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Ceramic tile quality monitoring method, device and system and computer readable storage medium

A technology for quality monitoring and tiles, applied in the fields of devices, tile quality monitoring methods, systems, and computer-readable storage media, can solve problems such as increasing production costs, requiring labor costs for spot checks, and being unable to ensure the overall quality of products, so as to reduce production costs Effect

Pending Publication Date: 2022-05-27
深圳市常青藤节能科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The existing quality inspection method has the defect that real-time online monitoring of all adobes produced cannot be carried out, and the sampling inspection is also a partial inspection of a piece of adobe, which cannot ensure the overall quality of the product
In addition, random inspection requires labor costs, which also increases the production cost of the enterprise to a certain extent.

Method used

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  • Ceramic tile quality monitoring method, device and system and computer readable storage medium
  • Ceramic tile quality monitoring method, device and system and computer readable storage medium
  • Ceramic tile quality monitoring method, device and system and computer readable storage medium

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0077] refer to figure 2 , the first embodiment of the present invention provides a method for monitoring the quality of ceramic tiles, which is applied to the detection of samples to be tested for ceramic tiles moving in an assembly line, including:

[0078] Step S100, obtaining the standard plate data of the calibration template;

[0079] Step S200, according to the preset first sampling coordinate information, obtain the sample-to-be-measured detection data of the tile to-be-measured sample;

[0080] The above, in step S100, before acquiring the standard plate data of the calibration template, if the following information is not preset, a preset step may also be included. The preset information includes the first sampling coordinate information and the brick specification threshold.

[0081] The above-mentioned production process of tile blanks is aimed at the samples of tiles to be tested that are moved in an orderly manner by moving devices such as conveyor belts, trans...

Embodiment 2

[0093] refer to image 3 , the second embodiment of the present invention provides a method for monitoring the quality of ceramic tiles. Based on the above-mentioned Embodiment 1, the step S100, obtaining the standard plate data of the calibration template, includes:

[0094] Step S110, obtaining the upper standard plate distance and the lower standard plate distance according to the first sampling coordinate information, and using the upper standard plate distance and the lower standard plate distance as standard plate data; wherein, the upper standard plate distance The board distance is the distance from the upper plane of the calibration template collected by the first laser ranging sensor; the lower standard board distance is the distance from the lower plane of the calibration template collected by the second laser ranging sensor.

[0095] It should be noted that, in the method for monitoring the quality of ceramic tiles provided in this embodiment, the used system inclu...

Embodiment 3

[0100] refer to Figure 4-5 , this embodiment provides a kind of ceramic tile quality monitoring method, based on the above-mentioned embodiment 2,

[0101] In the step S200, the detection data of the sample to be measured includes: the distance of the upper sample to be measured and the distance of the lower sample to be measured; wherein, the distance of the upper sample to be measured is the distance from the upper sample to the sample collected by the first laser ranging sensor. The distance from the upper plane of the tile to be measured; the distance of the lower sample to be measured is the distance to the lower plane of the tile to be measured, collected by the second laser ranging sensor;

[0102] In addition, based on the above embodiment, the standard plate data includes: the upper standard plate distance and the lower standard plate distance;

[0103] In the step S300, calculating the comprehensive thickness evaluation value according to the standard plate data an...

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Abstract

The invention provides a ceramic tile quality monitoring method, device and system and a computer readable storage medium. According to the method, the quality of a to-be-detected ceramic tile sample moving in an assembly line is detected, and then the thickness of the to-be-detected ceramic tile sample is evaluated, so that the quality of each to-be-detected ceramic tile sample in the assembly line can be automatically evaluated in the production process of the assembly line, and missing detection and error detection existing in manual sampling detection in an existing quality detection method are avoided; and the quality of each product cannot be ensured. According to the method provided by the invention, the detection precision and accuracy are improved, the production cost is reduced, and convenience is brought to the quality inspection work of the tile green bricks.

Description

technical field [0001] The present invention relates to the technical field of ceramic tile production quality inspection, and more particularly, to a ceramic tile quality monitoring method, device, system and computer-readable storage medium. Background technique [0002] Ceramic tile is a kind of acid and alkali-resistant porcelain or stone texture formed by grinding, mixing, pressing, glazing and sintering of various materials such as refractory metal oxides and / or semi-metal oxides. construction or decoration materials. Its raw materials are mostly made of clay, quartz sand, compressed after high temperature, etc., and generally have high hardness. [0003] In the process of ceramic tile production, when the brick press is pressed into block-shaped bricks, affected by the operating conditions and raw material parameters of the brick press, there are different degrees of thickness difference between different batches on the assembly line, even before and after the same b...

Claims

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Application Information

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IPC IPC(8): G06Q10/06G01B11/06G01B11/30
CPCG06Q10/06395G01B11/06G01B11/30
Inventor 白兆金黄韧
Owner 深圳市常青藤节能科技有限公司