Device for preventing laminating deviation of conductive transparent glass

By designing a device to prevent misalignment of the conductive transparent glass during bonding, and utilizing an adjustable positioning structure, the problem of inaccurate alignment of the conductive transparent glass during bonding was solved, achieving precise alignment and improving the production efficiency and yield rate of LCD displays.

CN223966788UActive Publication Date: 2026-03-03DONGGUAN TEBIS ELECTRONICS CO LTD
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Patent Information

Application Number
CN202520352913.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-03
Publication Date
2026-03-03
Estimated Expiration
2035-03-03

AI Technical Summary

Technical Problem

In the manufacturing process of LCD displays, inaccurate alignment of the conductive transparent glass during bonding can lead to misalignment, making it impossible to adjust after the epoxy resin has cured, resulting in defective products.

Method used

A device for preventing misalignment of conductive transparent glass is designed. It adopts an adjustable positioning structure, including components such as an electric telescopic rod, a drive motor, a drive screw, and a fixing clamp. The position of the glass is precisely adjusted by a controller to prevent misalignment.

Benefits of technology

This achieves precise alignment during the bonding process, avoiding the misalignment problem of conductive transparent glass, and improving production efficiency and product yield.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of transparent glass lamination, in particular to a device for preventing conductive transparent glass lamination deviation, which comprises a working table, a controller is connected to the side wall of the working table, an adjustable positioning structure is connected to the end face of the working table, and the adjustable positioning structure comprises a fixed shell. The device comprises a fixed shell, the inner cavity of the fixed shell is internally and symmetrically connected with electric telescopic rods, the driving ends of the electric telescopic rods are connected with a lifting connecting plate, and the side wall of the fixed shell is connected with a driving motor through a connecting seat. And a driving motor in the adjustable positioning structure passes through the transmission structure, so that the four edges of the glass are positioned, the problem of deviation of the conductive transparent glass during fitting is prevented, and the device is more convenient to use.
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Description

Technical Field

[0001] This utility model relates to the field of transparent glass bonding technology, specifically a device for preventing misalignment during bonding of conductive transparent glass. Background Technology

[0002] One step in the manufacturing process of liquid crystal displays (LCDs) is the bonding and alignment of the glass substrate: the upper and lower ITO conductive glass sheets of the LCD are screen-printed with epoxy resin and then bonded together. Accurate alignment is crucial during bonding; misalignment results in defective products (after bonding, the epoxy resin undergoes a cyclization reaction at high temperatures to solidify into the substrate, preventing further movement of the upper and lower ITO conductive glass sheets). While screen-printing the upper and lower ITO conductive glass sheets, a small amount of UV adhesive is applied to the three corners. During manual alignment, the UV adhesive is cured by UV light to prevent movement of the upper and lower conductive glass sheets and achieve stable positioning. However, misalignment can occur during manual alignment. To address these issues, a device is needed to prevent misalignment of the conductive transparent glass during bonding. Utility Model Content

[0003] The purpose of this invention is to provide a device for preventing misalignment of conductive transparent glass during bonding, thereby solving the problems mentioned in the background art.

[0004] To achieve the above objectives, this utility model provides the following technical solution:

[0005] A device for preventing misalignment of conductive transparent glass during bonding includes a worktable, a controller connected to the side wall of the worktable, and an adjustable positioning structure connected to the end face of the worktable.

[0006] The adjustable positioning structure includes a fixed housing. Electric telescopic rods are symmetrically connected within the inner cavity of the fixed housing. A lifting connecting plate is connected to the drive end of each electric telescopic rod. A drive motor is connected to the side wall of the fixed housing via a connecting seat. A drive screw is connected to the drive end of the drive motor via a coupling. Moving sliders are symmetrically connected to the side wall of the drive screw. A connecting plate is connected to the end face of each moving slider. Connecting slide rods are symmetrically connected to the side wall of the connecting plate. A fixed connecting block is connected to the outer wall of each connecting slide rod. The fixed connecting block is connected to the end face of the fixed housing. The other end of the connecting slide rod is connected to a movable connecting plate. A connecting slide rod is symmetrically connected to the side wall of the movable connecting plate via a connecting plate. A connecting slider is connected to the connecting slide rod. A limiting connecting plate is connected to the side wall of the connecting slider. Fixed clamps are connected to the side walls of both the movable connecting plate and the limiting connecting plate. Limiting slide rods are symmetrically connected to the side wall of the limiting connecting plate. A limiting connecting seat is connected to the outer wall of the limiting slide rod. The limiting connecting seat is connected to the end face of the fixed housing.

[0007] As a preferred embodiment of this utility model, the electric telescopic rod is connected to the controller via a wire in an electrical connection manner, and the drive motor is connected to the controller via a wire in an electrical connection manner.

[0008] As a preferred embodiment of this utility model, the drive screw is connected to the side wall of the fixed housing via a bearing seat, wherein the connection between the drive screw and the bearing seat is a rotatable connection.

[0009] As a preferred embodiment of this utility model, the drive screw is composed of a left-handed screw and a right-handed screw, and the drive screw is connected to the movable slider by a threaded connection.

[0010] As a preferred embodiment of this utility model, the fixed connecting block is provided with a connecting hole corresponding to the connecting slide rod, wherein the connection between the connecting slide rod and the connecting hole is a sliding connection.

[0011] As a preferred embodiment of this utility model, a guide groove is provided on the connecting slider and corresponding to the connecting slider, wherein the connection between the connecting slider and the guide groove is a sliding connection.

[0012] As a preferred embodiment of this utility model, the limiting connecting seat has a connecting hole corresponding to the limiting slide rod, wherein the connection between the limiting slide rod and the connecting hole is a sliding connection.

[0013] Compared with the prior art, the beneficial effects of this utility model are:

[0014] In this invention, an adjustable positioning structure is provided in the device for preventing misalignment of conductive transparent glass during bonding. The drive motor in the adjustable positioning structure, through the transmission structure, positions the four sides of the glass, thereby preventing misalignment of the conductive transparent glass during bonding and making the device more convenient to use. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of the isotropic structure of this utility model;

[0016] Figure 2 This is a schematic diagram of the adjustable positioning structure of this utility model;

[0017] Figure 3 for Figure 2 Partial structural diagram;

[0018] Figure 4 for Figure 3 A partial structural diagram.

[0019] In the diagram: 1. Workbench; 2. Controller; 3. Adjustable positioning structure; 301. Fixed housing; 302. Electric telescopic rod; 303. Lifting connecting plate; 304. Drive motor; 305. Drive screw; 306. Moving slider; 307. Connecting plate; 308. Connecting slide rod; 309. Fixed connecting block; 310. Moving plate; 311. Connecting slide rod one; 312. Connecting slider; 313. Limiting plate; 314. Fixed clamping plate; 315. Limiting slide rod; 316. Limiting connecting seat. Detailed Implementation

[0020] The technical solutions of the present utility model will be clearly and completely described below with reference to the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present utility model without creative effort are within the protection scope of the present utility model.

[0021] To facilitate understanding of this utility model, a more comprehensive description of the utility model will be given below with reference to the accompanying drawings, and several embodiments of the utility model will be provided. However, the utility model can be implemented in many different forms and is not limited to the embodiments described herein. On the contrary, the purpose of providing these embodiments is to make the disclosure of the utility model more thorough and complete.

[0022] It should be noted that when an element is referred to as being "fixed to" another element, it can be directly on the other element or there may be an intervening element. When an element is referred to as being "connected to" another element, it can be directly connected to the other element or there may be an intervening element. The terms "vertical," "horizontal," "left," "right," and similar expressions used in this document are for illustrative purposes only.

[0023] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains. The terminology used herein is for the purpose of describing particular embodiments only and is not intended to limit the invention. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.

[0024] For an example, please refer to... Figure 1-4 This utility model provides a technical solution:

[0025] A device for preventing misalignment of conductive transparent glass bonding includes a worktable 1, a controller 2 connected to the side wall of the worktable 1, and an adjustable positioning structure 3 connected to the end face of the worktable 1.

[0026] In this embodiment, reference Figure 1 , Figure 2 , Figure 3 and Figure 4 The adjustable positioning structure 3 includes a fixed housing 301. An electric telescopic rod 302 is symmetrically connected within the inner cavity of the fixed housing 301. A lifting connecting plate 303 is connected to the drive end of the electric telescopic rod 302. A drive motor 304 is connected to the side wall of the fixed housing 301 via a connecting seat. The drive motor 304 is started when it is electrically connected to the controller 2 via a wire, causing its drive end to rotate. A drive screw 305 is connected to the drive end of the drive motor 304 via a coupling, and the drive screw 305 is connected to the side wall of the fixed housing 301 via a bearing seat. The drive screw 305 is rotated when connected to the bearing housing. A movable slider 306 is symmetrically connected to the side wall of the drive screw 305. A connecting plate 307 is connected to the end face of the movable slider 306. A connecting rod 308 is symmetrically connected to the side wall of the connecting plate 307. A fixed connecting block 309 is connected to the outer wall of the connecting rod 308 and is connected to the end face of the fixed housing 301. The other end of the connecting rod 308 is connected to a movable connecting plate 310. A connecting rod 311 is symmetrically connected to the side wall of the movable connecting plate 310 via a connecting plate. The connecting rod 311 is connected to... A connecting slider 312 is connected to the side wall of the connecting slider 312. A limiting plate 313 is connected to the side wall of both the moving connecting plate 310 and the limiting connecting plate 313. A limiting slide rod 315 is symmetrically connected to the side wall of the limiting connecting plate 313. A limiting connecting seat 316 is connected to the outer wall of the limiting slide rod 315. The limiting connecting seat 316 is connected to the end face of the fixed housing 301. The driving screw 305 is composed of a left-hand screw and a right-hand screw. The driving screw 305 is connected to the moving slider 306 by a threaded connection. A connecting hole is opened on the fixed connecting block 309 corresponding to the connecting slide rod 308. When the connecting slide rod 308 is slidably connected to the connecting hole, it drives the movable slider 306 to move along opposite or contradictory directions on the side wall of the drive screw 305, causing the two sets of movable connecting plates 310 to move towards the center. A guide groove is provided on the connecting slider 312, corresponding to the connecting slide rod 311, wherein the connecting slide rod 311 and the guide groove are slidably connected. A connecting hole is provided on the limiting connecting seat 316, corresponding to the limiting slide rod 315, wherein the limiting slide rod 315 and the connecting hole are slidably connected, causing the two sets of limiting connecting plates 313 to move towards the center, so that the glass is clamped by the fixing clamp 314.

[0027] Furthermore, the electric telescopic pole 302 is connected to the controller 2 via a wire in an electrical connection manner, and the drive motor 304 is connected to the controller 2 via a wire in an electrical connection manner, so that the operation of the electric telescopic pole 302 and the drive motor 304 can be controlled by the controller 2.

[0028] Furthermore, the drive screw 305 is connected to the side wall of the fixed housing 301 via a bearing seat. The drive screw 305 is rotatably connected to the bearing seat. The drive screw 305 is composed of a left-hand screw and a right-hand screw. The drive screw 305 is threadedly connected to the movable slider 306. The fixed connecting block 309 has a connecting hole corresponding to the connecting slide rod 308. The connecting slide rod 308 is slidably connected to the connecting hole. The connecting slider 312 has a guide groove corresponding to the connecting slide rod 311. The connecting slide rod 311 is slidably connected to the guide groove. The limiting connecting seat 316 has a connecting hole corresponding to the limiting slide rod 315. The limiting slide rod 315 is slidably connected to the connecting hole. Through the interaction between the various components in the adjustable positioning structure 3, the adjustable positioning structure 3 can operate smoothly during use.

[0029] The working process of this utility model is as follows: When using the device to prevent misalignment of conductive transparent glass, first connect the power supply to the device to put it into operation. Then, place the glass on the lifting connecting plate 303. Start the drive motor 304, which is electrically connected to the controller 2 via a wire, causing the drive end of the drive motor 304 to rotate. The drive screw 305 is connected to the side wall of the fixed housing 301 via a bearing seat, and the drive screw 305 is rotated under these conditions. The drive screw 305 is composed of a left-handed screw and a right-handed screw. The drive screw 305 is connected to the movable slider 306 via a threaded connection. The fixed connecting block 309... Furthermore, a connecting hole is provided corresponding to the connecting slide rod 308. Under the condition that the connecting slide rod 308 and the connecting hole are connected in a sliding manner, the moving slider 306 moves on the side wall of the driving screw 305 in opposite or contradictory directions, causing the two sets of moving connecting plates 310 to move towards the middle. A guide groove is provided on the connecting slider 312 and corresponding to the connecting slide rod 311. The connecting slide rod 311 and the guide groove are connected in a sliding manner. A connecting hole is provided on the limiting connecting seat 316 and corresponding to the limiting slide rod 315. Under the condition that the limiting slide rod 315 and the connecting hole are connected in a sliding manner, the two sets of limiting connecting plates 313 move towards the middle, so that the glass is clamped by the fixing clamp 314, thereby preventing the conductive transparent glass from being misaligned during bonding.

[0030] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A device for preventing misalignment of conductive transparent glass bonding, comprising a workbench (1), characterized in that: The side wall of the workbench (1) is connected with a controller (2), and the end face of the workbench (1) is connected with an adjustable positioning structure (3); The adjustable positioning structure (3) comprises a fixed shell (301), symmetrical electric telescopic rods (302) are connected in the inner cavity of the fixed shell (301), a lifting connecting plate (303) is connected to the driving end of the electric telescopic rod (302), a driving motor (304) is connected to the side wall of the fixed shell (301) through a connecting seat, a driving screw rod (305) is connected to the driving end of the driving motor (304) through a shaft coupling, symmetrical moving sliders (306) are connected to the side wall of the driving screw rod (305), an adapter connecting plate (307) is connected to the end face of the moving slider (306), symmetrical adapter sliding rods (308) are connected to the side wall of the adapter connecting plate (307), fixed connecting blocks (309) are connected to the outer wall of the adapter sliding rod (308), the fixed connecting blocks (309) are connected to the end face of the fixed shell (301), a moving connecting plate (310) is connected to the other end of the adapter sliding rod (308), adapter sliding rods I (311) are connected to the side wall of the moving connecting plate (310) through connecting plates, adapter sliding blocks (312) are connected to the adapter sliding rods I (311), limit connecting plates (313) are connected to the side wall of the adapter sliding blocks (312), fixed clamping plates (314) are connected to the side wall of the moving connecting plate (310) and the limit connecting plate (313), limit sliding rods (315) are connected to the side wall of the limit connecting plate (313) in a symmetrical manner, limit connecting seats (316) are connected to the outer wall of the limit sliding rod (315), and the limit connecting seats (316) are connected to the end face of the fixed shell (301).

2. The device for preventing the bonding deviation of conductive transparent glass according to claim 1, characterized in that: The electric telescopic rod (302) is connected with the controller (2) through wires and in an electrical connection mode, and the driving motor (304) is connected with the controller (2) through wires and in an electrical connection mode.

3. The device for preventing the bonding deviation of conductive transparent glass according to claim 1, characterized in that: The driving screw rod (305) is connected to the side wall of the fixed shell (301) through a bearing seat, and the connection between the driving screw rod (305) and the bearing seat is a rotating connection.

4. The device for preventing lamination misalignment of conductive transparent glass according to claim 1, characterized in that: The driving screw rod (305) is composed of a left-handed screw rod and a right-handed screw rod, and the connection between the driving screw rod (305) and the moving slider (306) is a threaded connection.

5. The device for preventing lamination misalignment of conductive transparent glass according to claim 1, characterized in that: An adapter hole is formed in the fixed connecting block (309) and corresponds to the adapter sliding rod (308), and the connection between the adapter sliding rod (308) and the adapter hole is a sliding connection.

6. The device for preventing lamination misalignment of conductive transparent glass according to claim 1, characterized in that: A guide sliding groove is formed in the adapter sliding block (312) and corresponds to the adapter sliding rod I (311), and the connection between the adapter sliding rod I (311) and the guide sliding groove is a sliding connection.

7. The device for preventing lamination misalignment of conductive transparent glass according to claim 1, characterized in that: An adapter hole is formed in the limit connecting seat (316) and corresponds to the limit sliding rod (315), and the connection between the limit sliding rod (315) and the adapter hole is a sliding connection.