Hook production equipment

By adopting a rotatable turntable and positioning tooling design in the hook production equipment, an automated circular assembly process for hooks was achieved, solving the problems of low production efficiency and large equipment footprint, thereby improving production efficiency and reducing costs.

CN121671016APending Publication Date: 2026-03-17LINYI YANUO DAILY NECESSITIES CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-12-24
Publication Date
2026-03-17

AI Technical Summary

Technical Problem

Existing hook production equipment has low production efficiency, large equipment footprint, and high production costs, making it difficult to achieve mass production of ring hooks.

Method used

It adopts a continuously rotating turntable, integrating hook body feeding, glue application, film feeding and curing devices to form a circular assembly process. The turntable realizes cyclic processing, and the positioning fixtures and support components ensure stable delivery and positioning of the hooks.

Benefits of technology

It improves hook production efficiency, enables automatic hook assembly, reduces equipment footprint and production costs, and ensures assembly accuracy and stability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides hook production equipment, which comprises a turntable, a plurality of positioning tools, a plurality of positioning devices and a plurality of positioning devices, wherein the plurality of positioning tools are arranged on the turntable along the axis of the turntable at intervals and are used for clamping hooks; the hook main body feeding device is used for feeding hook main bodies to the positioning tool; the gluing device is used for gluing the hook main body; the film feeding device is used for feeding a film and assembling the film onto the glued hook main body; the curing device is used for curing the assembled hook main body and the film; wherein the hook body feeding device, the gluing device, the film feeding device and the curing device are sequentially arranged on the peripheral side of the rotary disc, and the rotary disc is rotatably arranged so that the multiple positioning tools can conduct reciprocating operation among the hook body feeding device, the gluing device, the film feeding device and the curing device. According to the hook production equipment, the technical problem that in the related technology, hook production equipment is low in production efficiency is solved.
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Description

Technical Field

[0001] This invention relates to the field of hook production equipment technology, and specifically to a hook production equipment. Background Technology

[0002] A ring hook is a type of hook with a ring-shaped hanging hole. Ring hooks are usually used in pairs. For example, in one specific usage, the towel rack rod can be passed through two ring-shaped hanging holes to form a simple towel rack.

[0003] The ring hook mainly consists of a film and a hook body. The hook body includes a base and a ring hook body. As one of the main components of the ring hook, the ring hook body is difficult to achieve unidirectional material feeding due to its irregular shape, which makes mass production of ring hooks quite difficult.

[0004] As production technology matures and the number of manufacturers increases, market competition intensifies. Rapid production, improved efficiency, and reduced costs have become the only way for businesses to survive. Existing hook production equipment is typically a linear assembly line, where all assembly stations are installed on the same line according to the process sequence. To improve hook assembly efficiency, multiple assembly lines are often deployed simultaneously, resulting in a large footprint and high production costs for hook production equipment.

[0005] Therefore, existing technologies need further development. Summary of the Invention

[0006] The purpose of this invention is to overcome the above-mentioned technical deficiencies and provide a hook production equipment to solve the technical problem of low production efficiency of hook production equipment in related technologies.

[0007] To achieve the above-mentioned technical objectives, the present invention adopts the following technical solution: A hook production device is provided. The hook includes a hook body and a film. The hook production device includes: a turntable, on which multiple positioning fixtures for clamping hooks are spaced apart along the axis of the turntable; a hook body feeding device for feeding the hook body to the positioning fixtures; an adhesive applicator for applying adhesive to the hook body; a film feeding device for feeding the film and assembling it onto the adhesive-applied hook body; and a curing device for curing the assembled hook body and film. The hook body feeding device, adhesive applicator, film feeding device, and curing device are sequentially arranged around the turntable, which is rotatably configured so that the multiple positioning fixtures reciprocate between the hook body feeding device, adhesive applicator, film feeding device, and curing device.

[0008] Furthermore, the positioning fixture includes: a hook body positioning component, on which a hook body positioning groove is provided for positioning and accommodating the hook body; and a film positioning component, which includes a film positioning groove for positioning and accommodating the film.

[0009] Furthermore, the hook body positioning component includes: a support rod, which supports the base of the hook body, and two support rods are respectively disposed on opposite sides of the hook body positioning groove; and a limiting component, which is disposed on the side of the support rod near the turntable axis and can abut against the periphery of the base.

[0010] Furthermore, the hook body feeding device includes a feeding track for receiving and conveying the hook body. The feeding track includes a support assembly on which the hook body is suspended. A first channel extending along the moving direction of the hook body is provided inside the support assembly. The first channel contains at least a portion of the hook body. A positioning fixture is used to receive the hook body from the feeding track. The hook body positioning groove is connected to the first channel.

[0011] Furthermore, the hook body feeding device includes: a first gripper, which is drivenly connected to a first feeding drive component, and the first gripper is closable and used to grip the hook body located on the feeding track; and a second feeding drive component, the telescopic arm of which is movably arranged along the extension direction of the feeding track, and the telescopic arm of the second feeding drive component is connected to the first feeding drive component to control the first gripper to move between the positioning fixture and the feeding track.

[0012] Furthermore, the adhesive application device includes: an adhesive trough, with an adhesive storage component above it, the interior of the adhesive trough being hollow, and several adhesive holes being provided at the bottom of the adhesive trough; and an adhesive positioning component connected to the adhesive trough, with an adhesive positioning hole provided on the adhesive positioning component, the shape of which matches the hook body, and the adhesive positioning hole communicating with the several adhesive holes, wherein the adhesive positioning component is movably positioned along the height direction.

[0013] Furthermore, it also includes a first positioning device, which is disposed at the film feeding device. The first positioning device includes: a first push block, which is movably disposed along the radial direction of the turntable and can abut against the film; a second push block, which is movably disposed along the radial direction of the turntable and can abut against the hook body; and a guide drive component, which is connected to the first push block and / or the second push block to drive the first push block and / or the second push block to move.

[0014] Furthermore, the first positioning device includes an extension extending around the circumference of the turntable, the extension being disposed on the side of the second push block near the glue applicator, and the extension abutting against the hook body located at the glue applicator.

[0015] Furthermore, the hook production equipment also includes: a pressing device, which is located between the film feeding device and the curing device; and a second positioning device, which is located at the pressing device and on the periphery of the turntable, and the second positioning device is groundably mounted to the film and the hook body located at the pressing device.

[0016] Furthermore, the curing device includes a curing chamber and a plurality of curing lamps installed inside the curing chamber. The plurality of curing lamps are distributed at intervals around the axis of the turntable, the curing chamber is arranged around the periphery of the turntable, and the curing chamber contains at least part of the turntable. Beneficial effects: 1. By setting up a continuously rotating turntable and integrating hook body feeding device, glue application device, film feeding device and curing device around it in process sequence, a compact and automated circular assembly process is formed, which can realize the automatic assembly of hooks. The turntable achieves the function of cyclic processing. The equipment has strong continuous working capability, which can improve the production efficiency of hooks and solve the technical problem of low production efficiency of hook production equipment in related technologies.

[0017] 2. A first positioning device is set up at the film loading station to perform preliminary positioning after the film loading is completed. A second positioning device is set up at the pressing station to prevent the film from being misaligned with the hook body during the pressing process. The first and second positioning devices work together to position the film and the hook body on the side away from the turntable center to avoid displacement of the film or the hook body. Before the hook is cured, the relative position of the hook body and the film can be kept fixed to meet the assembly accuracy requirements of the hook.

[0018] 3. The support assembly supports the hook body in a suspended manner, so that the hook body maintains a stable posture during the conveying process. The support assembly has a first channel inside along the moving direction of the hook body. The cross-sectional profile of the first channel matches the shape of the hook body, so that the hook body is accommodated in the first channel during the movement, which not only plays a guiding role, but also restricts its lateral displacement or overturning, ensuring that the hook body is conveyed stably.

[0019] 4. In the hook body feeding device, the feeding track completes orderly and stable conveying, and the positioning fixture is used to receive the material from the feeding track. This overcomes the existing defect that it is difficult to achieve the same direction of feeding of the ring hooks. It can realize the batch feeding of ring hooks. The whole process does not require the operator to manually pick up, place or correct the hooks, and realizes the automatic feeding of ring hooks. Attached Figure Description

[0020] Figure 1 This is a schematic diagram of the hook assembly system of the hook production equipment used in an embodiment of the present invention; Figure 2 This is a first-view internal structural schematic diagram of the hook assembly system of the hook production equipment used in an embodiment of the present invention; Figure 3 This is a schematic diagram of the turntable structure of the hook production equipment used in an embodiment of the present invention; Figure 4 yes Figure 3 An enlarged view of point A in the image; Figure 5 This is a structural schematic diagram of the turntable of the hook production equipment used in an embodiment of the present invention from another perspective; Figure 6 This is a schematic diagram of the dispensing device of the hook production equipment used in an embodiment of the present invention; Figure 7 This is a second-view internal structural schematic diagram of the hook assembly system of the hook production equipment used in an embodiment of the present invention; Figure 8 This is a schematic diagram of the curing lamp mounting plate of the hook production equipment used in an embodiment of the present invention; Figure 9 This is a schematic diagram illustrating the application of the positioning device in the hook production equipment used in an embodiment of the present invention. Figure 10 This is a schematic diagram of the positioning device of the hook production equipment used in an embodiment of the present invention; Figure 11 This is a structural schematic diagram of the positioning device of the hook production equipment used in an embodiment of the present invention from another perspective; Figure 12 This is a schematic diagram of the structure of the first positioning device of the hook production equipment used in an embodiment of the present invention; Figure 13 This is a schematic diagram of the structure of the second positioning device of the hook production equipment used in an embodiment of the present invention; Figure 14 This is a schematic diagram of the hook body feeding device of the hook production equipment used in the embodiments of the present invention; Figure 15 This is a schematic diagram of the internal structure of the support component of the hook production equipment used in an embodiment of the present invention; Figure 16 This is a schematic diagram of the material feeding track of the hook production equipment used in an embodiment of the present invention; Figure 17 This is a schematic diagram of the positioning fixture of the hook production equipment used in an embodiment of the present invention; Figure 18This is a schematic diagram of the installation structure of the material feeding and detection component of the hook production equipment used in an embodiment of the present invention; Figure 19 This is a schematic diagram of the hook production equipment used in an embodiment of the present invention; Figure 20 This is a schematic diagram of the ring hook structure in an embodiment of the present invention.

[0021] The above figures include the following reference numerals: 101. Hook body; 1011. Base; 1012. Hook body; 102. Film; 1002. Glue dispensing station; 1003. Film loading station; 1004. Pressing station; 1005. Curing station; 1. Turntable; 12. Positioning fixture; 121. Hook main body positioning component; 1211. Support rod; 1212. Limiting component; 122. Hook main body positioning groove; 123. Film positioning component; 124. Film positioning groove; 10. Hook body feeding device; 11. Feeding track; 111. Track base; 112. First vibrating plate; 131. First fixed seat; 132. Second fixed seat; 133. First channel; 134. First support component; 135. Second support component; 14. Feeding limiting mechanism; 141. Feeding limiting component; 151. First gripper; 152. First feeding drive component; 153. Second feeding drive component; 16. Feeding detection component; 171. Second gripper; 172. Third feeding drive component; 20. Glue application device; 21. Glue drain tank; 211. Glue drain hole; 22. Glue storage component; 23. Glue drip positioning component; 231. Glue drip positioning hole; 30. Film feeding device; 40. Clamping device; 411. Clamping component; 50. Curing device; 52. Curing chamber; 521. Curing lamp mounting plate; 5211. Curing lamp mounting slot; 61. First positioning device; 611. First push block; 6111. First connecting plate; 6112. First push block body; 6113. Push block clearance groove; 612. Second push block; 6121. Second connecting plate; 6122. Second push block body; 613. Guide drive component; 614. Extension; 62. Second positioning device; 621. First stop block; 622. Second stop block; 6221. Stop block clearance groove; 63. Positioning device support base; 70. Feeding device; 71. Feeding pusher; 72. Feeding drive component. Detailed Implementation

[0022] To enable those skilled in the art to better understand the present application, the technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present application, and not all embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative effort should fall within the scope of protection of the present application.

[0023] According to an embodiment of the present invention, a hook production device is provided; please refer to [link / reference]. Figures 1 to 20 The hook includes a hook body 101 and a film 102. The hook production equipment includes: a turntable 1, on which multiple positioning fixtures 12 for clamping hooks are arranged at intervals along the axis of the turntable 1; a hook body feeding device 10 for feeding the hook body 101 to the positioning fixtures 12; a gluing device 20 for applying glue to the hook body 101; a film feeding device 30 for feeding the film 102 and assembling it onto the glued hook body 101; and a curing device 50 for curing the assembled hook body 101 and film 102. The hook body feeding device 10, the gluing device 20, the film feeding device 30, and the curing device 50 are arranged sequentially around the turntable 1. The turntable 1 is rotatably arranged so that the multiple positioning fixtures 12 reciprocate between the hook body feeding device 10, the gluing device 20, the film feeding device 30, and the curing device 50, respectively.

[0024] Specifically, the rotation of turntable 1 is driven by a servo motor, which enables precise workstation switching and ensures that each process stops accurately at the preset position.

[0025] It should be noted that the turntable 1, hook body feeding device 10, glue application device 20, film feeding device 30, and curing device 50 together constitute the hook assembly system in the hook production equipment. Around the circumference of the turntable 1, the hook body feeding device 10, glue application device 20, film feeding device 30, and curing device 50 are arranged in sequence. When the positioning fixture 12 on the turntable 1 rotates to different devices, the product on the positioning fixture 12 can reach different work positions. According to the rotation direction of the turntable, the hook body feeding work position, glue application work position 1002, film feeding work position 1003, pressing work position 1004, and curing work position 1005 are formed in sequence on the outer circumference of the turntable 1. When the turntable 1 rotates, each positioning fixture 12 passes through the above-mentioned stations in sequence: first, it receives the hook body 101 at the hook body loading station; then it reaches the glue dispensing station 1002 to complete the glue application; then it reaches the film loading station 1003 to assemble the film 102; finally, it enters the curing station 1005 to cure and shape the glue.

[0026] Specifically, the positioning fixture 12 is used to position the hook body 101 and the film 102, so that the hook body 101 and the film 102 maintain a fixed relative position, thereby improving the assembly accuracy of the hook. By setting a continuously rotating turntable 1, and integrating the hook body feeding device 10, the glue application device 20, the film feeding device 30, and the curing device 50 around it in the process sequence, a compact and automated circular assembly process is formed, which can realize the automatic assembly of hooks. The turntable achieves the function of cyclic processing. The equipment has strong continuous working capability, which can improve the production efficiency of hooks and solve the technical problem of low production efficiency of hook production equipment in related technologies.

[0027] In the hook production equipment of this embodiment, see Figure 3-4 The positioning fixture 12 includes: a hook body positioning component 121, on which a hook body positioning groove 122 is provided, which is used to position and accommodate the hook body 101; and a film positioning component 123, which includes a film positioning groove 124, which is used to position and accommodate the film 102.

[0028] Thus, the system has multiple positioning fixtures 12 on the turntable 1. Each positioning fixture 12 includes a positioning structure specifically designed to constrain the hook body 101 and the film 102, thereby providing a positioning reference for subsequent gluing, bonding, and curing processes. When the hook body feeding device 10 places the hook body 101 into the positioning fixture 12, it automatically falls into the hook body positioning groove 122, achieving rapid and accurate initial positioning. The film positioning component 123 is provided with a film positioning groove 124, which is also customized according to the geometry of the film 102 and is used to position the film 102 after the film feeding device 30 has finished feeding. When the film 102 is placed in the film positioning groove 124, it is in a fixed assembly position with the already positioned hook body 101.

[0029] Specifically, the film positioning component 123 has a recessed film positioning groove 124. The film positioning groove 124 has an opening on the side facing the outer edge of the turntable 1, which facilitates the film 102 to enter the film positioning groove 124. When the film 102 is located in the film positioning groove 124, the film 102 abuts against the inner side wall of the film positioning groove 124, which can realize the three-sided positioning of the film 102.

[0030] In some embodiments, a plurality of film positioning seats are provided on the turntable 1 around the axis of the turntable 1, and a film positioning groove 124 for accommodating a single film 102 is formed between two adjacent film positioning seats, and a hook body positioning component 121 is also accommodated between two adjacent film positioning seats.

[0031] In the hook production equipment of this embodiment, see Figure 4 The hook body positioning component 121 includes: a support rod 1211, which supports the base 1011 of the hook body 101. There are two support rods 1211, which are respectively disposed on opposite sides of the hook body positioning groove 122; and a limiting component 1212, which is disposed on the side of the support rod 1211 near the axis of the turntable 1. The limiting component 1212 can abut against the periphery of the base 1011.

[0032] Thus, by setting two support rods 1211, preferably parallel to each other, to support the hook body 101, the base 1011 of the hook body 101 is suspended above the two support rods 1211, and the hook body 1012 is accommodated in the hook body positioning groove 122. By setting the limiting component 1212, the hook body 101 can be radially limited to prevent the hook body 101 from shifting toward the center of the turntable 1. By setting the hook body positioning component 121, the hook body 101 can be positioned on three sides.

[0033] In the hook production equipment of this embodiment, see Figure 14 The hook body feeding device 10 includes a feeding track 11, which is used to receive and transport the hook body 101. The feeding track 11 includes a support assembly, on which the hook body 101 is suspended. A first channel 133 extending along the moving direction of the hook body 101 is provided in the support assembly. The first channel 133 contains at least a portion of the hook body 101. The positioning fixture 12 is used to receive the hook body 101 from the feeding track 11. The hook body positioning groove 122 is connected to the first channel 133.

[0034] It should be noted that the feeding track 11 is used to receive and transport the hook body 101. The feeding track 11 has both receiving and transporting functions. The receiving end of the feeding track 11 is connected to the feeding device. In some embodiments, the receiving end of the feeding track 11 is connected to the second vibrating plate, which can realize continuous feeding of the hook bodies one by one. The second vibrating plate can adopt existing technology, as long as it has the above-mentioned functions. The specific principle of the second vibrating plate will not be elaborated here.

[0035] It should be noted that the positioning fixture 12 is used to receive the hook body 101 from the feeding track 11. It can be achieved by using a robotic arm to grasp the hook body 101 or by using an inclined slide on the feeding track 11, so that the hook body 101 of the feeding track 11 can automatically enter the positioning fixture 12.

[0036] Specifically, the support assembly suspends the hook body 101 to maintain a stable posture during transport. The support assembly has a first channel 133 inside along the direction of movement of the hook body 101. The cross-sectional profile of the first channel 133 matches the shape of the hook body 101, allowing the hook body 101 to be contained within the first channel 133 during travel. This serves both as a guide and as a restriction on lateral displacement or overturning, ensuring stable transport of the hook body 101.

[0037] Specifically, the positioning fixture 12 is located at the output end of the feeding track 11 to receive the hook body 101 conveyed by the feeding track 11. The hook body positioning groove 122 is used to position the hook body 101, so that the hook body 101 enters the positioning fixture 12 in an accurate posture. The hook body positioning groove 122 is spatially connected to the first channel 133 in the feeding track 11, forming a continuous feeding path. When the hook body 101 enters the hook body positioning groove 122 from the first channel 133, it can quickly enter the positioning fixture 12 without additional flipping or adjustment, preparing for subsequent hook assembly work.

[0038] In the hook production equipment of this embodiment, the feeding track 11 completes orderly and stable conveying, and the positioning fixture 12 is used to receive materials from the feeding track 11. This overcomes the existing defects of hooks being difficult to feed in the same direction in a circular arrangement, and enables batch feeding of circular hooks. The entire process does not require operators to manually pick up, place or correct hooks, and realizes automatic feeding of circular hooks. This solves the technical problems of time-consuming, labor-intensive and inefficient hook feeding operations in related technologies.

[0039] In the hook production equipment of this embodiment, see Figure 15 The support assembly includes a first fixed seat 131 and a second fixed seat 132 arranged opposite to each other. A hook body 101 is suspended from the first fixed seat 131 and the second fixed seat 132 respectively, and a first channel 133 is formed between the first fixed seat 131 and the second fixed seat 132. In this way, the first fixed seat 131 and the second fixed seat 132 are arranged opposite to each other, and the hook body 101 is suspended from the first fixed seat 131 and the second fixed seat 132, thereby supporting the hook body 101. The first channel 133 is mainly used to accommodate the hook body 1012.

[0040] In the hook production equipment of this embodiment, see Figure 15-16The hook body 101 includes a base 1011 and a hook body 1012 connected to each other. The support assembly includes a first support component 134 and a second support component 135 arranged opposite to each other. The first support component 134 and the second support component 135 are respectively disposed on the inner walls of the first fixed seat 131 and the second fixed seat 132. The first support component 134 and the second support component 135 are respectively abutting against the two sides of the hook body 1012.

[0041] When the hook body feeding device 10 in this embodiment is applied to feeding the ring hook, since the structural characteristics of the ring hook are that the width of the hook body 1012 is smaller than that of the base 1011, a first support member 134 and a second support member 135 are adopted. The first support member 134 and the second support member 135 protrude from the inner wall surface of the first fixed seat 131 or the second fixed seat 132, thereby playing a left and right limiting role for the hook body 1012 with a smaller width.

[0042] By setting a first support component 134 and a second support component 135, which are disposed in the first channel 133 and designed according to the shape of the hook body, the first support component 134 and the second support component 135 can respectively contact or abut with the outer edges of the left and right sides of the hook body 1012, support the sides of the hook body, limit the swaying of the hook body 101 due to vibration or inertia during the conveying process, and prevent it from rotating or sagging due to its own weight or external disturbances, thereby always keeping the hook body 1012 in the same direction and the base 1011 facing in a uniform direction, thus improving the conveying stability and positioning accuracy.

[0043] Optionally, when the first support member 134 and the second support member 135 are disposed at the top of the first fixed base 131 or the second fixed base 132 and protrude from the top, the first support member 134 and the second support member 135 can be used directly to support the base 1011 and limit the left and right movement of the hook body 1012; when the first support member 134 and the second support member 135 are not disposed at the top of the first fixed base 131 or the second fixed base 132, the top of the first fixed base 131 or the second fixed base 132 supports the base 1011.

[0044] In the hook production equipment of this embodiment, see Figure 15 The first support member 134 and the second support member 135 include multiple sets, which are spaced apart along the extension direction of the hook body 1012. In this way, constraints can be applied to multiple positions of the hook body 1012 simultaneously, effectively preventing local swaying of the hook body 1012.

[0045] For example in Figure 15In this embodiment, when the hook body feeding device 10 is used for feeding the ring hook, two sets of the first support component 134 and the second support component 135 are provided along the extension direction of the hook body 1012.

[0046] In the hook production equipment of this embodiment, see Figure 16 The feeding track 11 includes a track base 111, which extends along the moving direction of the hook body 101. A first fixing seat 131 and a second fixing seat 132 are respectively installed on the track base 111. Specifically, the track base 111 is used to support the first fixing seat 131 and the second fixing seat 132.

[0047] In some embodiments, depending on the shape and specifications of the hook body 101, a portion of the first channel 133 is also formed on the track base 111 to avoid the hook body 101.

[0048] In the hook production equipment of this embodiment, see Figure 16 The hook body feeding device 10 includes a feeding limiting mechanism 14, which is located at one end of the feeding track 11 near the positioning fixture 12. The feeding limiting mechanism 14 includes a retractable feeding limiting component 141, the extension direction of which is perpendicular to the conveying direction of the hook body 101, and the feeding limiting component 141 can abut against the hook body 101. Specifically, the feeding limiting mechanism 14 is installed at one end of the feeding track 11 near the positioning fixture 12, that is, the end area before the hook body 101 enters the hook body positioning groove 122, to temporarily stop the hook body 101. When multiple hook bodies 101 are being conveyed on the feeding track 11, it can prevent the feeding track 11 from continuing to move forward. When the hook body 101 on the positioning fixture 12 enters the next process, or when the positioning fixture 12 is idle, the feeding limiting component 141 retracts, thus no longer blocking the hook body 101.

[0049] In the hook production equipment of this embodiment, see Figure 14 The feeding track 11 includes a first vibrating plate 112, which is drivenly connected to the feeding track 11 to drive the hook body 101 on the feeding track 11 to move. In this way, by setting the first vibrating plate 112, the feeding track 11 and the hook body 101 can be driven to vibrate, thereby giving the hook body 101 the power to move forward.

[0050] In the hook production equipment of this embodiment, see Figure 14The hook body feeding device 10 includes: a first gripper 151, which is drivenly connected to a first feeding drive component 152. The first gripper 151 is configurably openable and is used to grip the hook body 101 located on the feeding track 11; and a second feeding drive component 153, whose telescopic arm is movably configured along the extension direction of the feeding track 11. The telescopic arm of the second feeding drive component 153 is connected to the first feeding drive component 152 to control the movement of the first gripper 151 between the positioning fixture 12 and the feeding track 11.

[0051] Specifically, the first gripper 151 is used to grip the hook body 101 on the feeding track 11. The first gripper 151 is an openable gripper. The opening and closing action is driven and controlled by the first feeding drive component 152, such as the gripper cylinder in the prior art. The second feeding drive component 153 drives the first gripper 151 to move back and forth between the material picking position of the feeding track 11 and the placement position of the positioning fixture 12.

[0052] Specifically, the second feeding drive component 153 is activated, moving the first gripper 151 above the feeding track 11. The first gripper 151 closes to grip the workpiece. The second feeding drive component 153 is activated, driving the first gripper 151 to move and transfer the workpiece above the positioning fixture 12. Then the first gripper 151 is released, allowing the hook body 101 to fall into the hook body positioning groove 122 to complete the feeding. In this embodiment, the hook body feeding mechanism realizes the automatic transfer of the hook body 101 from the feeding track 11 to the positioning fixture 12.

[0053] In the hook production equipment of this embodiment, see Figure 18 The hook body feeding device 10 includes a feeding detection component 16, which is installed at the positioning fixture 12. The detection light emitted by the feeding detection component 16 passes through the hook body positioning groove 122, and the feeding detection component 16 is signal connected to the hook body feeding mechanism.

[0054] Specifically, when the hook body 101 is accurately placed into the hook body positioning groove 122 by the hook body feeding mechanism, the hook body 101 will block the detection light; if the hook body positioning groove 122 is empty or the hook body 101 is not fully in place, the detection light remains unobstructed. By detecting the on / off state of the detection light, the feeding detection component 16 can determine in real time whether the hook body 101 has been successfully fed to the predetermined position. When the feeding detection component 16 detects that there is a hook body 101 in the hook body positioning groove 122, the system pauses feeding to avoid repeated feeding.

[0055] In some embodiments, when the assembly equipment for the ring hooks uses a circular turntable for assembly, the turntable rotates cyclically, which may result in material leakage, incomplete assembly of some hooks, etc., requiring the assembly and adhesive curing steps to be repeated. Therefore, in order to prevent interference or equipment errors caused by feeding material when there is a hook body 101 in the hook body positioning groove 122, a feeding detection component 16 is provided, which can effectively avoid the above-mentioned unexpected situations.

[0056] Optionally, the material feeding detection component 16 may employ non-contact sensing elements such as through-beam photoelectric switches or laser detection modules.

[0057] In the hook production equipment of this embodiment, see Figure 16 At least two hook bodies 101 are conveyed on the feeding track 11. The hook body feeding device 10 includes: a second gripper 171, which is disposed at one end of the feeding track 11 near the positioning fixture 12. The distance between the second gripper 171 and the end of the feeding track 11 is the length of at least one hook body 101. The second gripper 171 is closable. A third feeding drive component 172 is drivenly connected to the second gripper 171.

[0058] Specifically, the second gripper 171 is used to clamp the next hook body 101 to be discharged when the first gripper 151 grips the hook body 101. At least two hook bodies 101 are simultaneously conveyed on the feeding track 11, forming a conveying queue. Based on this, the device further includes the second gripper 171 and a third feeding drive component 172. The second gripper 171 is located at one end of the feeding track 11 near the positioning fixture 12, and its installation position maintains a preset distance from the output end of the feeding track 11. This distance is not less than the length of one hook body 101, ensuring that when the first gripper 151 grips the foremost hook body 101, the second gripper 171 can clamp the next hook body 101 to be discharged immediately following it. Through the active clamping of the "next" hook body 101 by the second gripper 171, it is ensured that only one workpiece is gripped at a time.

[0059] The working process of the hook body feeding device 10 in this embodiment is as follows: First, the hook body 101 is fed into the feeding track 11 by the feeding equipment. The hook body 101 is suspended in the channel. Its base 1011 is supported by the top of the fixed seat or the first support component 134 and the second support component 135. The hook body 1012 is clamped and limited from both sides by multiple sets of spaced first support components 134 and second support components 135. It is conveyed forward along the channel under the vibration drive of the first vibrating plate.

[0060] When the hook body 101 is conveyed to the end of the feeding track 11 near the positioning fixture 12, the feeding limit component 141 of the feeding limit mechanism 14 is in the extended state, which temporarily stops the hook body 101 at the front end perpendicular to the conveying direction, so that it stops precisely at the material picking position.

[0061] Subsequently, when it is detected that there is no hook body 101 on the positioning fixture 12, the hook body feeding device 10 performs a feeding action. The hook body feeding mechanism operates as follows: the second feeding drive component 153 drives the first gripper 151 to move to the picking position, and the first feeding drive component 152 controls the first gripper 151 to close, grabbing the foremost hook body 101. At the same time, the second gripper 171 closes under the drive of the third feeding drive component 172, clamping the next hook body 101 that follows, ensuring that only one hook body 101 is grabbed at a time. Then, the second feeding drive component 153 moves the first gripper 151 above the positioning fixture 12 and releases it, allowing the hook body 101 to fall into the hook body positioning groove 122 of the hook body positioning component 121. Since the hook body positioning groove 122 is spatially connected to the first channel 133 and its contour matches, the hook body 101 can be naturally positioned without flipping. In this process, the loading limit component 141 of the loading limit mechanism 14 is retracted so that the hook body 101 can enter the hook body positioning groove 122.

[0062] After the material is loaded, the second gripper 171 releases, the next hook body 101 that was gripped moves forward to the material picking position, the loading limit component 141 extends out again to stop, and the next cycle begins.

[0063] In the hook production equipment of this embodiment, see Figure 6 The glue application device 20 includes: a glue-draining tank 21, with a glue storage component 22 disposed above the glue-draining tank 21. The glue-draining tank 21 is hollow inside, and a plurality of glue-draining holes 211 are opened at the bottom of the glue-draining tank 21; a glue-draining positioning component 23, which is connected to the glue-draining tank 21. The glue-draining positioning component 23 is provided with a glue-draining positioning hole 231, the shape of which matches the hook body 101. The glue-draining positioning hole 231 communicates with the plurality of glue-draining holes 211. The glue-draining positioning component 23 is movably disposed along the height direction.

[0064] Specifically, the glue storage component 22 is used to store liquid glue. The glue flows from the glue storage component 22 into the glue draining tank 21 and drips downward through several glue draining holes 211 at the bottom of the glue draining tank 21. The number, diameter, and distribution of the glue draining holes 211 are designed according to the bonding area of ​​the hook body 101 to ensure that the amount of glue on the hook body 101 is appropriate. The glue dripping positioning component 23 is fixedly connected to the bottom of the glue draining tank 21 and has a glue dripping positioning hole 231. The inner contour of the glue dripping positioning hole 231 matches the contour shape of the hook body 101. When the hook body 101 to be glued rotates to the glue application station with the turntable 1, the glue dripping positioning component 23 is controlled to fall so that the hook body 101 enters the glue dripping positioning hole 231. The glue dripping positioning hole 231 is connected to the glue draining hole 211 above, so that the glue flows out through the glue draining hole 211 and drips directly onto the hook body 101.

[0065] In some embodiments, the glue dripping tank 21 is connected to the glue dripping positioning component 23, and the glue dripping tank 21 and the glue dripping positioning component 23 move up and down simultaneously to prevent glue leakage.

[0066] In some embodiments, the glue applicator 20 uses a driving component such as a cylinder that has a linear displacement driving function to connect with the glue dispensing positioning component 23, so as to drive the glue dispensing positioning component 23 to move along the height direction.

[0067] It should be noted that the film feeding device grabs the film 102 on the film conveying device for feeding, and can adopt existing technology, as long as it has the above-mentioned functions, which will not be elaborated here, such as the feeding device in CN202120967832.6 A new type of film feeding device.

[0068] In the hook production equipment of this embodiment, see Figure 7 The hook production equipment also includes a clamping device 40, which is disposed between the film feeding device 30 and the curing device 50. The clamping device 40 includes a clamping component 411, which is movably disposed along the height direction. The clamping component 411 abuts against the side of the film 102 away from the hook body 101. The clamping component 411 is used to clamp the assembled film 102 and hook body 101. By abutting against the side of the film 102 away from the hook body 101, the clamping component 411 applies a clamping force to the assembled film 102 and hook body 101, preventing the presence of air bubbles.

[0069] The clamping device 40 includes a first clamping device and a second clamping device arranged sequentially. By setting two clamping devices, the clamping effect of the assembled film 102 and hook body 101 is further improved.

[0070] In some embodiments, at least two springs are provided on both the first pressing device and the second pressing device. The springs can prevent the film 102 from sticking to the pressing component 411. The at least two springs on the first pressing device and the second pressing device can be arranged in different directions.

[0071] In the hook production equipment of this embodiment, see Figure 2 The curing device 50 includes a curing chamber 52 and a plurality of curing lamps installed inside the curing chamber 52. The plurality of curing lamps are spaced apart around the axis of the turntable 1. The curing chamber 52 is arranged around the periphery of the turntable 1, and the curing chamber 52 contains at least part of the turntable 1. By setting a plurality of curing lamps, multiple curing lamps can form a uniform and continuous irradiation area around the circumference of the turntable 1. The assembled film 102 and the hook body 101 can be irradiated over a longer rotation area, resulting in more uniform irradiation and thus ensuring the curing effect of the adhesive.

[0072] By setting up a curing chamber 52, light can be shielded during curing to prevent light from escaping.

[0073] In some embodiments, see Figure 8 The curing chamber 52 includes a curing lamp mounting plate 521, on which multiple curing lamp mounting slots 5211 are provided. Meanwhile, the curing chamber 52 also serves as the top plate, and on the side of the curing chamber 52 away from the turntable 1, a hook body feeding device 10, an adhesive applicator 20, and a curing device 50 are installed, making the hook production equipment more compact.

[0074] In the hook production equipment of this embodiment, see Figure 1 The hook production equipment also includes a feeding device 70 disposed between the curing device 50 and the hook body feeding device 10. The feeding device 70 includes a feeding push block 71 and a feeding drive component 72. The feeding push block 71 is groundably disposed with the hook located at the feeding device 70. The feeding drive component 72 is drivenly connected to the feeding push block 71 to drive the feeding push block 71 to move.

[0075] After the hook assembly completes the film assembly, pressing, and curing, the hook is removed from the turntable 1 by the feeding device 70. A receiving device or conveyor line can be set outside the turntable 1 to receive the hooks after feeding and transfer them to the next process.

[0076] In some embodiments, a feeding detection component is provided between the feeding device 70 and the hook body feeding device 10. The feeding detection component extends out of the positioning area of ​​the hook body positioning component 121 to detect whether there is any film 102 remaining after the feeding process, or whether the hook body 101 exceeds the positioning area of ​​the hook body positioning component 121. The feeding detection component can be a non-contact sensor such as a photoelectric sensor. If an object is detected to exceed the positioning area of ​​the hook body positioning component 121, the equipment stops, and the operator or robot removes the film 102 or the hook body positioning component 121 to prevent the semi-finished product exceeding the positioning area of ​​the hook body positioning component 121 from interfering with the hook body feeding device 10.

[0077] In the hook production equipment of this embodiment, around the circumference of the turntable 1, a hook body feeding device 10, a glue application device 20, a film feeding device 30, a pressing device 40, a curing device 50, and a discharging device 70 are arranged sequentially. According to the rotation direction of the turntable, hook body feeding station, glue application station 1002, film feeding station 1003, pressing station 1004, curing station 1005, and discharging station are sequentially formed on the outer circumference of the turntable 1. As the turntable 1 rotates, the positioning fixture 12 on the turntable 1 rotates to different positions, enabling the product on the positioning fixture 12 to reach different stations. When the turntable 1 rotates, each positioning fixture 12 passes through the above-mentioned stations in sequence: first, it receives the hook body 101 at the hook body loading station; then it reaches the glue dispensing station 1002 to complete the glue application; next, it reaches the film loading station 1003 to assemble the film 102, completing the assembly of the hook body 101 and the film 102; then it reaches the pressing station 1004 to press the hook body 101 and the film 102 together; finally, it enters the curing station 1005 to cure and shape the glue. After the cured hook reaches the unloading station, it is unloaded by the unloading device 70.

[0078] In the hook production equipment of this embodiment, see Figures 9-11 It also includes a first positioning device 61, which is disposed at the film feeding device 30. The first positioning device 61 includes: a first push block 611, which is movably disposed along the radial direction of the turntable 1 and can abut against the film 102; a second push block 612, which is movably disposed along the radial direction of the turntable 1 and can abut against the hook body 101; and a guide drive component 613, which is connected to the first push block 611 and / or the second push block 612 to drive the first push block 611 and the second push block 612 to move.

[0079] With the above configuration, the first positioning device 61 is set at the film feeding station 1003, and the first push block 611 and the second push block 612 are set on the periphery of the turntable. After the film feeding device completes the film feeding, the first push block 611 and the second push block 612 can be controlled to move. The first push block 611 abuts against the side of the film 102 away from the center of the turntable 1, and the second push block 612 abuts against the side of the hook body 101 away from the center of the turntable 1, thereby pushing the film 102 and the hook body 101 towards the center of the turntable, and positioning the side of the film 102 and the hook body 101 away from the center of the turntable to meet the assembly accuracy requirements of the hook. It cooperates with the hook body positioning component 121 and the film positioning component 123 to achieve all-round positioning of the film and the hook body.

[0080] Preferably, the guide drive component 613 is connected to the first push block 611 and the second push block 612 respectively, so that the first push block 611 and the second push block 612 can be moved simultaneously. By setting the guide drive component 613, after the film loading is completed, the first push block 611 and the second push block 612 can be automatically moved to position the hook body 101 on the dispensing station 1002 and the film loading station 1003.

[0081] In the hook production equipment of this embodiment, see Figure 11 The first positioning device 61 includes an extension 614 extending around the circumference of the turntable 1. The extension 614 is disposed on the side of the second push block 612 near the glue applicator 20, and the extension 614 abuts against the hook body 101 located at the glue applicator 20.

[0082] Specifically, the first positioning device 61 includes an extension 614 extending around the circumference of the turntable 1. Along the rotation direction of the turntable 1, the extension 614 is positioned in front of the second push block 612 and connected to it. The extension 614 abuts against the hook body 101 located at the station preceding the film loading station 1003. By providing the extension 614, when the second push block 612 moves, it can drive the extension 614 to move, simultaneously pushing the hook bodies at at least two stations.

[0083] In some embodiments, the extension 614 is a plate-like structure, and the extension 614 extends toward the turntable 1.

[0084] In some embodiments, according to the rotation direction of the turntable, the turntable is sequentially provided with a hook body feeding station, a dispensing station 1002, a film feeding station 1003, a pressing station 1004, and a curing station 1005. The extension 614 is disposed on the side of the second push block 612 near the dispensing station 1002. When the second push block 612 moves, the second push block 612 can drive the extension 614 to move, and can simultaneously push the hook body 101 on the dispensing station 1002 and the film feeding station 1003.

[0085] In the hook production equipment of this embodiment, see Figure 11 The first pusher 611 includes a first connecting plate 6111 and a first pusher body 6112 connected to each other. The first connecting plate 6111 is connected to the guide drive component 613. The extension direction of the first pusher body 6112 is set at a preset angle with the first connecting plate 6111. The first pusher body 6112 abuts against the film 102. In this way, the guide drive component 613 drives the first pusher body 6112 to move through the first connecting plate 6111. Preferably, the extension direction of the first pusher body 6112 is perpendicular to the first connecting plate 6111.

[0086] In the hook production equipment of this embodiment, see Figure 10 The first connecting plate 6111 has a push block clearance groove 6113 on the side near the turntable. The push block clearance groove 6113 is used to avoid the film feeding device. Extending the side of the first connecting plate 6111 near the turntable can improve the overall strength of the first push block 611 and prevent the first push block 611 from deforming. By setting the push block clearance groove 6113 to avoid the film feeding device, interference between the film feeding device and the first connecting plate 6111 is prevented during the process of moving the film to the film feeding station.

[0087] In the hook production equipment of this embodiment, see Figure 12 The second push block 612 includes a second connecting plate 6121 and a second push block body 6122 connected to each other. The second connecting plate 6121 is connected to the guide drive component 613. The extension direction of the second push block body 6122 is set at a preset angle with the second connecting plate 6121. The second push block body 6122 abuts against the hook body 101. In this way, the guide drive component 613 drives the second push block body 6122 to move through the second connecting plate 6121. The second push block body 6122 is connected to the extension portion 614. Preferably, the extension direction of the second push block body 6122 is perpendicular to the second connecting plate 6121.

[0088] Preferably, the hook body 101 is composed of two parts: a base 1011 and a hook body 1012, and the second push block body 6122 can abut against the hook body 1012.

[0089] Preferably, the extension 614 is integrally connected with the second push block 612, and the extension 614 and the second push block 612 form a circular plate structure. The inner side of the circular plate structure is an arc-shaped surface, which ensures that the movement trajectory of the extension 614 and the second push block 612 matches the outer edge of the hook body 101, and ensures that the extension 614 and the second push block 612 can effectively contact the hook body 101.

[0090] In the hook production equipment of this embodiment, see Figure 9 The hook production equipment also includes: a pressing device 40, which is located between the film feeding device 30 and the curing device 50; and a second positioning device 62, which is located at the pressing device 40 and on the periphery of the turntable 1. The second positioning device 62 is groundably positioned with respect to the film 102 and the hook body 101 located at the pressing device 40.

[0091] Since the pressing station presses the hook body 101 and the film 102 together by pressing up and down during the pressing process, the second positioning device 62 can prevent the film 102 and the hook body 101 from shifting or misaligning during the pressing process, ensuring that the two maintain a precise relative position when pressed, and ensuring that the film 102 and the hook body 101 always maintain a precise relative position before curing.

[0092] In some embodiments, multiple pressing stations 1004 may be set according to actual process requirements and arranged sequentially along the circumference of the turntable 1; correspondingly, the extension length of the second positioning device 62 is configured to be adaptively adjusted according to the number and distribution of the pressing stations 1004 to ensure that the film 102 at each pressing station and the hook body 101 can be effectively abutted and positioned.

[0093] For example in Figure 9 In the middle, the pressing station 1004 includes two. The extension length of the second positioning device 62 not only covers the two pressing stations 1004, but also continues to extend to the curing station 1005 area to ensure that the hook body 101 and the film 102 can always maintain their relative positions before curing.

[0094] In the hook production equipment of this embodiment, see Figure 13 The second positioning device 62 includes: a first stop 621, which is disposed on the periphery of the turntable 1, the inner side of the first stop 621 being an arc-shaped surface, and the inner side of the first stop 621 being able to abut against the side of the film 102 away from the axis of the turntable 1; and a second stop 622, which is disposed on the periphery of the turntable 1, the inner side of the second stop 622 being an arc-shaped surface, and the inner side of the second stop 622 being able to abut against the side of the hook body 101 away from the axis of the turntable 1.

[0095] Specifically, either the first stop 621 or the second stop 622 extends along the outer periphery of the turntable 1, forming a circular plate structure. The inner side of the first stop 621 is an arc-shaped surface, and the inner side of the second stop 622 is an arc-shaped surface. By contacting the outer contour of the workpiece with the arc-shaped inner surface, radial positioning of the film 102 and the hook body 101 is achieved. Since the turntable 1 is a rotating body, the hooks or hook semi-finished products on its multiple positioning fixtures are circumferentially distributed. The use of arc-shaped stops ensures continuous contact surfaces and uniform force. The first stop 621 and the second stop 622 act independently on the film 102 and the hook body 101, respectively, achieving separate positioning of the two different components, thereby ensuring that they maintain the correct relative posture during the clamping process.

[0096] In the hook production equipment of this embodiment, see Figure 13 The second stop 622 is provided with a stop clearance groove 6221, which is located on the side of the second stop 622 close to the first stop 621.

[0097] It should be noted that the hook body consists of a base 1011 and a hook body 1012.

[0098] By setting a stop clearance groove 6221, a stepped structure is formed on the second stop 622 to avoid the base 1011 of the hook body 101 or the positioning fixture on the turntable 1 used to clamp the hook, thus avoiding mutual interference. This allows the second stop 622 to abut against the hook body 1012 of the hook body, and the hook body 101 is positioned by the second stop 622.

[0099] In the hook production equipment of this embodiment, see Figure 12 or Figure 13 It also includes a positioning device support base 63, which is disposed on the periphery of the turntable 1. A first positioning device 61 and a second positioning device 62 are respectively mounted on the positioning device support base 63. By setting up the positioning device support base, the first positioning device 61 and the second positioning device 62 are supported and brought close to the turntable 1.

[0100] In some embodiments, a bottom curing lamp is also installed on the side of the positioning device support 63 near the curing station 1005 for curing the bottom side of the pressed hook body 101 and film 102.

[0101] The positioning device in this embodiment works as follows: When the film loading device places the film 102 at the film loading station 1003, the guide drive component 613 is activated, driving the first push block 611 to move towards the center of the turntable. The first push block 611 abuts against the outside of the film 102, simultaneously driving the second push block 612 to move. The second push block 612 abuts against the hook body 101. At the same time, since the extension part 614 is integrally connected to the second push block 612 and extends to the dispensing station 1002, the movement of the second push block 612 also drives the extension part 614 to simultaneously push the hook body 101 on the dispensing station 1002. The workpieces on both the film loading station and the dispensing station are pushed from the outside towards the center of the turntable, achieving precise radial positioning of the film 102 and the hook body 101 on the side away from the center.

[0102] When the turntable rotates, causing the assembled film 102 and hook body 101 to rotate to the pressing station 1004, the pressing device applies pressure to the film 102 and hook body 101 to complete the bonding. The arc-shaped inner side of the first stop 621 abuts against the outer side of the offset film 102, and the arc-shaped inner side of the second stop 622 abuts against the offset hook body 101, preventing the film 102 and hook body 101 from misaligning during the pressing process.

[0103] In the hook production equipment of this embodiment, a first positioning device 61 is set at the film feeding station 1003 to perform preliminary positioning after the film feeding is completed. A second positioning device 62 is set at the pressing station 1004 to prevent the film 102 from being misaligned with the hook body 101 during the pressing process. The first positioning device 61 and the second positioning device 62 together position the film 102 and the hook body 101 on the side away from the turntable center to avoid displacement of the film or the hook body. Before the hook is cured, the relative position of the hook body and the film can be kept fixed to meet the assembly accuracy requirements of the hook.

[0104] It should be noted that the terms "first," "second," etc., in the specification, claims, and accompanying drawings of this application are used to distinguish similar objects and are not necessarily used to describe a specific order or sequence. It should be understood that such data can be interchanged where appropriate so that the embodiments of this application described herein can be implemented in orders other than those illustrated or described herein. Furthermore, the terms "comprising" and "having," and any variations thereof, are intended to cover non-exclusive inclusion; for example, a process, method, system, product, or apparatus that comprises a series of steps or units is not necessarily limited to those steps or units explicitly listed, but may include other steps or units not explicitly listed or inherent to such processes, methods, products, or apparatus.

[0105] Optionally, specific examples in this embodiment can refer to the examples described in the above embodiments, and will not be repeated here.

[0106] The sequence numbers of the embodiments in this application are for descriptive purposes only and do not represent the superiority or inferiority of the embodiments.

[0107] In the above embodiments of this application, the descriptions of each embodiment have different focuses. For parts not described in detail in a certain embodiment, please refer to the relevant descriptions of other embodiments.

[0108] The above description is only a preferred embodiment of this application. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the principle of this application, and these improvements and modifications should also be considered within the scope of protection of this application.

Claims

1. A hook production apparatus characterized by comprising: The hook comprises a hook body (101) and a film (102), and the hook production equipment comprises: a rotating disc (1) provided with a plurality of positioning tools (12) for clamping hooks at intervals along the axis of the rotating disc (1); a hook body feeding device (10) for feeding the hook body (101) to the positioning tool (12); a gluing device (20) for gluing the hook body (101); a film feeding device (30) for feeding and assembling the film (102) to the glued hook body (101); a curing device (50) for curing the assembled hook body (101) and the film (102); wherein the hook body feeding device (10), the gluing device (20), the film feeding device (30), and the curing device (50) are sequentially arranged on the side of the rotating disc (1), and the rotating disc (1) is rotatably arranged to make the plurality of positioning tools (12) reciprocate between the hook body feeding device (10), the gluing device (20), the film feeding device (30), and the curing device (50).

2. The hook production apparatus according to claim 1, characterized by The positioning tool (12) comprises: a hook body positioning component (121) provided with a hook body positioning groove (122) for positioning and accommodating the hook body (101); a film positioning component (123) comprising a film positioning groove (124) for positioning and accommodating the film (102).

3. The hook production apparatus according to claim 2, characterized by The hook body positioning component (121) comprises: a support rod (1211) for supporting the base (1011) of the hook body (101), the support rod (1211) comprises two, and the two support rods (1211) are respectively arranged on the opposite sides of the hook body positioning groove (122); a limiting component (1212) arranged on the side of the support rod (1211) close to the axis of the rotating disc (1), and the limiting component (1212) can abut against the side of the base (1011).

4. The hook production apparatus according to claim 2, characterized by The hook body feeding device (10) comprises a feeding track (11) for receiving and conveying the hook body (101), the feeding track (11) comprises a support assembly, the support assembly is provided with the hook body (101) hung thereon, and the support assembly is provided with a first channel (133) extending along the moving direction of the hook body (101) therein, and the first channel (133) accommodates at least part of the hook body (101); The positioning tool (12) is used for receiving the hook body (101) from the feeding track (11), and the hook body positioning groove (122) is in communication with the first channel (133).

5. The hook production apparatus according to claim 4, characterized by The hook body feeding device (10) comprises: A first clamping jaw (151) is drivingly connected with a first feeding driving component (152), the first clamping jaw (151) is openably arranged, and the first clamping jaw (151) is used for grabbing the hook body (101) on the feeding track (11); A second feeding driving component (153) is movably arranged along the extension direction of the feeding track (11), and the telescopic arm of the second feeding driving component (153) is connected with the first feeding driving component (152) to control the movement of the first clamping jaw (151) between the positioning tool (12) and the feeding track (11).

6. The hook production apparatus according to claim 1, characterized by The glue coating device (20) comprises: A glue dripping groove (21) is provided with a glue storage component (22) above, the glue dripping groove (21) is hollow inside, and a plurality of glue dripping holes (211) are formed in the bottom of the glue dripping groove (21); A glue dripping positioning component (23) is connected with the glue dripping groove (21), a glue dripping positioning hole (231) is formed in the glue dripping positioning component (23), the shape of the glue dripping positioning hole (231) is matched with the hook body (101), the glue dripping positioning hole (231) is communicated with the plurality of glue dripping holes (211), and the glue dripping positioning component (23) is movably arranged along the height direction.

7. The hook production apparatus according to claim 1, characterized by Further comprising a first positioning device (61) arranged at the glue sheet feeding device (30), the first positioning device (61) comprises: A first push block (611) is movably arranged along the radial direction of the turntable (1), and the first push block (611) is abuttable with the glue sheet (102); A second push block (612) is movably arranged along the radial direction of the turntable (1), and the second push block (612) is abuttable with the hook body (101); A guide driving component (613) is connected with the first push block (611) and / or the second push block (612) to drive the movement of the first push block (611) and / or the second push block (612).

8. The hook production apparatus according to claim 7, characterized by The first positioning device (61) comprises an extension part (614) extending around the periphery of the turntable (1), the extension part (614) is arranged on the side of the second push block (612) close to the glue coating device (20), and the extension part (614) is abutted with the hook body (101) located at the glue coating device (20).

9. The hook production apparatus according to claim 1, characterized by The hook production equipment further comprises: A pressing device (40) is arranged between the glue sheet feeding device (30) and the curing device (50); A second positioning device (62) is arranged at the pressing device (40), and the second positioning device (62) is arranged at the periphery of the rotary disc (1) and is arranged in abuttable manner with the film (102) and the hook body (101) at the pressing device (40).

10. The hook production apparatus according to claim 1, characterized by The curing device (50) comprises a curing box (52) and a plurality of curing lamps installed in the curing box (52), the plurality of curing lamps are distributed at intervals around the axis of the rotary disc (1), the curing box (52) is arranged around the periphery of the rotary disc (1), and the curing box (52) contains at least part of the rotary disc (1).

Citation Information

Patent Citations

  • Novel film feeding device

    CN214983356U