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首页> 外文期刊>Theoretical and Applied Fracture Mechanics >A displacement-based and explicit non-planar 3D crack propagation model in the generalized/extended finite element method
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A displacement-based and explicit non-planar 3D crack propagation model in the generalized/extended finite element method

机译:广义/扩展有限元方法中的基于位移和显式非平面3D裂纹传播模型

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The displacement-based methods for the extraction of the Stress Intensity Factors (SIFs) were created decades ago and, since them, they have been used in a wide range of numerical analysis, most of them based on standard 2D Finite Element Method (FEM). Although the accuracy of the SIFs computed by the displacement-based methods generally be inferior compared with the energy release methods, the use of the former methods have been motivated by its simplicity, ease of implementation and low computational cost, even though it may yield less accurate SIFs when compared with the latter methods. A major use of the SIFs is the prediction of the crack path direction in crack propagation analysis. The modelling of crack propagation is the most frequent application of the Generalized Finite Element Method (GFEM) and Extended Finite Element Method (XFEM) and a large number of crack propagation models presented in literature uses energy release methods for SIFs evaluation. Very few works using displacement-based methods for the computation of the SIFs have been published in literature in the context of the GFEM and XFEM. This paper presents a propagation model for an explicit non-planar 3D crack in a GFEM/XFEM background. The proposed model uses the Displacement Correlation Method (DCM) for the SIFs extraction. Some crack propagation problems are investigated and the resultant crack paths are compared with reported results from literature. This work demonstrates that the model here proposed generates very reasonable crack paths even for relatively coarse meshes using linear elements.
机译:几十年前,创建了基于位移的基于压力强度因子(SIFS)的方法,而且它们已在广泛的数值分析中使用,基于标准2D有限元方法(FEM) 。虽然由基于位移的方法计算的SIFS的精度通常与能量释放方法相比较差,但是使用前方法的使用是通过其简单性,易于实现和低计算成本的动机,即使它可能会较少与后一种方法相比,精确的SIFS。 SIFS的主要用途是在裂纹传播分析中预测裂缝路径方向。裂纹传播的建模是最常见的应用于广义有限元方法(GFEM)和扩展有限元方法(XFEM),并且文献中提出的大量裂纹传播模型使用能量释放方法进行SIFS评估。非常少数利用基于位移的方法用于计算SIF的计算已经在GFEM和XFEM的背景下发表在文献中。本文介绍了GFEM / XFEM背景中的明确非平面3D裂缝的传播模型。所提出的模型使用用于SIFS提取的位移相关方法(DCM)。研究了一些裂纹繁殖问题,并将所得裂纹路径与文献的报道结果进行比较。这项工作表明,这里提出的模型即使对于使用线性元件的相对粗糙的网格也会产生非常合理的裂缝路径。

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