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首页> 外文期刊>Journal of engineering materials and technology >Micromechanical finite element analysis of the effects of martensite particle size and ferrite grain boundaries on the overall mechanical behavior of dual phase steel
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Micromechanical finite element analysis of the effects of martensite particle size and ferrite grain boundaries on the overall mechanical behavior of dual phase steel

机译:马氏体粒径和铁素体晶界对双相钢整体力学性能影响的微机械有限元分析

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This paper focuses on micromechanical finite element (FE) modeling of the effects of size and morphology (particularly elongation or aspect ratio (AR) along the loading direction) of martensite particles and the ferrite grains on the overall mechanical behavior of dual-phase (DP) steels. To capture the size-effect of the martensite particles and ferrite grains, the core and mantle approach is adapted in which a thin interphase of geometrically necessary dislocations (GNDs) is embedded at the martensite-ferrite boundaries. It is shown that as the martensite particles size decreases or their aspect ratio increases, both the strength and ductility of DP steel increase simultaneously. On the other hand, as the ferrite grain size decreases or its aspect ratio increases, the overall strength increases on the expense of the ductility. The conclusions from this study can be used in guiding the microstructural design of DP steels.
机译:本文关注马氏体颗粒和铁素体晶粒的尺寸和形态(尤其是沿载荷方向的伸长率或长宽比(AR))对双相(DP)整体力学行为的影响的微机械有限元(FE)建模。 )钢。为了捕获马氏体颗粒和铁素体晶粒的尺寸效应,采用了芯和套方法,其中在马氏体-铁素体边界处嵌入了一个薄的几何必要位错(GND)界面。结果表明,随着马氏体粒径的减小或长径比的增加,DP钢的强度和延性都同时增加。另一方面,随着铁素体晶粒尺寸的减小或其长径比的增加,总强度的增加是以延展性为代价的。这项研究的结论可用于指导DP钢的显微组织设计。

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