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MIXED-MODE CRACK PROPAGATION IN FUNCTIONALLY GRADED MATERIALS

机译:功能分级材料中的混合模式裂纹传播

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Increasing performance demand in a variety of applications of functionally graded materials makes the fracture behavior of such materials very important for assessing and enhancing the structural integrity. This paper briefly reviews previous works on FGMs and mainly focuses on mixed-mode crack growth in FGMs. In this paper, automatic simulation of crack propagation in functionally graded materials is performed by means of a remeshing algorithm in conjunction with the finite element method. The crack propagation is performed under mixed-mode loading. Each step of crack growth simulation consists of the calculation of the mixed-mode stress intensity factors by means of a novel formulation, so-called non-equilibrium formulation, of the interaction integral method, determination of the crack growth direction based on a specific fracture criterion, and local automatic remeshing along the crack path. A specific fracture criterion is tailored for FGMs based on the assumption of local homogenization of asymptotic crack-tip fields in FGMs. The present approach uses a user-defined crack increment at the beginning of the simulation. Crack trajectories obtained by the present numerical simulation are compared with available experimental results. The present work provides a basis for further investigation on cracked FGMs under thermo-mechanical loadings.
机译:在功能梯度材料各种应用中提高性能需求使得这些材料的断裂行为对于评估和提高结构完整性非常重要。本文简要介绍了以前的FGMS作品,主要侧重于FGMS中的混合模式裂纹增长。在本文中,通过结合有限元方法,通过倒闭算法进行功能分级材料中裂纹传播的自动模拟。在混合模式负载下进行裂缝繁殖。裂纹增长模拟的每个步骤包括通过新型配方,所谓的非平衡制剂,相互作用积分法,基于特定骨折的裂纹生长方向的测定来计算混合模式应力强度因子的计算沿着裂缝路径的标准和局部自动回忆。基于FGMS中渐近裂纹尖端局部均匀化的假设,针对FGMS定制了特定的骨折标准。当前方法在模拟开始时使用用户定义的裂缝增量。将本数值模拟获得的裂纹轨迹与可用的实验结果进行了比较。本作本作提供了进一步研究热机械载荷下裂纹FGM的基础。

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