Glass limit damage test equipment

By designing the support frame and pull-out box structure, the problem of glass particles being difficult to recover after extreme damage of cold-bend tempered glass is solved, and convenient recycling and pollution-free glass particles are achieved.

CN223295786UActive Publication Date: 2025-09-02FAR EAST LIJIN CURTAIN WALL (SHANGHAI) CO LTD
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Patent Information

Application Number
CN202422284058.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-18
Publication Date
2025-09-02
Estimated Expiration
2034-09-18

AI Technical Summary

Technical Problem

The existing cold-bending tempered glass extreme damage testing equipment is difficult to recycle the glass particles after glass damage, resulting in pollution in the working environment.

Method used

A glass extreme damage testing equipment was designed, including a support frame, C-shaped clip, discharge hole, waste collection tank, communication hole and pull-out box. Glass particles are collected through discharge hole and waste collection tank, and convenient recycling is achieved using pull-out box and pull-out ear.

Benefits of technology

The centralized recycling of glass particles is achieved, which avoids working environment pollution and improves work efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides glass limit failure testing equipment which comprises a supporting frame, a plurality of C-shaped clamps are arranged on the edge of the supporting frame at intervals, the supporting frame comprises a supporting plate, a plurality of discharging holes are formed in the supporting plate in a penetrating mode, a waste collecting groove is formed in the bottom of the supporting plate, the waste collecting groove is communicated with the discharging holes, and the C-shaped clamps are connected with the supporting plate. According to the utility model, through the arrangement of the discharge hole, the waste material collecting groove, the communication hole, the drawing box and the opening, glass particles fall into the drawing box through the discharge hole and the waste material collecting groove, so that the glass particles in the drawing box can be conveniently recycled; therefore, workers can concentrate and recycle the glass particles conveniently, pollution to the working environment is avoided, and the working efficiency is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of testing equipment, in particular to a glass limit destruction testing device. Background Art

[0002] Cold-bent tempered glass is made by bending flat glass into a specific shape at room temperature through a specific mold and mechanical force. The flat glass is placed on a mold with the desired shape, and then uniform pressure is applied to gradually make the glass fit the mold shape, thereby achieving cold bending forming without prior heating. Cold-bent glass is widely used, including building curtain wall manufacturing, skylight manufacturing, furniture manufacturing, etc. The strength of cold-bent glass is usually higher than that of ordinary flat glass. This is because the cold bending process creates a certain stress distribution inside the glass, enhancing the overall structural stability of the glass. The existing cold-bent glass extreme destruction test equipment has the following shortcomings: cold-bent tempered glass will turn into small particles after extreme destruction and fall around the equipment, making it inconvenient for staff to recycle and clean, and will also pollute the working environment. Utility Model Content

[0003] The problem to be solved by the utility model is that glass particles after extreme destruction are difficult to be recovered and cleaned.

[0004] In order to solve the above technical problems, the utility model provides a glass extreme destruction testing device, including a support frame, a plurality of C-clamps are arranged at intervals on the edge of the support frame, the support frame includes a support plate, a plurality of discharge holes are passed through the support plate, a waste collection trough is provided at the bottom of the support plate, the waste collection trough is connected with the discharge holes, a test glass is clamped on the C-clamp, a glass stress tester is provided on the test glass, a connecting hole is provided on one side of the waste collection trough, a pull-out box is slidably connected to the connecting hole, an opening is provided on the top of the pull-out box and is connected with the connecting hole, and a pulling ear is provided on one side of the pull-out box.

[0005] Preferably, the communicating hole is divided into four parts at equal intervals, and the four communicating holes correspond to the pull-out boxes respectively.

[0006] Preferably, the bottom of the C-shaped clamp is installed on the top of the support plate through a fixing seat. The C-shaped clamp includes a frame body and a screw rod. The frame body is threadedly connected with the screw rod, and a clamping block is movably installed at the bottom of the screw rod.

[0007] Preferably, the clamping block includes a rotating rod, a rotating hole, and a fixed block. The rotating hole is opened at the bottom of the screw rod, the rotating rod is passed through the rotating hole, and the top of the fixed block is rotatably connected to the rotating rod.

[0008] Preferably, a support seat is further provided on the frame body, and the top of the support seat is arc-shaped.

[0009] Preferably, both the fixing block and the supporting seat are provided with a rubber coating.

[0010] Preferably, the four bottom corners of the support frame are respectively provided with supporting legs.

[0011] Preferably, the number of the plurality of C-clips is six and they are symmetrical about the middle of the support plate.

[0012] Preferably, the test glass is cold-bent tempered glass.

[0013] Compared with the existing technology, the present invention provides a glass limit destruction test device with the following beneficial effects:

[0014] 1. The utility model is provided with a discharge hole, a waste collection groove, a connecting hole, a pull-out box, and an open mouth. Glass particles fall into the pull-out box through the discharge hole and the waste collection groove. Then, by pulling the pull-out ear toward the outside, the pull-out box is driven to move to the outside of the connecting hole. The glass particles in the pull-out box can be easily recovered, thereby making it convenient for workers to collect and recycle the glass particles without causing pollution to the working environment, thereby improving work efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 This is the first schematic diagram of the main structure of the utility model;

[0016] Figure 2 This is the second schematic diagram of the main structure of the utility model;

[0017] Figure 3 This is a schematic diagram of the clamping block structure of the utility model;

[0018] Figure 4 It is a schematic diagram of the internal structure of the waste collection tank of the present utility model.

[0019] In the figure: 1. Support frame; 1001. Support plate; 1002. Waste collection trough; 2. C-clamp; 21. Frame body; 22. Screw; 3. Discharge hole; 4. Glass stress tester; 5. Connecting hole; 6. Pull-out box; 7. Opening; 8. Pull-out ear; 9. Fixed seat; 10. Clamping block; 101. Rotating rod; 102. Rotating hole; 103. Fixed block; 11. Support seat; 12. Support leg. DETAILED DESCRIPTION

[0020] The utility model relates to a glass limit destruction testing device, such as Figure 1-4As shown, it includes a support frame 1, and a plurality of C-shaped clamps 2 are arranged at intervals on the edge of the support frame 1. The support frame 1 includes a support plate 1001, and a plurality of discharge holes 23 are passed through the support plate 1001. A waste collection groove 1002 is provided at the bottom of the support plate 1001, and the waste collection groove 1002 is connected to the discharge hole 23. A test glass is clamped on the C-shaped clamp 2, and a glass stress tester 4 is provided on the test glass. A connecting hole 5 is provided on one side of the waste collection groove 1002, and a pull-out box 6 is slidably connected in the connecting hole 5. The top of the pull-out box 6 is provided with an opening 7 and is connected to the connecting hole 5, and a pulling ear 8 is provided on one side of the pull-out box 6. By setting the support frame 1, the support frame 1 is a rectangular structure, and by setting the C-shaped clamp 2, it is used to fix the side of the test glass, so that the test glass is fixed above the support plate 1001. By setting the discharge hole 23, the top and bottom of the support plate 1001 are connected. When the test glass breaks during the test, it can be discharged through the discharge hole 23. The broken glass particles are conveniently cleaned into the discharge hole 23, and then discharged into the waste collection tank 1002 under the support plate 1001 through the discharge hole 23 and the opening 7. By setting up a glass stress tester 4, stress testing and analysis are performed on the test glass. The glass particles pass through the discharge hole 23 and the waste collection tank 1002 and fall into the pull-out box 6. Then, by pulling the pull-out ear 8 outward, the pull-out box 6 is driven to move to the outside of the connecting hole 5. The glass particles in the pull-out box 6 can be conveniently recovered, thereby facilitating the staff to concentrate and recycle the glass particles, and will not cause pollution to the working environment, thereby improving work efficiency. After the test glass and the C-clamp 2 are fixed, a force is applied to the test glass, and then the stress test results are obtained through the glass stress tester 4. The glass stress tester 4 is connected to the stress acquisition system. The stress acquisition system analyzes and processes the output signal of the glass stress tester 4 to determine the stress magnitude and distribution of the object.

[0021] In an embodiment of the present invention, the connecting hole 5 is equally divided into four parts, and the four connecting holes 5 correspond to the pull-out boxes 6 respectively. By setting the connecting hole 5 to be divided into four parts, the weight of each pull-out box 6 is reduced, thereby making it more convenient to clean the glass particles in the pull-out box 6.

[0022] In an embodiment of the present utility model, the bottom of the C-shaped clamp 2 is installed on the top of the support plate 1001 through a fixed seat 9. The C-shaped clamp 2 includes a frame body 21 and a screw rod 22. The frame body 21 is threadedly connected to the screw rod 22. The bottom of the screw rod 22 is movably installed with a clamping block 10. By setting the frame body 21 and the screw rod 22, the screw rod 22 is rotated to change the height of the bottom of the screw rod 22, thereby facilitating the placement of the test glass. The test glass is fixed by the clamping block 10 and the test glass abutting against each other.

[0023] In an embodiment of the present utility model, the clamping block 10 includes a rotating rod 101, a rotating hole 102, and a fixed block 103. The rotating hole 102 is opened at the bottom of the screw rod 22, the rotating rod 101 is inserted into the rotating hole 102, and the top of the fixed block 103 is rotatably connected to the rotating rod 101. By setting the rotating rod 101, the rotating hole 102, and the fixed block 103, the top of the fixed block 103 is rotatably connected to the rotating rod 101, thereby rotating in the rotating hole 102, thereby increasing the contact area between the fixed block 103 and the test glass.

[0024] In an embodiment of the present utility model, a support seat 11 is further provided on the frame body 21, and the top of the support seat 11 is arc-shaped. By providing the support seat 11, the height and stability of the C-clamp 2 on the support plate 1001 are increased. By providing the support seat 11 in an arc shape, the contact area between the test glass and the support seat 11 is increased, thereby firmly fixing the test glass and the C-clamp 2.

[0025] In the embodiment of the present invention, a rubber coating is provided on both the fixing block 103 and the support seat 11. By providing the rubber coating, the elasticity of the fixing block 103 and the support seat 11 is increased, which has the effect of buffering the impact force and avoiding damage to the test glass. At the same time, the good anti-slip effect of the rubber coating is utilized to ensure that the test glass is firmly fixed.

[0026] In the embodiment of the present invention, the four bottom corners of the support frame 1 are respectively provided with supporting legs 12. By providing the supporting legs 12, the stability of the support plate 1001 on the ground is improved, and the testing operation is facilitated.

[0027] In an embodiment of the present invention, the number of the multiple C-clips 2 is six and they are symmetrical about the middle of the support plate 1001. By setting the above structure, the six C-clips 2 are fixed from both sides of the test glass, respectively, which increases the stability of the test glass and the C-clips 2.

[0028] In an embodiment of the present invention, the test glass is a cold-bent tempered glass. By providing the cold-bent tempered glass, the present invention can firmly fix the cold-bent tempered glass and conveniently clean and recycle broken glass particles.

[0029] When in use, first, take out a piece of test glass, turn the screw rod 22 upward, and the bottom of the screw rod 22 turns upward, so that the clamping block 10 moves to the upper part of the frame body 21, and put the test glass into the frame body 21 so that the test glass abuts against the top of the support seat 11, and then turn the screw rod 22 downward, and the screw rod 22 drives the fixing block 103 to move toward the test glass. After the fixing block 103 rotates to the abutting position with the test glass, the test glass and the C-clamp 2 are firmly fixed, and the glass stress tester 4 is fixed on the test glass, and then a force is applied to the test glass. The glass stress tester 4 is pressed against the stress The force acquisition system is connected for transmission, and the stress acquisition system analyzes and processes the output signal of the glass stress tester 4 to determine the magnitude and distribution of the stress on the object. The test glass is acted upon by the force until the structure is destroyed, and the test glass is broken into small particles and falls on the support plate 1001. The broken glass particles are cleaned into the discharge hole 23 through the discharge hole 23, and then discharged into the waste collection tank 1002 below the support plate 1001 through the discharge hole 23 and the opening 7. By pulling the pull-out ear 8 outward, the pull-out box 6 is driven to move to the outside of the connecting hole 5, and the glass particles in the pull-out box 6 can be easily recovered.

[0030] It is understood that the present invention is described by way of certain embodiments, and those skilled in the art will appreciate that various changes or equivalent substitutions may be made to these features and embodiments without departing from the spirit and scope of the present invention. Furthermore, under the guidance of the present invention, these features and embodiments may be modified to suit specific circumstances and materials without departing from the spirit and scope of the present invention. Therefore, the present invention is not limited to the specific embodiments disclosed herein, and all embodiments falling within the scope of the claims of this application are intended to be protected by the present invention.

Claims

1. A glass limit destruction test device, comprising a support frame (1), characterized in that: The support frame (1) is provided with a plurality of C-shaped clamps (2) at intervals on its edge. The support frame (1) comprises a support plate (1001). The support plate (1001) is provided with a plurality of discharge holes (3). A waste collection trough (1002) is provided at the bottom of the support plate (1001). The waste collection trough (1002) is communicated with the discharge holes (3). A test glass is clamped on the C-shaped clamp (2). A glass stress tester (4) is provided on the test glass. A connecting hole (5) is provided on one side of the waste collection trough (1002). A pull-out box (6) is slidably connected in the connecting hole (5). An opening (7) is provided on the top of the pull-out box (6) and is communicated with the connecting hole (5). A pull-out ear (8) is provided on one side of the pull-out box (6).

2. The glass limit destruction testing device according to claim 1, characterized in that: The communication hole (5) is divided into four parts at equal intervals, and the four communication holes (5) correspond to the drawer boxes (6) respectively.

3. The glass limit destruction testing device according to claim 1, characterized in that: The bottom of the C-shaped clamp (2) is mounted on the top of the support plate (1001) via a fixing seat (9). The C-shaped clamp (2) comprises a frame body (21) and a screw rod (22). The frame body (21) is threadedly connected to the screw rod (22). A clamping block (10) is movably mounted on the bottom of the screw rod (22).

4. The glass limit destruction testing device according to claim 3, characterized in that: The clamping block (10) comprises a rotating rod (101), a rotating hole (102), and a fixed block (103); the rotating hole (102) is provided at the bottom of the screw rod (22); the rotating rod (101) is passed through the rotating hole (102); and the top of the fixed block (103) is rotatably connected to the rotating rod (101).

5. The glass limit destruction testing device according to claim 4, characterized in that: A support seat (11) is also provided on the frame body (21), and the top of the support seat (11) is in an arc shape.

6. The glass limit destruction testing device according to claim 5, characterized in that: The fixing block (103) and the supporting seat (11) are both provided with a rubber coating.

7. A glass limit destruction testing device according to any one of claims 1 to 6, characterized in that: The four bottom corners of the support frame (1) are respectively provided with supporting legs (12).

8. A glass limit destruction testing device according to any one of claims 1 to 6, characterized in that: The number of the plurality of C-shaped clips (2) is six and they are symmetrical about the middle of the support plate (1001).

9. A glass limit destruction testing device according to any one of claims 1 to 6, characterized in that: The test glass is cold-bent tempered glass.

Citation Information

Cited By

  • Glass cold bending limit damage test device and test method

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  • A test apparatus and method for testing the cold bending limit failure of glass

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