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Micromechanism of Ductile Crack Initiation in Structural Steels Based on Void Nucleation and Growth

机译:基于空隙核化和生长的结构钢延性裂纹萌生的微观机制

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The effect of the specimen geometry and the inclusion content on the critical condition for ductile crack initiation was determined using notched round bar tensile specimens, and the critical void volume fraction and secondary void nucleation effect were investigated using the Gurson-Tvergaard constitutive model. It is shown that the secondary void nucleation form pearlite nodules plays a dominant role in ductile crack initation, and void nucleation and void growth behavior are strongly affected by the stress triaxiality and the plastic strain. In the large plastic strain and low stress triaxiality region, a large number of secondary voids were nucleated in the early stage of deformation and void volume fraction grew to a critical value in spite of the relatively low void growth rate at low stress triaxiality. On the other hand, in the low plastic strain and high triaxial stress region, void volume can grow rapidly even though the volume of secondary nucleated void was smaller than that of high plastic strain region. Critical void volume fraction decreases largely with increasing in MnS content in the high triaxial stress region; however, the effect of MnS content is small in the low stress triaxiality and large plastic strain region.
机译:使用带缺口的圆棒拉伸试样确定试样几何形状和夹杂物含量对延性裂纹萌生临界条件的影响,并使用Gurson-Tvergaard本构模型研究临界空隙体积分数和二次空隙成核效应。结果表明,珠光体结核中的次生空核形核在延性裂纹萌生中起主要作用,并且应力三轴性和塑性应变强烈影响空核形核和空洞的生长行为。在大的塑性应变和低应力三轴性区域,尽管在低应力三轴性下空洞的增长率相对较低,但在变形的早期,大量的次生空核被形核,并且空洞体积分数增长到临界值。另一方面,在低塑性应变和高三轴应力区域中,即使次级有核空隙的体积小于高塑性应变区域的体积,空隙体积也可以快速增长。在高三轴应力区中,临界空隙体积分数随MnS含量的增加而大大降低。但是,在低应力三轴性和较大的塑性应变区域中,MnS含量的影响较小。

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