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Crack propagation with the extended finite element method and a hybrid explicit-implicit crack description

机译:扩展有限元方法和混合显式-隐式裂纹描述的裂纹扩展

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摘要

A method for two-dimensional and three-dimensional crack propagation that combines the advantages of explicit and implicit crack descriptions is presented. An implicit description in the frame of the level set method is advantageous for the simulation within the extended finite element method (XFEM). The XFEM has proven its potential in fracture mechanics as it provides accurate solutions without any remeshing during the crack simulation. On the other hand, an explicit representation of the crack, for example, by means of a polyhedron, enables a simple update of the crack during the propagation. A key aspect in the proposed method is the introduction of three level set functions that are computed exactly from the explicit representation. These functions imply a coordinate system at the crack front and serve as a basis for the enrichment. Furthermore, a simple model for the crack propagation is presented. One of the biggest achievements of the proposed method is that two-dimensional and three-dimensional crack simulations are treated in a consistent manner. That is, the extension from two to three dimensions is truly straightforward.
机译:提出了一种结合了显式和隐式裂纹描述优点的二维和三维裂纹扩展方法。水平集方法的框架中的隐式描述对于扩展有限元方法(XFEM)中的仿真是有利的。 XFEM已经证明了其在断裂力学中的潜力,因为它可以提供精确的解决方案,而无需在裂纹模拟过程中进行任何重新划分。另一方面,例如通过多面体的裂纹的明确表示使得能够在传播期间简单地更新裂纹。所提出的方法的一个关键方面是引入了三个由显式表示精确计算的水平集函数。这些功能意味着在裂纹前沿具有坐标系,并作为富集的基础。此外,提出了一种简单的裂纹扩展模型。提出的方法的最大成就之一是对二维和三维裂纹模拟的处理方式是一致的。也就是说,从二维扩展到三个维度确实非常简单。

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