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首页> 外文期刊>International Journal of Solids and Structures >Bifurcation analysis of fracture mode by simulated and experimental ductile fracture progress based on the proposed crack opening criterion
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Bifurcation analysis of fracture mode by simulated and experimental ductile fracture progress based on the proposed crack opening criterion

机译:基于建议的裂缝打开标准模拟和实验性韧性裂缝进展的分岔分析

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摘要

In the previous papers (Kobayashi, 2017a, b), the crack opening criterion was deduced from the proposed micro-crack evolution equation. To solve the discrepancies between the estimated and experimental strengths of ductile materials by considering the plastic/damage energy dissipation according to ASTM standard E1820-01, an improved version of the proposed crack opening criterion was proposed and successively applied to the ductile materials such as A533B steel, Al2024-T4 and SiAlon. With regard to the fracture progress, it is well known that the chaotic behavior of crack propagation seems to be caused by the bifurcation of the fracture mode. In this paper, the simulation of ductile fracture progress in notched FCC single crystal specimens characterized by different crystal orientations under the uniaxial tension is performed using the crystal plasticity finite element model (CPFE) to consider specifically the dependence of ductile fracture progress on the crystal orientation. The model was also integrated with a proposed micro-/macro-crack nucleation criteria deduced by two different stationary discontinuity bands characterized by the vanishing velocity condition. The simulated results were compared with the experimental ones. Both bifurcation mechanisms of the fracture mode of the simulated and experimental results were then studied using the proposed crack opening criterion based on the bifurcation structure characterized by two different stationary discontinuity bands. It can be concluded that the proposed crack opening criterion and its improved application including the proposed diagram contribute to study fracture physical mechanisms. (C) 2018 Elsevier Ltd. All rights reserved.
机译:在先前的论文中(Kobayashi,2017A,B),从提出的微裂纹演变方程推导出裂缝开启标准。通过考虑根据ASTM标准E1820-01的塑料/损坏能量耗散来解决延性材料的估计和实验强度之间的差异,提出了所提出的裂缝开启标准的改进版本,并连续地施加到延性材料,如A533B钢,Al2024-T4和Sialon。关于断裂进展,众所周知,裂纹繁殖的混沌行为似乎是由裂缝模式的分叉引起的。在本文中,使用晶体塑性有限元模型(CPFE)进行了在单轴张力下具有不同晶体取向的缺口FCC单晶样本中的延性FCC单晶样本的模拟,以考虑延性骨折进展对晶体取向的依赖性。该模型还与由由消失速度条件的两种不同的固定不连续条带推导的提出的微/宏裂纹成核标准集成。将模拟结果与实验结果进行比较。然后使用基于两个不同的固定不连续条带的分叉结构的提出的裂缝开度标准研究模拟和实验结果的裂缝模式的两分叉机制。可以得出结论,提出的裂缝开放标准及其改进的应用包括所提出的图表有助于研究骨折物理机制。 (c)2018年elestvier有限公司保留所有权利。

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