Wall surface flatness detection device for house building supervision

By designing a wall flatness detection device that can adjust height and move flexibly, using lift sleeves, lift plates and detection components, combined with conical positioning blocks and moving columns, the problem that detection devices in the prior art are difficult to measure high walls and long walls, achieving a more efficient and convenient detection process.

CN222894899UActive Publication Date: 2025-05-23LUOYANG LUXING HIGHWAY PROJECT SUPERVISION CO LTD
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Patent Information

Application Number
CN202421779424.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-25
Publication Date
2025-05-23
Estimated Expiration
2034-07-25

AI Technical Summary

Technical Problem

The existing wall flatness detection device is difficult to test when facing higher walls or roofs, and when detecting wall surfaces with longer lengths, it is necessary to collect multiple data, which is inconvenient to carry equipment and has a low detection speed.

Method used

A wall flatness detection device for house construction supervision is designed, adopting the design of lifting sleeves, lifting plates, connecting shafts and detection components. Through the combination of lifting sleeves and lifting plates, the height adjustment and flexible movement of the detection device are realized. Combined with the conical positioning blocks and the wall, the detection table is driven to move through the moving column, and flexible detection of uneven walls is realized.

Benefits of technology

This device enables the detection equipment to flexibly deal with walls of various heights and angles, improves detection efficiency, simplifies carrying and operation, and significantly improves the practicality of wall flatness detection.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of wall flatness detection, in particular to a wall flatness detection device for house building supervision, which comprises a detection device base, the detection device base is slidably connected with lifting plates through lifting sleeves, and the inner sides of the two lifting plates are rotatably connected with positioning seats through connecting shafts. A detection assembly is arranged between the two groups of positioning seats; the detection device is convenient for a user to carry, can flexibly adapt to wall surfaces with various heights and angles, facilitates the detection of detection equipment, improves the detection efficiency, can enable the detection mechanism to flexibly change the detection angle, drives the detection table to move through the moving column after the conical positioning block is clamped with the wall surface, and is convenient to use. Further, the uneven wall surface is detected, and data are displayed through the graduated scale; compared with an existing wall surface flatness detection device, the wall surface flatness detection device has the advantage that the overall practicability of the wall surface flatness detection device can be improved through the design.
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Description

Technical Field

[0001] The utility model relates to the technical field of wall surface flatness detection, in particular to a wall surface flatness detection device for house construction supervision. Background Art

[0002] With the continuous development of the construction industry and the owners' increasingly higher requirements for housing quality, the construction industry must improve its own construction level to meet the needs of corporate development; to ensure the ultimate goal of building high-quality and efficient quality projects, the actual measurement and quantity system has gradually received attention as a control and inspection method that can reflect the actual construction quality and conditions on site, and the corresponding operations and data requirements are also constantly refined and improved in practice.

[0003] The purpose of actual measurement is to ensure the quality and safety of project construction, improve the level of project construction, and give full play to the investment benefits. When conducting actual measurement of project targets, various equipment is needed to test the verticality, horizontality and wall flatness of the construction project.

[0004] Existing wall flatness detection devices mostly require the use of straightedges and feeler gauges, which are difficult to test when facing high walls or ceilings. In addition, multiple data collection is required when testing long wall surfaces. The equipment is inconvenient to carry and the detection speed is low.

[0005] Therefore, it is particularly important to design a novel wall flatness detection device for house construction supervision to solve the above technical defects and improve the practicality of the wall flatness detection device for overall house construction supervision. Utility Model Content

[0006] The purpose of the utility model is to provide a wall flatness detection device for house construction supervision. The detection device can be convenient for users to carry through the design of a lifting sleeve, a lifting plate, a connecting shaft and a detection component. At the same time, it can flexibly cope with walls of various heights and angles, facilitate testing by the detection equipment, improve the detection efficiency, and enable the detection mechanism to flexibly change the detection angle. After the conical positioning block is engaged with the wall, the detection table is driven to move by the moving column, thereby detecting the uneven wall surface, and displaying the data through a ruler, so as to solve the problems raised in the above-mentioned background technology.

[0007] In order to achieve the above purpose, the utility model provides the following technical solutions:

[0008] A wall flatness detection device for house construction supervision comprises a detection device base, wherein the detection device base is slidably connected to a lifting plate via a lifting sleeve, the inner sides of two groups of the lifting plates are rotatably connected to positioning seats via a connecting shaft, and a detection component is arranged between the two groups of the positioning seats;

[0009] The detection component is used to detect the flatness of the wall surface.

[0010] As a preferred solution of the utility model, the inner sides of the lifting sleeve and the lifting plate are provided with limiting grooves, the internal threads of the limiting grooves are connected to limiting members, and the front sides of the two groups of positioning seats are fixedly connected with conical positioning blocks.

[0011] As a preferred solution of the utility model, universal wheels are provided at the four corners of the bottom of the detection device base, a connecting plate is fixedly connected to the inside of the detection device base, and the two groups of positioning seats are both L-shaped in structure design.

[0012] As a preferred solution of the utility model, the detection assembly includes a sliding column, a moving column, a sliding seat, a support plate, a buffer spring, a detection table, a rolling wheel, a scale and an indicator block, and the sliding column is fixedly connected between the two sets of positioning seats.

[0013] As a preferred solution of the utility model, a moving column is rotatably connected between the two groups of positioning seats and located in front of the sliding column, a sliding seat is provided between the two groups of positioning seats and located on the outside of the sliding column and the moving column, support plates are fixedly connected on the upper and lower sides of the sliding seat, and the front sides of the two groups of support plates are connected to the detection platform through buffer springs.

[0014] As a preferred solution of the utility model, the outer sides of the two groups of detection platforms and the side located away from the sliding seat are rotatably connected with a rolling wheel, the right side of the sliding seat is engraved with a scale, and an indicator block is fixedly connected between the two groups of detection platforms and at a position corresponding to the scale, and the connection method between the two groups of detection platforms and the sliding seat is a sliding connection.

[0015] As a preferred solution of the utility model, a crank is rotatably connected to the right side of the positioning seat and at a position corresponding to the moving column. The connection between the sliding seat and the moving column is a threaded connection, and the connection between the sliding seat and the sliding column is a sliding connection.

[0016] Compared with the prior art, the beneficial effects of the utility model are:

[0017] In the utility model, the design of the lifting sleeve, the lifting plate, the connecting shaft and the detection component makes it easy for users to carry it, and at the same time it can flexibly cope with walls of various heights and angles, facilitates the testing of the detection equipment, improves the detection efficiency, and enables the detection mechanism to flexibly change the detection angle. After the conical positioning block is engaged with the wall, the detection table is driven to move by the moving column, thereby detecting the uneven wall surface and displaying the data through a ruler. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1It is a schematic diagram of the overall three-dimensional structure of the utility model;

[0019] Figure 2 It is a schematic diagram of a partial three-dimensional structure of the utility model;

[0020] Figure 3 It is a schematic diagram of the three-dimensional structure of the detection component of the utility model.

[0021] In the figure: 1. detection device base; 101. universal wheel; 102. connecting plate; 2. lifting sleeve; 201. limit groove; 202. limit member; 3. lifting plate; 4. connecting shaft; 5. positioning seat; 501. conical positioning block; 6. detection component; 601. sliding column; 602. moving column; 603. sliding seat; 604. support plate; 605. buffer spring; 606. detection table; 607. rolling wheel; 608. scale; 609. indicator block; 610. crank. DETAILED DESCRIPTION

[0022] The technical solutions in the embodiments of the utility model will be clearly and completely described below in conjunction with the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all of the embodiments. Based on the embodiments of the utility model, all other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of the utility model.

[0023] Example:

[0024] See also Figure 1-Figure 3 , the utility model provides a technical solution:

[0025] A wall flatness detection device for house construction supervision comprises a detection device base 1, the detection device base 1 is slidably connected to a lifting plate 3 through a lifting sleeve 2, the inner sides of two sets of lifting plates 3 are both rotatably connected to positioning seats 5 through a connecting shaft 4, and a detection component 6 is arranged between the two sets of positioning seats 5;

[0026] The inner sides of the lifting sleeve 2 and the lifting plate 3 are both provided with limiting grooves 201 , the inner threads of the limiting grooves 201 are connected to limiting members 202 , and the front sides of the two sets of positioning seats 5 are both fixedly connected with conical positioning blocks 501 .

[0027] Universal wheels 101 are provided at the four corners of the bottom of the detection device base 1 , a connecting plate 102 is fixedly connected inside the detection device base 1 , and the two sets of positioning seats 5 are both designed in an L-shaped structure.

[0028] Specifically, first, the detection device base 1 is moved to the specified position through the universal wheel 101, and the limit member 202 is unscrewed from the limit groove 201 between the lifting sleeve 2 and the lifting plate 3, the limit between the lifting sleeve 2 and the lifting plate 3 by the limit member 202 is cancelled, the lifting plate 3 is taken out from the lifting sleeve 2, and then the height of the lifting plate 3 is adjusted, and the lifting sleeve 2 and the lifting plate 3 are limited and fixed by the limit member 202. At this time, the direction of the positioning seat 5 is adjusted by the connecting shaft 4, and then the direction of the detection component 6 is adjusted. After the adjustment is completed, the positioning seat 5 is fitted against the wall, and the conical positioning block 501 is used to prevent the positioning seat 5 from being offset, and then the flatness of the wall is detected by the detection component 6.

[0029] Also, see Figure 1 and Figure 3 , a detection assembly 6 is provided between the two sets of positioning seats 5;

[0030] The detection component 6 is used to detect the flatness of the wall surface. The specific structure of the detection component 6 is as follows:

[0031] The detection assembly 6 includes a sliding column 601, a moving column 602, a sliding seat 603, a support plate 604, a buffer spring 605, a detection platform 606, a rolling wheel 607, a scale 608 and an indicator block 609. The sliding column 601 is fixedly connected between the two groups of positioning seats 5. The moving column 602 is rotatably connected between the two groups of positioning seats 5 and located in front of the sliding column 601. A sliding seat 603 is provided between the two groups of positioning seats 5 and located outside the sliding column 601 and the moving column 602. The upper and lower sides of the sliding seat 603 are fixedly connected to the support plate 604. The front sides of the two groups of support plates 604 are connected to the detection The outer sides of the two detection tables 606 and the side away from the sliding seat 603 are both rotatably connected with a rolling wheel 607, the right side of the sliding seat 603 is marked with a scale 608, and an indicating block 609 is fixedly connected between the two detection tables 606 and at a position corresponding to the scale 608. The connection modes of the two detection tables 606 and the sliding seat 603 are sliding connection, and a crank 610 is rotatably connected to the right side of the positioning seat 5 and at a position corresponding to the moving column 602. The connection mode of the sliding seat 603 and the moving column 602 is a threaded connection, and the connection mode of the sliding seat 603 and the sliding column 601 is a sliding connection.

[0032] Specifically, the flatness of the wall is detected by the detection component 6, and the two groups of positioning seats 5 are pressed against the wall so that the two groups of positioning seats 5 and the wall form a vertical state. At this time, the two groups of conical positioning blocks 501 and the rolling wheel 607 are in a straight line. The movable column 602 is rotated by the crank 610, and the sliding seat 603 is driven to move on the sliding column 601 through the movable column 602. When the sliding seat 603 moves, it drives the two groups of detection platforms 606 to move. At this time, the rolling wheel 607 contacts the wall, reducing the friction between the sliding seat 603 and the wall. When the wall is uneven, the rolling wheel 607 will be subjected to a reaction force when passing through the raised wall, and the reaction force will squeeze the buffer spring 605, thereby causing the detection platform 606 to move on the sliding seat 603. At this time, the detection platform 606 will drive the indicator block 609 to move, and the indicator block 609 moves on the scale 608 to display the data of the raised part.

[0033] In this embodiment, the implementation scenario is specifically as follows: in actual use, first, the detection device base 1 is moved to the specified position by the universal wheel 101, and the limit member 202 is unscrewed from the limit groove 201 between the lifting sleeve 2 and the lifting plate 3, the limit between the lifting sleeve 2 and the lifting plate 3 by the limit member 202 is cancelled, and the lifting plate 3 is taken out from the lifting sleeve 2, and then the height of the lifting plate 3 is adjusted, and the lifting sleeve 2 and the lifting plate 3 are limited and fixed by the limit member 202. At this time, the direction of the positioning seat 5 is adjusted by the connecting shaft 4, and then the direction of the detection component 6 is adjusted. After the adjustment is completed, the positioning seat 5 is fitted with the wall, and the positioning seat 5 is prevented from being offset by the conical positioning block 501, and then the flatness of the wall is detected by the detection component 6. Compared with the existing wall flatness detection device, the utility model can improve the overall practicality of the wall flatness detection device through design.

[0034] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A wall flatness detection device for house construction supervision, comprising a detection device base (1), characterized in that: The detection device base (1) is slidably connected to a lifting plate (3) via a lifting sleeve (2); the inner sides of two groups of lifting plates (3) are rotatably connected to positioning seats (5) via a connecting shaft (4); and a detection component (6) is provided between the two groups of positioning seats (5); The detection component (6) is used to detect the flatness of the wall surface.

2. A wall surface flatness detection device for house construction supervision according to claim 1, characterized in that: The inner sides of the lifting sleeve (2) and the lifting plate (3) are both provided with limiting grooves (201), the inner threads of the limiting grooves (201) are connected to limiting members (202), and the front sides of the two groups of positioning seats (5) are both fixedly connected with conical positioning blocks (501).

3. A wall surface flatness detection device for house construction supervision according to claim 1, characterized in that: Universal wheels (101) are provided at the four corners of the bottom of the detection device base (1), a connecting plate (102) is fixedly connected to the inside of the detection device base (1), and the two groups of positioning seats (5) are both L-shaped in structure design.

4. A wall surface flatness detection device for house construction supervision according to claim 1, characterized in that: The detection assembly (6) comprises a sliding column (601), a moving column (602), a sliding seat (603), a support plate (604), a buffer spring (605), a detection platform (606), a rolling wheel (607), a scale (608) and an indicating block (609), and the sliding column (601) is fixedly connected between the two groups of positioning seats (5).

5. A wall surface flatness detection device for house construction supervision according to claim 4, characterized in that: A movable column (602) is rotatably connected between the two groups of positioning seats (5) and located in front of the sliding column (601); a sliding seat (603) is provided between the two groups of positioning seats (5) and located outside the sliding column (601) and the movable column (602); support plates (604) are fixedly connected to the upper and lower sides of the sliding seat (603); and the front sides of the two groups of support plates (604) are connected to the detection platform (606) via buffer springs (605).

6. A wall surface flatness detection device for house construction supervision according to claim 5, characterized in that: The outer sides of the two groups of detection platforms (606) and the side located away from the sliding seat (603) are both rotatably connected with a rolling wheel (607), the right side of the sliding seat (603) is marked with a scale (608), and an indicating block (609) is fixedly connected between the two groups of detection platforms (606) and at a position corresponding to the scale (608), and the connection mode of the two groups of detection platforms (606) and the sliding seat (603) is sliding connection.

7. A wall surface flatness detection device for house construction supervision according to claim 6, characterized in that: A crank (610) is rotatably connected to the right side of the positioning seat (5) and at a position corresponding to the moving column (602); the connection between the sliding seat (603) and the moving column (602) is a threaded connection; and the connection between the sliding seat (603) and the sliding column (601) is a sliding connection.