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Impact of the textile substrate on the heat transfer of a textile heat flux sensor

机译:纺织品基材对纺织品热通量传感器传热的影响

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摘要

This study presents the effect of a woven fabric's material, i.e. polyester (PES), 70/30 polyester/cotton (PES/CO) blend, and its structure, i.e. plain, twill, satin, on the heat and mass transfer properties with regard to development of a textile heat flux sensor. The main purpose of this study is the identification of the most appropriate textile substrates to produce a textile sensor. The basic textile substrate properties such as weight, thickness, air permeability and porosity were tested. Additionally, the thermal resistance of six different textile substrates was tested using the Skin Model and the water vapor transmission properties were compared according to the Dish Method. Due to their insulating properties and particular fabric pattern, PES/CO fabric with twill and satin structures, and PES fabric with a satin structure are the preferred fabrics for textile substrates. The woven textile heat flux sensor production process, which is based on thermo-electrical effect, i.e. Seebeck effect, and the test method were described. Six sensors were produced with three different textile substrates and two different sizes. Their heat flux performances were compared with a commercial reference heat flux sensor. Results showed that under steady-state the textile heat flux sensors demonstrated the same trend and sensitivity as their commercial counterparts. Due to their higher sensibilities, PES/CO sensors with a satin structure were chosen from the six textile heat flux sensors for both small and large sizes. (C) 2015 Elsevier B.V. All rights reserved.
机译:这项研究提出了机织物的材料(例如聚酯(PES),70/30聚酯/棉(PES / CO)混合物)及其结构(例如平纹,斜纹,缎纹)对传热和传质的影响。开发纺织品热通量传感器。这项研究的主要目的是确定生产纺织品传感器的最合适的纺织品基材。测试了纺织品的基本基材性能,例如重量,厚度,透气性和孔隙率。此外,使用“皮肤模型”测试了六种不同纺织品基材的热阻,并根据“碟法”(Dish Method)比较了水蒸气的传输特性。由于它们的绝缘性能和特定的织物图案,具有斜纹和缎纹结构的PES / CO织物以及具有缎纹结构的PES织物是用于纺织基材的首选织物。描述了基于热电效应即塞贝克效应的机织织物热通量传感器的生产过程以及测试方法。生产了六个传感器,它们具有三种不同的纺织品基材和两种不同的尺寸。他们的热通量性能与商业参考热通量传感器进行了比较。结果表明,在稳态下,纺织品热通量传感器显示出与商业同类产品相同的趋势和灵敏度。由于具有较高的灵敏度,因此从六个纺织热通量传感器中选择了具有缎纹结构的PES / CO传感器,无论大小均适用。 (C)2015 Elsevier B.V.保留所有权利。

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