一种楼房倾斜检测装置

By combining the composite lifting component and the leveling support, the infrared rangefinder can be automatically adjusted in height, solving the problems of high adjustment pressure and long adjustment time in the existing technology, and improving the flexibility and safety of the building tilt detection device.

CN224516429UActive Publication Date: 2026-07-17YUNNAN YUZHOU TESTING TECH CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
YUNNAN YUZHOU TESTING TECH CO LTD
Filing Date
2025-09-20
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing building tilt detection devices involve high pressure and long adjustment time, resulting in insufficient flexibility in use.

Method used

By combining a composite lifting assembly and a leveling support with an infrared rangefinder, the automatic lifting and adjustment of the infrared rangefinder is achieved. The use and protection of the device are optimized through a semi-open cover and an auxiliary electromagnet protection structure.

Benefits of technology

This improves the flexibility and efficiency of the detection device and ensures the safety and stability of the infrared rangefinder during the transfer process.

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Abstract

本实用新型涉及楼房检测技术领域,且公开了一种楼房倾斜检测装置,包括机箱、红外线测距仪,所述机箱的内部套装有复合升降组件、调平支座,所述调平支座安装在复合升降组件顶部输出结构上,所述红外线测距仪安装在调平支座的顶部,且红外线测距仪与调平支座能够在复合升降组件的传动下进行往复升降。本实用新型通过设置的复合升降组件、调平支座与机箱、红外线测距仪组合成多功能的倾斜检测装置,后续使用时,除了能够满足红外线测距仪针对性水平调节之外,还能够利用复合升降组件对红外线测距仪与调平支座形成的组合件进行检测位置的自动升降调节,进而在解决现有技术存在的问题的同时,还能够进一步优化整体装置的使用效果。
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Claims

1. A building tilt detection device, comprising a cabinet (1), an infrared range finder (2), characterized in that: The internal housing (1) is equipped with a composite lifting assembly and a leveling support (7). The leveling support (7) is installed on the top output structure of the composite lifting assembly. The infrared rangefinder (2) is installed on the top of the leveling support (7). The infrared rangefinder (2) and the leveling support (7) can reciprocate under the transmission of the composite lifting assembly. The leveling support (7) includes a first support plate (71) and a second support plate (72). The bottom of the first support plate (71) is fixed with an iron ball (73). The top of the second support plate (72) is fixed with a hemispherical shell (74) that can snap onto the iron ball (73). Arc electromagnets (75) are installed inside both sides of the hemispherical shell (74). The magnetic surface of the arc electromagnet (75) can adhere to the surface of the iron ball (73) and magnetically limit the iron ball (73). The bottom of the infrared rangefinder (2) is fixed to the top of the first support plate (71) and can return to a horizontal state as the first support plate (71) is rotated and adjusted under the support of the iron ball (73) and the hemispherical shell (74). A digital display level (14) is installed on the top of the first support plate (71).

2. The building inclination detection apparatus according to claim 1, characterized by: The composite lifting assembly includes a second toothed plate (5), a first toothed plate (4), and a support sleeve (3) that are slidably connected from top to bottom. The bottom of the support sleeve (3) is fixed inside the bottom of the chassis (1). The top of the support sleeve (3) and the top of the first toothed plate (4) are provided with engagement output components (6). The engagement output components (6) can make the first toothed plate (4) or the second toothed plate (5) move up and down by engagement transmission. The top of the second toothed plate (5) is fixedly connected to the top surface of the middle part of the second support plate (72).

3. A building tilt detection apparatus according to claim 2, wherein: The engagement output component (6) includes a brake servo motor (61) and a transmission gear (62). The output end of the brake servo motor (61) is connected to the middle of the transmission gear (62), and the transmission gear (62) can engage with the first toothed plate (4) or the second toothed plate (5).

4. The building inclination detection apparatus according to claim 2, characterized by: The front and rear surfaces of the first toothed plate (4) and the front and rear surfaces of the second toothed plate (5) are provided with grooves (15), and the inside of the grooves (15) is fitted with an L-shaped guide block (16) fixed to the top of the support sleeve (3) or the top of the first toothed plate (4).

5. The building inclination detection apparatus according to claim 3, characterized by: The surface of the chassis (1) is fixed with a controller (12), which is electrically connected to the brake servo motor (61), the infrared rangefinder (2) and the digital display level (14) via wires.

6. The building inclination detection apparatus according to claim 1, characterized by: The front surface of the chassis (1) is fixed with a handle frame (13), and both sides of the bottom of the front of the chassis (1) are equipped with wheels. Both sides of the bottom of the rear of the chassis (1) are equipped with feet.

7. The building inclination detection apparatus according to claim 1, characterized by: The top of the chassis (1) is slidably mounted on both sides of a semi-open cover (8). The bottom of the semi-open cover (8) is fixed with a guide rod (9) that is snapped into the corresponding side wall of the top of the chassis (1). The two semi-open covers (8) can cover and protect the infrared rangefinder (2) and the leveling support (7) which are idle outside the top of the chassis (1) in a similar splicing manner under the snapping support of their respective guide rods (9) and the chassis (1).

8. A building tilt detection apparatus according to claim 7, wherein: Each of the two semi-open covers (8) is connected to an auxiliary electromagnet (10) and a linkage plate (11) on opposite sides of its top. After the two semi-open covers (8) are spliced ​​together, the auxiliary electromagnet (10) can be magnetically connected to the linkage plate (11).