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Polycrystalline model predictions of flow stress and textural hardening during monotonic deformation

机译:单调变形过程中流变应力和组织硬化的多晶模型预测

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A series of mechanical tests in different specimen orientations were performed to study the anisotropic behavior of an IF steel (DC06). State-of-the-art polycrystalline models Alamel [1], VPSC [2], as well as the classical FC Taylor model were employed to predict flow stress curves. A two-stage Voce law was used to describe the single crystal shear stress-accumulated shear strain relationship, In this approach, the textural hardening and the dislocation hardening are effectively modeled separately. Results demonstrate that both the Alamel and VPSC models could reproduce the flow stress curves adequately. Also, the quantitative agreement of texture prediction is used to validate the model predictions. It is concluded that the better performance of grain interaction models compared to the FC Taylor model is mainly due to an improved prediction of the slip inside the constituting grains, and not in particular due to an improved prediction of texture evolution.
机译:进行了一系列在不同样本方向上的机械测试,以研究IF钢(DC06)的各向异性行为。使用最新的多晶模型Alamel [1],VPSC [2]和经典的FC Taylor模型来预测流动应力曲线。用两阶段Voce定律描述了单晶剪切应力-累积剪切应变的关系。在这种方法中,有效地分别模拟了结构硬化和位错硬化。结果表明,Alamel模型和VPSC模型都可以充分再现流动应力曲线。同样,纹理预测的定量一致性用于验证模型预测。结论是,与FC Taylor模型相比,晶粒相互作用模型具有更好的性能,主要是由于改善了对构成晶粒内部的滑移的预测,而不是由于对纹理演变的预测得到了改善。

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