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A Rate Dependent Constitutive Model for Glass-Fibre / Epoxy-Matrix Woven Fabrics

机译:玻璃纤维/环氧基质机织织物的速率相关本构模型

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摘要

This paper deals with the modelling until rupture of composite structures made of glass-fibre / epoxy-resin woven fabrics submitted to dynamic loadings. The model is built at the mesoscale of the elementary ply. It takes into account the slightly nonlinear brittle behaviour of the fibres under tensile sollicitations, their nonlinear behaviour in compression as well as the strongly non linear and irreversible behaviour of the ply in shear. Strain rate effects are also introduced and special attention is paid to the objectivity of the model in the context of finite element calculation. Therefore the choice of a delayed damage mesomodel coupled with viscoplasticity is made. In order to identify the values of the parameters of the model, an optimization procedure based on a gradient-free direct search method has been developed. As a logical proceeding to this study, the model ability to avoid strain localization and mesh dependence is then checked on simple uniaxial examples. The last part of this paper is devoted to structural calculation. The results of the simulations of both the impact on composite plate and the crushing of thin-walled tube demonstrate the capability of the model to reproduce observed physical phenomena.
机译:本文研究了承受动态载荷的玻璃纤维/环氧树脂机织织物制成的复合结构破裂之前的建模。该模型以基本层的中尺度构建。它考虑了拉伸拉伸作用下纤维的轻微非线性脆性,压缩时的非线性行为以及层在剪切中的强非线性和不可逆行为。还介绍了应变率效应,并在有限元计算的上下文中特别注意了模型的客观性。因此,选择了延迟损伤的介观模型和粘塑性。为了识别模型参数的值,已经开发了基于无梯度直接搜索方法的优化程序。作为此研究的逻辑上的进展,然后在简单的单轴示例中检查了模型避免应变局部化和网格依赖性的能力。本文的最后一部分致力于结构计算。对复合板的冲击和薄壁管的破碎的仿真结果表明,该模型具有再现观察到的物理现象的能力。

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