Protective structure for digital display type ceramic tile fracture modulus tester

By designing a protective structure on the ceramic tile rupture modulus tester, and utilizing components such as arc covers and side protective covers, the problem of fragment splashing was solved, improving safety and applicability, and facilitating testing of multi-size bricks.

CN224137044UActive Publication Date: 2026-04-17HEYUAN JINYUAN ENG INSPECTION CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HEYUAN JINYUAN ENG INSPECTION CO LTD
Filing Date
2025-04-11
Publication Date
2026-04-17

AI Technical Summary

Technical Problem

Existing ceramic tile rupture modulus measuring instruments lack protective structures, making them prone to flying debris and injury during the rupture process, resulting in poor safety.

Method used

A protective structure was designed, including an arc-shaped cover, side protective covers, and a front protective cover. It is connected to the positioning groove via ball bearings, and the rotating support assembly supports the fragments. It uses transparent acrylic sheet for easy observation and can be adapted to bricks of different sizes through adjustment holes.

Benefits of technology

It improves the safety and applicability of the measuring instrument, prevents fragments from flying, enhances the convenience of observation, and is suitable for testing ceramic tiles of various sizes.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a protective structure for a digital display type ceramic tile fracture modulus tester, and relates to the technical field of digital display type ceramic tile fracture modulus testers, the protective structure for the digital display type ceramic tile fracture modulus tester comprises a base, a protective assembly is arranged outside the base, a supporting assembly is arranged at the upper end of the base, and the protective assembly is arranged at the lower end of the base. The number of the supporting assemblies is two, a downward pressing shaft is arranged above the position between the two supporting assemblies, a downward pressing assembly is arranged above the downward pressing shaft, a display module is arranged at the upper end of the downward pressing assembly, a mounting frame is arranged between the rear end of the display module and the rear end of the base, and the protection assembly comprises an arc cover and a side protection cover. According to the scheme, the problems that an existing ceramic tile fracture modulus tester is short of protection outside, when ceramic is fractured, the ceramic is prone to splashing and hurting people, and the safety is poor are solved.
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Description

Technical Field

[0001] This utility model relates to the technical field of digital display ceramic tile modulus of rupture tester, specifically a protective structure for a digital display ceramic tile modulus of rupture tester. Background Technology

[0002] The digital display ceramic tile modulus of rupture tester is a specialized instrument used to measure the modulus of rupture and flexural strength of ceramic tiles.

[0003] For example, the Chinese authorized patent CN215574337U (A Ceramic Tile Modulus of Rupture Tester) includes a testing machine, a brick positioning mechanism, and a brick testing mechanism. A fixed bracket perpendicular to the testing machine is installed on the testing machine, and a testing bracket parallel to the testing machine is fixedly connected to one side of the top of the fixed bracket. The brick testing mechanism includes a cylinder mounted on the testing bracket, and a test pressure block is connected to the output end of the cylinder. This invention provides a brick positioning mechanism on the testing machine for positioning the brick. This brick positioning mechanism mainly includes two support bases for placing the ceramic brick to be tested and positioning plates. The two positioning plates on each support base are used to clamp the left and right sidewalls of the ceramic brick, effectively preventing the support base from shaking during testing. Furthermore, the positions of the support base and positioning plates can be adjusted left and right, making it suitable for testing ceramic bricks of various sizes.

[0004] However, existing ceramic tile modulus of rupture testers lack external protection, which can easily cause injury from flying debris when the ceramic is broken, resulting in poor safety. Therefore, they do not meet the current requirements. To address this, we propose a protective structure for a digital display ceramic tile modulus of rupture tester. Utility Model Content

[0005] The purpose of this invention is to provide a protective structure for a digital display ceramic tile modulus of rupture tester, in order to solve the problem mentioned in the background art that the existing ceramic tile modulus of rupture tester lacks external protection, which can easily cause injury from flying debris when the ceramic is broken, resulting in poor safety.

[0006] To achieve the above objectives, this utility model provides the following technical solution: a protective structure for a digital display ceramic tile rupture modulus tester, comprising: a base, a protective component disposed on the outside of the base, a support component disposed on the upper end of the base, and two support components disposed thereon, a pressing shaft disposed above the two support components, a pressing component disposed above the pressing shaft, a display module disposed on the upper end of the pressing component, and a mounting bracket disposed between the rear end of the display module and the rear end of the base.

[0007] Preferably, the protective assembly includes an arc-shaped cover and a side protective cover, with the side protective covers located on both sides of the arc-shaped cover and the side protective covers being heat-fused to the arc-shaped cover. One end of the arc-shaped cover is provided with a front protective cover, and the front protective cover is heat-fused to both the side protective cover and the arc-shaped cover.

[0008] Preferably, a protective cavity is formed between the side protective cover and the arc cover, a rotating seat is provided at one end of the side protective cover, and the rotating seat is thermally fused to the side protective cover, and a positioning shaft is provided at the center of the rotating seat.

[0009] Preferably, both sides of one end of the base are provided with positioning grooves, ball bearings are embedded inside the positioning grooves, and one end of the positioning shaft is rotatably connected to the positioning grooves through the ball bearings.

[0010] Preferably, the support assembly includes a first fixing frame, the upper end of the first fixing frame is provided with a support shaft, the lower surface of the first fixing frame is provided with an adjustment seat, and the lower surface of the adjustment seat is provided with a perforated post.

[0011] Preferably, the upper surfaces at both ends of the base are provided with adjustment holes, and the post is inserted into the adjustment hole, and there are several adjustment holes.

[0012] Preferably, the upper end of the pressing shaft is provided with a second fixing frame, and the second fixing frame can move up and down through the pressing assembly.

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

[0014] (1) This utility model sets a protective component on the outside of the base. The protective component consists of an arc cover, a side protective cover, a front protective cover, a rotating seat and a positioning shaft. The protective component is rotated to the rear of the mounting frame. Since one end of the positioning shaft is rotatably connected to the positioning groove through a ball bearing, the protective component is rotated. After rotating to contact with the ground, it supports the protective component. At this time, the support component, the lower pressure shaft and the display module will be exposed. After the ceramic tile is fixed, the protective component is rotated to the initial position. In this way, when the ceramic tile breaks or shatters, it is not easy for fragments to fly and injure people, which improves safety and protection. The arc cover, the side protective cover and the front protective cover are all made of transparent acrylic plates, which makes it easy to observe the process of measuring the modulus of fracture of the ceramic tile. This solves the problem that the existing ceramic tile modulus of fracture measuring instrument lacks external protection and is prone to flying and injuring people when the ceramic is broken, resulting in poor safety.

[0015] (2) By setting adjustment holes on the upper surface of both ends of the base, and having several adjustment holes, the distance between the two support components can be adjusted according to the size of the ceramic tile. The adjustment base can be fixed by inserting the hole column on the lower surface of the adjustment base into the adjustment hole. This method is suitable for ceramic tiles of different sizes, improving applicability and flexibility. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0017] Figure 2 This is a schematic diagram of the protective cover structure of this utility model;

[0018] Figure 3 This is a schematic diagram of the overall structure of the protective cover of this utility model after it is opened;

[0019] Figure 4 This is a schematic diagram of the overall structure of this utility model after the protective cover has been removed;

[0020] Figure 5 This is a schematic diagram of the adjusting seat structure of this utility model;

[0021] In the diagram: 1. Base; 2. Display module; 3. Mounting bracket; 4. Support assembly; 5. Pressing shaft; 6. Adjustment hole; 7. Protective assembly; 8. Arc cover; 9. Side protective cover; 10. Front protective cover; 11. Rotating seat; 12. Positioning shaft; 13. Protective cavity; 14. Positioning groove; 15. Ball bearing; 16. First fixed frame; 17. Support shaft; 18. Adjustment seat; 19. Second fixed frame; 20. Pressing assembly; 21. Hole post. Detailed Implementation

[0022] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.

[0023] Please see Figure 1-5This utility model provides an embodiment of a protective structure for a digital display ceramic tile rupture modulus tester, comprising: a base 1, a protective component 7 disposed on the outside of the base 1, a support component 4 disposed on the upper end of the base 1, and two support components 4 disposed thereon, a pressing shaft 5 disposed above the two support components 4, a pressing component 20 disposed above the pressing shaft 5, a display module 2 disposed on the upper end of the pressing component 20, a mounting bracket 3 disposed between the rear end of the display module 2 and the rear end of the base 1, and the protective component including an arc cover 8 and a side protective cover 9. Side protective covers 9 are located on both sides of the arc-shaped cover 8, and are heat-fused to the arc-shaped cover 8. A front protective cover 10 is provided at one end of the arc-shaped cover 8, and the front protective cover 10 is heat-fused to both the side protective cover 9 and the arc-shaped cover 8. A protective cavity 13 is formed between the side protective cover 9 and the arc-shaped cover 8. A rotating seat 11 is provided at one end of the side protective cover 9, and is heat-fused to the side protective cover 9. A positioning shaft 12 is provided at the center of the rotating seat 11. Positioning grooves 14 are provided on both sides of one end of the base 1, and ball bearings 15 are embedded inside the positioning grooves 14. The positioning shaft 12 is rotatably connected to the positioning groove 14 via a ball bearing 15. The support assembly 4 includes a first fixed frame 16, with a support shaft 17 at the upper end of the first fixed frame 16 and an adjusting seat 18 on the lower surface of the first fixed frame 16. The adjusting seat 18 has a perforated post 21 on its lower surface. The protective assembly 7 rotates towards the rear of the mounting frame 3. Since one end of the positioning shaft 12 is rotatably connected to the positioning groove 14 via a ball bearing 15, the protective assembly 7 rotates. After rotating to contact the ground, it provides support for the protective assembly 7, at which point leakage will occur. The support assembly 4, the pressure shaft 5, and the display module 2 are arranged together. The ceramic tile is placed on the upper end of the support shaft 17 of the two support assemblies 4. Then, the protective assembly 7 is rotated to the initial position. The display module 2, the support assembly 4, and the pressure shaft 5 are protected by the arc cover 8, the side protective cover 9, and the front protective cover 10. In this way, when the ceramic tile breaks or shatters, it is less likely to cause injury from flying fragments, thus improving safety and protection. The arc cover 8, the side protective cover 9, and the front protective cover 10 are all made of transparent acrylic sheets, which makes it easy to observe the process of measuring the modulus of fracture of the ceramic tile.

[0024] Please see Figure 1 , 4 5. Adjustment holes 6 are provided on the upper surfaces of both ends of the base 1, and the hole post 21 is inserted into the adjustment hole 6. There are several adjustment holes 6. The distance between the two support components 4 is adjusted according to the size of the ceramic tile. The adjustment is fixed by inserting the hole post 21 into the adjustment hole 6. It is suitable for ceramic tiles of different sizes, improving applicability and flexibility.

[0025] Please see Figure 4The upper end of the pressing shaft 5 is provided with a second fixed frame 19, and the second fixed frame 19 moves up and down through the pressing assembly 20. The pressing assembly 20 drives the pressing shaft 5 to press down, thus pressing the ceramic tile. The pressing assembly 20 includes a piston, a pressure sensor and a pressing plate. The pressing assembly 20 applies a uniform load to the ceramic tile, and the pressure is transmitted to the display module 2 through the pressure sensor. When the ceramic tile breaks or shatters, the digital display device displays and retains its maximum value. This is the working principle of the existing digital display ceramic tile fracture modulus tester and is existing technology.

[0026] It will be apparent to those skilled in the art that this invention is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or essential characteristics of this invention. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of this invention is defined by the appended claims rather than the foregoing description. Thus, it is intended that all variations falling within the meaning and scope of equivalents of the claims be included within this invention. No reference numerals in the claims should be construed as limiting the scope of the claims.

Claims

1. A protective structure for a digital ceramic tile rupture modulus tester, comprising a base (1), characterized in that: The base (1) is provided with a protective component (7) on its exterior. The upper end of the base (1) is provided with a support component (4), and there are two support components (4). A pressing shaft (5) is provided above the two support components (4). A pressing component (20) is provided above the pressing shaft (5). A display module (2) is provided at the upper end of the pressing component (20). A mounting bracket (3) is provided between the rear end of the display module (2) and the rear end of the base (1).

2. The protective structure for a digital ceramic tile fracture modulus tester according to claim 1, characterized in that: The protective assembly includes an arc cover (8) and a side cover (9), with the side cover (9) located on both sides of the arc cover (8) and the side cover (9) and the arc cover (8) being heat-fused together. One end of the arc cover (8) is provided with a front cover (10), and the front cover (10) is heat-fused together with the side cover (9) and the arc cover (8).

3. The protective structure for a digital ceramic tile fracture modulus tester according to claim 2, characterized in that: A protective cavity (13) is formed between the side protective cover (9) and the arc cover (8). A rotating seat (11) is provided at one end of the side protective cover (9), and the rotating seat (11) is heat-fused to the side protective cover (9). A positioning shaft (12) is provided at the center of the rotating seat (11).

4. The protective structure for a digital ceramic tile fracture modulus tester according to claim 3, characterized in that: The base (1) has positioning grooves (14) on both sides of one end. A ball bearing (15) is embedded inside the positioning groove (14), and one end of the positioning shaft (12) is rotatably connected to the positioning groove (14) through the ball bearing (15).

5. The protective structure for a digital ceramic tile fracture modulus tester according to claim 1, characterized in that: The support assembly (4) includes a first fixing frame (16), the upper end of the first fixing frame (16) is provided with a support shaft (17), the lower surface of the first fixing frame (16) is provided with an adjustment seat (18), and the lower surface of the adjustment seat (18) is provided with a perforated post (21).

6. The protective structure for a digital ceramic tile fracture modulus tester according to claim 5, characterized in that: The upper surfaces of both ends of the base (1) are provided with adjustment holes (6), and the post (21) is inserted into the adjustment hole (6), and there are several adjustment holes (6).

7. The protective structure for a digital ceramic tile fracture modulus tester according to claim 1, characterized in that: The upper end of the pressing shaft (5) is provided with a second fixing frame (19), and the second fixing frame (19) moves up and down through the pressing assembly (20).

Citation Information

Patent Citations

  • Ceramic tile fracture modulus tester

    CN215574337U