Mathematical Model of Embedded Temperature Sensing Fabric Heat Transmission

Journal Title: Fibres and Textiles in Eastern Europe - Year 2016, Vol 24, Issue 5

Abstract

In order to explore effect factors in the measurement of temperature sensing fabric, a heat transmission mathematical model of temperature sensing fabric was established. The concept of surface contact thermal resistance associated with the material thermal conductivity, fabric layer number and yarn linear density between the fabric and sensor was proposed in the model, whose surface contact thermal resistance was produced in the process of fabric heat transmission. Some test samples were woven to prove the rationality of the model. The results demonstrated that the value measured would be influenced by the performances of surface contact thermal resistance, which was consistent with the derivation of the theoretical model. The raw material, fabric layer number and yarn linear density of temperature sensing fabric had a great effect on the measurement value. The correlation coefficient reached more than 0.988 among the experimental and theoretical values, respectively, which proved that the heat transmission mathematical model of temperature sensing fabric could be applied in the research of this fabric.

Authors and Affiliations

Ruquan Zhang , Nanping Deng , Bowen Cheng , Shangyong Zhang , Ying Wu

Keywords

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  • EP ID EP90872
  • DOI 10.5604/12303666.1215531
  • Views 96
  • Downloads 0

How To Cite

Ruquan Zhang, Nanping Deng, Bowen Cheng, Shangyong Zhang, Ying Wu (2016). Mathematical Model of Embedded Temperature Sensing Fabric Heat Transmission. Fibres and Textiles in Eastern Europe, 24(5), 73-79. https://europub.co.uk/articles/-A-90872