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On the description of ductile fracture in metals by the strain localization theory

机译:应变定位理论对金属韧性裂缝的描述

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Numerical simulations based on the bifurcation and imperfection versions of the strain localization theory are used in this paper to predict the failure loci of metals and applied to an advanced high strength steel subjected to proportional loading paths. The results are evaluated against the 3D unit cell analyses of Dunand and Mohr (J Mech Phys Solids 66(1): 133-153, 2014. doi:10.1016/j.jmps.2014.01.008) available in the literature. The Gurson porous plasticity model (Gurson in J Eng Mater Technol 99(1): 2-15, 1977. doi: 10.1115/1.344340) is used to induce strain softening and drive the localization process. The effects of the void growth, void nucleation and void softening in shear are investigated over a large range of stress triaxialities and Lode parameters. A correlation between the imperfection and bifurcation results is established.
机译:本文使用了基于分岔和缺陷版本的基于分叉和缺陷版本的数值模拟,以预测金属的故障基因座,并应用于经受比例负载路径的先进高强度钢。 结果评估了Dunand和Mohr的3D单元细胞分析(J Mech Phy Solid 66(1):133-153,2014.Doi:10.1016 / J.JMPS.2014.01.008)。 Gurson多孔塑性模型(J eng Mater Technol 99(1):2-15,1977中的Gurson。DOI:10.1115 / 1.344340)用于诱导应变软化并驱动定位过程。 在大量的应力三轴和典型的仪表参数上研究了空隙生长,空隙核肉和空隙软化的影响。 建立了缺陷和分叉结果之间的相关性。

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