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Modeling of Shear Ductile Fracture Considering a Changeable Cut-off Value for Stress Triaxiality

机译:考虑到应力三轴性改变截止值的剪切延展骨折的建模

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A macroscopic ductile fracture criterion is proposed based on micro-mechanism analysis of nucleation, growth and shear coalescence of voids from experimental observation of fracture surfaces. The proposed ductile fracture model endows a changeable cut-off value for the stress triaxiality to represent effect of micro-structures, the Lode parameter, temperature, and strain rate on ductility of metals. The proposed model is used to construct fracture loci of AA 2024-T351. The constructed fracture loci are compared with experimental data covering wide stress triaxiality ranging between –0.5 and 1.0. The comparison suggests that the proposed model can provide a satisfactory prediction of ductile fracture for metals from compressive upsetting tests to plane strain tension with slanted fracture surfaces. Moreover, it is expected that the proposed model reasonably describes ductile fracture behavior in high velocity perforation simulation since a reasonable cut-off value for the stress triaxiality is coupled with the proposed ductile fracture criterion.
机译:提出了一种基于微型空隙的微机制分析,从防骨表面的实验观察到空隙的微机制分析。所提出的韧性裂缝模型为应力三轴的可变截止值赋予了应力三轴,以表示金属延展性对金属延展性的影响。所提出的模型用于构建AA 2024-T351的裂缝基因座。将构建的骨折基因座与覆盖-0.5和1.0之间的宽应力三轴性的实验数据进行比较。比较表明,所提出的模型可以令人满意的预测来自压缩镦粗的测试的金属的延性骨折预测,以用倾斜的裂缝表面平面应变张力。此外,预期提出的模型合理地描述了在高速穿孔模拟中的延性断裂行为,因为应力三轴性的合理截止值与所提出的延展性裂缝标准偶联。

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