Building engineering floor thickness detection device

By designing a floor slab thickness detection device with clamping rods, support rods, and return springs, the problem of cumbersome deployment and storage of existing devices has been solved, improving detection efficiency and convenience, and making it suitable for multi-location detection.

CN223740428UActive Publication Date: 2025-12-30王世超
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Patent Information

Application Number
CN202520534712.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-25
Publication Date
2025-12-30
Estimated Expiration
2035-03-25

AI Technical Summary

Technical Problem

The deployment and storage process of existing building slab thickness testing devices is cumbersome, resulting in low testing efficiency, especially when testing at multiple locations, which wastes a lot of time.

Method used

A floor slab thickness detection device was designed, comprising a clamping rod, a support rod, and a return spring. The device can be quickly assembled and disassembled by pulling the support rod and clamping rod, and the tester can be fixed by a threaded tube and a rotating shaft, which simplifies the unfolding and storage process of the device.

Benefits of technology

It enables rapid assembly and disassembly of the device, improves the efficiency and convenience of testing, prevents deviations in test results, and is suitable for testing at multiple locations.

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Abstract

The utility model discloses a constructional engineering floor thickness detection device, which relates to the field of detection equipment and comprises a clamping rod, connecting plates are hinged to the upper end and the lower end of the clamping rod respectively, a first supporting rod and a second supporting rod are arranged on the left side and the right side of the clamping rod respectively, and mounting grooves are formed in the first supporting rod and the second supporting rod respectively. Connecting grooves and storage grooves are formed in the sides, close to the clamping rods, of the outer walls of the first supporting rod and the second supporting rod correspondingly, clamping blocks are slidably connected to the two sides of the interior of each storage groove, and pulling plates are fixedly connected to the ends, close to the connecting grooves, of the clamping blocks; the end, away from the clamping block, of the pulling plate penetrates through the end, close to the storage groove, of the connecting groove and is hinged to the end, away from the clamping rod, of the connecting plate. The clamping block is pushed to move, the connecting plate, the pulling plate and the clamping rod are pulled through the clamping block to move towards the first supporting rod and the second supporting rod, and therefore assembling and disassembling are convenient, and moving is more convenient and faster when needed.
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Description

TECHNICAL FIELD

[0001] The utility model relates to detection equipment field, concretely relates to a building engineering floor thickness detection device. BACKGROUND

[0002] Floor thickness detection is very important for building engineering, which ensures structure safety, verifies design, controls construction quality, prevents accidents, evaluates existing building condition, meets standard requirement, provides legal basis and optimizes resource utilization, and is an important measure to guarantee building quality and safety.

[0003] The patent with the publication number CN212747733U discloses a floor thickness detector for supervising building engineering, which comprises a transmitter probe and a receiver probe. The transmitter probe is located below the floor, and the receiver probe is located above the floor. The bottom of the receiver probe is connected with an inner rod, and the inner rod is sleeved with an outer pipe. A lifting device is arranged between the inner rod and the outer pipe to allow the inner rod to extend out of and retract into the outer pipe. The application has the effect of improving the accuracy of floor measurement data. The utility model solves the problem of possible shaking of the probe when manually held, which may cause errors in the detection results. However, the deployment and storage process of the device is relatively complicated, which requires a long time and is inconvenient to use. When detection is needed at multiple locations, the device needs to be deployed and stored once for each location, which wastes a lot of time and reduces the detection efficiency. SUMMARY

[0004] To solve the above technical problems, a building engineering floor thickness detection device is provided. The technical solution solves the problem of the deployment and storage process of the device being relatively complicated, which requires a long time and is inconvenient to use. When detection is needed at multiple locations, the device needs to be deployed and stored once for each location, which wastes a lot of time and reduces the detection efficiency.

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

[0006] The utility model provides a kind of construction engineering floor thickness detection device, including clamping rod, the upper and lower ends of the clamping rod are hinged with connecting plate, the left and right sides of the clamping rod are respectively provided with support rod one and support rod two, the inside of support rod one and the inside of support rod two are all opened with installation groove, the outer wall of support rod one and support rod two is opened with connecting groove and article slot near clamping rod side, the inside two sides of article slot are slidably connected with clamping block, the end of clamping block near connecting groove is fixedly connected with pull plate, the end of pull plate away from clamping block is penetrated connecting groove near article slot one end and is hinged with the end of connecting plate away from clamping rod, the outer surface of pull plate is sleeved with reset spring, the two ends of reset spring are respectively fixedly connected with the end of clamping block near connecting groove and the end of connecting groove near article slot, the upper and lower ends of the clamping rod are fixedly connected with the clamping column that can be rotated and inserted into installation groove inside.

[0007] Preferably, the upper end of the support rod one is provided with a groove, and a threaded pipe is rotatably connected in the groove.

[0008] Preferably, the top end of the threaded pipe is fixedly connected with a moving plate, and the outer wall of the moving plate is arranged in the inside of the support rod two.

[0009] Preferably, the upper surface of the moving plate is uniformly fixedly connected with a plurality of push blocks, and the outer wall of each push block is provided with a push plate.

[0010] Preferably, the inside of the top plate is provided with a sliding groove and a sliding slot, and the push block is slidably connected in the inside of the sliding groove.

[0011] Preferably, the inside of the sliding groove is slidably connected with a push plate.

[0012] Preferably, the upper surface of the push plate is fixedly connected with a clamping plate, and the outer wall of the clamping plate is slidably connected in the inside of the sliding slot.

[0013] Compared with the prior art, the utility model has the beneficial effects that:

[0014] In the utility model, by pulling the support rod one, the support rod two and the clamping rod, the connecting plate drives the pull plate and the clamping block to compress the reset spring, the clamping column on the clamping rod is pushed into the installation groove on the support rod one and the support rod two, and at the same time, the reset spring rebounds to push the clamping block to move, the connecting plate, the pull plate and the clamping rod are pulled by the clamping block to move towards the support rod one and the support rod two, so that the assembly and disassembly are facilitated, and the movement is more convenient and fast when needed. BRIEF DESCRIPTION OF DRAWINGS

[0015] Figure 1 It is a three-dimensional structure schematic view of the utility model;

[0016] Figure 2 It is the structure schematic view of support rod one in the utility model;

[0017] Figure 3 It is the sectional view of support rod one in the utility model;

[0018] Figure 4 It is the structure schematic view of pull plate in the utility model;

[0019] Figure 5 It is the structure schematic view of top plate in the utility model;

[0020] Figure 6 It is the sectional view of top plate in the utility model.

[0021] The figure mark is:

[0022] 1, support rod one;2, clamp rod;3, support rod two;4, installation groove;5, clamping column;6, connecting plate;7, pull plate;8, reset spring;9, clamping block;10, rotating shaft;11, top plate;12, threaded tube;13, push block;14, sliding groove;15, push plate;16, clamping plate;17, sliding groove;18, moving plate;19, connecting groove;20, storage groove. DETAILED DESCRIPTION

[0023] The following description is used to disclose the utility model so that those skilled in the art can realize the utility model. The preferred embodiments in the following description are only as examples, and other obvious variants can be thought of by those skilled in the art.

[0024] Referring to Figures 1-4 As shown in the figure, a kind of building engineering floor thickness detection device, including clamp rod 2, the upper and lower ends of clamp rod 2 are hinged with connecting plate 6, the left and right sides of clamp rod 2 are provided with support rod one 1 and support rod two 3 respectively, the inside of support rod one 1 and the inside of support rod two 3 are all provided with installation groove 4, the outer wall of support rod one 1 and support rod two 3 is all provided with connecting groove 19 and storage groove 20 near clamp rod 2 side, the inside of storage groove 20 is slidably connected with clamping block 9 on both sides, the end of clamping block 9 near connecting groove 19 is fixedly connected with pull plate 7, the end of pull plate 7 away from clamping block 9 is inserted through the end of connecting groove 19 near storage groove 20 and is hinged with the end of connecting plate 6 away from clamp rod 2, reset spring 8 is sleeved on the outer surface of pull plate 7, the both ends of reset spring 8 are fixedly connected with the end of clamping block 9 near connecting groove 19 and the end of connecting groove 19 near storage groove 20 respectively, the upper and lower ends of clamp rod 2 are all fixedly connected with clamping column 5 that can be rotatably inserted into the inside of installation groove 4.

[0025] Specifically, only pull the support rod 1 and the clamp rod 2, and drive the connecting plate 6 connected to the pull plate 7 to move, drive the clamping block 9 to move through the pull plate 7, thereby compressing the reset spring 8, and inserting the clamping column 5 on the clamp rod 2 into the mounting groove 4 on the support rod 1, and loosening the clamp rod 2, so that the compressed reset spring 8 is released, and the clamping block 9 is pushed back by the reset spring 8, and the clamp rod 2 connected to the connecting plate 6 through the moving clamping block 9 is moved to the support rod 1, so that the clamp rod 2 can be tightly limited on one side of the support rod 1 and the support rod 2, thereby facilitating the splicing of the device, and facilitating the carrying and detection of different positions.

[0026] Referring to Figures 5-6 As shown, the upper end of the support rod 1 is provided with a recess, and the recess is rotatably connected with a threaded pipe 12, the outer surface of the threaded pipe 12 is threadedly connected with a rotating shaft 10, and the top end of the support rod 1 is fixedly installed with a top plate 11; the top end of the threaded pipe 12 is fixedly connected with a moving plate 18, and the outer wall of the moving plate 18 is arranged in the inside of the support rod 2; the upper surface of the moving plate 18 is uniformly fixedly connected with a plurality of push blocks 13, and the outer wall of the plurality of push blocks 13 is provided with a push plate 15 on one side; the inside of the top plate 11 is provided with a sliding groove 14 and a sliding groove 17, and the push block 13 is slidably connected in the inside of the sliding groove 14; the inside of the sliding groove 14 is slidably connected with the push plate 15; the upper surface of the push plate 15 is fixedly connected with a clamping plate 16, and the outer wall of the clamping plate 16 is slidably connected in the inside of the sliding groove 17;

[0027] Specifically, the rotating shaft 10 rotates, the rotation of the rotating shaft 10 can drive the movement of the threaded pipe 12, and the push block 13 connected to the moving plate 18 on the threaded pipe 12 can only slide up and down in the inside of the top plate 11, so that the moving plate 18 and the threaded pipe 12 below the push block 13 can only move up and down, the threaded pipe 12 moves up and down through the thread on the rotating shaft 10, the push block 13 can slide in the sliding groove 14 provided in the inside of the top plate 11, the push block 13 is trapezoidal, the push plate 15 moving in the sliding groove 17 is pushed to slide through the inclined surface of the push block 13, and the clamping plate 16 connected above the push plate 15 can be driven to move, and the test instrument is fixed by the movement of the plurality of clamping plates 16 to the middle, so that the test instrument can be quickly fixed, and the movement of the test instrument during detection can be prevented to cause deviation of the detection result, the fixing mode is simple and stable, and the movement is not easy to occur.

[0028] Working principle: rotate the rotating shaft 10, make the clamping plate 16 move to the four directions, place the tester above the top plate 11, rotate the rotating shaft 10, drive the threaded pipe 12 inside the support rod two 3 to move through the rotating shaft 10, push the moving plate 18 and the plurality of push blocks 13 inside the support rod two 3 to move upwards through the threaded pipe 12, push the push plate 15 inside the rotating shaft 10 to the middle through the push block 13, so as to drive the clamping plate 16 to fix the tester, prevent the tester from falling during detection;

[0029] Pull the support rod one 1 and the support rod two 3, pull the reset spring 8 to shrink through the clamping block 9 inside the support rod one 1 and the support rod two 3, and the reset spring 8 outside the pull plate 7 pushes the clamping block 9 downward, pulls the pull plate 7 through the movement of the clamping block 9, so that the clamping column 5 connected with the pull plate 7 and the connecting plate 6 is clamped in the inside of the installation groove 4, so as to facilitate the assembly of the device, so as to facilitate the detection of the thickness of the floor slab, and facilitate the collection and use of the device.

[0030] The basic principle, main features and advantages of the present application are shown and described above. Those skilled in the art should understand that the present application is not limited by the above examples, and the above examples and descriptions in the specification are only the principles of the present application. Without departing from the spirit and scope of the present application, various changes and improvements can be made to the present application, and these changes and improvements all fall within the scope of the present application. The scope of protection required by the present application is defined by the appended claims and their equivalents.

Claims

1. A construction engineering floor slab thickness detection device, characterized in that, The utility model provides a kind of clamp rod (2), the upper and lower ends of the clamp rod (2) are hinged with connecting plate (6), the left and right sides of the clamp rod (2) are provided with support rod one (1) and support rod two (3) respectively, the inside of support rod one (1) and the inside of support rod two (3) are all provided with mounting groove (4), the outer wall of support rod one (1) and support rod two (3) is close to the side of clamp rod (2) and is provided with connecting groove (19) and article slot (20), the inside both sides of article slot (20) are slidably connected with clamping block (9), the end of clamping block (9) close to connecting groove (19) is fixedly connected with pull plate (7), the end of pull plate (7) away from clamping block (9) penetrates the end of connecting groove (19) close to article slot (20) and is hinged with the end of connecting plate (6) away from clamp rod (2), the outer surface of pull plate (7) is sleeved with reset spring (8), the both ends of reset spring (8) are fixedly connected with the end of clamping block (9) close to connecting groove (19) and the end of connecting groove (19) close to article slot (20), the upper and lower ends of clamp rod (2) are fixedly connected with the clamping column (5) rotatable inserted into the inside of mounting groove (4).

2. A device for detecting the thickness of a construction engineering floor slab according to claim 1, characterized in that: The upper end of support rod one (1) is provided with a groove, a threaded tube (12) is rotatably connected in the groove, a rotating shaft (10) is threadedly connected to the outer surface of the threaded tube (12), and a top plate (11) is fixedly installed at the top end of the support rod one (1).

3. A device for detecting the thickness of a construction engineering floor slab according to claim 2, characterized in that: The top end of the threaded tube (12) is fixedly connected with a moving plate (18), and the outer wall of the moving plate (18) is arranged in the inside of the support rod two (3).

4. A device for detecting the thickness of a construction engineering floor slab according to claim 3, characterized in that: The upper surface of the moving plate (18) is uniformly fixedly connected with a plurality of push blocks (13), and the outer wall side of each push block (13) is provided with a push plate (15).

5. A device for detecting the thickness of a construction engineering floor slab according to claim 4, characterized in that: The inside of the top plate (11) is provided with a sliding groove (14) and a sliding slot (17), and the push block (13) is slidably connected in the inside of the sliding groove (14).

6. A device for detecting the thickness of a construction engineering floor slab according to claim 5, characterized in that: The inside of the sliding groove (14) is slidably connected with the push plate (15).

7. A device for detecting the thickness of a construction engineering floor slab according to claim 6, characterized in that: The upper surface of the push plate (15) is fixedly connected with a clamping plate (16), and the outer wall of the clamping plate (16) is slidably connected in the inside of the sliding slot (17).

Citation Information

Patent Citations

  • Floor thickness detector for supervising constructional engineering

    CN212747733U