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Modeling of Advanced High Strength Steels with the realistic microstructure-strength relationships

机译:具有现实的微观结构-强度关系的高级高强度钢建模

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摘要

The objective of the work is to consider the first-order effects of the realistic microstructure morphology in the macroscale modeling of the multiphase Advanced High Strength Steels (AHSS). Instead of using constitutive equations at macroscale, the strength-microstructu re relationship is studied in the forms of micromechanical and multiscale models that do not make considerable simplifications with regard to the microscale geometry and topology. The trade-off between the higher computational time and the higher accuracy has been offset with a stochastic approach in the construction of the microscale models. The multiphase composite effects of AHSS microstructure is considered in realistic microstructural models that are stochastically built from AHSS micrographs. Computational homogenization routines are used to couple micro and macroscale and resultant stress-strain relations are compared for models built with the simplified and idealized geometries of the microstructure. The results from this study show that using a realistic representation of the microstructure, either for DP or TRIP steel, could improve the accuracy of the predicted stress and strain distribution. The resultant globally averaged effective stress and strain fields from realistic microstructure model were able to accurately capture the onset of the plastic instability in the DP steel. It is shown that the macroscale mechanical behavior is directly affected by the level of complexities in the microscale models. Therefore, greater accuracy could be achieved if these stochastic realistic microstructures are used at the microscale models.
机译:这项工作的目的是在多相高级高强度钢(AHSS)的宏观模型中考虑现实微观结构形态的一阶效应。而不是在宏观上使用本构方程,而是以微观力学和多尺度模型的形式研究了强度-微观结构关系,这些模型在微观尺度的几何形状和拓扑结构方面没有进行相当大的简化。在微型模型的构建中,随机方法已抵消了较高的计算时间和较高的精度之间的权衡。从AHSS显微照片随机建立的现实微观结构模型中考虑了AHSS微观结构的多相复合效应。计算均质化例程用于耦合微观和宏观尺度,并比较了以简化和理想化的微观结构几何构造的模型的结果应力-应变关系。这项研究的结果表明,对DP或TRIP钢使用微观组织的真实表示,可以提高预测的应力和应变分布的准确性。从现实的微观结构模型得到的全球平均有效应力场和应变场能够准确地捕获DP钢中塑性不稳定性的开始。结果表明,宏观尺度上的力学行为直接受到微观尺度模型复杂程度的影响。因此,如果在微观模型中使用这些随机的现实微观结构,则可以实现更高的精度。

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