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Numerical simulation of dynamic fracture in functionally graded materials using peridynamic modeling with composite weighted bonds

机译:用复合加权键使用白动力学建模功能梯度材料动态骨折的数值模拟

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摘要

In this paper, the peridynamic (PD) method with the composite weighted bond for functionally graded materials (FGMs) was proposed. The cracks propagation in FGMs under dynamic loading was analyzed. Both uniform refinement grid (m-convergence) and decreasing radius of PD horizon (6-convergence) of FGMs with double pre-crack were given. The effects of the micromodulus functions and material gradient form on the crack propagation were discussed, and it was found that the micromodulus function's effect on the crack propagation pattern was limited, while the effect of the gradient form of FGMs is existed. The numerical results show that there is almost no difference between the proposed composite weighted bond model and the previous model for FGMs with single pre-crack. By comparing the numerical results of the proposed model with the results from the experiment, the present PD model for FGMs is valid and effective.
机译:在本文中,提出了具有用于功能梯度材料(FGM)的复合加权键(FGMS)的白动力学(Pd)方法。分析了动态载荷下FGMS中的裂缝繁殖。给出了具有双预裂纹的FGM的均匀细化栅格(M-Convergence)和PD地平线(6-收敛)的降低。讨论了微映像功能和材料梯度形式对裂缝繁殖的影响,发现微沸功能对裂纹传播模式的影响是有限的,而梯度形式的FGMS的效果存在。数值结果表明,所提出的复合加权粘合模型与具有单一预裂纹的FGM的先前模型几乎没有差异。通过将所提出的模型的数值结果与实验结果进行比较,FGM的本发明的PD模型有效且有效。

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