Building material thickness detection device

By combining components such as a data processor base and a laser rangefinder, the problem of low efficiency and large errors in traditional manual measurement is solved, enabling efficient and accurate measurement of building material thickness.

CN224051272UActive Publication Date: 2026-03-27QINGDAO AOS CONSTRUCTION TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-17
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

Traditional methods for measuring the thickness of building materials rely on manual operation, which is inefficient and prone to measurement errors.

Method used

By combining components such as a data processor base, laser rangefinder, hydraulic pump rod, and shock-absorbing rubber pads, automated measurement and precise data acquisition are achieved, ensuring accurate alignment of the measuring pointer and reducing errors.

Benefits of technology

It improves the accuracy and stability of building material thickness measurement, reduces human error, and enhances measurement efficiency and operational comfort.

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Abstract

The utility model provides a building material thickness detection device, and relates to the technical field of building material detection, the building material thickness detection device comprises a data processor base and a building material thickness detection assembly, the upper side of the data processor base is provided with a data display, and the inner side of the thickness clamping base is provided with a movable carriage. Movable sliding seats are mounted on the inner sides of the movable sliding frames, sliding clamping plates are welded to the lower sides of the movable sliding seats, a laser range finder is arranged on the right side of the thickness clamping seat base, a laser reflecting plate is arranged in the middle of each movable sliding seat, and the movable sliding seats smoothly move along clamping grooves of the movable sliding frames; it is guaranteed that the measuring pointer is accurately aligned with the thickness detection edge ruler, the stability of the clamping plate clamping frame and the sliding clamping plate is guaranteed, the laser range finder is matched with the laser reflecting plate to emit laser beams, the distance between the laser reflecting plate on the sliding clamping plate and the laser range finder is accurately measured, and real-time feedback is conducted through the data displayer. And the accuracy and reliability of measured data are ensured.
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Description

TECHNICAL FIELD

[0001] The utility model relates to building material detection technical field especially relates to a building material thickness detection device. BACKGROUND

[0002] Building material thickness detection is the process of using specific instruments and methods to accurately measure the thickness of materials or products, which aims to verify whether the materials meet the specified thickness standard and ensure that the performance of the products meets the requirements in use, which is crucial for ensuring the safety, durability and functionality of the products.

[0003] After searching, the case of the publication number "CN218895725U" mentioned "the application discloses a building material thickness detection device, and belongs to the technical field of building materials, and the building material thickness detection device comprises a mounting plate, a threaded rod is rotatably installed on the mounting plate, a sliding plate is threadedly connected to the threaded rod, a pointer is fixedly installed on the side wall of the sliding plate, two limiting blocks are fixedly installed on the mounting plate, a scale is marked on the limiting blocks, a platform is fixedly installed on the mounting plate, a baffle is fixedly arranged on one side of the platform, a plurality of circular grooves one are formed in the bottom surface of the sliding plate and the top surface of the platform, a plurality of ball bearings one are rotatably installed in the circular grooves one, when the ball bearings one on the bottom surface of the sliding plate and the top surface of the platform abut, the pointer corresponds to zero scale, a translation plate is slidably arranged on the platform, a rocker for controlling the lifting of the sliding plate is rotatably arranged on the platform, and the rocker is in transmission connection with the threaded rod", which, when in use, through the limiting groove, when the threaded rod rotates, the limiting groove can limit the sliding plate, so that the sliding plate can only slide up and down in the limiting groove, but in the construction industry, the thickness measurement of materials is a basic and important work, and the traditional thickness measurement method depends on manual operation, and uses a caliper or similar tool to measure, which is not only low in efficiency, but also easy to cause measurement error due to human factors.

[0004] Therefore, we provide a building material thickness detection device to solve the above problems. UTILITY MODEL CONTENTS

[0005] The utility model aims at providing a building material thickness detection device to solve the problems in the above background technology.

[0006] In order to achieve the above object, the utility model provides the following technical scheme: a building material thickness detection device, including data processor base and building material thickness detection component, the building material thickness detection component includes the battery group of installing in the inside of data processor base, the upside of data processor base is equipped with data display, the right side of data processor base is welded with thickness card seat base, the inside of thickness card seat base all is provided with mobile carriage, the inside of mobile carriage all is installed with mobile sliding seat, the downside of mobile sliding seat is welded with sliding card plate, the right side of thickness card seat base is provided with laser range finder, the middle of mobile sliding seat is provided with laser reflector, the upside of mobile sliding seat is installed with hydraulic pump rod, the lower end of right side of thickness card seat base is welded with card plate card frame, the upside of card plate card frame is provided with shock absorbing rubber pad, the left end of front side of sliding card plate is welded with measuring pointer, the front side of thickness card seat base is provided with thickness detection side.

[0007] Preferably, the battery group and the data display are electrically connected, and the data display and the laser range finder form a data analysis structure through the data processor base.

[0008] Preferably, the mobile sliding seat and the mobile carriage are connected through a clamping groove, and the mobile sliding seat and the mobile carriage are equal in size.

[0009] Preferably, the laser range finder and the thickness card seat base are welded, the laser reflector and the sliding card plate are welded, and the laser range finder and the laser reflector are vertically arranged.

[0010] Preferably, the hydraulic pump rod and the mobile sliding seat are welded, the hydraulic pump rod and the mobile carriage are connected through a clamping groove, the hydraulic pump rod is arranged in two groups, and each group is composed of two hydraulic pump rods.

[0011] Preferably, the shock absorbing rubber pad and the card plate card frame are connected through adhesion, and the shock absorbing rubber pad, the card plate card frame and the sliding card plate are arranged in parallel.

[0012] Preferably, the left side of the data processor base is welded with a rubber pad handle, and the rubber pad handle is made of hard rubber.

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

[0014] 1、Data display through data processor base cooperate laser range finder accurate data collection, real-time display measurement results, ensure detection accuracy, while the mobile slide along the mobile slide smooth movement, ensure the measurement pointer accurate alignment thickness detection edge, and ensure the stability of the card board card frame and sliding card board, reduce error, laser range finder cooperate laser reflector emit laser beam, accurate measurement sliding card board on the laser reflector and laser range finder between the distance, and through the data display real-time feedback, ensure the accuracy and reliability of measurement data, improve the overall detection efficiency.

[0015] 2、Hydraulic pump rod by pushing the mobile slide on the mobile slide stable movement, two groups of hydraulic pump rod synchronous action, can ensure the uniform stress of the mobile slide, avoid deviation, ensure the measurement pointer and thickness detection edge accurate alignment, further improve the measurement accuracy and stability, and shock absorbing rubber pad can effectively absorb vibration, reduce the tiny tremor in the measurement process, ensure the smooth running of the card board card frame and sliding card board, further improve the accuracy of measurement data and the stability of the overall detection system, the holder can hold the data processor base through the rubber pad handle, effectively prevent hand slip, improve the operation comfort, ensure that the hand is not easy to fatigue in the long time measurement process, further guarantee the stability and accuracy of the measurement data. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 It is the overall appearance structure schematic view of the utility model;

[0017] Figure 2 It is the overall rear structure schematic view of the utility model;

[0018] Figure 3 It is the building material thickness detection assembly main body structure schematic view of the utility model;

[0019] Figure 4 It is the sliding card board connected parts structure schematic view of the utility model.

[0020] Marked number in the drawing: 1, data processor base; 2, building material thickness detection assembly; 201, battery pack; 202, data display; 203, thickness card seat base; 204, mobile slide; 205, mobile slide; 206, sliding card board; 207, laser range finder; 208, laser reflector; 209, hydraulic pump rod; 210, card board card frame; 211, shock absorbing rubber pad; 212, measurement pointer; 213, thickness detection edge; 3, rubber pad handle. DETAILED DESCRIPTION

[0021] With reference to the drawings of the embodiments of the present application, the technical solutions in the embodiments of the present application will be described clearly and completely. Obviously, the described embodiments are only some of the embodiments of the present application, but not all the embodiments. Based on the embodiments of the present application, all the other embodiments obtained by those skilled in the art without creative labor are within the scope of protection of the present application.

[0022] Please refer to Figures 1-4 The utility model provides a technical scheme: a building material thickness detection device, including data processor base 1 and building material thickness detection component 2, building material thickness detection component 2 includes the battery pack 201 of installation in the inner side of data processor base 1, the upper side of data processor base 1 is equipped with data display 202, the right side of data processor base 1 is welded with thickness card seat base 203, the inner side of thickness card seat base 203 is evenly provided with mobile carriage 204, the inner side of mobile carriage 204 is evenly installed with mobile sliding seat 205, the lower side of mobile sliding seat 205 is welded with sliding card plate 206, the right side of thickness card seat base 203 is provided with laser range finder 207, the middle of mobile sliding seat 205 is provided with laser reflector 208, the upper side of mobile sliding seat 205 is installed with hydraulic pump rod 209, the right side lower end of thickness card seat base 203 is welded with card plate card frame 210, the upper side of card plate card frame 210 is provided with shock absorbing rubber pad 211, the front side left end of sliding card plate 206 is welded with measuring pointer 212, the front side of thickness card seat base 203 is provided with thickness detection side ruler 213.

[0023] Further, the battery pack 201 and the data display 202 are electrically connected, and the data display 202 and the laser range finder 207 form a data analysis structure through the data processor base 1. When needed, the data display 202 cooperates with the laser range finder 207 through the data processor base 1 to accurately collect data and display the measurement results in real time, ensuring the detection accuracy.

[0024] Further, the mobile sliding seat 205 and the mobile carriage 204 are connected through a clamping groove, and the size of the mobile sliding seat 205 and the mobile carriage 204 is equal. When needed, the mobile sliding seat 205 moves smoothly along the clamping groove of the mobile carriage 204, ensuring that the measuring pointer 212 is accurately aligned with the thickness detection side ruler 213 and ensuring the stability of the card plate card frame 210 and the sliding card plate 206, reducing errors.

[0025] Further, the laser range finder 207 is welded with the thickness card seat base 203, and the laser reflection plate 208 is welded with the sliding card plate 206. The laser range finder 207 is vertically arranged corresponding to the laser reflection plate 208. When in use, the laser range finder 207 emits laser beams in cooperation with the laser reflection plate 208 to accurately measure the distance between the laser reflection plate 208 on the sliding card plate 206 and the laser range finder 207, and the measurement data is fed back in real time through the data display 202 to ensure the accuracy and reliability of the measurement data and improve the overall detection efficiency.

[0026] Further, the hydraulic pump rod 209 is welded with the moving sliding seat 205, and the hydraulic pump rod 209 is connected with the moving sliding frame 204 through a clamping groove. The hydraulic pump rod 209 is arranged in two groups, and each group is composed of two hydraulic pump rods 209. When in use, the hydraulic pump rod 209 pushes the moving sliding seat 205 to move smoothly on the moving sliding frame 204. The two groups of hydraulic pump rods 209 work synchronously to ensure the uniform stress of the moving sliding seat 205, avoid deviation, ensure the accurate alignment of the measurement pointer 212 and the thickness detection edge ruler 213, and further improve the measurement accuracy and stability.

[0027] Further, the shock-absorbing rubber pad 211 is adhesively connected with the card holder 210, and the shock-absorbing rubber pad 211 is arranged in parallel with the card holder 210 and the sliding card plate 206. When in use, the shock-absorbing rubber pad 211 can effectively absorb vibration and reduce slight vibration during measurement to ensure the smooth operation of the card holder 210 and the sliding card plate 206, and further improve the accuracy of measurement data and the stability of the overall detection system.

[0028] Further, the data processor base 1 is welded with a rubber grip 3 on the left side. The rubber grip 3 is made of hard rubber. When in use, the holder can hold the data processor base 1 stably through the rubber grip 3 to effectively prevent hand sliding, improve the operation comfort, ensure that the hands are not easily tired during long-time measurement, and further ensure the stability and accuracy of the measurement data.

[0029] Working principle: a building material thickness detection device is moved to the working position, in use, first, the user holds the rubber pad handle 3, the card board card frame 210 is placed to the back side of the building material to be measured, such as plate and other materials, the shock absorbing rubber pad 211 provides buffer support, second, the worker controls the hydraulic pump rod 209, pushes the moving slide 205 to move along the moving slide 204 in the thickness card seat base 203, so that the sliding card plate 206 and the shock absorbing rubber pad 211 tightly clamp the plate with the thickness to be detected, third, the laser range finder 207 emits a laser beam, the distance between the precise laser reflection plate 208 and the range finder is accurately measured, and the data is displayed in real time through the data display 202, ensuring the accuracy of the measurement result, and in this way, the worker can manually measure the material thickness by observing the position of the measurement pointer 212 to the thickness detection edge 213, fourth, the data processor base 1 is provided with a microprocessor, which rapidly calculates and stores the measurement data, and displays the data through the data display 202, and the battery pack 201 provides electric energy, so that the use process of the building material thickness detection device is completed.

[0030] Although the embodiments of the present application have been shown and described, it should be understood by those skilled in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present application, and the scope of the present application is defined by the appended claims and their equivalents.

Claims

1. A building material thickness detection apparatus comprising a data processor base (1) and a building material thickness detection assembly (2), characterized in that: The building material thickness detection component (2) includes a battery pack (201) mounted on the inside of the data processor base (1), a data display (202) is mounted on the upper side of the data processor base (1), a thickness card seat base (203) is welded on the right side of the data processor base (1), the inside of the thickness card seat base (203) is provided with a moving carriage (204), the inside of the moving carriage (204) is provided with a moving slide (205), the lower side of the moving slide (205) is welded with a sliding card plate (206), the right side of the thickness card seat base (203) is provided with a laser range finder (207), the middle of the moving slide (205) is provided with a laser reflector plate (208), the upper side of the moving slide (205) is provided with a hydraulic pump rod (209), the lower end of the right side of the thickness card seat base (203) is welded with a card plate card holder (210), the upper side of the card plate card holder (210) is provided with a shock absorbing rubber pad (211), the front left end of the sliding card plate (206) is welded with a measuring pointer (212), and the front side of the thickness card seat base (203) is provided with a thickness detection edge ruler (213).

2. The building material thickness detection device according to claim 1, wherein The battery pack (201) and the data display (202) are electrically connected, and the data display (202) and the laser range finder (207) form a data analysis structure through the data processor base (1).

3. The apparatus for detecting the thickness of a building material according to claim 1, wherein The moving slide (205) and the moving carriage (204) are connected through the clamping groove, and the size of the moving slide (205) and the moving carriage (204) is equal.

4. The apparatus for detecting the thickness of a building material according to claim 1, wherein The laser range finder (207) and the thickness card seat base (203) are welded, the laser reflector plate (208) and the sliding card plate (206) are welded, and the laser range finder (207) and the laser reflector plate (208) are vertically arranged.

5. The apparatus for detecting the thickness of a building material according to claim 1, wherein The hydraulic pump rod (209) and the moving slide (205) are welded, the hydraulic pump rod (209) and the moving carriage (204) are connected through the clamping groove, and the hydraulic pump rod (209) is arranged in two groups, and each group is composed of two hydraulic pump rods (209).

6. The apparatus for detecting the thickness of a building material according to claim 1, wherein The shock absorbing rubber pad (211) and the card plate card holder (210) are connected through the adhesive connection, and the shock absorbing rubber pad (211), the card plate card holder (210) and the sliding card plate (206) are arranged in parallel.

7. The apparatus for detecting the thickness of a building material according to claim 1, wherein The left side of the data processor base (1) is welded with a rubber pad handle (3), and the rubber pad handle (3) is made of hard rubber material.

Citation Information

Patent Citations

  • Building material thickness detection device

    CN218895725U