A carrier positioning module structure adapted to cable bending and rebound

By designing a carrier positioning module structure that adapts to the bending and rebound of the cable, and adopting a mobile structure and a limiting structure, the problems of inaccurate positioning and cumbersome operation caused by the rebound of the cable in the existing technology are solved, and stable positioning and efficient production are achieved.

CN119827805BActive Publication Date: 2025-09-30INTELLIGENT AUTOMATION ZHUHAI CO LTD
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Patent Information

Application Number
CN202411920415.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-12-25
Publication Date
2025-09-30
Estimated Expiration
2044-12-25

AI Technical Summary

Technical Problem

The existing carrier positioning module structure cannot provide sufficient adaptability and stability when facing cable bending and rebound, resulting in inaccurate positioning, affecting product quality and performance. At the same time, it is cumbersome to operate, increasing production costs and limiting the flexibility of the production line.

Method used

A carrier positioning module structure is designed, which adopts a mobile structure and a mobile state limiting structure. The positioning module state is switched to avoid damaging the cable, and it is fixed by a limiting structure. It includes a product carrier assembly, a positioning substrate, a mobile assembly, a pre-loaded side push structure and a mobile state limiting assembly, etc., to achieve stable positioning of the cable.

Benefits of technology

It effectively avoids the problem of inaccurate positioning caused by cable rebound, improves production efficiency, reduces production costs, and enhances the flexibility and scalability of the production line.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses and provides a carrier positioning module structure that adapts to the bending and rebound of cable assemblies. The carrier positioning module structure adopts a mobile structure and a mobile state limiting structure. The mobile structure switches the state of the positioning module to avoid damaging the product cable assemblies, and the mobile state limiting structure then limits the mobile structure. The present invention includes a product carrier assembly and a product positioning assembly. The upper limit of the product carrier assembly is matched with a product component. The product positioning assembly includes a positioning base plate, a mobile assembly, a pre-load side thrust structure and a mobile state limiting assembly. The mobile assembly, the pre-load side thrust structure and the mobile state limiting assembly are all matched on the positioning base plate. The positioning base plate is movably matched with one end of the product carrier assembly through the mobile assembly. The limiting assembly is matched with the mobile assembly for limiting, and the pre-load side thrust structure is matched with the product component.
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Description

Technical Field

[0001] The present invention is applied to the field of product positioning, and particularly relates to a carrier positioning module structure that adapts to the bending and rebound of cable assemblies. Background Art

[0002] During the manufacturing and testing of electronic products, flexible cables, as crucial components connecting various electronic components, are crucial for precise positioning and secure installation. However, existing carrier positioning module structures often lack sufficient adaptability and stability when dealing with cable bending and springback issues. After bending, the cable easily rebounds due to the inherent elasticity of the material, resulting in inaccurate positioning, which in turn affects product quality and performance.

[0003] Furthermore, the existing carrier positioning module structure also presents numerous operational inconveniences. For example, the product positioning and securing process is cumbersome and inefficient. Furthermore, when testing product performance, conventional positioning and loading methods cannot accommodate the rebound caused by bending of the cable during loading, resulting in scratches on the product cable. These issues not only increase production costs but also limit the flexibility and scalability of the production line.

[0004] Therefore, based on the above problems, if a carrier positioning module structure that can adapt to the bending and rebound of the cable can be designed, the carrier positioning module structure adopts a moving structure and a moving state limiting structure, and the state of the positioning module is switched by the moving structure to avoid damaging the product cable, and the moving state limiting structure is used to limit the moving structure, the above problems can be solved well. Summary of the Invention

[0005] The technical problem to be solved by the present invention is to overcome the shortcomings of the existing technology and design a carrier positioning module structure that adapts to the bending and rebound of the cable. The carrier positioning module structure adopts a moving structure and a moving state limiting structure. The state of the positioning module is switched by the moving structure to avoid damage to the product cable, and the moving structure is then limited by the moving state limiting structure.

[0006] The technical solution adopted by the present invention is as follows: the present invention includes a product carrier assembly and a product positioning assembly, the upper limit of the product carrier assembly is matched with a product component, the product positioning assembly includes a positioning base plate, a moving assembly, a pre-pressing side thrust structure and a moving state limiting assembly, the moving assembly, the pre-pressing side thrust structure and the moving state limiting assembly are all matched with the positioning base plate, the positioning base plate is movably matched with one end of the product carrier assembly through the moving assembly, the limiting assembly is limitedly matched with the moving assembly, and the pre-pressing side thrust structure is matched with the product component. It can be seen that the product carrier assembly supports and limits the positioning base plate and the product component, the positioning base plate supports and limits the moving assembly, the pre-pressing side thrust structure and the moving state limiting assembly, the moving assembly slides the positioning base plate left and right, so that the positioning base plate is in a testing state or a product loading state, the pre-pressing side thrust structure pre-compresses and positions the product component, and the moving state limiting assembly limits the positioning base plate when it is in a certain state.

[0007] Furthermore, the pre-stressed side thrust structure includes a side thrust cover plate, a side thrust block and several first springs. A through hole is provided on the side thrust cover plate. The side thrust cover plate is limited and engaged with the positioning substrate. The side thrust block passes through the through hole and is limited and engaged with the side thrust cover plate. The two ends of several first springs are respectively limited and engaged with the side thrust block and the positioning substrate. One end of the side thrust block is limited and engaged with the wiring on the product component.

[0008] Furthermore, the moving assembly includes a number of pins, a number of rolling bearings and a number of second springs, the number of pins being arranged at the bottom of the positioning substrate, the number of rolling bearings passing through the middle of the pins, the number of rolling bearings respectively rollingly engaging with the pins and the product carrier assembly, the number of second springs being arranged between the product carrier assembly and the positioning substrate, and the positioning substrate floatingly engaging with the product carrier assembly through the number of second springs.

[0009] Furthermore, the moving state limiting component includes a testing limiting component and a loading limiting component, and the testing limiting component and the loading limiting component are respectively matched with the positioning substrate for limiting.

[0010] Furthermore, the product carrier assembly is provided with a contoured groove, a limit block and several positioning pins. The contoured groove is limited and matched with the product component, the limit block is limited and matched with the loading limit assembly, and several positioning pins are positioned and matched with the testing limit assembly.

[0011] Furthermore, the test time limit assembly includes a push rod handle, a fixed base plate and an upper and lower floating plate. The fixed base plate is fixedly fitted on the product carrier assembly, the push rod handle is connected and fitted with the positioning base plate, the upper and lower floating plates are limited and fitted in the fixed base plate, the upper and lower floating plates are limited and fitted with the push rod handle, and a number of third springs are arranged between the bottom end of the upper and lower floating plates and the fixed base plate, and the third springs are respectively limited and fitted with the upper and lower floating plates and the fixed base plate.

[0012] Furthermore, the loading limit assembly includes a snap element, a rotating shaft and a pair of pressure plates. The rotating shaft is limited and engaged on the positioning base plate. The left and right ends of the rotating shaft are fixedly engaged with the positioning base plate through a pair of pressure plates. The middle part of the snap element passes through the rotating shaft. The snap element is rotatably engaged with the rotating shaft. A fourth spring is provided between one end of the snap element and the positioning base plate. One end of the snap element is floatingly engaged on the positioning base plate through the fourth spring, and the other end of the snap element is limited and engaged with the limiting block. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] Figure 1 It is a structural view of the present invention;

[0014] Figure 2 It is an exploded structural view of the present invention;

[0015] Figure 3 is a structural view of the carrier board assembly of the product;

[0016] Figure 4 is a first structural view of the product positioning component;

[0017] Figure 5 is a second structural view of the product positioning component;

[0018] Figure 6 is an exploded structural view of the positioning assembly of the product;

[0019] Figure 7 is an exploded structural view of the pre-compression thrust structure;

[0020] Figure 8 is an exploded structural view of the limit assembly during the test;

[0021] Figure 9 This is a structural view of the limiting component during loading;

[0022] Figure 10 is an exploded structural view of the moving assembly. DETAILED DESCRIPTION

[0023] like Figure 1 and Figure 2 As shown, in this embodiment, the present invention includes a product carrier assembly 1 and a product positioning assembly 2, the upper limit of the product carrier assembly 1 is matched with a product component 3, the product positioning assembly 2 includes a positioning substrate 20, a moving assembly 21, a pre-compression side thrust structure 22 and a moving state limiting assembly, the moving assembly 21, the pre-compression side thrust structure 22 and the moving state limiting assembly are all matched on the positioning substrate 20, the positioning substrate 20 is movably matched with one end of the product carrier assembly 1 through the moving assembly 21, the limiting assembly is limitedly matched with the moving assembly 21, and the pre-compression side thrust structure 22 is matched with the product component 3. It can be seen that the product carrier assembly 1 supports and limits the positioning substrate 20 and the product component 3, the positioning substrate 20 supports and limits the moving assembly 21, the pre-compression side push structure 22 and the moving state limiting assembly, the moving assembly 21 allows the positioning substrate 20 to slide left and right, so that the positioning substrate 20 is in a testing state or a product loading state, the pre-compression side push structure 22 allows the product component 3 to be pre-pressed and positioned, and the moving state limiting assembly allows the positioning substrate 20 to limit when it is in a certain state.

[0024] like Figures 4 to 7 As shown, in this embodiment, the pre-stressed side thrust structure 22 includes a side thrust cover plate 220, a side thrust block 221 and a plurality of first springs 222. A through hole is provided on the side thrust cover plate 220. The side thrust cover plate 220 is limitedly engaged on the positioning substrate 20. The side thrust block 221 passes through the through hole and is limitedly engaged with the side thrust cover plate 220. The two ends of the plurality of first springs 222 are respectively limitedly engaged with the side thrust block 221 and the positioning substrate 20. One end of the side thrust block 221 is limitedly engaged with the wiring on the product component 3. It can be seen that the side push cover 220 plays a role of limiting the side push block 221 and several of the first springs 222 on the positioning substrate 20, the side push block 221 plays a role of limiting the wiring on the product component 3, and the first spring 222 plays a role of floating the side push block 221 left and right. At the same time, the first spring 222 can absorb part of the thrust on the side push block 221, and when the thrust on the side push block 221 is released, it can also reset the side push block 221.

[0025] like Figure 5 、 Figure 6 and Figure 10As shown, in this embodiment, the moving assembly 21 includes a plurality of pins 210, a plurality of rolling bearings 211 and a plurality of second springs 212. The plurality of pins 210 are arranged at the bottom of the positioning substrate 20, and the plurality of rolling bearings 211 pass through the pins 210. The plurality of rolling bearings 211 respectively roll with the pins 210 and the product carrier assembly 1. The plurality of second springs 212 are arranged between the product carrier assembly 1 and the positioning substrate 20. The positioning substrate 20 floats with the product carrier assembly 1 through the plurality of second springs 212. It can be seen that the positioning substrate 20 plays a limiting role for the several pins 210 and the several second springs 212, the pins 210 play a role of rolling cooperation with the rolling bearings 211, and the rolling bearings 211 play a role of converting the sliding friction between the product carrier assembly 1 and the positioning substrate 20 into rolling friction, so that the positioning substrate 20 moves more smoothly, and the second springs 212 play a role of floating cooperation with the product carrier assembly for the positioning substrate 20. At the same time, the second springs 212 can absorb part of the thrust on the positioning substrate 20, release the thrust on the positioning substrate 20, and also reset the side push block 221.

[0026] like Figure 6 As shown, in this embodiment, the mobile state limiting assembly includes a test limiting assembly 23 and a loading limiting assembly 24, and the test limiting assembly 23 and the loading limiting assembly 24 are respectively engaged with the positioning substrate 20. Thus, it can be seen that the test limiting assembly 23 plays a role in limiting the positioning substrate 20 when positioning the product component 3, and the loading limiting assembly 24 plays a role in limiting the positioning substrate 20 when loading.

[0027] like Figure 3 As shown, in this embodiment, the product carrier assembly 1 is provided with a contoured groove 10, a limiting block 11, and a plurality of positioning pins 12. The contoured groove 10 is limited and matched with the product component 3, the limiting block 11 is limited and matched with the loading limiting assembly 24, and the plurality of positioning pins 12 are positioned and matched with the testing limiting assembly 23. It can be seen that the product carrier assembly 1 supports and fixes the contoured groove 10, the limiting block 11, and the plurality of positioning pins 12. The contoured groove 10 provides guidance and limiting for the product component 3 within the product carrier assembly 1, and the limiting block 11 limits one end of the snap element 240.

[0028] like Figure 4 、 Figure 6 and Figure 8As shown, in this embodiment, the test time limit assembly 23 includes a push rod handle 230, a fixed base plate 231 and an upper and lower floating plate 232. The fixed base plate 231 is fixedly fitted on the product carrier assembly 1, and the push rod handle 230 is connected and fitted with the positioning base plate 20. The upper and lower floating plates 232 are limited and fitted in the fixed base plate 231. The upper and lower floating plates 232 are limited and fitted with the push rod handle 230. A number of third springs 233 are arranged between the bottom end of the upper and lower floating plates 232 and the fixed base plate 231. The third springs 233 are respectively limited and fitted with the upper and lower floating plates 232 and the fixed base plate 231. It can be seen that the product carrier assembly 1 supports and fixes the push rod handle 23, the fixed base plate 231 and the third spring 233. The fixed base plate 231 guides and limits the upper and lower floating plates 232 when they float. The third spring 233 causes the upper and lower floating plates 232 to float up and down. The upper and lower floating plates 232 limit the push rod handle 230. The push rod handle 230 is connected to the positioning base plate 20, driving the positioning base plate 20 to move.

[0029] like Figure 9 As shown, in this embodiment, the loading limit assembly 24 includes a snap element 240, a rotating shaft 241 and a pair of pressure plates 25. The rotating shaft 241 is limited and fitted on the positioning substrate 20. The left and right ends of the rotating shaft 241 are fixedly fitted with the positioning substrate 20 through a pair of pressure plates 25. The middle part of the snap element 240 passes through the rotating shaft 241. The snap element 240 is rotatably fitted with the rotating shaft 241. A fourth spring 242 is provided between one end of the snap element 240 and the positioning substrate 20. One end of the snap element 240 is floatingly fitted on the positioning substrate 20 through the fourth spring 242, and the other end of the snap element 240 is limited and fitted with the limiting block 11. It can be seen that the positioning substrate 20 supports and limits the rotating shaft 241 and the fourth spring 242, and a pair of pressure plates 25 limits the rotating shaft 241 to the left and right of the positioning substrate 20. The rotating shaft 241 provides rotational cooperation for the snap element 240, and the snap element 240 is limited by the limiting block 11, which limits the movement of the positioning substrate 20. The fourth spring 242 supports one end of the snap element 240, so that the snap element 240 can be firmly limited and matched with the limiting block 11. When there is no need to limit and match with the limiting block 11, pressing the fourth spring 242 can solve the problem.

[0030] In this embodiment, the working principle of the present invention is as follows:

[0031] like Figures 1 to 10 As shown, the positioning substrate 20 moves to the product loading state, adds the product component 3, and enters the testing state.

[0032] In the first step, the operator presses the upper and lower floating plates 232 and pushes the push rod handle 230 to the right, driving the positioning substrate 20 to move, and limits the positioning substrate 20 through the locking element 240 and the limiting block 11 on the product carrier assembly 1.

[0033] In the second step, the operator first presses the side push block 221 , and the side push block 221 moves to the right due to the plurality of first springs 222 .

[0034] In the third step, the operator places the product component 3 on the product carrier assembly 1 through the contoured groove 10, then moves the cable on the product component 3 to align with the contoured groove 10, releases the side push block 221, and the side push block 221 cooperates with the cable limiter on the product component 3.

[0035] In the fourth step, the operator presses one end of the snap element 240 provided with the fourth spring 242, and the snap element 240 and the limit block 11 are no longer restricted. The positioning substrate 20 moves to the left due to several second springs 212, and at the same time drives the push rod handle 230 to move. The upper and lower floating plates 232 are not restricted and float upward to limit the push rod handle 230. The positioning substrate 20 is in test mode.

[0036] Although the embodiments of the present invention are described with practical solutions, they do not limit the meaning of the present invention. For those skilled in the art, it is obvious to modify the implementation scheme and combine it with other solutions based on this description.

Claims

1. A carrier positioning module structure adapted to cable bending and rebound, characterized by: It comprises a product carrier assembly (1) and a product positioning assembly (2), wherein the upper limit position of the product carrier assembly (1) is matched with a product component (3), and the product positioning assembly (2) comprises a positioning substrate (20), a moving assembly (21), a pre-pressing side thrust structure (22) and a moving state limiting assembly, wherein the moving assembly (21), the pre-pressing side thrust structure (22) and the moving state limiting assembly are all matched on the positioning substrate (20), and the positioning substrate (20) is movably matched with one end of the product carrier assembly (1) through the moving assembly (21), and the limiting assembly is limitedly matched with the moving assembly (21), and the pre-pressing side thrust structure (22) is provided. The push structure (22) cooperates with the product element (3); the pre-stressed side push structure (22) includes a side push cover plate (220), a side push block (221) and a plurality of first springs (222); the side push cover plate (220) is provided with a through hole; the side push cover plate (220) is limitedly matched on the positioning substrate (20); the side push block (221) passes through the through hole and is limitedly matched with the side push cover plate (220); the two ends of the plurality of first springs (222) are respectively limitedly matched with the side push block (221) and the positioning substrate (20); one end of the side push block (221) is fixedly matched with the wiring on the product element (3); Limiting cooperation; the moving assembly (21) includes a plurality of pins (210), a plurality of rolling bearings (211) and a plurality of second springs (212), the plurality of pins (210) are arranged at the bottom of the positioning substrate (20), the plurality of rolling bearings (211) pass through the middle of the pins (210), the plurality of rolling bearings (211) respectively roll with the pins (210) and the product carrier assembly (1), the plurality of second springs (212) are arranged between the product carrier assembly (1) and the positioning substrate (20), and the positioning substrate (20) is connected to the product through the plurality of second springs (212). The product carrier assembly (1) is in floating cooperation; the moving state limit assembly includes a test time limit assembly (23) and a loading time limit assembly (24), and the test time limit assembly (23) and the loading time limit assembly (24) are respectively in cooperation with the positioning substrate (20); the product carrier assembly (1) is provided with a profiling groove (10), a limit block (11) and a plurality of positioning pins (12), the profiling groove (10) is in cooperation with the product component (3), the limit block (11) is in cooperation with the loading time limit assembly (24), and the plurality of positioning pins (12) are in cooperation with the test time limit assembly (23).

2. The carrier positioning module structure adapted to cable bending and rebound according to claim 1, characterized in that: The test time limit assembly (23) includes a push rod handle (230), a fixed base plate (231) and an upper and lower floating plate (232), wherein the fixed base plate (231) is fixedly fitted on the product carrier assembly (1), the push rod handle (230) is connected and fitted with the positioning base plate (20), the upper and lower floating plates (232) are limited and fitted in the fixed base plate (231), the upper and lower floating plates (232) are limited and fitted with the push rod handle (230), a plurality of third springs (233) are provided between the bottom end of the upper and lower floating plates (232) and the fixed base plate (231), and the third springs (233) are respectively limited and fitted with the upper and lower floating plates (232) and the fixed base plate (231).

3. The carrier positioning module structure adapted to cable bending and rebound according to claim 1, characterized in that: The loading time limiting assembly (24) includes a snap element (240), a rotating shaft (241) and a pair of pressure plates (25), wherein the rotating shaft (241) is limitedly engaged on the positioning substrate (20), and the left and right ends of the rotating shaft (241) are fixedly engaged with the positioning substrate (20) through the pair of pressure plates (25), the middle part of the snap element (240) passes through the rotating shaft (241), and the snap element (240) is rotationally engaged with the rotating shaft (241), and a fourth spring (242) is provided between one end of the snap element (240) and the positioning substrate (20), and one end of the snap element (240) is floatingly engaged on the positioning substrate (20) through the fourth spring (242), and the other end of the snap element (240) is limitedly engaged with the limiting block (11).