Novel transfer module for screen production

By designing a novel transfer module with a load-bearing structure and a positioning structure, the problem of high screen assembly costs in existing technologies has been solved, achieving precise screen positioning and stable transmission, reducing production costs and improving production efficiency.

CN224185305UActive Publication Date: 2026-05-01HUNAN JIUSHUN HONGYE ELECTRONICS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HUNAN JIUSHUN HONGYE ELECTRONICS CO LTD
Filing Date
2025-06-03
Publication Date
2026-05-01

AI Technical Summary

Technical Problem

Existing technologies rely on CCD vision systems and suction cup grippers for precise positioning during screen assembly, resulting in high costs and difficulty in achieving efficient and accurate component placement.

Method used

A new transfer module, including a load-bearing structure and a positioning structure, is adopted. Through the combination of guide rails and positioning push plates, the screen can be accurately positioned and stably transported. Combined with elastic limiters and drivers, the stability and accuracy of the screen during the transport process are ensured.

Benefits of technology

It achieves precise screen positioning and stable transmission, reduces production costs, improves production efficiency, and reduces the risk of screen damage and operational safety hazards.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of screen production, in particular to a novel transfer module for screen production, which comprises a bearing structure and a positioning structure, the positioning structure comprises a positioning push plate movably mounted at the diagonal of one end of the bearing structure, and the bearing structure comprises a bottom plate and a specification plate. A plurality of guide rails are transversely and vertically arranged on the bottom plate, the specification plate is arranged at the upper ends of the guide rails, positioning structures are arranged on the guide rails in a sliding mode, and one ends of the positioning structures abut against the specification plate. According to the utility model, through the cooperation of the bearing structure and the positioning structure, the precise positioning of the screen or other parts is realized. The bottom plate and the specification plate in the bearing structure provide a stable supporting platform for parts, and the guide rail and the positioning structure are arranged in a sliding mode, so that the parts can be flexibly adjusted and positioned according to actual requirements, screens of different specifications can be adapted, the production efficiency is ensured, and the production cost is reduced.
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Description

A new type of transfer module for screen production Technical Field

[0001] This utility model relates to the field of screen production technology, specifically to a novel transfer module for screen production. Background Technology

[0002] A screen is a device or electrical appliance used to display images and colors, also known as a display screen. Currently, the most widely used screen is the LCD screen, which is widely used in mobile phones, monitors, televisions, and other products and devices with image or text display capabilities. During screen assembly, the screen edges need to be connected and packaged with other components of the product (such as the main body, mid-frame, and border). Before packaging, each component must be accurately transferred to its predetermined position. In this transfer process, existing technologies mainly rely on a CCD vision system and a suction cup gripper to collaboratively complete the gripping and placement actions. To improve placement accuracy, the degree of freedom of the suction cup gripper is usually increased to correct and adjust the components, preventing them from failing to be accurately placed into the designated position. However, this method requires a significant upgrade to the suction cup gripper, resulting in high costs. Therefore, this utility model proposes a novel transfer module for screen production. Summary of the Invention

[0003] This invention provides a novel transfer module for screen production to solve the problems mentioned in the background section.

[0004] The objective of this utility model is achieved through the following means:

[0005] A novel transfer module for screen production includes a support structure and a positioning structure. The positioning structure includes a positioning push plate movably installed diagonally at one end of the support structure. The support structure includes a base plate and a specification plate. Multiple guide rails are arranged horizontally and vertically on the base plate. The specification plate is disposed on the upper end of the guide rails. A positioning structure is slidably disposed on the guide rails, and one end of the positioning structure abuts against the specification plate.

[0006] Furthermore, the positioning structure includes a slider body and a locking screw. One end of the slider body is provided with an abutment portion for abutting against the specification plate, and the locking screw passes through the slider body and abuts against the guide rail.

[0007] Furthermore, an elastic limiting member is provided at the upper end of the abutment portion, and the end of the elastic limiting member away from the specification plate is inclined upward.

[0008] Furthermore, the upper end of the elastic limiting member is provided with anti-slip texture.

[0009] Furthermore, the supporting structure also includes a base, and the base plate is vertically mounted above the base via guide columns. The base is provided with a first driver for pushing the base plate to move up and down.

[0010] Furthermore, a movable slide is connected to the bottom of the base.

[0011] Furthermore, the positioning push plate is an integrally formed L-shaped configuration, and the positioning push plate moves diagonally along one end of the base plate via a second driver.

[0012] Furthermore, the upper end of the base is provided with a plurality of support members for supporting the base plate, so that a space for accommodating the second driver is formed between the base and the base plate.

[0013] Furthermore, an elastic element is installed on the inner side of the positioning push plate.

[0014] This invention achieves precise positioning of screens or other components through the cooperation of a support structure and a positioning structure. The base plate and specification plate in the support structure provide a stable support platform for the components, while the sliding arrangement of the guide rail and positioning structure allows for flexible adjustment and positioning of the components according to actual needs, thereby adapting to screens of different specifications, ensuring production efficiency, and reducing production costs. Attached Figure Description

[0015] Figure 1 is a structural schematic diagram of a novel transfer module for screen production according to this utility model;

[0016] Figure 2 is a first partially enlarged schematic diagram of a novel transfer module for screen production according to this utility model;

[0017] Figure 3 is a second partially enlarged schematic diagram of a novel transfer module for screen production according to this utility model;

[0018] Figure 4 is a schematic diagram of the positioning structure in this utility model;

[0019] 1-Positioning push plate, 2-Base plate, 3-Specification plate, 4-Guide rail, 5-Slider body, 6-Locking screw, 7-Abutting part, 8-Elastic limiting component, 9-Base, 10-Guide column, 11-First driver, 12-Moving slide, 13-Second driver, 14-Support component, 15-Elastic component. Detailed Implementation

[0020] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments.

[0021] This embodiment, referring to Figures 1-4, specifically implements a novel transfer module for screen production, including a support structure and a positioning structure. The positioning structure includes a positioning push plate 1 movably installed diagonally at one end of the support structure. The support structure includes a base plate 2 and a specification plate 3. Multiple guide rails 4 are arranged horizontally and vertically on the base plate 2. The specification plate 3 is disposed on the upper end of the guide rails 4. A positioning structure is slidably disposed on the guide rails 4, and one end of the positioning structure abuts against the specification plate 3.

[0022] Furthermore, the positioning structure includes a slider body 5 and a locking screw 6. One end of the slider body 5 is provided with an abutment part 7 for abutting against the specification plate 3. The locking screw 6 passes through the slider body 5 and abuts against the guide rail 4. The slider body 5 is slidably mounted on the guide rail 4. By adjusting the position of the slider body 5 on the guide rail 4, the relative position between the positioning structure and the specification plate 3 can be flexibly adjusted, thereby achieving precise positioning of screens of different sizes. In addition, the design of the locking screw 6 ensures that the positioning structure remains stable after being adjusted into place, without slippage or displacement, further improving the accuracy and reliability of the transfer module.

[0023] Furthermore, an elastic limiting member 8 is provided at the upper end of the abutment portion 7. The end of the elastic limiting member 8 away from the specification plate 3 is inclined upwards. The elastic limiting member 8 is used to limit the screen and prevent the screen from slipping or shifting during transportation. When the screen is placed on the specification plate 3, the elastic limiting member 8 will contact the edge of the screen and generate a certain elastic force, thereby limiting the horizontal movement of the screen. This design not only improves the stability of the screen during transportation but also reduces the risk of screen damage caused by collision or friction. The upper end of the elastic limiting member 8 is provided with anti-slip texture, which further increases the friction between the screen and the elastic limiting member 8, preventing the screen from slipping due to vibration or external force during transportation. The anti-slip texture design also improves the safety of operators and reduces the risk of injury that may be caused by the screen slipping. In addition, the elastic limiting member 8 is made of elastic material and has a certain cushioning effect, which can absorb the impact force on the screen during transportation to a certain extent, further protecting the screen from damage.

[0024] In actual production, different sizes of specification plates 3 need to be replaced according to the screen size to meet the transportation needs of screens of different sizes and weights. The specification plate 3 is provided with positioning holes at one of its two corners near the positioning push plate 1. The guide rail 4 is provided with positioning protrusions for engaging with the positioning holes to position the specification plate 3. Positioning is achieved at the other two corners of the specification plate 3 through positioning structures on the horizontally and vertically arranged guide rails 4, thereby completing the positioning and installation of the specification plate 3.

[0025] Furthermore, the supporting structure also includes a base 9, and the base plate 2 is elliptically mounted above the base 9 via guide columns 10. The base 9 is provided with a first driver 11 for pushing the base plate 2 to move up and down, so that the supporting structure can adapt to the needs of different heights and positions, improving the flexibility and efficiency of screen production.

[0026] Furthermore, a movable slide 12 is connected to the bottom of the base 9. By adding the movable slide 12, the delivery range of the positioning transfer platform can be expanded, and the connection efficiency between various process flows can be improved.

[0027] Furthermore, the positioning push plate 1 is an integrally formed L-shaped configuration. The output end of the second driver 13 is connected to the positioning push plate 1. The positioning push plate 1 moves diagonally along one end of the support plate through the second driver 13. By driving the positioning push plate 1 to move in a straight line along one end of the support plate, it can complete the screen correction and positioning in one movement.

[0028] Furthermore, the upper end of the base 9 is provided with a plurality of support members 14 for supporting the base plate 2, so that a space for accommodating the second driver 13 is formed between the base 9 and the base plate 2.

[0029] Furthermore, an elastic element 15 is installed on the inner side of the positioning push plate 1. The elastic element 15 is made of rubber or other elastic materials and is used to buffer the screen when the positioning push plate 1 comes into contact with the screen to prevent the screen from being damaged by hard pressure.

[0030] In this embodiment, both the first driver 11 and the second driver 13 are cylinders, but electric cylinders or other drive structures can also be selected.

[0031] In actual use, the screen or other components to be assembled are first placed at the diagonal of the specification plate 3 away from the positioning structure, and the two sides of the screen need to protrude beyond the outer edge of the specification plate 3 so that the positioning push plate 1 can push the screen to move in the direction of the positioning structure. By utilizing the limiting resistance of the elastic limiting member 8 and the two-point positioning of the L-shaped positioning push plate 1, the screen can be moved quickly and accurately to the predetermined position of the specification plate 3, thereby achieving the effect of precise positioning.

[0032] This invention achieves precise positioning of screens or other components through the cooperation of a support structure and a positioning structure. The base plate 2 and specification plate 3 in the support structure provide a stable support platform for the components, while the sliding arrangement of the guide rail 4 and the positioning structure allows for flexible adjustment and positioning of the components according to actual needs, thereby adapting to screens of different specifications and ensuring production efficiency.

[0033] The above description is merely a preferred embodiment of the present utility model and is not intended to limit the present utility model in any way. Although the present utility model has been disclosed above with reference to a preferred embodiment, it is not intended to limit the present utility model. Any person skilled in the art can make some changes or modifications to the above-disclosed technical content to create equivalent embodiments without departing from the scope of the present utility model. Any simple modifications, equivalent changes, and modifications made to the above embodiments based on the present utility model without departing from the scope of the present utility model shall fall within the scope of the present utility model.

Claims

1. A novel transfer module for screen production, comprising a support structure and a positioning structure, wherein the positioning structure includes a positioning push plate (1) movably mounted diagonally at one end of the support structure, characterized in that: The supporting structure includes a base plate (2) and a specification plate (3). Multiple guide rails (4) are arranged horizontally and vertically on the base plate (2). The specification plate (3) is located at the upper end of the guide rails (4). A positioning structure is slidably arranged on the guide rails (4). One end of the positioning structure abuts against the specification plate (3).

2. The novel transfer module for screen production according to claim 1, characterized in that: The positioning structure includes a slider body (5) and a locking screw (6). One end of the slider body (5) is provided with an abutment part (7) for abutting against the specification plate (3). The locking screw (6) passes through the slider body (5) and abuts against the guide rail (4).

3. The novel transfer module for screen production according to claim 2, characterized in that: The upper end of the abutting part (7) is provided with an elastic limiting member (8), and the end of the elastic limiting member (8) away from the specification plate (3) is inclined upward.

4. The novel transfer module for screen production according to claim 3, characterized in that: The upper end of the elastic limiting member (8) is provided with anti-slip texture.

5. The novel transfer module for screen production according to claim 1, characterized in that: The supporting structure also includes a base (9), and the base plate (2) is mounted above the base (9) in a liftable manner via a guide column (10). The base (9) is provided with a first driver (11) for pushing the base plate (2) to lift.

6. The novel transfer module for screen production according to claim 5, characterized in that: The bottom of the base (9) is connected to a movable slide (12).

7. The novel transfer module for screen production according to claim 5, characterized in that: The positioning push plate (1) is an integrally formed L-shaped structure, and the positioning push plate (1) moves diagonally along one end of the base plate (2) by the second driver (13).

8. The novel transfer module for screen production according to claim 7, characterized in that: The upper end of the base (9) is provided with a plurality of support members (14) for supporting the base plate (2), so that a space for accommodating the second driver (13) is formed between the base (9) and the base plate (2).

9. The novel transfer module for screen production according to claim 1, characterized in that: An elastic element (15) is installed on the inner side of the positioning push plate (1).