基于自适应扩展有限元的裂纹扩展分析方法

Mechanics Pub Date : 2024-02-23 DOI:10.5755/j02.mech.33301
Guizhong Xie, Chongmao Zhao, Hao Li, Jun Liu, Yudong Zhong, Wenliao Du, Jiahe Lv, Chao Wu
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摘要

本文提出了一种基于自适应扩展有限元的裂纹扩展分析方法。该方法结合了自适应网格重建技术和扩展有限元法(XFEM)。首先,利用网格生成软件将工程结构模型离散化,并划分初始网格。其次,构建 XFEM 模型,并引入裂纹尖端强化函数来描述裂纹尖端的物理场特性。通过积分方程求解得到裂纹尖端参数。然后,建立自适应网格重构技术,通过对裂纹尖端的误差估计来细化裂纹尖端区域的网格。最后,利用相互作用积分计算出裂纹尖端的 SIF,并利用最大圆周拉应力准则确定裂纹生长的路径方向。因此,可以很好地追踪裂纹的扩展路径。
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An adaptive extended finite element based crack propagation analysis method
In this paper, a method of crack propagation analysis based on adaptive extension finite element is proposed. This method combines adaptive mesh reconstruction technology with extended finite element method (XFEM). Firstly, the model of engineering structure is discretized with the help of mesh generation software, and the initial mesh is divided. Secondly, Construction of XFEM model, and the tip of crack strengthening function is introduced to describe the physical field properties of the crack tip. The integral equation is solved to obtain the crack tip parameters. Then, the adaptive mesh reconstruction technology is built to refine the mesh of crack tip area through the error estimation of crack tip. Finally, the SIFs at the crack tip were calculated using the interaction integral, and the path direction of crack growth was determined using the maximum circumferential tensile stress criterion. Thus, the propagation path can be well traced.
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