A wall facade flatness detection device

CN224608426UActive Publication Date: 2026-08-07ZHUHUA CONSTR GRP CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ZHUHUA CONSTR GRP CO LTD
Filing Date
2025-07-24
Publication Date
2026-08-07

AI Technical Summary

Technical Problem

[0004]本实用的目的在于至少解决现有技术中存在的技术问题,提供一种墙体立面平整度检测装置,旨在改善墙体立面平整度检测装置在使用过程中无法对不同位置的墙面进行灵活的应对,从而降低了装置的实用性的技术问题

Benefits of technology

[0013] Compared with existing technologies, this wall facade flatness detection device allows for flexible contact with the wall surface during use, thanks to the ball bearings 1, 2, 3, and 4 embedded inside the universal platform. Anti-collision rubber rings effectively prevent collisions, and the telescopic handle allows for flexible operation and height adjustment, ultimately achieving portability, flexible height adjustment, and adaptability to different detection scenarios.

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Abstract

The utility model discloses a wall facade flatness detection device, it includes: anti -collision rubber ring, the lower surface of anti -collision rubber ring is closely combined with universal platform, the upper surface fixedly connected with fixed platform of universal platform, the upper surface closely combined with the rubber washer of fixed platform has a hole, the inside of fixed platform is provided with counterbore, the inside of universal platform and fixed platform all are connected with flatness detector with screw thread, the upper end side surface of flatness detector is combined with counterbore, the inside of universal platform is provided with embedding ball bearing through hole, the inner surface of embedding ball bearing through hole is rotatably connected with ball bearing no.
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Description

Technical Field

[0001] This utility model relates to the field of building engineering testing technology, and in particular to a wall facade flatness testing device. Background Technology

[0002] The wall facade flatness testing device is used to detect the flatness of wall facades. Through the cooperation of specific structures and components, it can quickly and accurately measure whether the wall surface is flat, promptly detect problems such as unevenness and deviation, provide a basis for the quality control of building construction, assist in the acceptance and rectification of wall construction, and ensure the quality of building facade construction.

[0003] Existing wall facade flatness testing devices include a mounting plate with multiple left mounting holes. A left fixing plate is fixedly connected to the rear wall of the left mounting plate. With this structure, the left and right mounting plates are installed on the outside of the wall, and the testing instrument is positioned between the two mounting plates. The testing instrument can move between the left and right fixing plates. However, this fixed method of testing the wall surface cannot flexibly address different wall locations, thus reducing the device's practicality. Utility Model Content

[0004] The purpose of this invention is to at least solve the technical problems existing in the prior art and provide a wall facade flatness detection device. This device aims to improve the technical problem that the wall facade flatness detection device cannot flexibly deal with different wall locations during use, thereby reducing the practicality of the device.

[0005] This utility model also provides a wall facade flatness testing device as described above, comprising: an anti-collision rubber ring, a universal platform tightly fitted to the lower surface of the anti-collision rubber ring, a fixed platform fixedly connected to the upper surface of the universal platform, a perforated rubber gasket tightly fitted to the upper surface of the fixed platform, a countersunk hole provided inside the fixed platform, and a flatness testing instrument threadedly connected to the interior of both the universal platform and the fixed platform. The flatness testing instrument collects wall surface data through a mechanical structure or sensor and judges the flatness by comparing it with a standard. This testing method is existing technology. The upper side surface of the flatness testing instrument is fitted with a countersunk hole. The interior of the universal platform is provided with a ball bearing through hole. The inner surface of the ball bearing through hole is rotatably connected to ball bearing one, ball bearing two, ball bearing three, and ball bearing four. A ball connecting rod is fixedly connected to the lower surface of the universal platform, and a ball is fixedly connected to the lower surface of the ball connecting rod. A ball connecting seat is ball-jointed to the outer surface of the ball. By using the above components together, we can achieve the effects of easy portability, flexible height adjustment, and adaptability to different detection scenarios.

[0006] According to the wall facade flatness testing device provided in this utility model, the universal platform and the fixed platform are internally provided with tail end placement grooves and wiring through holes. Through the coordinated use of these components, a robust and reasonable device structure is achieved.

[0007] According to the wall facade flatness testing device provided in this utility model, the lower surface of the spherical connecting seat is threaded with an easy-to-remove bolt, and the lower end side surface of the easy-to-remove bolt is threaded with a telescopic rod. Through the coordinated use of these components, the testing end of the device can be flexibly replaced.

[0008] According to the wall facade flatness testing device provided in this utility model, a dustproof ring is tightly connected to the upper surface of the telescopic rod, a second dustproof ring is attached to the side surface of the telescopic rod, and a telescopic rod handle is tightly connected to the lower surface of the second dustproof ring. Through the coordinated use of these components, a robust and reasonable device structure is achieved.

[0009] According to the wall facade flatness testing device provided in this utility model, the inner surface of the telescopic rod handle is fitted with a telescopic rod, and the outer surface of the telescopic rod handle is tightly connected with a telescopic rod anti-slip pad. Through the coordinated use of these components, the device achieves the effect of adapting to long-term use.

[0010] According to the wall facade flatness testing device provided in this utility model, a portable ring is fixedly connected to the outer surface of the handle of the telescopic rod, and a wire through hole is provided inside the portable ring. Through the coordinated use of these components, a robust and reasonable device structure is achieved.

[0011] According to the wall facade flatness testing device provided in this utility model, the handle of the telescopic rod has a bottom through hole inside, and a rubber ring for the bottom through hole is tightly fitted to the outer surface of the bottom through hole. Through the coordinated use of these components, a robust and reasonable device structure is achieved.

[0012] According to the wall facade flatness testing device provided in this utility model, a dustproof inner ring is tightly fitted to the inner surface of the tail end placement groove, and a universal platform, a fixed platform, and a perforated rubber gasket are tightly fitted to the outer surface of the dustproof inner ring. Through the coordinated use of these components, a robust and reasonable device structure is achieved. Beneficial effects

[0013] Compared with existing technologies, this wall facade flatness detection device allows for flexible contact with the wall surface during use, thanks to the ball bearings 1, 2, 3, and 4 embedded inside the universal platform. Anti-collision rubber rings effectively prevent collisions, and the telescopic handle allows for flexible operation and height adjustment, ultimately achieving portability, flexible height adjustment, and adaptability to different detection scenarios. Attached Figure Description

[0014] The present invention will be further described below with reference to the accompanying drawings and embodiments;

[0015] Figure 1 This is the front view of the utility model with wall facade flatness detection device;

[0016] Figure 2 This is a perspective view of the utility model device for detecting the flatness of wall facades.

[0017] Figure 3 This is the left view of the utility model with wall facade flatness detection device;

[0018] Figure 4 This is a top view of the utility model with wall facade flatness testing device;

[0019] Figure 5 This is a bottom view of the utility model with a wall facade flatness testing device.

[0020] Legend:

[0021] 1. Anti-collision rubber ring; 2. Universal platform; 3. Fixed platform; 4. Perforated rubber gasket; 5. Countersunk hole; 6. Flatness tester; 7. Dustproof inner ring; 8. Ball connecting rod; 9. Ball; 10. Ball connecting seat; 11. Easy-removing bolt; 12. Dustproof ring one; 13. Telescopic rod one; 14. Dustproof ring two; 15. Telescopic rod handle; 16. Telescopic rod anti-slip pad; 17. Portable ring; 18. Threading hole; 19. Bottom through hole; 20. Bottom through hole rubber ring; 21. Through hole with embedded ball bearings; 22. Tail end placement groove; 23. Ball bearing one; 24. Ball bearing two; 25. Ball bearing three; 26. Ball bearing four; 27. Wiring through hole. Detailed Implementation

[0022] This section will describe in detail the specific embodiments of this utility model. Preferred embodiments of this utility model are shown in the accompanying drawings. The purpose of the drawings is to supplement the textual description with graphics, so that people can intuitively and vividly understand each technical feature and overall technical solution of this utility model, but they should not be construed as limiting the scope of protection of this utility model.

[0023] Reference Figure 1 , Figure 2 , Figure 3 and Figure 5This utility model discloses a wall facade flatness testing device, comprising: an anti-collision rubber ring 1; a universal platform 2 tightly attached to the lower surface of the anti-collision rubber ring 1; a fixed platform 3 fixedly connected to the upper surface of the universal platform 2; a perforated rubber gasket 4 tightly attached to the upper surface of the fixed platform 3; a countersunk hole 5 provided inside the fixed platform 3; and a flatness testing instrument 6 threadedly connected to the interiors of both the universal platform 2 and the fixed platform 3. The flatness testing instrument 6 collects wall surface data through a mechanical structure or sensor and compares the results. The standard method for judging flatness is an existing technology. The flatness testing instrument 6 has a countersunk hole 5 attached to its upper side surface. The universal platform 2 has a ball bearing through-hole 21 embedded inside. Ball bearings 23, 24, 25, and 26 are rotatably connected to the inner surface of the ball bearing through-hole 21. A ball connecting rod 8 is fixedly connected to the lower surface of the universal platform 2. A ball 9 is fixedly connected to the lower surface of the ball connecting rod 8. A ball connecting seat 10 is ball-jointed to the outer surface of the ball 9. The universal platform... Platform 2 and fixed platform 3 are internally provided with tail end placement groove 22 and wiring through hole 27; the lower surface of ball connecting seat 10 is threaded with easy-removing bolt 11, the lower end side surface of easy-removing bolt 11 is threaded with telescopic rod 13, the upper surface of telescopic rod 13 is tightly connected with dustproof ring 12, the side surface of telescopic rod 13 is fitted with dustproof ring 2 14, the lower surface of dustproof ring 2 14 is tightly connected with telescopic rod handle 15, the inner surface of telescopic rod handle 15 is fitted with telescopic rod 13, telescopic... The outer surface of the telescopic handle 15 is tightly connected to a telescopic anti-slip pad 16; the outer surface of the telescopic handle 15 is fixedly connected to a portable ring 17, and the inside of the portable ring 17 is provided with a wire through hole 18; the inside of the telescopic handle 15 is provided with a bottom through hole 19, and the outer surface of the bottom through hole 19 is tightly fitted with a bottom through hole rubber ring 20; the inner surface of the tail end placement groove 22 is tightly fitted with a dustproof inner ring 7, and the outer surface of the dustproof inner ring 7 is tightly fitted with a universal platform 2, a fixed platform 3 and a perforated rubber washer 4;

[0024] Specifically, during use, the device uses ball bearings 23, 24, 25 and 26 embedded inside the universal platform 2 to flexibly fit the detection wall and move flexibly.

[0025] Reference Figure 1 , Figure 2 , Figure 3 and Figure 4 The outer surface of the telescopic handle 15 is fixedly connected to a portable ring 17, and the inside of the portable ring 17 is provided with a wire through hole 18; the inside of the telescopic handle 15 is provided with a bottom through hole 19, and the outer surface of the bottom through hole 19 is tightly fitted with a bottom through hole rubber ring 20; the inner surface of the tail end placement groove 22 is tightly fitted with a dustproof inner ring 7, and the outer surface of the dustproof inner ring 7 is tightly fitted with a universal platform 2, a fixed platform 3 and a perforated rubber washer 4;

[0026] Specifically, when the equipment is in use, the anti-collision rubber ring 1 effectively prevents the equipment from colliding, and the telescopic handle 15 can be flexibly operated and the height of the device can be adjusted, ultimately achieving convenient carrying, flexible height adjustment and adaptability to different detection scenarios.

[0027] Working principle: During use, the device uses ball bearings 23, 24, 25 and 26 embedded inside the universal platform 2 to flexibly fit the detection wall and move flexibly. When the device is in use, the anti-collision rubber ring 1 effectively prevents collisions, and the telescopic handle 15 can be flexibly operated and the height of the device can be adjusted, ultimately achieving convenient portability, flexible height adjustment and adaptability to different detection scenarios.

[0028] The embodiments of this utility model have been described in detail above with reference to the accompanying drawings. However, this utility model is not limited to the above embodiments. Within the scope of knowledge possessed by those skilled in the art, various changes can be made without departing from the spirit of this utility model.

Claims

1. A wall facade flatness testing device, characterized in that, include: A collision-resistant rubber ring (1) is provided. A universal platform (2) is tightly attached to the lower surface of the collision-resistant rubber ring (1). A fixed platform (3) is fixedly connected to the upper surface of the universal platform (2). A perforated rubber gasket (4) is tightly attached to the upper surface of the fixed platform (3). A countersunk hole (5) is provided inside the fixed platform (3). A flatness tester (6) is threadedly connected to the interior of both the universal platform (2) and the fixed platform (3). A flatness tester (6) is attached to the upper side surface of the flatness tester (6). The universal platform (2) has a countersunk hole (5) and an embedded ball through hole (21) inside. The inner surface of the embedded ball through hole (21) is rotatably connected to ball one (23), ball two (24), ball three (25) and ball four (26). The lower surface of the universal platform (2) is fixedly connected to a ball connecting rod (8). The lower surface of the ball connecting rod (8) is fixedly connected to a ball (9). The outer surface of the ball (9) is ball hinged to a ball connecting seat (10).

2. The wall facade flatness testing device according to claim 1, characterized in that: The universal platform (2) and the fixed platform (3) are provided with a tail end placement groove (22) and a wiring through hole (27).

3. The wall facade flatness testing device according to claim 1, characterized in that: The lower surface of the ball connector (10) is threaded with an easy-removing bolt (11), and the lower end side surface of the easy-removing bolt (11) is threaded with a telescopic rod (13).

4. The wall facade flatness detection device according to claim 3, characterized in that: The upper surface of the telescopic rod (13) is tightly connected to a dustproof ring (12), the side surface of the telescopic rod (13) is fitted with a dustproof ring (14), and the lower surface of the dustproof ring (14) is tightly connected to a telescopic rod handle (15).

5. The wall facade flatness detection device according to claim 4, characterized in that: The inner surface of the telescopic rod handle (15) is fitted with a telescopic rod (13), and the outer surface of the telescopic rod handle (15) is tightly connected with a telescopic rod anti-slip pad (16).

6. The wall facade flatness detection device according to claim 4, characterized in that: A portable ring (17) is fixedly connected to the outer surface of the telescopic rod handle (15), and a wire through hole (18) is provided inside the portable ring (17).

7. The wall facade flatness detection device according to claim 4, characterized in that: The telescopic rod handle (15) has a bottom through hole (19) inside, and a bottom through hole rubber ring (20) is tightly attached to the outer surface of the bottom through hole (19).

8. The wall facade flatness detection device according to claim 2, characterized in that: The inner surface of the tail end placement groove (22) is tightly fitted with a dustproof inner ring (7), and the outer surface of the dustproof inner ring (7) is tightly fitted with a universal platform (2), a fixed platform (3) and a perforated rubber gasket (4).