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Ductile Fracture Behavior of Bainite-MA Dual Phase Steels

机译:贝氏体-MA双相钢的韧性断裂行为

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In order to clarify ductile fracture behavior such as void nucleation, crack initiation and crack propagation in bainite-MA dual phase steels, instrumented Charpy impact tests and static bending tests with Charpy specimens were conducted (here, "bainite" has the same meaning as bainitic ferrite). In bainite-MA steels with smaller MA volume fractions and finer MA sizes, the sample showed higher Charpy absorbed energy with higher crack initiation energy and crack propagation energy. From SEM observation of the instrumented Charpy fracture specimens, it was found that void nucleation was enhanced around the boundaries between bainitic ferrite and coarser MA. Based on the results of the static bending tests with Charpy specimens, bainite-MA steels with smaller MA volume fractions and finer MA sizes showed higher void nucleation strain and crack initiation strain. From a finite element analysis of local plastic strain around the boundaries between bainitic ferrite and MA, it was concluded that the equivalent plastic strain decreases in the case of finer MA and longer distance between two MAs compared to coarser MA and shorter distance between two MAs.
机译:为了阐明贝氏体-MA双相钢中的延性断裂行为,例如空核,裂纹萌生和裂纹扩展,进行了仪器化的夏比冲击试验和夏比试样的静态弯曲试验(此处,“贝氏体”的含义与贝氏体相同铁氧体)。在MA体积分数较小且MA尺寸较小的贝氏体MA钢中,样品显示出较高的夏比吸收能,较高的裂纹萌生能和裂纹扩展能。从仪器化的​​夏比断裂样品的SEM观察发现,贝氏体铁素体与较粗MA的边界周围的空核形成得到增强。根据夏比试样的静态弯曲试验结果,MA体积分数较小且MA尺寸较小的贝氏体MA钢显示出较高的空核形变应变和裂纹萌生应变。通过对贝氏体铁素体与MA边界附近的局部塑性应变的有限元分析,可以得出结论:与较粗糙的MA和两个MA之间的距离相比,MA较小且两个MA之间的距离较长时,等效塑性应变会降低。

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