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首页> 外文期刊>The Journal of the Textile Institute >A finite element approach to the modelling of fabric mechanics and its application to virtual fabric design and testing
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A finite element approach to the modelling of fabric mechanics and its application to virtual fabric design and testing

机译:织物力学建模的有限元方法及其在虚拟织物设计和测试中的应用

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摘要

This work presents a detailed finite element approach for textile fabrics for mechanical analysis and simulation by combining yarn properties, inter-yarn interaction and fabric structures. The fabric geometries are generated using the TexGen geometric modelling schema developed at the University of Nottingham. This geometric model of the fabric is interfaced with a mechanics modelling environment, ABAQUS, to predict its mechanical properties. The major advantages over other approaches are that all issues arising from textile mechanics modelling are considered, physically measured data are used as inputs and the traditional requirement of user intervention during model creation is removed. The developed model and its implementation are validated using the Kawabata Evaluation System for Fabrics on commercial fabrics subjected to variety of external loadings. The presented validation shows good agreement between the simulations utilising the finite element model and the experiments. The modelling approach is used as a virtual fabric design/testing system which allows designers to input yarn details and geometric fabric structures and to predict how the performance of the fabric depends on textile structures and basic material properties. The virtual testing shows that fabric mechanical performance depends in a complex way on structural parameters, geometric data and loading conditions due to the interaction between various deformation mechanisms. The virtual testing also shows that the bending and shear properties are very sensitive to the cross-sectional shape of the yarns, which need to be modelled accordingly in order to obtain good mechanical predictions.
机译:这项工作通过结合纱线特性,纱线间相互作用和织物结构,为纺织品进行机械分析和模拟提出了一种详细的有限元方法。织物几何形状是使用由诺丁汉大学开发的TexGen几何建模方案生成的。织物的这种几何模型与力学建模环境ABAQUS交互作用,以预测其力学性能。与其他方法相比的主要优点是,考虑了由纺织力学建模引起的所有问题,将物理测量数据用作输入,并且消除了模型创建过程中传统的用户干预要求。使用Kawabata织物评估系统对承受各种外部负载的商用织物进行验证,可以验证所开发的模型及其实现。所提出的验证表明,利用有限元模型进行的仿真与实验之间具有良好的一致性。建模方法用作虚拟织物设计/测试系统,允许设计人员输入纱线详细信息和几​​何织物结构,并预测织物的性能如何取决于纺织品结构和基本材料特性。虚拟测试表明,由于各种变形机制之间的相互作用,织物的机械性能在很大程度上取决于结构参数,几何数据和加载条件。虚拟测试还表明,弯曲和剪切特性对纱线的横截面形状非常敏感,需要对它们进行建模,以便获得良好的机械预测。

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