A building material installation position horizontal calibration device
By installing a laser pointer and an electronic level on the horizontal calibration device for building material installation positions, the problem of the inability to detect the horizontality of long building material installation surfaces in existing technologies has been solved. This enables accurate detection and angle display of long building material surfaces, thereby improving construction quality.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- HUAIAN NUOSHUN SUPPLY CHAIN CO LTD
- Filing Date
- 2025-08-15
- Publication Date
- 2026-07-24
AI Technical Summary
Existing spirit levels cannot effectively detect the levelness of long building material installation surfaces and cannot display the skew angle.
Laser pointers are installed at both ends of the housing of the horizontal calibration device at the building material installation location to assist in horizontal detection. The tilt angle is detected in conjunction with an electronic level, and the electronic level is fixed by a compression spring and a column structure.
It enables accurate horizontal detection and tilt angle measurement of long building material installation surfaces, improving the reliability and efficiency of construction quality.
Smart Images

Figure CN224552396U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of building material installation technology, and specifically to a building material installation position level calibration device. Background Technology
[0002] Building materials are a general term for all materials used in civil engineering and construction, covering multiple aspects such as structural support, decoration and aesthetics, and functional requirements of buildings. Building materials are mainly divided into structural materials (such as steel bars, cement, bricks, tiles, and wood), decorative materials (tiles, marble, paint, solid wood boards, and glass), and special functional materials (such as waterproof membranes and fireproof coatings).
[0003] The horizontal calibration of building material installation positions is a key step in ensuring construction quality. When installing many building materials such as wood, marble, and glass panels, calibration tools need to be placed on the installation surface for horizontal testing. Existing technologies use spirit levels for horizontal testing, but existing spirit levels have limited length and cannot test longer installation surfaces, nor can they display the tilt angle. Therefore, a building material installation position horizontal calibration device is proposed, which has laser pointers at both ends of the housing. The laser beams emitted assist personnel in testing the horizontality of longer installation surfaces, and the tilt angle can be detected by an electronic level. Utility Model Content
[0004] To address the problems in the existing technology, this utility model provides a building material installation position level calibration device. A laser pointer is set at both ends of the housing. The laser beam emitted assists personnel in performing level detection on a long installation surface. The tilt angle can be detected by an electronic level.
[0005] The technical solution adopted by this utility model to solve its technical problem is a building material installation position level calibration device, including a housing, a through groove is opened through the top of the housing, an electronic level is installed inside the through groove, liquid levels are installed at both ends of the top of the housing, and circular reserved grooves are opened at both ends of the housing, with laser pointers installed inside the circular reserved grooves. The housing has a rectangular pre-reserved slot inside one side of the through slot. A column is installed inside the rectangular pre-reserved slot. Connecting rods are connected to both ends of one side of the column through threaded grooves. A push plate is fixed to one end of the connecting rod inside the through slot by bolts. A compression spring is fixed to the other side of the column inside the rectangular pre-reserved slot by bolts.
[0006] By adopting the above technical solution, the electronic level can detect the tilt angle of the mounting surface, the laser pointer assists personnel in leveling a long mounting surface, and the compression spring pushes the column and push plate to fix the electronic level inserted into the through slot.
[0007] Specifically, protective components are provided at both ends of the housing. The protective components include end caps, with protective glass embedded inside the end caps. A threaded ring is provided on one side of the end caps, and the threaded ring is connected to the inside of a circular reserved groove through a threaded groove.
[0008] Specifically, the housing is welded with an internal threaded sleeve on the top of the liquid level side, and a screw is threaded through the internal threaded sleeve, with the bottom end of the screw located inside a circular pre-reserved groove.
[0009] Specifically, a structural groove is provided on the top of the housing, and the structural groove is connected to a rectangular reserved groove. A first handle is connected to the top of the column through a threaded groove, and the first handle passes through the structural groove.
[0010] Specifically, a tempered glass window is fixed to one side of the housing by screws.
[0011] Specifically, a second handle is bolted to the top of the housing.
[0012] The beneficial effects of this utility model are: The present invention discloses a building material installation position level calibration device. A laser pointer is set in a circular reserved groove at both ends of the housing. When the housing is placed on the building material installation position, the laser pointer is turned on to emit a laser beam, which can assist personnel in performing level detection on long installation surfaces. An electronic level is installed in a through groove. When the housing is placed on the building material installation position, it can perform level detection on the installation surface and display the tilt angle.
[0013] The present invention relates to a building material installation position level calibration device. After a laser pointer is placed in a circular pre-reserved slot, a screw is rotated to fix it, and a compressed spring pushes the column to move, thereby pushing the push plate to move through the connecting rod, clamping the electronic level placed in the through slot. It is easy to install and disassemble. 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 a schematic diagram of the overall structure of this utility model; Figure 2 This is a schematic diagram of the structure of this utility model; Figure 3 This is a cross-sectional view of the shell of this utility model; Figure 4 This is a schematic diagram of the protective component structure of this utility model; In the diagram: 1. Housing; 2. Through groove; 3. Circular reserved groove; 4. Electronic level; 5. Laser pointer; 6. Rectangular reserved groove; 7. Tempered glass window; 8. Liquid level; 9. Protective components; 901. End cap; 902. Protective glass; 903. Threaded ring; 10. Column; 11. Push plate; 12. Connecting rod; 13. Compression spring; 14. First grip; 15. Structural groove; 16. Internal threaded sleeve; 17. Screw; 18. Second grip. Detailed Implementation
[0016] 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.
[0017] Laser pointers are installed at both ends of the housing. The laser beams emitted assist personnel in leveling long mounting surfaces. An electronic level can then detect the tilt angle. Figure 1-4 As shown, the present invention provides a building material installation position level calibration device, including a housing 1, a through groove 2 through the top of the housing 1, an electronic level 4 inside the through groove 2, liquid levels 8 at both ends of the top of the housing 1, and circular reserved grooves 3 at both ends of the housing 1, with laser pointers 5 inside the circular reserved grooves 3. The housing 1 has a rectangular reserved groove 6 inside one side of the through groove 2. A column 10 is set inside the rectangular reserved groove 6. A connecting rod 12 is connected to both ends of one side of the column 10 through threaded grooves. A push plate 11 is fixed to one end of the connecting rod 12 inside the through groove 2 by bolts. A compression spring 13 is fixed to the other side of the column 10 inside the rectangular reserved groove 6 by bolts.
[0018] When in use, the electronic level 4 can detect the tilt angle of the mounting surface, the laser pointer 5 assists the personnel in performing level checks on longer mounting surfaces, and the compression spring 13 pushes the column 10 and the push plate 11 to fix the electronic level 4 inserted into the through slot 2.
[0019] For example, such as Figure 4 As shown, the present invention also includes protective components 9 at both ends of the housing 1. The protective components 9 include end caps 901, with protective glass 902 embedded inside the end caps 901. A threaded ring 903 is provided on one side of the end caps 901, and the threaded ring 903 is connected to the inside of the circular reserved groove 3 through a threaded groove.
[0020] In use, the end cap 901 is fixed to the end of the circular reserved groove 3 by the threaded ring 903 to protect the laser pointer 5. The protective glass 902 ensures that the end cap 901 will not block the laser beam from being emitted.
[0021] For example, such as Figure 3 As shown, the present invention also includes an internal threaded sleeve 16 welded to the top of the housing 1 on one side of the liquid level 8, and a screw 17 is sleeved through the internal threaded sleeve 16, with the bottom end of the screw 17 located inside the circular reserved groove 3.
[0022] When in use, rotating the screw 17 can fix the laser pointer 5, which is placed in the circular reserved slot 3.
[0023] For example, such as Figure 3 As shown, the present invention also includes a structural groove 15 on the top of the housing 1, the structural groove 15 being connected to a rectangular reserved groove 6, and a first handle 14 being connected to the top of the column 10 via a threaded groove, the first handle 14 passing through the structural groove 15.
[0024] When in use, the person can move the column 10 by holding the first handle 14. The opening of the structural groove 15 ensures that the housing 1 will not affect the movement of the first handle 14.
[0025] For example, such as Figure 1 As shown, the present invention also includes a tempered glass window 7 fixed to one side of the housing 1 by screws.
[0026] When in use, the tempered glass window 7 makes it easy to observe the electronic level 4 inside the through slot 2.
[0027] For example, such as Figure 1 As shown, the present invention also includes a second handle 18 fixed to the top of the housing 1 by bolts.
[0028] When in use, the second handle 18 is designed to facilitate gripping and moving of the housing 1.
[0029] In use, the laser pointer 5 is set in the circular reserved grooves 3 at both ends of the housing 1. The housing 1 is placed on the building material installation position, and the laser pointer 5 is turned on to emit laser light, which can help personnel to check the level of a long installation surface. The status of the liquid level 8 can be observed to know whether the housing 1 is level. The electronic level 4 is installed in the through groove 2. When the housing 1 is placed on the building material installation position, the installation surface can be checked for level and the tilt angle can be displayed. After the laser pointer 5 is placed into the circular reserved slot 3, the screw 17 is rotated to fix it, and then the end cap 901 is fixed to the end of the circular reserved slot 3 by the threaded ring 903 to protect the laser pointer 5. The protective glass 902 ensures that the end cap 901 will not block the laser beam from being emitted. Personnel hold the first handle 14 and move the column 10. The connecting rod 12 drives the push plate 11 to move to the inside of the through slot 2, so that the electronic level 4 can be inserted into the through slot 2. After releasing the first handle 14, the compression spring 13 pushes the column 10 to move, which in turn pushes the push plate 11 to move through the connecting rod 12, thus clamping the electronic level 4 placed in the through slot 2.
[0030] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The descriptions of the above embodiments and specifications are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of protection claimed by this utility model. The scope of protection of this utility model is defined by the appended claims and their equivalents.
Claims
1. A horizontal calibration device for the installation position of building materials, characterized in that, Includes a housing (1), the top of the housing (1) is provided with a through groove (2), an electronic level (4) is provided inside the through groove (2), liquid levels (8) are provided at both ends of the top of the housing (1), and circular reserved grooves (3) are provided at both ends of the housing (1), and laser pointers (5) are provided inside the circular reserved grooves (3). The housing (1) has a rectangular reserved groove (6) inside the through groove (2) on one side. A column (10) is provided inside the rectangular reserved groove (6). A connecting rod (12) is connected to both ends of one side of the column (10) through a threaded groove. A push plate (11) is fixed to one end of the connecting rod (12) inside the through groove (2) by bolts. A compression spring (13) is fixed to the other side of the column (10) inside the rectangular reserved groove (6) by bolts.
2. The building material installation position level calibration device according to claim 1, characterized in that, The housing (1) is provided with protective components (9) at both ends. The protective components (9) include end caps (901), and protective glass (902) is embedded inside the end caps (901). A threaded ring (903) is provided on one side of the end caps (901), and the threaded ring (903) is connected to the inside of the circular reserved groove (3) through a threaded groove.
3. The building material installation position level calibration device according to claim 1, characterized in that, The housing (1) is welded with an internal threaded sleeve (16) on the top of the liquid level (8) side. A screw (17) is sleeved through the internal threaded sleeve (16), and the bottom end of the screw (17) is located inside the circular reserved groove (3).
4. The building material installation position level calibration device according to claim 1, characterized in that, The top of the housing (1) is provided with a structural groove (15), which is connected to a rectangular reserved groove (6). The top of the column (10) is connected to a first handle (14) through a threaded groove, and the first handle (14) passes through the structural groove (15).
5. A building material installation position level calibration device according to claim 1, characterized in that, A tempered glass window (7) is fixed to one side of the housing (1) by screws.
6. The building material installation position level calibration device according to claim 1, characterized in that, The top of the housing (1) is fixed with a second handle (18) by bolts.