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Modelling the shear-tension coupling of woven engineering fabrics

机译:编织工程织物的剪切 - 张力耦合建模

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摘要

An approach to incorporate the coupling between the shear compliance and in-plane tension of woven engineering fabrics, in finite-element-based numerical simulations, is described. The method involves the use of multiple input curves that are selectively fed into a hypoelastic constitutive model that has been developed previously for engineering fabrics. The selection process is controlled by the current value of the in-plane strain along the two fibre directions using a simple algorithm. Model parameters are determined from actual experimental data, measured using the Biaxial Bias Extension test. An iterative process involving finite element simulations of the experimental test is used to normalise the test data for use in the code. Finally, the effectiveness of the method is evaluated and shown to provide qualitatively good predictions.
机译:描述了一种在基于有限元的数值模拟中纳入机织工程织物的剪切柔度和面内张力之间的耦合的方法。该方法涉及使用多个输入曲线,这些输入曲线被有选择地输入到先前为工程织物开发的次弹性本构模型中。使用简单算法,通过沿两个光纤方向的面内应变的当前值控制选择过程。模型参数是根据实际实验数据确定的,并使用双轴偏置扩展测试进行了测量。涉及实验测试的有限元模拟的迭代过程用于对代码中使用的测试数据进行规范化。最后,对该方法的有效性进行了评估并显示出可以提供定性良好的预测。

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