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首页> 外文期刊>Open Journal of Composite Materials >3D Nonlinear XFEM Simulation of Delamination in Unidirectional Composite Laminates: A Sensitivity Analysis of Modeling Parameters
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3D Nonlinear XFEM Simulation of Delamination in Unidirectional Composite Laminates: A Sensitivity Analysis of Modeling Parameters

机译:单向复合材料层合板分层的3D非线性XFEM仿真:建模参数的敏感性分析

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This article presents a three-dimensional extended finite element (XFEM) approach for numerical simulation of delamination in unidirectional composites under fracture mode I. A cohesive zone model in front of the crack tip is used to include interface material nonlinearities. To avoid instability during simulations, a critical cohesive zone length is defined such that user-defined XFEM elements are only activated along the crack tip inside this zone. To demonstrate the accuracy of the new approach, XFEM results are compared to a set of benchmark experimental data from the literature as well as conventional FEM, mesh free, and interface element approaches. To evaluate the effect of modeling parameters, a set of sensitivity analyses have also been performed on the penalty stiffness factor, critical cohesive zone length, and mesh size. It has been discussed how the same model can be used for other fracture modes when both opening and contact mechanisms are active.
机译:本文提出了一种三维扩展有限元(XFEM)方法,用于数值模拟I断裂模式I下单向复合材料的分层。裂纹尖端前面的内聚区模型用于包含界面材料非线性。为了避免模拟过程中的不稳定,定义了关键的粘合区域长度,以使用户定义的XFEM元素仅沿该区域内部的裂纹尖端被激活。为了证明新方法的准确性,将XFEM结果与来自文献以及常规FEM,无网格和界面元素方法的一组基准实验数据进行了比较。为了评估建模参数的效果,还对惩罚刚度因子,临界内聚区长度和网格尺寸进行了一组敏感性分析。已经讨论了当打开和接触机制均处于活动状态时,如何将同一模型用于其他断裂模式。

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