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Ceramic tile hollowing detection equipment

A detection equipment, a technology for empty drum detection, applied in the analysis of solids using sonic/ultrasonic/infrasonic waves, the generation of ultrasonic/sonic/infrasonic waves, instruments, etc. The effect of tapping and detection speed, improving detection efficiency, and reducing manual pressure

Pending Publication Date: 2022-03-04
浙江机电职业技术学院
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

On the contrary, if there is a crisp sound of "咚咚", it means that the wall and floor tiles are not firmly paved and there are hollows.
[0007] Empty drum detection is a rigorous matter that needs to be evenly tapped on the floor and walls. For some projects with a large acceptance area, manual tapping detection is a very time-consuming and laborious task. At the same time, it is directly judged by manual listening. It is easier to get tired, especially for large-scale projects. At the same time, the amplitude and strength of the manual swaying hammer are different, which makes the detection results inaccurate. As a result, the tiles are broken and cannot be accurately detected. At the same time, due to space and site constraints, it is not possible to use large or overweight large equipment to detect the entire wall.

Method used

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  • Ceramic tile hollowing detection equipment
  • Ceramic tile hollowing detection equipment
  • Ceramic tile hollowing detection equipment

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0050] like Figure 1-7 As shown, this embodiment includes a main body of equipment, wherein the main body of the equipment includes a frame body and five hollow detection devices 2 for detecting the center and four corners of ceramic tiles respectively. The frame body includes a central body frame 1 and is arranged on the central body frame 1, And the four booms 3 that can adjust the position, wherein each boom 3 is all arranged on the side of the central body frame 1, and each boom 3 is located on the same horizontal line and is flush with each other, wherein each boom 3 and the central body An empty drum detection device 2 is installed on the frame 1 .

[0051] like Figure 3-5 As shown, the arm frame 3 can be adjusted in length and direction so that the empty drum detection device 2 set on the arm frame 3 can be adjusted to the four corners of the tiles, so as to adapt to tiles of different sizes. The specific arm frame 3 realizes the adjustment The mode of length and di...

Embodiment 2

[0069] The difference between this embodiment and Embodiment 1 is: in this embodiment, the housing 22 is provided with an acoustic sensor near the opening (shown in the figure, fixed on the side wall 221 of the housing 22), and each acoustic sensor is used Collect the sound from the knocking parts 211 knocking on the ceramic tiles in each hollow drum detection device 2, then transmit it to the Internet, and check it through the terminal, where the terminal can be a mobile phone or a computer. In this embodiment Users can not only judge whether there is an empty drum by listening to the sound with their own ears, but also transmit the sound of the knocking on the tiles and the knocking parts 211 on the four corners to the mobile terminal or computer terminal for comparison through its sound sensor. By comparing its corrugation to judge whether there is hollowing.

Embodiment 3

[0071] like Figure 9 As shown, the difference between this embodiment and Embodiment 1 lies in the difference of the hollow drum detection device 2: the hollow drum detection device 2 of this embodiment includes: a shell 22 with an opening, a knocker 211 located in the shell 22 and a A driving device for driving the knocking member 211 to knock the tiles, the driving device includes a spring mechanism connected to the knocking member 211 and used to drive the knocking member 211 to knock the tiles, and is used to control the compression of the spring mechanism to store energy or released control mechanism 23;

[0072] Wherein the control mechanism 23 includes a traction electromagnet 27 fixed in the housing 22; the spring mechanism includes a spring 24 sleeved on the iron core 271 of the traction electromagnet 27, and a clamp fixed on the end of the traction electromagnet 27 iron core 271 Seat 21, the clamping seat 21 is used to clamp the knocker 211; the traction electromag...

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Abstract

The invention discloses ceramic tile detection equipment, which comprises an equipment main body, the equipment main body comprises a frame body and five hollowing detection devices for detecting the center and four corners of a ceramic tile, the frame body comprises a central body frame and four arm frames which are arranged on the central body frame and are adjustable in position, and each arm frame and the central body frame are provided with one hollowing detection device; the hollowing detection device comprises a shell, a knocking piece located in the shell and a driving device used for driving the knocking piece to knock a ceramic tile, and the driving device comprises a spring mechanism connected with the knocking piece and used for driving the knocking piece to knock the ceramic tile and a control mechanism used for controlling the spring mechanism to conduct compression energy storage or release. A controller electrically connected with the control mechanism in each hollowing detection device is further arranged on the central body frame, and the controller is used for controlling the control mechanism to work, so that the five hollowing detection devices knock the ceramic tile in turn. The device can be used in an indoor environment, can reduce the manual pressure, and improves the detection efficiency.

Description

technical field [0001] The invention relates to the technical field of tile hollow detection, in particular to a tile hollow detection equipment. Background technique [0002] Empty drums are caused by the presence of air in the original masonry and powder ash layer. When testing, lightly tap the plaster layer and leveling layer with a hollow hammer or a hard object. It generally refers to the hollowing phenomenon between the floor, wall, and ceiling decoration layer (plastering or pasting bricks) and the structural layer (concrete or brick wall) of a house due to weak pasting and bonding, commonly known as double-layer skin. [0003] The national standard for the hollowing of ceramic tiles is that the hollowing of a single brick should not exceed 20%, and it should not exceed 5% of the total, and there should be no hollowing of ceramic tiles in the center. The hollowing of tiles should be controlled within 5%. The hollowing on the main channel must be reworked. 5% refers t...

Claims

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Application Information

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IPC IPC(8): G01N29/04G01N29/34
CPCG01N29/04G01N29/34G01N2291/0232Y02P40/60
Inventor 顾浩浩姜洋
Owner 浙江机电职业技术学院