Auxiliary equipment for mounting laser level meter

By designing integrated laser level installation auxiliary equipment, the problems of insufficient accuracy and large errors in traditional wire hammers in construction are solved, and the efficient and accurate installation of laser level is achieved. It is suitable for a variety of main structures, improving construction accuracy and efficiency.

CN222950788UActive Publication Date: 2025-06-06ZHEJIANG ZHEPU CONSTRUCTION CO LTD +1
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Patent Information

Application Number
CN202421715277.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-19
Publication Date
2025-06-06
Estimated Expiration
2034-07-19

AI Technical Summary

Technical Problem

During the construction process, traditional line hammers are susceptible to factors such as personnel collisions and natural wind blowing, resulting in non-verticality, insufficient accuracy, and excessive errors, which cannot meet the specifications of construction verticality and flatness.

Method used

A laser level installation auxiliary equipment is designed, including a front-end positioning device, main beam, middle positioning device and end positioning device. Through integrated design, positioning, support and laser level connection functions are integrated to achieve precise positioning and stable fixing.

Benefits of technology

It significantly improves the installation efficiency and accuracy of the laser level, is suitable for the main structure of different specifications, sizes and forms, ensures the verticality and flatness of the construction, and has the advantages of strong integrity, ingenuity of design, and convenient installation and disassembly.

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Abstract

The utility model discloses auxiliary equipment for mounting a laser level meter, which is assembled on a main body structure and comprises a front-end positioning device, a main beam, a middle positioning device and a tail-end positioning device, the front-end positioning device, the middle positioning device and the tail-end positioning device are assembled on the main beam, the main body structure is fixed between the front-end positioning device and the tail-end positioning device, and the middle positioning device is connected with a laser gradienter; the installation efficiency is improved, through the integrated design, the functions of front end positioning, middle supporting and laser gradienter connection, tail end fixing and the like are integrated, and the installation process is made to be smoother and more efficient; an operator does not need to adjust the position for many times or find an additional supporting tool, and the installation of the laser level meter can be rapidly completed.
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Description

Technical Field

[0001] The utility model relates to the technical field of building construction, in particular to a laser level installation auxiliary device. Background Art

[0002] With the rapid development of social economy, science and technology, the process of urbanization has greatly accelerated. During the construction process, the demand for various construction auxiliary equipment has also increased. Among them, the laser level has many advantages such as easy installation, automatic leveling, wide application range, waterproof and dustproof, high light brightness, small equipment size, easy to carry, high measurement accuracy, small error, etc. It is widely used in various construction projects such as wall laying, plastering, tile laying, door and window installation, etc., and gradually replaced traditional tools such as plumb bobs, conventional tripods for installing laser levels, and leather counting rods.

[0003] Traditional plumb bobs use the gravity of the iron plumb bob itself to hang from high to low, tighten the hanging wire and make it vertical, thus playing an auxiliary role in wall construction, plastering, tile laying, door and window installation and other works. However, plumb bobs can only be hung from high to low and need to be set at multiple locations such as both ends of the wall and door and window openings. In addition, plumb bobs are easily affected by factors such as collisions with people and natural wind during the construction process, resulting in adverse consequences such as plumb shaking, non-verticality, insufficient precision, and excessive errors. Ultimately, the verticality and flatness of wall construction, plastering, tile laying, door and window installation and other works cannot meet the regulatory requirements. Summary of the invention

[0004] In order to overcome the defects in the above-mentioned prior art, a laser level installation auxiliary device is provided which has a simple and ingenious structure, can be industrially mass-produced, is easy to install and disassemble, and can be repeatedly used.

[0005] The technical solution of the utility model is as follows: a laser level installation auxiliary device, assembled on the main structure, including a front-end positioning device, a main beam, a middle positioning device, and a terminal positioning device; the front-end positioning device, the middle positioning device, and the terminal positioning device are assembled on the main beam, the main structure is fixed between the front-end positioning device and the terminal positioning device, and the middle positioning device is connected to a laser level. To improve installation efficiency, through an integrated design, the functions of front-end positioning, connection of middle support with laser level, and terminal fixing are integrated into one, making the installation process smoother and more efficient. Operators can quickly complete the installation of the laser level without having to adjust the position multiple times or find additional support tools.

[0006] Preferably, the front end positioning device includes a front end adjustable loose nut and a front end positioning plate; the front end positioning plate is assembled on the end of the main beam through the front end adjustable loose nut, and the side of the front end positioning plate abuts on the main structure. One side of the front end positioning plate is connected to the main beam through the adjustable loose nut, and the other side abuts on the main structure, so as to achieve accurate positioning and fixation of the front end positioning device. By rotating the front end adjustable loose nut, the degree of compression of the front end adjustable loose nut on the front end positioning plate can be changed, thereby facilitating the adjustment of the position of the front end positioning plate on the main beam.

[0007] Preferably, the central positioning device includes a central adjustable loose nut, a connecting ring, a connecting buckle and an adjusting nut; the connecting ring is assembled on the main beam through the central adjustable loose nut; the connecting buckle is assembled between the connecting ring and the laser level; the adjusting nut is assembled on the side of the connecting buckle and is used to adjust the level of the laser level. Through the coordinated action of the central adjustable loose nut, the connecting ring, the connecting buckle and the adjusting nut, the precise installation and horizontal adjustment of the laser level are achieved.

[0008] Preferably, the end positioning device includes an adjustment component and a fixing component; the fixing component is mounted on the upper end of the adjustment component, and the adjustment component is mounted on the main beam. The adjustment component and the fixing component work together to achieve accurate and stable positioning of the end effector.

[0009] Preferably, the fixing assembly includes a positioning gasket, a terminal fixing nut and a rotating handle; the positioning gasket and the rotating handle are assembled at both ends of the terminal fixing nut. The positioning gasket, the terminal fixing nut and the rotating handle realize accurate and stable fixing of the end effector, and the operator can rotate the fixing assembly by rotating the handle to make the positioning gasket abut against the main structure.

[0010] Preferably, the positioning gasket is assembled at one end of the terminal fixing nut facing the middle positioning device, and the positioning gasket abuts against the main structure. The positioning gasket ensures that the end effector can be stably fixed at a predetermined position by providing precise positioning.

[0011] Preferably, the adjustment assembly includes a positioner, a positioning spring and a positioning adjustment rod; the positioner is mounted on the main beam, and the positioning spring and the positioning adjustment rod are mounted on the positioner. The positioner usually has a precise installation position and a fixed structure to ensure the accuracy and reliability of the adjustment. The positioning spring is mounted on the positioner and mainly plays the role of buffering and resetting.

[0012] Preferably, one end of the positioning spring is connected to the inner wall of the positioner, and the other end is connected to the positioning adjustment rod. When the adjustment rod is moved to adjust the position of the end effector, the positioning spring can absorb part of the impact force and help the positioner return to the initial state or the predetermined position after the adjustment is completed.

[0013] Preferably, the positioning adjustment rod runs through the positioner, and the position of the positioner on the main beam can be adjusted by pressing the positioning adjustment rod. The operator can quickly adjust the position of the positioner without using complex tools or performing cumbersome operations.

[0014] As a preferred embodiment, the terminal fixing nut is screwed to the upper end of the positioner. Through the screwing method, the adjustment efficiency of the terminal fixing nut is improved, and the stable installation and reliable connection of the components are achieved.

[0015] Compared with the prior art, the utility model has the following beneficial effects:

[0016] A laser level installation auxiliary device can fix the horizontal laser on various main structures such as beams, walls, columns, etc., and can adopt different installation and fixing forms according to the different main structure forms, so as to realize the multi-form, convenient and accurate installation of the laser level, and significantly improve the accuracy of wall building, plastering, tile laying, door and window installation, etc. Thanks to the adjustable installation of the front positioning device, the middle positioning device and the end positioning device on the main beam, it is suitable for main structures such as beams, walls, columns, etc. of different specifications and sizes and different forms, and has the advantages of strong integrity, ingenious design, convenient installation and disassembly, low cost, safe and reliable on-site operation, repeatable turnover, industrialized mass production, environmental protection, material saving, energy saving, etc.

[0017] Other features and advantages of the present invention will be disclosed in detail in the following specific implementations and drawings. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] The utility model is further described below in conjunction with the accompanying drawings:

[0019] Figure 1 This is a schematic diagram of the installation of a laser level installation auxiliary device of the utility model;

[0020] Figure 2 This is a structural schematic diagram of a laser level installation auxiliary device of the utility model;

[0021] Figure 3 This is a schematic diagram of the operation of the laser level of the utility model;

[0022] The following are the descriptions of the reference numerals:

[0023] Main structure 1, front end positioning device 2, main beam 3, middle positioning device 4, end positioning device 5, laser level 6, front end adjustable lock nut 21, front end positioning plate 22, middle adjustable lock nut 41, connecting ring 42, connecting buckle 43, adjusting nut 44, adjusting assembly 51, fixing assembly 52, positioning gasket 521, end fixing nut 522, rotating handle 523, positioner 511, positioning spring 512, positioning adjustment rod 513. DETAILED DESCRIPTION

[0024] The following is an explanation and description of the technical scheme of the embodiment of the utility model in conjunction with the drawings of the embodiment of the utility model, but the following embodiment is only a preferred embodiment of the utility model, not all. Based on the embodiment in the implementation mode, other embodiments obtained by those skilled in the art without creative work are all within the protection scope of the utility model.

[0025] In the following description, terms such as "inside", "outside", "up", "down", "left", "right", etc. that indicate directions or positional relationships are only used to facilitate the description of the embodiments and simplify the description, and do not indicate or imply that the referred device or element must have a specific direction, be constructed and operated in a specific direction. Therefore, it should not be understood as a limitation on the present invention.

[0026] like Figure 1 to Figure 2 As shown, a laser level installation auxiliary device is assembled on the main structure 1, including a front end positioning device 2, a main beam 3, a middle positioning device 4, and a terminal positioning device 5; the front end positioning device 2, the middle positioning device 4 and the terminal positioning device 5 are assembled on the main beam 3, and the main beam 3 is the main structural component for supporting and transmitting the load. The front end positioning device 2 and the terminal positioning device 5 firmly fix the auxiliary equipment on the main structure 1 such as beams and columns, forming a stable supporting frame, which effectively prevents the laser level 6 from being offset due to external force or vibration during use, thereby ensuring the accuracy and stability of the measurement; the laser level 6 is assembled on the main beam 3 through the middle positioning device 4.

[0027] Among them, the front end positioning device 2 includes a front end adjustable locking nut 21 and a front end positioning plate 22; the front end positioning plate 22 is assembled at the end of the main beam 3 through the front end adjustable locking nut 21, and the adjustable locking nut 21 makes it convenient for the operator to change the position of the front end positioning device 2, thereby improving the assembly efficiency; one side of the front end positioning plate 22 is connected to the main beam through the adjustable locking nut, and the other side is abutted against the main structure, thereby realizing the precise positioning of the front end positioning device 2.

[0028] Among them, the central positioning device 4 includes a central adjustable tightening nut 41, a connecting ring 42, a connecting buckle 43 and an adjusting nut 44; the connecting ring 42 is assembled on the main beam 3 through the central adjustable tightening nut 41, and by rotating the adjustable tightening nut 41, the position and stability of the connecting ring can be accurately controlled, thereby ensuring the stability of the entire positioning device.

[0029] Furthermore, the connection buckle 43 is assembled between the connection ring 42 and the laser level 6; the adjustment nut 44 is assembled on the side of the connection buckle 43; the laser level 6 adjusts its position on the main beam 3 through the connection ring 42 to adapt to walls of different positions and thicknesses, and the level of the laser level is adjusted by the adjustment nut 44. When the laser level 6 is fine-tuned by the precise adjustment nut 44, minor errors in the installation process can be eliminated, further improving the accuracy and reliability of the measurement.

[0030] The end positioning device 5 includes an adjustment component 51 and a fixing component 52; the fixing component 52 is assembled on the upper end of the adjustment component 51, and the adjustment component 51 is assembled on the main beam 3. The adjustment component 51 is used to control the position of the fixing component 52 from the main structure 1 so that the fixing component 52 can be fixed on the main structure 1.

[0031] Furthermore, the fixing assembly 52 includes a positioning gasket 521, a terminal fixing nut 522 and a rotating handle 523; the positioning gasket 521 and the rotating handle 523 are assembled at both ends of the terminal fixing nut 522. The positioning gasket 521 is assembled at one end of the terminal fixing nut 522 facing the middle positioning device 4, and the positioning gasket 521 abuts against the main structure 1. The positioning gasket 521 provides precise positioning and buffering. It can absorb certain vibrations and impact forces, and protect the terminal positioning device 5 and the main structure 1 from damage. The rotating handle 523 is convenient for operators to operate.

[0032] Furthermore, the adjustment assembly 51 includes a positioner 511, a positioning spring 512 and a positioning adjustment rod 513; the positioner 511 is assembled on the main beam 3, and the positioning spring 512 and the positioning adjustment rod 513 are assembled on the positioner 511. One end of the positioning spring 512 is connected to the inner wall of the positioner 511, and the other end is connected to the positioning adjustment rod 513. The positioning spring 512 mainly plays the role of buffering and resetting; the positioning adjustment rod 513 runs through the positioner 511, and the position of the positioner 511 on the main beam 3 can be adjusted by pressing the positioning adjustment rod 513. When the positioning adjustment rod 513 is pressed to adjust the position of the terminal positioning device 5, the positioning spring 512 can absorb part of the impact force and help the positioner return to the initial state or the predetermined position after the adjustment is completed.

[0033] like Figure 3As shown, by pressing the positioning adjustment rod 513, the positioning spring 512 is compressed, and the position of the positioner 511 on the main beam 3 is adjusted to adapt to the main structures 1 such as beams, columns, walls, etc. of different sizes. After adjusting to the appropriate position, the rotating handle 523 is rotated and tightened to fix the entire auxiliary device on the main structure 1 such as beams, columns, walls, etc., and after connecting the laser level 6, the position of the connecting ring 42 is adjusted to make the vertical laser line transmitted by the laser level 6 coincide with the edge line of the filling wall, the edge line of the plaster cake, and the edge line of the window installation, so as to achieve the effect of precise auxiliary construction.

[0034] Furthermore, the end fixing nut 522 is screwed to the upper end of the positioner 511; after use, the entire auxiliary device can be easily removed by simply loosening the rotating handle 523, so that the operator can easily complete the installation and removal operations; the screw connection makes the various components tightly connected and easy to disassemble, which is convenient for maintenance and replacement. The auxiliary device has the advantages of strong integrity, ingenious design, convenient installation and disassembly, low cost, safe and reliable on-site operation, repeatable turnover, industrial mass production, environmental protection, material saving, energy saving, etc.

[0035] Take a 400mm wide structural beam as an example. Figure 3 As shown, the specific implementation method of the utility model is further described as a standardized auxiliary equipment that can be fixed on the bottom of a beam, a wall, a column and other structures for installing a laser level for walling, plastering, tile laying, door and window installation and other works.

[0036] In actual use, the front adjustable loose nut 21 and the front positioning plate 22 are made by industrial processing; the main beam 3 is made by galvanized steel plate, with specific specifications of 700mm in length, 30mm in width and 4mm in thickness; the middle positioning device 4 is made by industrial processing of hard plastic as a whole, the connecting ring 42 is connected to the main beam 3, and the shape is rectangular, and the middle adjustable loose nut 41 is arranged on the outside of the connecting ring 42 to adjust the tightness, adjust, move and fix the position of the connecting ring 42 on the main beam 3, the bottom of the connecting ring 42 is connected to the laser level 6 through the connecting buckle 43, and the side of the connecting buckle 43 is equipped with the adjusting nut 44 , the adjusting nut 44 is used for fine-tuning the horizontal direction of the laser level; the end positioning device 5 is made of hard plastic industrial processing as a whole. By pressing the positioning adjustment rod 513, the positioning of the positioner 511 on the main beam 3 is adjusted. After adjusting to a suitable position, the positioning adjustment rod 513 is loosened, and the positioning adjustment rod 513 is fixed to the main beam 3 by using the elastic force of the positioning spring 512 and the thread provided under the main beam 3; after the positioner 511 is adjusted to a suitable position, the rotating handle 523 is rotated and tightened to make the circular positioning gasket 521 close to the main structure 1, and the entire auxiliary device is fixed to the main structure 1 such as beams, columns, and walls.

[0037] After use, the entire auxiliary device can be easily removed by simply loosening the rotating handle 523.

[0038] The above is only a specific implementation of the utility model, but the protection scope of the utility model is not limited thereto. Those skilled in the art should understand that the utility model includes but is not limited to the contents described in the drawings and the above specific implementation. Any modification that does not deviate from the functional and structural principles of the utility model will be included in the scope of the claims.

Claims

1. A laser level installation auxiliary device, mounted on a main structure (1), characterized in that: The invention comprises a front end positioning device (2), a main beam (3), a middle positioning device (4) and a terminal positioning device (5); the front end positioning device (2), the middle positioning device (4) and the terminal positioning device (5) are assembled on the main beam (3); the main structure (1) is fixed between the front end positioning device (2) and the terminal positioning device (5); and the middle positioning device (4) is connected to a laser level (6).

2. The laser level installation auxiliary device according to claim 1, characterized in that: The front end positioning device (2) comprises a front end adjustable loose nut (21) and a front end positioning plate (22); the front end positioning plate (22) is assembled on the end of the main beam (3) via the front end adjustable loose nut (21), and the side surface of the front end positioning plate (22) abuts against the main structure (1).

3. The laser level installation auxiliary device according to claim 1, characterized in that: The middle positioning device (4) comprises a middle adjustable loose nut (41), a connecting ring (42), a connecting buckle (43) and an adjusting nut (44); the connecting ring (42) is assembled on the main beam (3) through the middle adjustable loose nut (41); the connecting buckle (43) is assembled between the connecting ring (42) and the laser level (6); and the adjusting nut (44) is assembled on the side of the connecting buckle (43) and is used to adjust the level of the laser level (6).

4. The laser level installation auxiliary device according to claim 1, characterized in that: The end positioning device (5) comprises an adjusting component (51) and a fixing component (52); the fixing component (52) is assembled on the upper end of the adjusting component (51), and the adjusting component (51) is assembled on the main beam (3).

5. The laser level installation auxiliary device according to claim 4, characterized in that: The fixing assembly (52) comprises a positioning gasket (521), a terminal fixing nut (522) and a rotating handle (523); the positioning gasket (521) and the rotating handle (523) are assembled at both ends of the terminal fixing nut (522).

6. The laser level installation auxiliary device according to claim 5, characterized in that: The positioning gasket (521) is assembled on one end of the terminal fixing nut (522) facing the middle positioning device (4), and the positioning gasket (521) is in abutment with the main structure (1).

7. The laser level installation auxiliary device according to claim 4, characterized in that: The adjustment component (51) comprises a positioner (511), a positioning spring (512) and a positioning adjustment rod (513); the positioner (511) is assembled on the main beam (3), and the positioning spring (512) and the positioning adjustment rod (513) are assembled on the positioner (511).

8. The laser level installation auxiliary device according to claim 7, characterized in that: One end of the positioning spring (512) is connected to the inner wall of the positioner (511), and the other end is connected to the positioning adjustment rod (513).

9. The laser level installation auxiliary device according to claim 7, characterized in that: The positioning adjustment rod (513) passes through the positioner (511), and the position of the positioner (511) on the main beam (3) can be adjusted by pressing the positioning adjustment rod (513).

10. The laser level installation auxiliary device according to claim 5, characterized in that: The terminal fixing nut (522) is threadedly connected to the upper end of the positioner (511).