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Multi-scale approach based constitutive modelling of plain woven textile composites

机译:基于多尺度方法的平纹纺织复合材料本构模型

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摘要

A detailed study on micromechanical constitutive modelling of unidirectional fiber reinforced and plain woven textile composites (PWTC) is performed. The primary objective is to compute the equivalent homogenized effective properties of PWTC through its mesoscale model. A novel parallel-series model is proposed, to compute the engineering constants in transverse plane of unidirectional composite, and validated against Chamis approaches, Mori-Tanaka and finite element method results for glass/epoxy composite. Computational homogenization of representative volume element (RVE) of transverse direction unidirectional composite is performed satisfying the periodicity of RVE. The RVE of PWTC is then approximated as cross-ply laminate consisting warp and fill plies, whose averaged properties are computed considering fiber undulations by micromechanics-based models. The bounds of the effective material properties of PWTC are determined employing Voigt and Reuss approximation. The effective engineering constants of glass/epoxy PWTC computed are compared with in-house experiments and found to be closely matching with Voigt model. (C) 2017 Elsevier Ltd. All rights reserved.
机译:对单向纤维增强和平纹纺织复合材料(PWTC)的微机械本构模型进行了详细研究。主要目的是通过中尺度模型计算PWTC的等效均质有效特性。提出了一种新颖的平行系列模型,用于计算单向复合材料横向平面上的工程常数,并针对Chamis方法,Mori-Tanaka方法和玻璃/环氧树脂复合材料的有限元方法结果进行了验证。满足RVE的周期性,进行横向单向复合材料的代表性体积元素(RVE)的计算均质化。然后,将PWTC的RVE近似为由经纱和纬纱组成的交叉层压材料,其平均性能是通过基于微力学的模型考虑纤维起伏来计算的。使用Voigt和Reuss逼近确定PWTC的有效材料属性的界限。将玻璃/环氧树脂PWTC的有效工程常数与室内实验进行了比较,发现与Voigt模型非常匹配。 (C)2017 Elsevier Ltd.保留所有权利。

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