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Simulation model to correlate micro-structural characteristics of two-phase steel with ductile crack growth resistance

机译:将两相钢的微观组织特性与韧性延展性相关联的仿真模型

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The purpose of this study is to propose a numerical simulation method for estimating the effect of micro-structural characteristics of two-phase steel on ductile crack growth resistance (R-curve) of structural components. For this purpose, a hierarchical approach is proposed to correlate the micro-structural characteristics with the R-curve, which consists of a meso-scopic approach and a macro-scopic approach. A meso-scopic approach correlates the micro-structural characteristics with the two types of ductile properties of steel that controls R-curve. Then, a macro-scopic approach predicts R-curve from the two types of ductile properties obtained by the proposed meso-scopic approach. It is demonstrated that the proposed hierarchical approach can predict R-curve of a 3-point bend specimen with a crack from micro-structural characteristics of two-phase steel.
机译:本研究的目的是提出一种数值模拟方法,以估算两相钢的微观结构特征对结构部件的延性裂纹扩展阻力(R曲线)的影响。为此,提出了一种将微观结构特征与R曲线相关联的分层方法,该方法由介观方法和宏观方法组成。介观方法将微观结构特征与控制R曲线的钢的两种延展性相关。然后,宏观方法从通过提出的介观方法获得的两种延展性预测R曲线。结果表明,所提出的分层方法可以根据两相钢的微观结构特征预测带有裂纹的三点弯曲试件的R曲线。

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