Fixture system for hole plugging of glass substrate

By working together with the edge clamping module, the lower edge clamping module, and the sliding clamping plate module, the problem of low fixing efficiency in the glass substrate processing is solved, achieving fast and accurate clamping and positioning, and improving the level of automation.

CN223744989UActive Publication Date: 2025-12-30SHENZHEN SHEN EATAUNT ELECTRONIC CO LTD
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Patent Information

Application Number
CN202423314729.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-30
Publication Date
2025-12-30
Estimated Expiration
2034-12-30

AI Technical Summary

Technical Problem

Existing clamping systems suffer from low fixing efficiency during glass substrate processing, and cannot achieve the desired results. Traditional clamping systems also present certain efficiency and operating cost issues during glass substrate processing.

Method used

A clamping mechanism comprising a side-stop clamp module, a lower side-stop module, and a sliding clamping plate module is adopted. Through the coordinated work of the side-stop clamp module, the lower side-stop module, and the sliding clamping plate module, the glass substrate is clamped and positioned quickly and accurately, which significantly shortens the clamping time, realizes the automated control of the clamp, reduces manual intervention, and improves the automation level of the production line.

Benefits of technology

It enables rapid and accurate clamping and positioning of glass substrates, significantly shortens clamping time, realizes automated control of fixtures, reduces manual intervention, and improves the automation level of production lines.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a glass substrate plug hole fixture system, including flange fixture module, lower flange module and sliding splint module, flange fixture module includes flange subassembly, frame subassembly and clamping subassembly, the clamping subassembly is provided on the frame subassembly, flange subassembly is provided on the clamping subassembly, and the sliding splint module is provided on the frame subassembly. The flange assembly comprises a flange frame and an elastic clamping flange piece, the glass substrate is fixed to the flange frame through the elastic clamping flange piece, the flange frame is clamped through the clamping assembly, the elastic clamping flange piece is driven to clamp and loosen the glass substrate, and the lower flange module and the sliding clamping plate module are arranged in the hole plugging machine. The lower flange assembly is used for clamping the lower end of the glass substrate located on the flange frame, and the sliding clamping plate module is used for clamping the upper end of the flange frame where the glass substrate is fixed. According to the glass substrate clamping device, the glass substrate can be automatically clamped and fixed, and the machining efficiency and the operation convenience are improved.
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Description

Technical Field

[0001] This invention relates to the field of circuit board technology, specifically to a glass substrate hole-plugging fixture system. Background Technology

[0002] Glass substrates offer superior thermal and mechanical stability compared to traditional PCBs. Furthermore, glass's inherent ultra-low flatness improves photolithography depth and interconnect dimension stability. Glass substrates can withstand higher temperatures, making them suitable for environments requiring high stability, such as data centers. Therefore, manufacturing glass substrates is more challenging, and subsequent processing requires higher precision. Current glass substrate production processes involve plugging holes and scraping. These processes require clamps to hold the substrate in place. Traditional clamps often employ a single fixing method, necessitating manual alignment and placement, which leads to inefficiency and operational costs. Utility Model Content

[0003] The purpose of this invention is to provide a glass substrate hole-plugging fixture system to solve the aforementioned problems existing in the current glass substrate hole-plugging and scraper processing stages.

[0004] To achieve the above objectives, the present invention adopts the following technical solution:

[0005] A glass substrate plugging fixture system includes a side-stop clamp module, a lower side-stop module, and a sliding clamping plate module. The side-stop clamp module includes a side-stop assembly, a frame assembly, and a clamping assembly. The clamping assembly is mounted on the frame assembly, and the side-stop assembly is mounted on the clamping assembly. The side-stop assembly includes a side-stop frame and an elastic clamping side-stop member. The glass substrate is fixed to the side-stop frame by the elastic clamping side-stop member. The clamping assembly clamps the side-stop frame and drives the elastic clamping side-stop member to clamp and release the glass substrate. The lower side-stop module and the sliding clamping plate module are disposed in a plugging machine. The lower side-stop assembly is used to clamp the lower end of the glass substrate located on the side-stop frame, and the sliding clamping plate module is used to clamp the upper end of the side-stop frame on which the glass substrate is fixed.

[0006] Furthermore, the elastic clamping stop includes three movable stops and spring-loaded butterfly hinges. The lower end of the stop frame is open, and the three movable stops are all connected to the three sides of the stop frame through the spring-loaded butterfly hinges.

[0007] Furthermore, the clamping assembly includes a large plate, a glass substrate pad, a positioning block, a lifting cylinder, and a rotary clamping cylinder. The large plate is disposed on the top of the frame assembly. The positioning block and the glass substrate pad are disposed on the large plate. The lifting cylinder is disposed on the lower side of the large plate. The lifting cylinder drives the movable flange to rotate to clamp and release the glass substrate. The positioning block is used to position the flange frame. The glass substrate pad is located in the flange frame and is used to support the glass substrate. The rotary clamping cylinder is disposed on the large plate and clamps and releases the flange frame.

[0008] Furthermore, the large plate is provided with a lifting hole, the lifting cylinder is provided corresponding to the lifting hole, and the large plate is provided with a hand slot for picking up the side guard frame on the outside of the side guard frame.

[0009] Furthermore, the sliding clamp module includes a first sliding component, a second sliding component, and a movable clamp seat assembly. The first sliding component is connected to the plugging machine, the second sliding component is connected to the first sliding component, and the movable clamp seat assembly is connected to the second sliding component. The first sliding component and the second sliding component are used to drive the movable clamp seat assembly to move, and the movable clamp seat assembly is used to clamp the edge frame.

[0010] Furthermore, the first sliding assembly includes a guide rail base plate, a sliding base plate, a first guide rail, and a first rodless cylinder. The guide rail base plate is connected to the plugging machine. The first guide rail is disposed on the lower side of the guide rail base plate. The sliding base plate is slidably mounted on the first guide rail by a slider. The first rodless cylinder is mounted on the guide rail base plate and connected to the sliding base plate. The first rodless cylinder drives the sliding base plate to move along the first guide rail.

[0011] Furthermore, the second sliding assembly includes a second guide rail and a second rodless cylinder. The second guide rail and the second rodless cylinder are disposed on the lower side of the sliding base plate. The movable clamping plate assembly is slidably disposed on the second guide rail by a slider and is connected to the second rodless cylinder. The movable clamping plate assembly is driven to move by the second rodless cylinder.

[0012] Furthermore, the movable clamping plate assembly includes a movable plate, a clamping plate seat, and clamping plate cylinders. The movable plate is slidably mounted on the second guide rail via a slider and is connected to the second rodless cylinder. The clamping plate seat is connected to the movable plate. Multiple clamping plate cylinders are provided, and each clamping plate cylinder is spaced apart on the clamping plate seat. The clamping plate cylinders and the clamping plate seat are used to clamp the edge-blocking frame.

[0013] Furthermore, the lower edge module includes a support component and a lower edge component. The support component is disposed at the bottom of the plugging machine, and the lower edge component is disposed on the support component. The lower edge component is driven to rise and fall by the support component, and the lower edge component clamps the lower end of the glass substrate.

[0014] Furthermore, the support assembly includes a first telescopic cylinder and a mounting base, the mounting base being connected to the first telescopic cylinder. The lower edge assembly includes a base plate, a soft rubber seat, a guide shaft, and a second telescopic cylinder. The base plate is connected to the mounting base. Two soft rubber seats are provided, and the guide shaft is provided on the base plate. The two soft rubber seats are arranged opposite to each other and are slidably mounted on the guide shaft. Each soft rubber seat is connected to the second telescopic cylinder, which drives the two soft rubber seats to move closer and further apart to clamp and release the glass substrate.

[0015] The beneficial effects of this novel invention are:

[0016] This novel glass substrate plugging fixture system achieves rapid and accurate clamping and positioning of glass substrates through the coordinated operation of the edge clamping module, the lower edge module, and the sliding clamping plate module. This significantly shortens the clamping time, realizes automated control of the fixture, reduces manual intervention, lowers labor intensity, and improves the automation level of the production line. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of the edge clamp module in the novel glass substrate plugging clamp system.

[0018] Figure 2 This is a schematic diagram of the edge-stop assembly in the novel glass substrate plugging fixture system;

[0019] Figure 3 This is a schematic diagram of the clamping assembly in the novel glass substrate plugging fixture system;

[0020] Figure 4 This is a schematic diagram of the sliding clamping plate module and the hole-plugging machine in the novel glass substrate hole-plugging fixture system.

[0021] Figure 5 This is a schematic diagram of the sliding clamp module in the novel glass substrate plugging fixture system.

[0022] Figure 6 This is a schematic diagram of the sliding clamp module and the edge-stop assembly in the novel glass substrate plugging fixture system.

[0023] Figure 7 This is a schematic diagram of the sliding clamp module in the novel glass substrate plugging fixture system.

[0024] The names corresponding to each mark in the diagram:

[0025] 100. Edge clamp module,

[0026] 110. Edge guard assembly,

[0027] 111. Edge retaining frame,

[0028] 112. Elastic clamping edge protector,

[0029] 1121. Movable edge guard,

[0030] 1122. Spring-loaded butterfly hinge.

[0031] 120. Rack assembly,

[0032] 130. Clamping assembly,

[0033] 131. Large slab,

[0034] 1311, Lifting Hole,

[0035] 1312. Hand lock groove,

[0036] 132. Glass substrate pad,

[0037] 133. Positioning block

[0038] 134. Lifting cylinder,

[0039] 135. Rotary clamping cylinder,

[0040] 200. Lower guardrail module.

[0041] 210. Support components

[0042] 211. First telescopic cylinder,

[0043] 212. Mounting base,

[0044] 220. Lower edge retaining assembly.

[0045] 221. Base plate

[0046] 222. Soft rubber base,

[0047] 223. Guide shaft

[0048] 224. Second telescopic cylinder,

[0049] 300. Sliding clamp module.

[0050] 310. First sliding component,

[0051] 311. Guide rail base plate,

[0052] 312. Sliding base plate,

[0053] 313. First guide rail,

[0054] 314. The first rodless cylinder,

[0055] 320. Second sliding component,

[0056] 321. Second guide rail,

[0057] 322. Second rodless cylinder,

[0058] 330. Movable clamping plate assembly.

[0059] 331. Movable board,

[0060] 332. Clamping plate seat,

[0061] 333. Clamping plate cylinder,

[0062] 400, Glass substrate,

[0063] 500, plugging machine. Detailed Implementation

[0064] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present invention are within the protection scope of the present invention.

[0065] like Figures 1 to 7 As shown, a glass substrate plugging fixture system includes a side-stop fixture module 100, a lower side-stop module 200, and a sliding clamping plate module 300. The side-stop fixture module 100 includes a side-stop assembly 110, a frame assembly 120, and a clamping assembly 130. The clamping assembly 130 is disposed on the frame assembly 120, and the side-stop assembly 110 is disposed on the clamping assembly 130.

[0066] Figure 1 - Figure 3As shown, the edge-blocking assembly 110 includes an edge-blocking frame 111 and an elastic clamping edge-blocking member 112. The glass substrate 400 is fixed on the edge-blocking frame 111 by the elastic clamping edge-blocking member 112. Specifically, the elastic clamping edge-blocking member 112 includes three movable edges 1121 and spring-loaded butterfly hinges 1122. The lower end of the edge-blocking frame 111 is open to facilitate the insertion and removal of the glass substrate 400. The three movable edges 1121 are all connected to the three sides of the edge-blocking frame 111 by the spring-loaded butterfly hinges 1122. Through the cooperation of the three movable edges 1121, the glass substrate 400 can be clamped in the edge-blocking frame 111 from three directions.

[0067] Figure 3 As shown, the clamping assembly 130 is used to clamp the edge-blocking frame 111 and drive the elastic clamping edge-blocking member 112 to clamp and release the glass substrate 400. Specifically, the clamping assembly 130 includes a large plate 131, a glass substrate pad 132, a positioning block 133, a lifting cylinder 134, and a rotary clamping cylinder 135. The large plate 131 is disposed on the top of the frame assembly 120, and the positioning block 133 and the glass substrate pad 132 are disposed on the large plate 131. The glass substrate pad 132 is located in the edge-blocking frame 111 and is used to support the glass substrate 400. The positioning block 133 is used to position the edge-blocking frame 111 to ensure that the edge-blocking frame 111 can be accurately placed on the large plate 131. A lifting cylinder 134 is disposed on the lower side of the large plate 131. The large plate 131 has a lifting hole 1311 corresponding to the lifting cylinder 134. The piston rod of the lifting cylinder 134 can pass through the lifting hole 1311 and lift the movable baffle 1121, causing the movable baffle 1121 to flip to clamp or release the glass substrate 400. The large plate 131 is also provided with a hand-holding groove 1312, which is located on the outside of the baffle frame 111, making it convenient for the operator to pick up the baffle frame 111. A rotary clamping cylinder 135 is disposed on the large plate 131. By extending and retracting the piston rod of the rotary clamping cylinder 135, the baffle frame 111 can be clamped and released, thereby fixing the baffle frame 111.

[0068] Both the lower edge module 200 and the sliding clamp module 300 are installed in the plugging machine. The lower edge module 200 is used to clamp the lower end of the glass substrate 400 located on the edge frame 111, and the sliding clamp module 300 is used to clamp the upper end of the edge frame 111 on which the glass substrate 400 is fixed.

[0069] Specifically, Figure 5 and Figure 6As shown, the lower baffle module 200 includes a support assembly 210 and a lower baffle assembly 220. The support assembly 210 is disposed at the bottom of the plugging machine, and the lower baffle assembly 220 is disposed on the support assembly 210. The support assembly 210 includes a first telescopic cylinder 211 and a mounting base 212. The mounting base 212 is connected to the first telescopic cylinder 211. The lower baffle assembly 220 can be driven to rise and fall by extending and retracting the piston rod of the first telescopic cylinder 211. The lower edge assembly 220 includes a base plate 221, a soft rubber seat 222, a guide shaft 223, and a second telescopic cylinder 224. The base plate 221 is connected to the mounting base 212. Two soft rubber seats 222 are provided. The guide shaft 223 is provided on the base plate 221. The two soft rubber seats 222 are arranged opposite to each other and are slidably arranged on the guide shaft 223. Each soft rubber seat 222 is connected to the second telescopic cylinder 224. The two soft rubber seats 222 are driven to move closer and further apart by the second telescopic cylinder 224 to clamp and release the lower end of the glass substrate 400.

[0070] Figure 6 and Figure 7 As shown, the sliding clamp module 300 includes a first sliding component 310, a second sliding component 320, and a movable clamp seat assembly 330. The first sliding component 310 is connected to the plugging machine, the second sliding component 320 is connected to the first sliding component 310, and the movable clamp seat assembly 330 is connected to the second sliding component 320. The first sliding component 310 and the second sliding component 320 are used to drive the movable clamp seat assembly 330 to move. The movable clamp seat assembly 330 is used to clamp the side guard frame 111.

[0071] Specifically, the first sliding assembly 310 includes a guide rail base plate 311, a sliding base plate 312, a first guide rail 313, and a first rodless cylinder 314. The guide rail base plate 311 is connected to the plugging machine. The first guide rail 313 is disposed on the lower side of the guide rail base plate 311. The sliding base plate 312 is slidably mounted on the first guide rail 313 by a slider. The first rodless cylinder 314 is mounted on the guide rail base plate 311 and connected to the sliding base plate 312. The first rodless cylinder 314 drives the sliding base plate 312 to move along the first guide rail 313.

[0072] The second sliding assembly 320 includes a second guide rail 321 and a second rodless cylinder 322. The second guide rail 321 and the second rodless cylinder 322 are disposed on the lower side of the sliding base plate 312. The movable clamping plate assembly 330 is slidably disposed on the second guide rail 321 by a slider and is connected to the second rodless cylinder 322. The movable clamping plate assembly 330 is driven to move along the second guide rail 321 by the second rodless cylinder 322.

[0073] Figure 7As shown, the movable clamping plate assembly 330 includes a movable plate 331, a clamping plate 332, and a clamping plate cylinder 333. The movable plate 331 is slidably mounted on the second guide rail 321 via a slider and is connected to the second rodless cylinder 322. The clamping plate 332 is connected to the movable plate 331. Multiple clamping plate cylinders 333 are provided, and each clamping plate cylinder 333 is spaced apart on the clamping plate 332. The clamping plate cylinders 333 and the clamping plate 332 are used to clamp the edge frame 111. By extending the piston rod of each clamping plate cylinder 333, the edge frame 111 can be clamped on the clamping plate 332, thereby fixing the upper end of the glass substrate 400.

[0074] Working principle:

[0075] (1) First, the rotary clamping cylinder 135 tightens the side frame 111, and the lifting cylinder 134 lifts it up. At this time, the movable side 1121 opens.

[0076] (2) Place the glass substrate 400 in the middle of the edge frame 111;

[0077] (3) The lifting cylinder 134 retracts, the movable side 1121 clamps the glass substrate 400, and the rotary clamping cylinder 135 retracts.

[0078] (4) Take out the entire edge-stop assembly 110 and place it in the moving clamping plate seat assembly 330 of the plugging machine 500. The clamping plate cylinder 333 retracts and clamps the edge-stop frame 111.

[0079] (5) The first telescopic cylinder 211 of the support component 210 extends, driving the lower edge component 220 to reach below the glass substrate 400, and the second telescopic cylinder 224 extends, causing the soft rubber seat 222 to clamp the glass substrate 400.

[0080] (6) The plugging machine 500 completes the plugging plate action;

[0081] (7) 330 The movable clamp seat assembly is released, the first telescopic cylinder 211 and the second telescopic cylinder 224 retract, and the side guard assembly 110 is taken out;

[0082] (8) Place the edge-stop assembly 110 back into the original edge-stop fixture module 100, rotate the clamping cylinder 135 to tighten the edge-stop frame 111, lift the cylinder 134 to lift, open the movable edge 1121, take out the glass substrate 400, and repeat this processing procedure.

[0083] The glass substrate plugging clamp system provided by this utility model can automatically clamp and fix the glass substrate through the cooperation of the edge clamp module, the lower edge module and the sliding clamp module, thereby improving processing efficiency and ease of operation.

Claims

1. A glass substrate hole clamping system, characterized by: The device comprises a baffle clamp module, a lower baffle module and a sliding clamp plate module. The baffle clamp module comprises a baffle assembly, a rack assembly and a clamping assembly. The clamping assembly is arranged on the rack assembly, and the baffle assembly is arranged on the clamping assembly. The baffle assembly comprises a baffle frame and elastic clamping baffle pieces. The glass substrate is fixed on the baffle frame by the elastic clamping baffle pieces. The baffle frame and the elastic clamping baffle pieces are clamped and driven by the clamping assembly to clamp and release the glass substrate. The lower baffle module and the sliding clamp plate module are arranged in a plug machine. The lower baffle assembly is used to clamp the lower end of the glass substrate on the baffle frame. The sliding clamp plate module is used to clamp the upper end of the baffle frame with the glass substrate fixed thereon.

2. The glass substrate hole clamping system of claim 1, wherein: The elastic clamping baffle pieces comprise three movable baffles and spring butterfly hinges. The baffle frame is open at the lower end. The three movable baffles are connected to the three sides of the baffle frame by the spring butterfly hinges.

3. The glass substrate hole clamping system of claim 2, wherein: The clamping assembly comprises a large plate, a glass substrate pad, a positioning block, a jacking cylinder and a rotary clamping cylinder. The large plate is arranged on the top of the rack assembly. The positioning block and the glass substrate pad are arranged on the large plate. The jacking cylinder is arranged on the lower side of the large plate. The movable baffles are driven to flip by the jacking cylinder to clamp and release the glass substrate. The positioning block is used to position the baffle frame. The glass substrate pad is arranged in the baffle frame to support the glass substrate. The rotary clamping cylinder is arranged on the large plate to clamp and release the baffle frame.

4. The glass substrate hole clamping system of claim 3, wherein: The large plate is provided with a jacking hole corresponding to the jacking cylinder. The large plate is provided with a hand buckle groove outside the baffle frame for taking the baffle frame.

5. The glass substrate hole clamping system of claim 1, wherein: The sliding clamp plate module comprises a first sliding assembly, a second sliding assembly and a moving clamp plate seat assembly. The first sliding assembly is connected with the plug machine. The second sliding assembly is connected with the first sliding assembly. The moving clamp plate seat assembly is connected with the second sliding assembly. The first sliding assembly and the second sliding assembly are used to drive the moving clamp plate seat assembly to move. The moving clamp plate seat assembly is used to clamp the baffle frame.

6. The glass substrate hole clamping system of claim 5, wherein: The first sliding assembly comprises a guide rail bottom plate, a sliding bottom plate, a first guide rail and a first rodless cylinder. The guide rail bottom plate is connected with the plug machine. The first guide rail is arranged on the lower side of the guide rail bottom plate. The sliding bottom plate is slidably installed on the first guide rail by a sliding block. The first rodless cylinder is installed on the guide rail bottom plate and connected with the sliding bottom plate. The sliding bottom plate is driven to move along the first guide rail by the first rodless cylinder.

7. The glass substrate hole clamping system of claim 6, wherein: The second sliding assembly comprises a second guide rail and a second rodless cylinder. The second guide rail and the second rodless cylinder are arranged on the lower side of the sliding bottom plate. The moving clamp plate seat assembly is slidably arranged on the second guide rail by a sliding block and connected with the second rodless cylinder. The moving clamp plate seat assembly is driven to move by the second rodless cylinder.

8. The glass substrate hole clamping system of claim 7, wherein: The mobile clamp seat assembly comprises a mobile plate, a clamp seat and clamp cylinders, the mobile plate is slidably arranged on the second guide rail through a sliding block and is connected with the second rodless cylinder, the clamp seat is connected with the mobile plate, the clamp cylinders are provided in plurality, each of the clamp cylinders is arranged on the clamp seat at intervals, and a space for clamping the frame with the stop edge is arranged between the clamp cylinders and the clamp seat.

9. The glass substrate hole clamping system of claim 1, wherein: The lower stop edge module comprises a support assembly and a lower stop edge assembly, the support assembly is arranged at the bottom of the hole punching machine, the lower stop edge assembly is arranged on the support assembly, the lower stop edge assembly is driven to ascend and descend by the support assembly, and the lower end of the glass substrate is clamped by the lower stop edge assembly.

10. The glass substrate hole clamping system of claim 9, wherein: The support assembly comprises a first telescopic cylinder and a mounting seat, the mounting seat is connected with the first telescopic cylinder, the lower stop edge assembly comprises a bottom plate, a soft rubber seat, a guide shaft and a second telescopic cylinder, the bottom plate is connected with the mounting seat, the soft rubber seat is provided in two, the guide shaft is arranged on the bottom plate, the two soft rubber seats are oppositely arranged and are slidably arranged on the guide shaft, each of the soft rubber seats is connected with the second telescopic cylinder, and the two soft rubber seats are driven to approach and move away from each other by the second telescopic cylinder to clamp and release the glass substrate.