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Device and method for testing fabric contact coldness

The technology of a testing device and a testing method, which is applied in the field of textile engineering, can solve problems such as high technical requirements, high use and maintenance costs, and expensive testing equipment, and achieve the effects of convenient use, low manufacturing cost, and improved testing accuracy

Active Publication Date: 2012-05-23
烟台明远创意生活科技股份有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The traditional evaluation method is to use the precise and rapid thermal physical property measuring device KES-F7 developed by Kawabata, Japan, to evaluate the warm and cold feeling of the fabric by testing the maximum transient heat flow Qmax, but the test equipment is expensive, the technical requirements are high, and the use and maintenance costs are high.

Method used

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  • Device and method for testing fabric contact coldness
  • Device and method for testing fabric contact coldness
  • Device and method for testing fabric contact coldness

Examples

Experimental program
Comparison scheme
Effect test

specific Embodiment

[0048] Use the above test methods to test the temperature of the surface of the three kinds of fabrics with time. The maximum value of the temperature rise rate of the fabric surface is obtained, and the cold feeling of the fabric is evaluated.

[0049] Table 1 The average value of the surface temperature of three kinds of fabrics per second (℃)

[0050] Table 1

[0051] time (seconds)

cotton fabric

silk fabric

woolen fabric

0

24.925

25.097

25.030

1

25.035

26.369

25.841

2

26.083

28.148

27.223

3

27.425

29.481

28.307

4

28.432

30.384

29.290

5

29.203

31.085

29.947

6

29.825

31.563

30.484

7

30.366

32.005

30.927

8

30.742

32.286

31.309

9

31.085

32.518

31.568

10

31.339

32.679

...

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Abstract

The invention relates to a device and a method for testing fabric contact coldness, and belongs to the field of textile engineering. The testing device consists of an outer cover, a test board, a sink, a fabric splint, a fabric surface temperature sensor and the like. The testing device of the invention has the advantages of reasonable structure, convenient use, small volume, low manufacturing cost and large-scale industrialized production; and the testing device adopts a platinum resistor with good stability and high precision as the temperature sensor, so the testing precision is improved. A cover hood made of an insulating material is arranged above a test platform so as to reduce the influence of the ambient environment on the test, reduce the heat loss caused by heat radiation of thefabric and improve the testing reliability. The testing device and the testing method of the invention overcome the defects of high technical requirement and high testing cost when testing the maximum transient heat flow Qmax of the fabric by the conventional method to evaluate the coldness of the fabric. The device and the method of the invention for testing the fabric contact coldness can be used in the field of contact coldness evaluation for the fabric.

Description

technical field [0001] The invention relates to a fabric contact cold feeling test device and a test method, which belong to the field of textile engineering. Background technique [0002] Along with the raising of living standard, the comfort of clothing is subject to people's great concern. The heat transfer performance of fabric is an important factor affecting the thermal comfort of clothing. The thermal comfort of clothing refers to the heat transfer function of fabrics, so that the human body can obtain a comfortable and satisfactory feeling in a changing environment. After the human body wears clothes, there is always an energy exchange between the body and the environment. The comfort of the human body depends on the balance of energy exchange between the heat generated by the human body itself and the heat emitted to the environment. Clothing made of fabric plays a regulating role in the process of energy exchange through heat transfer. A set of objective indicat...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): D06H3/10G01N25/20
Inventor 张如全
Owner 烟台明远创意生活科技股份有限公司
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