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A new constitutive model to predict effective elastic properties of plain weave fabric composites

机译:一种新的本结构型模型,以预测平纹织物复合材料的有效弹性性能

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摘要

In this study, a new constitutive model has been developed to predict the elastic behavior of plain weave textile composites, using the finite element (FE) method. The geometric conditions and basic assumptions of this model are based on the basics of a continuum theory developed for the plane curved composites. In this model, the mechanical properties of the weave region and pure matrix region is calculated separately and then imported for the FE analysis. This new constitutive model is used to implement the mechanical properties of weave region in the representative volume element (RVE). The constitutive relations are implemented as user-material subroutine code (UMAT) in ABAQUS (R) FE software. The results of FE analysis have been compared with experimental results and other data available in the literature. These comparisons confirmed the capability of the presented model for the prediction of effective elastic properties of plain weave fabric composites.
机译:在该研究中,已经开发了一种新的本结构型模型来预测使用有限元(Fe)方法的平纹织物复合材料的弹性行为。 该模型的几何条件和基本假设基于为平面弯曲复合材料开发的连续性理论的基础知识。 在该模型中,单独计算织物区域和纯基质区域的机械性能,然后对Fe分析进行进口。 该新的本构模型用于实现代表体积元件(RVE)中的编织区域的机械性能。 本构关系是在ABAQUS(R)FE软件中的用户材料子程序代码(UMAT)实现。 将Fe分析结果与文献中可用的实验结果和其他数据进行了比较。 这些比较证实了所提出的模型用于预测普通织物复合材料的有效弹性特性的模型。

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