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Comparative modelling of crack propagation in elastic–plastic materials using the meshfree local radial basis point interpolation method and eXtended finite-element method

机译:使用无网格局部径向基点插值法和扩展有限元法对弹塑性材料中裂纹扩展进行比较建模

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摘要

The modelling and understanding of crack propagation for elastic–plastic materials is critical in various engineering applications, such as safety analysis of concrete structures and stability analysis of rock slopes. In this paper, the local radial basis point interpolation method (LRPIM) combined with elastic–plastic theory and fracture mechanics is employed to analyse crack propagation in elastic–plastic materials. Crack propagation in elastic–plastic materials is compared using the LRPIM and eXtended finite-element method (XFEM). The comparative investigation indicates that: (i) the LRPIM results are close to the model test results, which indicates that it is feasible for analysing the crack growth of elastic–plastic materials; (ii) compared with the LRPIM, the XFEM results are closer to the experimental results, showing that the XFEM has higher accuracy and computational efficiency; and (iii) compared with the XFEM, when the LRPIM method is used to analyse crack propagation, the propagation path is not smooth enough, which can be explained as the crack tip stress and strain not being accurate enough and still needing further improvement.
机译:弹塑性材料的裂纹扩展的建模和理解在各种工程应用中至关重要,例如混凝土结构的安全性分析和岩质边坡的稳定性分析。本文采用局部径向基点插值法(LRPIM),结合弹塑性理论和断裂力学,分析弹塑性材料中的裂纹扩展。使用LRPIM和扩展有限元方法(XFEM)比较了弹塑性材料中的裂纹扩展。对比研究表明:(i)LRPIM结果与模型试验结果相近,这表明分析弹塑性材料的裂纹扩展是可行的; (ii)与LRPIM相比,XFEM结果更接近实验结果,表明XFEM具有更高的精度和计算效率; (iii)与XFEM相比,当使用LRPIM方法分析裂纹扩展时,传播路径不够平滑,这可以解释为裂纹尖端的应力和应变不够精确,仍需要进一步改进。

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