A horizontal inspection device for engineering testing

CN224636020UActive Publication Date: 2026-08-14湖南唯安工程科技有限公司
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-16
Publication Date
2026-08-14

AI Technical Summary

Technical Problem

然而,现有的水平尺在使用过程中存在明显的技术缺陷

Benefits of technology

[0013]通过在水平尺主体的一端设置T形连接块,在T形连接块上设置由耐磨活动板、第二磁铁以及连接插条组成的易磨损可拆卸组件,当耐磨活动板因频繁接触被检测表面而磨损时,可直接拆卸并更换新的易磨损可拆卸组件,无需整体更换水平尺主体,有效降低检测成本并减少资源浪费;同时可通过易磨损可拆卸组件在T形连接块上滑动来调整整个水平尺的长度,从而根据被检测面的长度灵活调整水平尺的整体长度,满足不同检测场景的需求,减少检测工作量并提高检测结果的准确性;通过在水平尺主体上设置第一磁铁,同时使得第一磁铁与易磨损可拆卸组件上的第二磁铁配合,利用磁力吸附确保易磨损可拆卸组件在使用过程中的稳定性,使得易磨损可拆卸组件使用时,不易受外力意外在T形连接块上滑动;且第二磁铁能够通过连接插条与耐磨活动板便捷快速拆装,从而使得易磨损可拆卸组件更换的便捷性较好。

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224636020U_ABST
    Figure CN224636020U_ABST
Patent Text Reader

Abstract

This utility model discloses a level testing device for engineering inspection, relating to the field of level testing technology. It includes a level body with two T-shaped connecting blocks symmetrically fixedly installed at one end. Two first magnets are fixedly installed inside the level body and between the two T-shaped connecting blocks. Each of the two T-shaped connecting blocks has a wear-resistant, detachable component slidably mounted on it. The wear-resistant, detachable component consists of a wear-resistant movable plate, a second magnet, and a connecting strip. The second magnet is located at the inner end of the wear-resistant movable plate. By setting a T-shaped connecting block at one end of the level body and installing the wear-resistant, detachable component on the T-shaped connecting block (comprising the wear-resistant movable plate, second magnet, and connecting strip), when the wear-resistant movable plate wears due to frequent contact with the surface being inspected, a new wear-resistant, detachable component can be directly disassembled and replaced without replacing the entire level body, effectively reducing inspection costs and minimizing resource waste.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of level detection technology, and in particular to a level detection device for engineering testing. Background Technology

[0002] In the field of engineering testing, level testing equipment is an important tool to ensure that the levelness of building structures meets the standards, and the spirit level, as one of the commonly used ones, has a wide range of applications in actual engineering testing work.

[0003] In various inspection scenarios during engineering construction, spirit levels need to frequently come into contact with the surfaces of the buildings being inspected. However, existing spirit levels have significant technical shortcomings during use. Firstly, the side of the spirit level in contact with the building is easily worn. As usage time increases, significant wear directly affects the level's accuracy, leading to deviations in the inspection results. Once this occurs, the spirit level often becomes unusable and must be replaced, increasing inspection costs and wasting resources. Secondly, traditional spirit levels are mostly of fixed length. When facing surfaces of varying lengths, the length cannot be easily adjusted according to actual needs. For example, when inspecting long building surfaces, a fixed-length spirit level may require multiple repositioning, increasing workload and potentially affecting the accuracy of results due to continuity issues. Conversely, an excessively long spirit level is inconvenient for inspecting shorter surfaces. This inflexible length significantly reduces the practicality of traditional spirit levels, making it difficult to meet diverse engineering inspection needs. Therefore, this application proposes a leveling device for engineering inspection to address these problems. Utility Model Content

[0004] The main objective of this invention is to provide a horizontal testing device for engineering testing, which can effectively solve the problems in the background art.

[0005] To achieve the above objectives, the technical solution adopted by this utility model is as follows:

[0006] A leveling device for engineering testing includes a spirit level body. Two T-shaped connecting blocks are symmetrically fixedly installed at one end of the spirit level body. Two first magnets are fixedly installed inside the spirit level body and between the two T-shaped connecting blocks. A wear-resistant and detachable component is slidably installed on each of the two T-shaped connecting blocks. The wear-resistant and detachable component consists of a wear-resistant movable plate, a second magnet, and a connecting strip. The second magnet is located at the inner end of the wear-resistant movable plate, and the connecting strip is fixedly installed at the outer end of the second magnet. The connecting strip is also inserted into the wear-resistant movable plate, and the second magnet is attracted to the first magnets.

[0007] Preferably, a plurality of level tube assemblies are fixedly installed inside the body of the level ruler, and a magnet mounting groove is provided at one end of the body of the level ruler and between two T-shaped connecting blocks.

[0008] Preferably, the first magnet is fixedly installed in a magnet mounting groove opened at one end of the spirit level body.

[0009] Preferably, one end of the wear-resistant movable plate on the wear-resistant detachable component is provided with a T-shaped guide groove, and a connecting slot is also provided on the wear-resistant movable plate. The connecting slot passes through the wear-resistant movable plate from top to bottom, and the connecting slot is connected to the T-shaped guide groove.

[0010] Preferably, the wear-resistant movable plate on the easily worn and detachable component is movably fitted onto the T-shaped connecting block via a T-shaped guide groove.

[0011] Preferably, the connecting strip on the wear-resistant detachable component is inserted into a connecting slot opened in the wear-resistant movable plate.

[0012] Compared with the prior art, the present invention has the following beneficial effects:

[0013] By setting a T-shaped connecting block at one end of the spirit level body, and installing a wear-resistant movable plate, a second magnet, and a connecting strip on the T-shaped connecting block, a wear-resistant detachable component can be directly disassembled and replaced when the wear-resistant movable plate wears due to frequent contact with the surface being inspected. This eliminates the need to replace the entire spirit level body, effectively reducing inspection costs and minimizing resource waste. Simultaneously, the length of the entire spirit level can be adjusted by sliding the wear-resistant detachable component on the T-shaped connecting block, allowing for flexible adjustment of the overall length of the spirit level according to the length of the surface being inspected, meeting the needs of different inspection scenarios, reducing workload, and improving the accuracy of inspection results. Furthermore, by installing a first magnet on the spirit level body, which cooperates with the second magnet on the wear-resistant detachable component, magnetic attraction ensures the stability of the wear-resistant detachable component during use, preventing accidental sliding on the T-shaped connecting block due to external forces. The second magnet can also be easily and quickly detached from the wear-resistant movable plate via the connecting strip, thus improving the ease of replacement of the wear-resistant detachable component. Attached Figure Description

[0014] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0015] Figure 2 This is a schematic diagram of the structure of the spirit level body, the T-shaped connecting block, and the first magnet of this utility model.

[0016] Figure 3This is a schematic diagram showing the positional relationship between the T-shaped connecting block and the easily worn and detachable components of this utility model.

[0017] Figure 4 This is an exploded view of the easily worn and detachable component of this utility model.

[0018] In the diagram: 1. Level body; 2. T-shaped connecting block; 3. First magnet; 4. Easily worn and detachable component; 5. Level tube assembly; 6. Magnet mounting slot; 7. Wear-resistant movable plate; 8. T-shaped guide rail slot; 9. Connecting slot; 10. Second magnet; 11. Connecting insert. Detailed Implementation

[0019] To make the technical means, creative features, objectives and effects of this utility model easier to understand, the present utility model will be further described below in conjunction with specific embodiments.

[0020] Please see Figure 1 , Figure 2 , Figure 3 , Figure 4As shown, a leveling device for engineering testing includes a level body 1. Two T-shaped connecting blocks 2 are symmetrically fixedly installed at one end of the level body 1. Two first magnets 3 are fixedly installed inside the level body 1 and between the two T-shaped connecting blocks 2. A wear-resistant and detachable component 4 is slidably installed on each of the two T-shaped connecting blocks 2. The wear-resistant and detachable component 4 consists of a wear-resistant movable plate 7, a second magnet 10, and a connecting strip 11. The second magnet 10 is located at the inner end of the wear-resistant movable plate 7, and the connecting strip 11 is fixedly installed at the outer end of the second magnet 10. The connecting strip 11 is also inserted into the wear-resistant movable plate 7. The second magnet 10 is attracted to the first magnets 3. By setting T-shaped connecting blocks 2 at one end of the level body 1 and setting wear-resistant and detachable components 4 consisting of wear-resistant movable plates 7, second magnets 10, and connecting strips 11 on the T-shaped connecting blocks 2, when the wear-resistant movable plate 7 wears due to frequent contact with the surface being tested, When the wear-prone detachable component 4 is removed, it can be directly disassembled and replaced with a new one, without having to replace the entire level body 1, effectively reducing inspection costs and minimizing resource waste. Simultaneously, the length of the entire level can be adjusted by sliding the wear-prone detachable component 4 on the T-shaped connecting block 2, allowing for flexible adjustment of the overall length of the level according to the length of the surface being inspected, meeting the needs of different inspection scenarios, reducing workload, and improving the accuracy of inspection results. By setting a first magnet 3 on the level body 1, and having the first magnet 3 cooperate with the second magnet 10 on the wear-prone detachable component 4, magnetic attraction ensures the stability of the wear-prone detachable component 4 during use, preventing it from accidentally sliding on the T-shaped connecting block 2 due to external forces. Furthermore, the second magnet 10 can be easily and quickly disassembled and assembled with the wear-resistant movable plate 7 via the connecting strip 11, thus improving the ease of replacement of the wear-prone detachable component 4.

[0021] Specifically, several level tube assemblies 5 are fixedly installed inside the spirit level body 1. A magnet mounting groove 6 is opened at one end of the spirit level body 1 and between two T-shaped connecting blocks 2. The first magnet 3 is fixedly installed in the magnet mounting groove 6 opened at one end of the spirit level body 1. A T-shaped guide groove 8 is opened at one end of the wear-resistant movable plate 7 on the wear-resistant movable plate 7. A connecting slot 9 is also opened on the wear-resistant movable plate 7. The connecting slot 9 passes through the wear-resistant movable plate 7 from top to bottom. The connecting slot 9 and the T-shaped guide groove 8 are interconnected. The wear-resistant movable plate 7 on the wear-resistant detachable assembly 4 is movably fitted onto the T-shaped connecting block 2 through the T-shaped guide groove 8. The connecting strip 11 on the wear-resistant detachable component 4 is inserted into the connecting slot 9 opened on the wear-resistant movable plate 7. The wear-resistant movable plate 7 is made of a material with high wear resistance and certain strength. Wear-resistant engineering plastics such as polytetrafluoroethylene or nylon can be used, or metal materials such as stainless steel can be used to resist the wear caused by frequent contact with the surface being tested, and to ensure dimensional stability and testing accuracy under long-term use. The connecting strip 11 and the connecting slot 9 are inserted into each other. The friction between the two comes from the tight contact and the pressure generated by the magnetic attraction between the first magnet 3 and the second magnet 10, which can prevent the connecting strip 11 from accidentally slipping out of the connecting slot 9 and ensure the stability of the structure.

[0022] During engineering inspection, first adjust the length of the level according to the length of the surface to be inspected. Hold the level body 1 first, then slide the easily worn and detachable component 4 along the T-shaped connecting block 2. This allows the wear-resistant movable plate 7 on the easily worn and detachable component 4 to slide on the T-shaped connecting block 2, thereby adjusting the distance between the two easily worn and detachable components 4. When the position of the easily worn and detachable components 4 is appropriate, the second magnet 10 is attracted to the first magnet 3, and the position of the easily worn and detachable components 4 can be fixed using magnetic force, thus completing the length adjustment. In use, place one end of the easily worn and detachable component 4 on the surface to be inspected and observe the position of the bubble inside the level tube assembly 5. If the bubble is centered, the surface water level is normal. If the plate is level, the height is determined by the direction of the offset to complete the leveling test. When the wear-resistant movable plate 7 needs to be replaced due to wear, first forcefully pull the connecting strip 11 out of the connecting slot 9 of the wear-resistant movable plate 7 to separate the second magnet 10 from the wear-resistant movable plate 7 and the first magnet 3. Then slide the wear-resistant movable plate 7 along the T-shaped connecting block 2, so that the T-shaped connecting block 2 is passively slid out of the T-shaped guide rail groove 8. Then take a new easily worn detachable component 4, align the T-shaped guide rail groove 8 of the wear-resistant movable plate 7 with the T-shaped connecting block 2 and slide it into the appropriate position. Then insert the connecting strip 11 into the connecting slot 9 so that the second magnet 10 is attracted to the first magnet 3 to complete the replacement.

[0023] Obviously, the above embodiments are merely illustrative examples for clear explanation and are not intended to limit the implementation. Those skilled in the art can make other variations or modifications based on the above description. It is neither necessary nor possible to exhaustively list all possible implementations here. However, obvious variations or modifications derived therefrom are still within the protection scope of this invention.

Claims

1. A level detection device for engineering detection, comprising a level main body (1), characterized in that: Two T-shaped connecting blocks (2) are symmetrically fixedly installed at one end of the main body (1) of the level ruler. Two first magnets (3) are fixedly installed inside the main body (1) of the level ruler and between the two T-shaped connecting blocks (2). A wear-resistant detachable component (4) is slidably installed on each of the two T-shaped connecting blocks (2). The wear-resistant detachable component (4) consists of a wear-resistant movable plate (7), a second magnet (10), and a connecting strip (11). The second magnet (10) is located at the inner end of the wear-resistant movable plate (7). The connecting strip (11) is fixedly installed at the outer end of the second magnet (10). The connecting strip (11) is also inserted into the wear-resistant movable plate (7). The second magnet (10) is attracted to the first magnet (3).

2. The horizontal detection device for engineering detection according to claim 1, characterized in that: Several level tube assemblies (5) are fixedly installed inside the main body (1) of the level ruler. A magnet mounting groove (6) is opened at one end of the main body (1) and between two T-shaped connecting blocks (2).

3. The horizontal detection device for engineering detection according to claim 2, characterized in that: The first magnet (3) is fixedly installed in the magnet mounting groove (6) opened at one end of the body of the level ruler (1).

4. The horizontal detection device for engineering detection according to claim 3, characterized in that: One end of the wear-resistant movable plate (7) on the wear-resistant detachable component (4) is provided with a T-shaped guide groove (8). The wear-resistant movable plate (7) is also provided with a connecting slot (9). The connecting slot (9) passes through the wear-resistant movable plate (7) from top to bottom. The connecting slot (9) and the T-shaped guide groove (8) are interconnected.

5. The horizontal detection device for engineering detection according to claim 4, characterized in that: The wear-resistant movable plate (7) on the easily worn and detachable component (4) is movably fitted onto the T-shaped connecting block (2) through the T-shaped guide groove (8).

6. The horizontal detection device for engineering detection according to claim 5, characterized in that: The connecting strip (11) on the wear-resistant detachable component (4) is inserted into the connecting slot (9) opened on the wear-resistant movable plate (7).