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Effect of Strength Mismatch on Ductile Crack Initiation Behavior from Notch Root under Static Loading

机译:静态载荷下强度不匹配对缺口根部韧性裂纹萌生行为的影响

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摘要

It has been well known that ductile fractures of steels are accelerated by triaxial stresses. The characteristics of ductile crack initiation in steels are evaluated quantitatively using two-parameter criterion based on equivalent plastic strain and stress triaxiality. It has been demonstrated by authors using round-bar specimens with circumferential notch in single tension that the critical strain to initiate ductile crack from specimen center depends considerably on stress triaxiality, but surface cracking of notch root is in accordance with constant strain condition. This study fundamentally clarifies the effect of strength mismatch, which can elevate plastic constraint due to heterogeneous plastic straining under static loading, on critical conditions for ductile cracking from the pre-notch root. In order to evaluate the stress/strain state in the pre-notch root of specimens, a thermal elastic-plastic finite element (FE) analysis has been carried out.
机译:众所周知,三轴应力会加速钢的延性断裂。基于等效塑性应变和应力三轴性,使用两参数标准对钢的韧性裂纹萌生特性进行了定量评估。作者已经证明,使用具有单向拉伸圆周缺口的圆棒试样,从试样中心开始延性裂纹的临界应变在很大程度上取决于应力三轴性,但缺口根部的表面裂纹与恒定应变条件一致。这项研究从根本上阐明了强度不匹配的影响,该强度不匹配会增加在静态载荷下由于非均质塑性应变引起的塑性约束,从而影响了从缺口前根部延性开裂的关键条件。为了评估样品的预刻痕根中的应力/应变状态,已进行了热弹塑性有限元(FE)分析。

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