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Simple and effective approach to modeling crack propagation in the framework of extended finite element method

机译:延伸有限元法框架框架中建模裂纹传播的简单有效方法

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摘要

In this study, the extended finite element method (XFEM) coupled with the hierarchical mesh adaptation method and direct method is developed to model crack propagation. First, we observe that crack tip stresses can be approximated with high accuracy by using the stress intensity factor (SIF) terms and T-stress term within 0.1% of the crack length away from the crack tip, without considering other high order terms of the crack-tip stresses. Next, based on the XFEM, the hierarchical mesh adaptation method is developed to obtain the stresses around the location which is very close to the crack tip. Then, the SIFs are derived directly from the crack-tip stresses based on the least square fitting without considering the special algorithms and procedures. Finally, the numerical results reveal that the proposed method can obtain SIFs accurately and it can predict a better crack trajectory for crack simulation. In addition, the proposed method has the advantage over the J-integral method and it is benefit for the simulation of large-scale engineering problems.
机译:在该研究中,开发了与分层网格适配方法和直接方法耦合的扩展有限元方法(XFEM)以模拟裂纹传播。首先,我们观察到,通过使用远离裂纹尖端的裂缝长度的0.1%的裂缝长度在0.1%内的应力强度因子(SIF)术语和T应应力术率,裂纹尖应力可以高精度地近似。裂纹尖端应力。接下来,基于XFEM,开发了分层网格适配方法以获得非常接近裂纹尖端的位置周围的应力。然后,在不考虑特殊算法和程序的情况下,基于最小二乘拟合,SIFS直接从裂纹尖端应力导出。最后,数值结果表明,所提出的方法可以准确地获得SIFS,并且它可以预测用于裂纹模拟的更好的裂缝轨迹。此外,该方法的优点在于J-积分方法,有利于模拟大规模工程问题。

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