Product transfer mechanism for detection

By combining outer side plates, inner side plates, and transfer drive components, a simplified design for the product transfer mechanism for testing is achieved, avoiding collisions and reducing costs and maintenance difficulty.

CN223990582UActive Publication Date: 2026-03-13XIAMEN LIERDE AUTOMATIC EQUIP CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-27
Publication Date
2026-03-13

AI Technical Summary

Technical Problem

In existing testing institutions, the switching of positions between two workstations requires a lifting motor or cylinder, resulting in complex structure, high cost, and difficult maintenance.

Method used

It adopts a combination structure of a pair of outer side plates, a pair of inner side plates, a transfer drive component, a translation plate, a translation seat, and a lifting plate. The translation plate and the lifting plate are interchanged by the same transfer drive component, and the lifting action is achieved by using the lifting rail to avoid collision.

Benefits of technology

The simplified structure reduces equipment costs and maintenance difficulty, while the simplified control program reduces subsequent maintenance costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a product transfer mechanism for detection. The product transfer mechanism comprises a pair of outer side plates, a pair of inner side plates, a transfer driving piece, a translation plate, a translation seat and a lifting plate, the outer side plates and the inner side plates are arranged in parallel at intervals, and the two inner side plates are located between the outer side plates. A lifting rail is arranged on the inner side face of the inner side plate. And the translation plate and the translation seat are arranged up and down, are arranged on the two outer side plates in a sliding manner along the horizontal direction, and are driven by the transfer driving part to repeatedly move in opposite directions. The lifting plate is installed on the translation base in an up-down movable mode through a guide rod, and the guide rod moves along the lifting track of the inner side plate and drives the lifting plate to ascend and descend on the translation base. The product transfer mechanism for detection provided by the utility model is simple and ingenious in structure, and meanwhile, only one driving part is arranged, so that the cost is reduced, a control program can be simplified, and the subsequent maintenance cost and difficulty are also reduced.
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Description

Technical Field

[0001] This utility model relates to a product transfer mechanism for testing. Background Technology

[0002] After product assembly, testing is often required, especially for electronic products. Testing is typically done using trays or rows of products. Currently, many testing institutions use a dual-station system. One station holds the assembled product, while the other is located within the testing facility for inspection. Once testing and stacking are complete, the two stations are swapped. Alternatively, after testing and product removal, the testing and stacking stations are interchanged, allowing the stacked product to be tested again. This product testing station effectively transfers products, reducing the floor space required while maximizing the utilization of the dual-station configuration. However, it still suffers from structural complexity and high equipment cost. This is primarily because swapping the two stations requires a lifting motor or cylinder to stagger them, resulting in complex equipment structure, complex control, and high manufacturing costs. It also impacts subsequent maintenance costs and difficulty. Utility Model Content

[0003] To solve the aforementioned technical problems, this utility model proposes a product transfer mechanism for testing, comprising a pair of outer side plates, a pair of inner side plates, a transfer drive component, a translation plate, a translation seat, and a lifting plate, wherein...

[0004] The outer and inner side plates are arranged in parallel and spaced apart, with the two inner side plates located between the outer side plates. The inner side of each inner side plate is provided with a lifting rail, the middle section of which is concave downwards, and the two end sections extending horizontally.

[0005] The translation plate and translation seat are arranged vertically and slidably mounted on the two outer side plates along the horizontal direction. The transfer drive component drives the translation plate and translation seat to move repeatedly in opposite directions, forming a repositioning action of moving closer to each other, crossing over, and then moving away from each other.

[0006] The lifting plate is mounted on the translation base via guide rods that move up and down. The guide rods move along the lifting track of the inner side plate, causing the lifting plate to lift and lower on the translation base. When the guide rods move to the two sides of the lifting track, the lifting plate and the translation plate are at the same height. When the guide rods begin to enter the middle section of the lifting track, the lifting plate moves down and is offset from the translation plate, at which point the lifting plate and the translation plate begin to exchange positions. Finally, when the guide rods begin to exit the middle section of the lifting track, the lifting plate moves up again and returns to its original height, exchanging positions with the translation plate. This allows the materials on the translation plate and the lifting plate to be swapped, realizing the translational exchange of positions between the product to be tested and the product already tested.

[0007] The product transfer mechanism for testing provided by this utility model uses the same transfer drive component to drive the translation plate and the lifting plate to interchange positions, and uses the lifting track to realize the lifting action of the lifting plate, thereby avoiding collision with the translation plate when exchanging positions. The structure is simple and ingenious. At the same time, there is only one drive component, which not only reduces costs, but also simplifies the control program and reduces subsequent maintenance costs and difficulties.

[0008] Preferably, both the translation plate and the lifting plate are provided with material placement slots. The product transfer mechanism for testing also includes a product testing component, which is installed across one end of the two outer side plates and located at the top of the translation plate and the lifting plate, and is capable of testing the products transferred to the bottom of the translation plate or the lifting plate.

[0009] Preferably, the transfer drive component includes a drive motor, a synchronous pulley, and a synchronous belt. The synchronous belt is horizontally mounted at both ends of the outer side plate via the synchronous pulley and is driven by the drive motor and the synchronous pulley. The upper and lower parallel belts of the synchronous belt drive the outer side plate and the inner side plate to reciprocate, respectively. The structure is simple and easy to install and maintain.

[0010] Preferably, in order to provide a balanced driving force, there are two sets of synchronous pulleys and synchronous belts, which are respectively arranged on the inner sides of the two outer side plates, and the synchronous pulleys at the same end use the same shaft, resulting in high synchronization.

[0011] Preferably, the translation plate spans across the top of the two outer side plates, which provide reliable support.

[0012] Preferably, the outer side plate and the inner side plate on the same side are fixedly installed together by connecting columns to form a sturdy and reliable frame.

[0013] Preferably, the translation plate, translation seat and lifting plate are all provided with weight reduction holes to avoid the mechanism being too heavy.

[0014] Preferably, to prevent the translation plate and translation seat from moving beyond their range, a proximity sensor is provided at the outer end of the outer side plate, and an identification piece is provided at the end of the translation plate. The identification piece moves back and forth between the two proximity sensors by being driven by the translation plate.

[0015] Preferably, the translation seat is provided with a guide sleeve, the guide rod is telescopically installed inside the guide sleeve, and there are four sets of guide sleeves and guide rods, which are respectively set at the four corners of the translation seat and the lifting plate, thereby providing the lifting plate with a stable and directionally accurate up and down driving force.

[0016] Preferably, a connecting seat is provided at the bottom of the guide rod on the same side, and a roller is provided on the side of the connecting seat facing the inner side plate. The roller moves on the lifting track, which can reduce friction and noise.

[0017] As can be seen from the above description of this utility model, this utility model has the following beneficial effects:

[0018] 1. The product transfer mechanism for testing provided by this utility model drives the translation plate and the lifting plate to interchange positions through the same transfer drive component, and uses the lifting track to realize the lifting action of the lifting plate, thereby avoiding collision with the translation plate when exchanging positions. The structure is simple and ingenious. At the same time, there is only one drive component, which not only reduces costs, but also simplifies the control program and reduces subsequent maintenance costs and difficulties.

[0019] 2. The transfer drive component includes a drive motor, a synchronous pulley, and a synchronous belt, which has a simple structure and is easy to install and maintain.

[0020] 3. The translation plate, translation seat and lifting plate are all provided with weight reduction holes to avoid excessive weight of the mechanism and reduce the burden on the driving components;

[0021] 4. The guide rod moves within the lifting track via rollers, which reduces friction and noise and improves the smoothness of the movement. Attached Figure Description

[0022] The accompanying drawings, which are provided to further illustrate the present invention and constitute a part of the present invention, illustrate exemplary embodiments of the present invention and are used to explain the present invention, but do not constitute an undue limitation of the present invention.

[0023] in:

[0024] Figure 1 An axial view of a product transfer mechanism for inspection Figure 1 ;

[0025] Figure 2 An axial view of a product transfer mechanism for inspection Figure 2 ;

[0026] Figure 3 An axial view of a product transfer mechanism for inspection Figure 3 ;

[0027] Figure 4 An axial view of a product transfer mechanism for inspection Figure 4 (Hidden panning plate)

[0028] Figure 5 An axial view of a product transfer mechanism for inspection Figure 5 ;

[0029] Figure 6 This is a partially enlarged view of a product transfer mechanism for testing; (Regarding...) Figure 5 (at point A)

[0030] Figures 1 to 6 The components are labeled as follows: outer side plate 1, proximity sensor 11, inner side plate 2, lifting rail 21, middle section 211, side section 212, transfer drive component 3, drive motor 31, synchronous pulley 32, synchronous belt 33, translation plate 4, identification piece 41, translation seat 5, guide sleeve 51, lifting plate 6, guide rod 61, connecting seat 62, roller 63, connecting column 7, and product detection component 8. Detailed Implementation

[0031] To make the technical problem to be solved, the technical solution, and the beneficial effects of this utility model clearer and more understandable, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain this utility model and are not intended to limit this utility model.

[0032] Please see Figures 1 to 6 A product transfer mechanism for testing includes a pair of outer side plates 1, a pair of inner side plates 2, a transfer drive component 3, a translation plate 4, a translation seat 5, and a lifting plate 6, wherein...

[0033] The outer side plate 1 and the inner side plate 2 are arranged in parallel and spaced apart, with the two inner side plates 2 located between the outer side plates 1. Preferably, the outer side plate 1 and the inner side plate 2 on the same side are fixedly installed together by connecting columns 7 to form a sturdy and reliable frame.

[0034] The inner side of the inner side plate 2 is provided with a lifting rail 21, the middle section 211 of the lifting rail 21 is concave downward, and the side sections 212 at both ends extend horizontally.

[0035] The translation plate 4 and the translation seat 5 are arranged vertically and slidably mounted on the two outer side plates 1 along the horizontal direction. Preferably, the translation plate 4 spans the top of the two outer side plates 1, and is reliably supported by the outer side plates 1. The transfer drive 3 drives the translation plate 4 and the translation seat 5 to move repeatedly in opposite directions, forming a repositioning action of moving closer to each other, crossing over, and then moving away. Preferably, to prevent the translation plate 4 and the translation seat 5 from moving beyond their range, a proximity sensor 11 is provided at the outer end of the outer side plate 1, and an identification piece 41 is provided at the end of the translation plate 4. The identification piece 41 moves back and forth between the two proximity sensors 11 driven by the translation plate 4.

[0036] In one embodiment, the transfer drive component 3 includes a drive motor 31, a synchronous pulley 32, and a synchronous belt 33. The synchronous belt 33 is horizontally mounted at both ends of the outer side plate 1 via the synchronous pulley 32 and is driven by the drive motor 31 and the synchronous pulley 32. The upper and lower parallel belts of the synchronous belt 33 respectively drive the outer side plate 1 and the inner side plate 2 to reciprocate. The structure is simple and easy to install and maintain. In addition, to provide a balanced driving force, there are two sets of synchronous pulleys 32 and synchronous belts 33, which are respectively arranged on the inner surfaces of the two outer side plates 1. The synchronous pulleys 32 at the same end use the same shaft, resulting in high synchronization.

[0037] The lifting plate 6 is mounted on the translation base 5 via guide rods 61, which move up and down. The guide rods 61 move along the lifting track 21 of the inner plate 2, causing the lifting plate 6 to move up and down on the translation base 5. When the guide rods 61 move to the two side sections 212 of the lifting track 21, the lifting plate 6 and the translation plate 4 are at the same height. When the guide rods 61 begin to enter the middle section 211 of the lifting track 21, the lifting plate 6 moves down and is offset from the translation plate 4, at which point the lifting plate 6 and the translation plate 4 begin to exchange positions. Finally, when the guide rods 61 begin to exit the middle section 211 of the lifting track 21, the lifting plate 6 begins to move up again and returns to its original height, exchanging positions with the translation plate 4. This allows the materials on the translation plate 4 and the lifting plate 6 to be swapped, realizing the translational exchange of positions between the product to be tested and the product already tested.

[0038] In one embodiment, the translation seat 5 is provided with a guide sleeve 51, and the guide rod 61 is telescopically installed within the guide sleeve 51. There are four sets of guide sleeves 51 and guide rods 61, respectively disposed at the four corners of the translation seat 5 and the lifting plate 6, thereby providing a stable and directionally accurate up-and-down driving force for the lifting plate 6. Additionally, a connecting seat 62 is provided at the bottom of the guide rod 61 on the same side. A roller 63 is provided on the side of the connecting seat 62 facing the inner plate 2. The roller 63 moves along the lifting track 21, reducing friction and noise.

[0039] Based on the above embodiments, both the translation plate 4 and the lifting plate 6 are provided with material placement slots. The product transfer mechanism for testing also includes a product detection component 8, which is horizontally installed across one end of the two outer side plates 1 and located at the top of the translation plate 4 and the lifting plate 6. It can detect the products transferred to the bottom of the translation plate 4 or the lifting plate 6. It should be noted that the product detection component 8 is determined according to different products to be tested and adopts an existing detection mechanism, which is not a technical improvement point of this application and will not be described in detail here. In addition, the translation plate 4, the translation seat 5, and the lifting plate 6 are all provided with weight reduction holes to avoid excessive weight of the mechanism.

[0040] The product transfer mechanism for testing provided by this utility model uses the same transfer drive component 3 to drive the translation plate 4 and the lifting plate 6 to exchange positions, and uses the lifting rail 21 to realize the lifting action of the lifting plate 6, thereby avoiding collision with the translation plate 4 when exchanging positions. The structure is simple and ingenious. At the same time, there is only one drive component, which not only reduces costs, but also simplifies the control program and reduces subsequent maintenance costs and difficulties.

[0041] The present invention has been described above with reference to the accompanying drawings. Obviously, the specific implementation of the present invention is not limited to the above-described manner. Any non-substantial improvements made using the inventive concept and technical solution of the present invention, or the direct application of the inventive concept and technical solution to other situations without modification, are all within the protection scope of the present invention.

Claims

1. A product for testing transfer mechanism, characterized by, The device comprises a pair of outer plates, a pair of inner plates, a transfer driving element, a translation plate, a translation seat and a lifting plate. The outer plates and the inner plates are arranged in parallel and spaced apart, and the two inner plates are located between the outer plates. The translation plate and the translation seat are arranged in a vertical manner and are slidably installed on the two outer plates in a horizontal direction. The transfer driving element drives the translation plate and the translation seat to move in opposite directions repeatedly, forming a transposition action of approaching, staggering and moving away from each other.

2. The product transfer mechanism for testing according to claim 1, wherein The lifting plate is movably installed on the translation seat through a guide rod, and the guide rod moves along the lifting track of the inner plate and drives the lifting plate to move up and down on the translation seat.

3. The product transfer mechanism for testing according to claim 1, wherein The translation plate and the lifting plate are both provided with a material placing groove, and the product detection mechanism further comprises a product detection assembly.

4. The product transfer mechanism for testing according to claim 3, wherein The transfer driving element comprises a driving motor, a synchronous wheel and a synchronous belt.

5. The product transfer mechanism for testing according to claim 1, wherein The synchronous belt is installed on the two ends of the outer plates in a horizontal direction by the synchronous wheel and is driven by the driving motor and the synchronous wheel.

6. The product transfer mechanism for testing according to claim 1, wherein The synchronous wheel and the synchronous belt have two groups, which are arranged on the inner sides of the two outer plates respectively.

7. The product transfer mechanism for testing according to claim 1, wherein The translation plate is located on the top of the two outer plates.

8. The product transfer mechanism for testing according to claim 1, wherein The outer plate and the inner plate on the same side are fixed together by a connecting column.

9. The product transfer mechanism for testing according to claim 1, wherein The translation plate, the translation seat and the lifting plate are all provided with weight reduction holes.

10. A product transfer mechanism for use in testing according to claim 9, wherein The outer side of the outer plate is provided with a proximity sensor, and the end of the translation plate is provided with an identification sheet. The translation seat is provided with a guide sleeve, and the guide rod is telescopically installed in the guide sleeve. The bottom of the guide rod on the same side is provided with a connecting seat, and one side of the connecting seat facing the inner plate is provided with a roller. The roller moves in the lifting track.