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Sample limit folding device and detection method for in-situ detection of fabric wrinkle recovery

A technology of wrinkle recovery and in-situ detection, which is applied in the direction of measuring devices, mechanical devices, instruments, etc., can solve the problems of low accuracy of detection results, waste of manpower, and inability to meet the needs of large-scale sample detection, so as to improve detection Efficiency and accuracy, the effect of saving manpower waste

Active Publication Date: 2022-08-09
JIANGNAN UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

These traditional methods have shortcomings such as low accuracy, poor precision, and strong subjectivity of test results.
In addition, the entire fabric wrinkle recovery angle detection process requires the full participation of testing personnel, which is a waste of manpower and cannot meet the testing needs of large batches of samples.

Method used

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  • Sample limit folding device and detection method for in-situ detection of fabric wrinkle recovery
  • Sample limit folding device and detection method for in-situ detection of fabric wrinkle recovery
  • Sample limit folding device and detection method for in-situ detection of fabric wrinkle recovery

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Embodiment Construction

[0030] In order to make the objectives, technical solutions and advantages of the present invention clearer, the present invention will be further described in detail below with reference to the accompanying drawings and technical solutions.

[0031] A sample limit folding device for in-situ detection of fabric wrinkle recovery, comprising a folding structure and an adsorption structure;

[0032] The folding structure includes a primary air cylinder 7 , a secondary air cylinder 8 , a linear slide rail 6 , a sample limiting plate 12 , a gasket 2 , a gasket cylinder 1 , and an electromagnet 3 .

[0033] The primary cylinder 7 is connected to the secondary cylinder 8, the lower end of the secondary cylinder 8 is connected to the upper part of the linear slide 6, and the right side of the secondary cylinder 8 is connected to the left pressing plate 9, which can make the left pressing plate 9 to the right. Advance or left to remove.

[0034] The right pressing plate 10 , the sampl...

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Abstract

The invention belongs to the field of textile performance detection, in particular to a sample limit folding device and a detection method for in-situ detection of fabric wrinkle recovery. The device includes a folding structure and an adsorption structure. The folding structure is composed of a primary cylinder, a secondary cylinder, a linear slide, a sample limit plate, a gasket, a gasket cylinder, and an electromagnet. The adsorption structure is composed of a vacuum nozzle and a vacuum adsorption cylinder. One side of the sample is adsorbed on the device by the vacuum port in the right platen. The electromagnet tightly fits the gasket and the right platen to one end of the fixed sample. The left pressing plate is pushed to the right or removed to the left by the left first-stage cylinder and the second-stage cylinder on the linear slide rail to realize the pressing and unfolding of the sample. The invention realizes the whole process of non-contact folding of the sample, which can improve the objectivity and objectivity of the detection result, and the automatic machine detection process improves the detection efficiency and accuracy.

Description

technical field [0001] The invention belongs to the field of textile performance detection, in particular to a sample limit folding device and a detection method for in-situ detection of fabric wrinkle recovery. Background technique [0002] At present, the wrinkle recovery angle of the main fabrics is mainly measured manually by Shirley, SDL-M003 and other wrinkle recovery angle testers. These methods all need to manually fold the sample, then use a pressure device to press the sample, and finally transfer the sample. The wrinkle recovery angle was read by manual visual inspection in the angle reading instrument. These traditional methods have shortcomings such as low accuracy of detection results, poor precision, and strong subjectivity. In addition, the whole process of fabric wrinkle recovery angle detection requires the participation of the testing personnel in the whole process, which is a waste of manpower and cannot meet the testing needs of large batches of samples...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G01N19/00G01B21/22
CPCG01N19/00G01B21/22
Inventor 王蕾唐千惠潘如如高卫东
Owner JIANGNAN UNIV