Automated model generation of knitted fabric for thermal conductivity prediction using finite element analysis and its applications in composites

热导率 材料科学 复合材料 有限元法 热的 纱线 复合数 热传导 机械工程 结构工程 工程类 物理 气象学
作者
Muhammad Owais Raza Siddiqui,Danmei Sun
出处
期刊:Journal of Industrial Textiles [SAGE]
卷期号:45 (5): 1038-1061 被引量:13
标识
DOI:10.1177/1528083714551440
摘要

Thermal property of clothing has significant impact on thermal comfort of the wearers. In an extreme working condition body releases a lot of heat and sweat, in order to keep the body dry and at normal temperature these heat and sweat should be released in the environment. The thermal comfort of the fabrics mainly depends on how well it transmits heat and moisture to the environment. In this work finite element models have been developed to predict the thermal conductivity of plain weft knitted fabrics. Fabrics with different stitch density and yarn count were used in this work. A unit cell model of the fabrics was developed by using the actual geometrical parameters. Material orientation of the yarn was used for assigning the thermal conductivity of each element in the yarn. Boundary conditions were applied on unit cell of the fabrics for the determination of thermal conductivity. The geometrical models of the fabrics were generated by a plug-in which was developed in Abaqus/computer aided engineering using Python script. It has been found that thermal conductivity between the predicted results obtained from finite element analysis and experimental results from an in-house developed device is highly correlated. Furthermore, the application of geometrical model in different areas has been discussed, and technique is developed for the prediction of effective thermal conductivity of plain weft knitted composite fabric.
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