belt.

[0045] Through the above solution, the pressing block can press and fix the chain belt entering the assembly line 1, which can ensure the accuracy of the joint entry on the one hand, and ensure the assembly of the chain belt and the chain head on the other hand.

[0046] As a specific implementation of the improvement, the clamping structure 32 includes a sliding rod 321, a first telescopic rod 322 slidably connected to the sliding rod 321, and two clamping pieces 323 fixedly connected to the first telescopic rod 322. The clamping pieces 323 are arranged above the bearing plate.

[0047] Specifically, including but not limited to, the first telescopic rod 322 can slide along the sliding rod 321. The sliding rod 321 is horizontally arranged, perpendicular to the first telescopic rod 322, and can be set as a structure where a slider is connected to a slide rail. This structure can ensure the precise movement of the clamping piece 323 in the horizontal direction. And the first telescopic rod 322 can freely expand and contract in the vertical direction, thereby driving the clamping piece 323 to rise or fall, ensuring the precise movement of the clamping piece 323 in the vertical direction. The clamping piece 323 can be set as a pneumatic clamp controlled by a cylinder. At the same time, an anti-slip structure can be arranged on the inner side of the clamping piece 323 to prevent the chain head from skewing when the two clamping pieces 323 are clamped together. At the same time, the bottom end of the clamping piece 323 can be in contact with the top surface of the chain head. The clamping piece 323 only clamps the chain link above the chain head. And when clamping the chain head, the clamping piece 323 is above the first bearing plate 31, while when the chain head is assembled with the chain belt, the clamping piece 323 is below the first bearing plate 31. Then the sliding rod 321 can drive the clamping piece 323 to send the chain head to the center of the channel 11 corresponding to the chain belt. At this time, the chain teeth of the chain belt can pass through the chain head, thereby realizing the mutual engagement of the two chain teeth and the assembly of the chain belt and the chain head.

[0048] Through the above solution, the cooperation of the sliding rod 321, the first telescopic rod 322 and the clamping piece 323 realizes the clamping and transportation of the chain head, ensuring the automation and precise control of the equipment.

[0049] As a specific implementation of the improvement, the chain head mechanism 3 further includes a second telescopic rod 33, a first rotating rod 34 and a first fixing rod 35 fixedly connected to the second telescopic rod 33 respectively. The first fixing rod 35 is fixedly connected to one side surface of the sliding rod 321, and the first rotating rod 34 is fixedly connected to the first bearing plate 31.

[0050] Specifically, including but not limited to, one end of the second telescopic rod 33 is fixed to the operating table under the assembly line 1, and the other end is fixedly connected to one ends of the first rotating rod 34 and the first fixing rod 35. The first rotating rod 34 and the first fixing rod 35 do not intersect. The second telescopic rod 33 can drive the entire chain head mechanism 3 to move up and down in the vertical direction. The first bearing plate 31 is of an annular structure, and the first rotating rod 34 is of a T-shaped structure. At this time, the other end of the first rotating rod 34 can be fixedly connected to the inner circle of the first bearing plate 31. The first rotating ring can drive the first bearing plate 31 to rotate, so that the first bearing plate 31 can rotate relative to the first feeding device 36. The other end of the first fixing rod 35 is fixedly connected to one side surface of the sliding rod 321, realizing the fixation of the sliding rod 321 and the linkage between the sliding rod 321 and the second telescopic rod 33.

[0051] Through the above solution, the rising or falling of the entire chain head mechanism 3, the rotation of the first bearing plate 31, and the fixation of the sliding plate are realized, and it can be accurately adjusted according to the assembly of the chain belt and the chain head in actual production, improving the flexibility and automation of the equipment.

[0052] As a specific embodiment of the improvement, the chain head mechanism 3 further includes a first feeding device 36. The first feeding device 36 is fixedly connected to the other side surface of the sliding rod 321. The first feeding device 36 corresponds to the first bearing plate 31, and the first bearing plate 31 is provided with a plurality of receiving grooves 311.

[0053] Specifically, including but not limited to, the first feeding device 36 is arranged above the first bearing plate 31. At this time, the first feeding device 36 can discharge materials from the bottom surface, and the discharge port and the receiving grooves 311 of the first bearing plate 31 are on the same straight line. It can also be connected to an external feeding structure through the feeding port of the first feeding device 36 to realize automatic feeding, which can further reduce manual transportation. At the same time, when the first feeding device 36 places the chain head on the first bearing plate 31, the chain links face up. The first feeding device 36 is fixedly connected to the other side surface of the sliding rod 321, and the first feeding device 36 is parallel to the first bearing plate 31. Of course, the first feeding device 36 can also be equipped with sensors. On the one hand, it can monitor the chain heads in the receiving grooves 311, and on the other hand, it can also control the storage situation of the chain heads in the first feeding device 36.

[0054] Through the above solution, the setting of the first feeding device 36 can realize the automatic feeding and storage of the chain heads during the operation of the equipment, and can also cooperate with the first bearing plate 31 to transport materials, improving the practicability and automation of the equipment.

[0055] As a specific embodiment of the improvement, the extrusion structure 42 includes two pressing members 44 symmetrically distributed along the channel 11 and third telescopic rods 43 respectively fixedly connected to the two pressing members 44. The two third telescopic rods 43 are respectively fixedly connected to two symmetric side surfaces of the assembly line 1.

[0056] Specifically, including but not limited to, the third telescopic rod 43 is a bent structure, and the third telescopic rod 43 can drive the pressing member 44 to move in the vertical direction, so as to adjust the distance between the pressing member 44 and the assembly line 1. At this time, the distance needs to be greater than or equal to the thickness of the tablet 5 to ensure that when the tablet 5 reaches the specified position, the pressing member 44 can contact the tablet 5, or when the tablet 5 does not reach the specified position, the tablet 5 can pass through, avoiding the blocking of the tablet 5 by the pressing member 44. The two pressing members 44 are symmetrically distributed, and the height of the pressing member 44 can also be adjusted according to the set height of the second carrier plate 41.

[0057] Through the above solution, the third telescopic rod 43 can expand and contract in the vertical direction to adjust the height of the pressing member 44, which can adapt to the assembly of chain plates with different lengths and improve the adaptability of the equipment.

[0058] As a specific implementation of the improvement, the pressing member 44 includes a fixed block 441, a fourth telescopic rod 442 fixedly connected to the fixed block 441, and a pressing block 443 fixedly connected to the fourth telescopic rod 442. The third telescopic rod 43 is fixedly connected to the fixed block 441, and the third telescopic rod 43 is perpendicular to the fourth telescopic rod 442.

[0059] Specifically, including but not limited to, the fixed block 441 is a rectangular block. The fixing member is fixedly connected to the bottom of the third telescopic rod 43. The side of the fixed block 441 facing the assembly line 1 is fixedly connected to the fourth telescopic rod 442. The other end of the fourth telescopic rod 442 is fixedly connected to the pressing block 443. The pressing block 443 is also a rectangular structure. The fourth telescopic rod 442 can move left and right in the horizontal direction. Based on this, the third telescopic rod 43 can drive the pressing block 443 to move up and down, and the fourth telescopic rod 442 can drive the pressing block 443 to move left and right, so as to adjust the specific height of the pressing block 443. Therefore, when the two pressing members 44 face each other, the two pressing blocks 443 can fit or have a distance from each other, so as to adapt to the assembly of chain plates with different widths.

[0060] Through the above solution, the sequential connection of the fixed block 441, the fourth telescopic rod 442 and the pressing block 443, and then the fixed connection of the fixed block 441 and the third telescopic rod 43, realizes the all-round precise adjustment of the pressing block 443, which can adapt to the assembly of chain plates with different sizes.

[0061] As a specific implementation of the improvement, a first groove 444 and two second grooves 446 that are connected to and symmetrically distributed with the first groove 444 are formed on one side surface of the pressing block 443 facing the assembly line 1. The first groove 444 is perpendicular to the second groove 446. A telescopic extrusion block 445 is arranged in the first groove 444, and a telescopic clamping block 447 is arranged in the second groove 446.

[0062] Specifically, including but not limited to, both the first groove 444 and the second groove 446 are rectangular grooves. At this time, the two second grooves 446 are respectively opened on both sides of the opening of the first groove 444, and the first groove 444 is perpendicular to the second groove 446. Therefore, the two second grooves 446 are respectively communicated with the first groove 444 to form a T-shaped groove. One end of the extrusion block 445 in the first groove 444 is connected to a sixth telescopic rod, and the sixth telescopic rod is fixedly connected to the inner wall of the pressing block 443 in the first groove 444. At this time, the extrusion block 445 faces the direction of the assembly line 1. Therefore, the sixth telescopic rod can drive the extrusion block 445 to move left and right in the horizontal direction. Clamping blocks 447 are installed in both second grooves 446. The clamping blocks 447 are fixedly connected to seventh telescopic rods, and the seventh telescopic rods are fixedly connected to the inner walls of the pressing blocks 443 in the second grooves 446. At this time, the clamping blocks 447 are arranged longitudinally. Therefore, the seventh telescopic rod drives the clamping blocks 447 to move back and forth. Then, when the chain piece is placed vertically, after the two pressing blocks 443 reach the designated positions according to the size of the chain piece, the two clamping blocks 447 can clamp and fix the two side surfaces of the chain piece. Of course, it should be noted that: the clamping blocks 447 are arranged at the upper part of the pressing block 443, and the extrusion block 445 is arranged at the lower part in the middle of the pressing block 443. Thus, when the chain piece is placed vertically, the Y-shaped opening of the chain piece is downward, and the length of the Y-shaped opening is greater than the width of the chain link at the chain head. Then, the two clamping blocks 447 clamp the upper part of the chain piece, and the two extrusion blocks 445 press the Y-shaped structure opened at the lower part of the chain piece, so as to pass the Y-shaped structure of the chain piece through the chain link of the chain head for clamping, thereby realizing the assembly of the chain head and the chain piece.

[0063] Through the above solution, there is an extrusion block 445 in the first groove 444 and a clamping block 447 in the second groove 446, which can realize the pressing and fixing of the chain piece, enable the chain head and the chain piece to be clamped, improve the automation and intelligence of the equipment, and can also avoid the phenomenon that the chain piece is skewed when the two extrusion blocks 445 press the chain piece after the two clamping blocks 447 are clamped.

[0064] As a specific implementation of the improvement, the chain piece mechanism 4 further includes a fifth telescopic rod 45 and a second rotating rod 46 fixedly connected to the fifth telescopic rod 45, and the second rotating rod 46 is fixedly connected to the second carrier disk 41.

[0065] Specifically, including but not limited to, the fifth telescopic rod 45 is fixedly connected to the operating platform under the assembly line 1, and the fifth telescopic rod 45 can drive the second carrier disk 41 and the second feeding device 48 as a whole to move vertically. The second carrier disk 41 is also a circular ring structure, and the second rotating rod 46 can be fixed to the inner ring of the second carrier disk 41. Thus, the second rotating rod 46 drives the second carrier disk 41 to rotate relative to the second feeding device 48.

[0066] Through the above solution, the cooperation of the fifth telescopic rod 45 and the second rotating rod 46 can adjust the positions of the second feeder 48 and the second carrier plate 41, as well as the relative rotation of the second carrier plate 41, so as to realize the replenishment and storage of the chain pieces in the second carrier plate 41 and improve the production efficiency.

[0067] As a specific embodiment of the improvement, the chain piece mechanism 4 further includes a second feeder 48 and a second fixing rod 47 fixedly connected to the second feeder 48. The second fixing rod 47 is fixedly connected to the fifth telescopic rod 45. The second feeder 48 corresponds to the second carrier plate 41, and the second carrier plate 41 is provided with a plurality of accommodating holes 411. The accommodating holes 411 above the two pressing members 44 are perpendicular to the channel 11.

[0068] Specifically, including but not limited to, the second feeder 48 is arranged above the second carrier plate 41. At this time, the second feeder 48 can discharge materials from the bottom surface, and the discharge port and the accommodating holes 411 of the second carrier plate 41 are on the same straight line. At this time, there is a clamping structure in the accommodating holes 411 to facilitate fixing the chain pieces transported in the accommodating holes 411. The structure of the accommodating holes 411 corresponds to the chain pieces of the Y-shaped structure. In addition, an inlet can be opened on the second feeder 48 to connect to an external feeding structure to realize automatic feeding, which can further reduce manual transportation. At the same time, when the second feeder 48 transports chain pieces to the second carrier plate 41, the chain pieces inside both are in a vertical state. The second feeder 48 is fixedly connected to the second telescopic rod 33, and the second feeder 48 is parallel to the second carrier plate 41. Of course, the second feeder 48 can also be equipped with a sensor. On the one hand, it can monitor the chain pieces in the accommodating holes 411, and on the other hand, it can also regulate the storage situation of the chain pieces in the second feeder 48. Then, when the chain head and the chain pieces are assembled, the chain pieces in the accommodating holes 411 are perpendicular to the channel 11. It should be noted that: the chain pieces have a wide surface and a narrow surface. When assembling, the narrow surface faces the pressing block 443, and the wide surface faces the chain belt mechanism 2. And the Y-shaped opening of the chain piece can be accommodated in the first groove 444 to facilitate the extrusion of the chain piece by the extrusion block 445.

[0069] Through the above solution, the setting of the second feeder 48 can realize the automatic feeding and storage of chain pieces during the operation of the equipment, and can also cooperate with the second carrier plate 41 to transport materials, improving the practicability and automation of the equipment.

[0070] Finally, it should be noted that: the above are only the preferred embodiments of the present invention, and the protection scope of the present invention is not limited to the above embodiments. All technical solutions falling within the concept of the present invention belong to the protection scope of the present invention. It should be pointed out that for those of ordinary skill in the art, without departing from the principle of the present invention, several improvements and refinements should also be regarded as the protection scope of the present invention.

Claims

1. A zipper assembly device, characterized in that: It comprises an assembly line with a channel in the center, and a chain belt mechanism, a chain head mechanism and a chain plate mechanism are sequentially arranged along the assembly line; The chain belt mechanism is arranged at the inlet end of the assembly line, and the chain belt structure includes two feeding belts for chain belt feeding, and there is a gap between the two feeding belts for accommodating chain teeth; The chain head mechanism is arranged on one side of the feeding belt, and comprises a first carrier plate for accommodating the chain head and a clamping structure arranged in cooperation with the first carrier plate for clamping the chain head; The chain sheet mechanism is arranged at the outlet end of the assembly line, and the chain sheet structure comprises a second carrier plate for accommodating the chain sheet and an extrusion structure arranged in cooperation with the second carrier plate for extruding the chain sheet; Among them, the loading belt corresponds to the assembly line, the channel is connected to the gap, the first carrying plate and the second carrying plate are both arranged above the assembly line, and the clamping structure and the extrusion structure are both arranged corresponding to the channel to assemble the chain belt, the chain head and the chain plate in sequence.

2. A zipper assembly device according to claim 1, characterized in that: Two pressing plates are also provided at the inlet end of the assembly line. The pressing plates are arranged between the chain belt mechanism and the chain head mechanism, and the pressing plates correspond to the feeding belt so that the chain belt can be pressed and fixed after entering the assembly line.

3. The zipper assembly equipment according to claim 1, characterized in that: The clamping structure comprises a sliding rod, a first telescopic rod slidably connected to the sliding rod, and two clips fixedly connected to the first telescopic rod, wherein the clips are arranged above the carrying plate.

4. A zipper assembly device according to claim 3, characterized in that: The chain head mechanism also includes a second telescopic rod and a first rotating rod and a first fixed rod respectively fixedly connected to the second telescopic rod, the first fixed rod is fixedly connected to a side surface of the sliding rod, and the first rotating rod is fixedly connected to the first carrying plate.

5. The zipper assembly equipment according to claim 4, characterized in that: The chain head mechanism also includes a first loader, which is fixedly connected to the other side of the sliding rod, and the first loader corresponds to the first carrying plate, and the first carrying plate is provided with a plurality of accommodating grooves.

6. The zipper assembly equipment according to claim 1, characterized in that: The extrusion structure comprises two pushing members symmetrically distributed along the channel and third telescopic rods respectively fixedly connected to the two pushing members, and the two third telescopic rods are respectively fixedly connected to two symmetrical sides of the assembly line.

7. The zipper assembly equipment according to claim 6, characterized in that: The pushing member includes a fixed block, a fourth telescopic rod fixedly connected to the fixed block, and a pressing block fixedly connected to the fourth telescopic rod. The third telescopic rod is fixedly connected to the fixed block, and the third telescopic rod and the fourth telescopic rod are perpendicular to each other.

8. The zipper assembly equipment according to claim 7, characterized in that: The side of the pressing block facing the assembly line is provided with a first groove and two second grooves connected to the first groove and symmetrically distributed, the first groove is perpendicular to the second groove, a retractable extrusion block is arranged in the first groove, and a retractable clamping block is arranged in the second groove.

9. The zipper assembly equipment according to claim 8, characterized in that: The chain mechanism further includes a fifth telescopic rod and a second rotating rod fixedly connected to the fifth telescopic rod, and the second rotating rod is fixedly connected to the second carrying plate.

10. The zipper assembly equipment according to claim 9, characterized in that: The chain mechanism also includes a second loader and a second fixed rod fixedly connected to the second loader, the second fixed rod is fixedly connected to the fifth telescopic rod, the second loader corresponds to the second carrying plate, and the second carrying plate is provided with a plurality of accommodating holes, the accommodating holes above the two pushing members are perpendicular to the channel.