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首页> 外文期刊>International Journal for Numerical Methods in Engineering >Numerical simulation of multiple crack growth in brittle materials with adaptive remeshing
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Numerical simulation of multiple crack growth in brittle materials with adaptive remeshing

机译:脆性材料多裂纹扩展的自适应网格数值模拟

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摘要

In this paper, an automated adaptive remeshing procedure is presented for simulation of arbitrary shape crack growth in multiple cracked bodies. The Zienkiewicz-Zhu error estimator is employed in conjunction with the modified superconvergent patch recovery (SPR) technique to obtain more accurate estimation of error. A stability analysis is performed to determine active cracks from a set of competitive cracks. Various crack growth criteria together with the respective crack trajectory prediction are compared. Several numerical examples are illustrated to demonstrate the efficiency, robustness and accuracy of computational algorithm in the simulation of multiple crack growth.
机译:在本文中,提出了一种自动自适应重新网格化程序,用于模拟多个裂纹体中任意形状的裂纹扩展。 Zienkiewicz-Zhu误差估计器与改进的超收敛补丁恢复(SPR)技术结合使用,可以获得更准确的误差估计。进行稳定性分析以从一组竞争性裂缝中确定活动裂缝。比较了各种裂纹扩展标准以及相应的裂纹轨迹预测。举例说明了几个数值例子,以证明在多重裂纹扩展模拟中计算算法的效率,鲁棒性和准确性。

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