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首页> 外文期刊>Computer Methods in Applied Mechanics and Engineering >A 3D h-adaptive local remeshing technique for simulating the initiation and propagation of cracks in ductile materials
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A 3D h-adaptive local remeshing technique for simulating the initiation and propagation of cracks in ductile materials

机译:一种3D h自适应局部重新网格化技术,用于模拟延性材料中裂纹的萌生和扩展

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摘要

AbstractWe propose an h-adaptive 3D FE methodology to represent the initiation and propagation of cracks in ductile materials. Element size is driven by size indicators based on values for the cumulative plastic strain and an appropriate measure of ductile damage. Cracks are represented as locations of all the fully damaged elements which are deleted from the mesh. The mesh is first refined locally with respect to the size map using a 3D bisection technique, and then it is optimized. The size of the loading sequence is adapted to control both the size and the number of the damaged elements to be deleted. We propose a hybrid FEM-Diffuse field transfer procedure devoted to highly localized physical fields (stress, damage, plastic strain). To test its effectiveness, we implemented this new 3D adaptive methodology in an ABAQUS/Explicit® solver, using modified quadratic tetrahedron elements (C3D10M). We provide 3D examples to show how the proposed approach is able to predict the initiation of damage and the propagation of macroscopic cracks inside plastic structures.
机译: 摘要 我们提出了一种具有h适应性的3D FE方法,以表示韧性材料中裂纹的萌生和扩展。单元尺寸由尺寸指示符驱动,该指示符基于累积塑性应变的值和适当的延展性破坏度量。裂缝表示为从网格删除的所有完全损坏的元素的位置。首先使用3D对分技术对尺寸图进行局部优化,然后对其进行优化。加载顺序的大小适用于控制要删除的损坏元素的大小和数量。我们提出了一种混合FEM-扩散场转移程序,该程序专门用于高度局限的物理场(应力,破坏,塑性应变)。为了测试其有效性,我们使用改进的二次四面体元素(C3D10M)在ABAQUS / Explicit ®求解器中实现了这种新的3D自适应方法。我们提供了3D示例,以说明所提出的方法如何能够预测破坏的开始以及塑性结构内部宏观裂纹的扩展。

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