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Effect of the 3rd Dimension within the Representative Volume Element (RVE) on Damage Initiation and Propagation during Full-Phase Numerical Simulations of Single and Multi-Phase Steels

机译:第3维度在单相钢全相数值模拟中对代表性体积元素(RVE)内的损伤启动和传播的影响

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摘要

In this research, the effect of 2D and 3D Representative Volume Element (RVE) on the ductile damage behavior in single-phase (only ferrite) and dual-phase (ferrite and martensite) steels is analyzed. Physical and fitting parameters of the constitutive model for bcc-ferrite and bcc-martensite phases are adapted from the already published work. Crystal plasticity (CP) based numerical simulations without damage consideration are run and, later, ductile damage criteria for the ferrite phase is defined for all cases. The results of the non-damage (-nD-) and damage (-D-) simulations are compared to analyze the global and local differences of evolving stresses and strains. It is observed that for the same model parameters defined in all cases, damage initiation occurs at the overall higher global strain in the case of 3D compared to 2D. Based on statistical data analysis, a systematic comparison of local results is carried out to conclude that the 3D RVEs provide better quantitative and qualitative results and should be considered for such full phase simulations. Whereas 2D RVEs are simple to analyze and provide appropriate qualitative information about the damage initiation sites.
机译:在该研究中,分析了2D和3D代表体积元素(RVE)对单相(仅铁氧体)和双相(铁氧体和马氏体)钢的延性损伤行为的影响。 BCC-铁氧体和BCC-马氏体阶段的本构模型的物理和拟合参数适用于已经发表的工作。在没有损坏考虑的情况下,基于晶体塑性(CP)的数值模拟,并且以后,为所有情况定义了铁氧体相的延性损伤标准。比较非损伤(-ND-)和损坏(-D-)模拟的结果,以分析了不断变化应力和菌株的全球和局部差异。观察到,对于在所有情况下定义的相同模型参数,与2D相比,在3D的情况下,在3D的情况下发生损坏启动。基于统计数据分析,对局部结果进行了系统的比较,以得出结论,3D rves提供更好的定量和定性结果,并应考虑这种全相模拟。虽然2D rves易于分析并提供有关损坏启动网站的适当定性信息。

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