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Numerical Study on the Effects of Chemical Composition and Microstructure Inconsistencies on Mechanical Properties of Dual-Phase Steel

机译:化学成分和微观结构不一致对双相钢力学性能影响的数值研究

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The chemical composition and microstructure of dual-phase steels from different production lines are inconsistent due to different manufacturing processes. It is responsible for the mechanical properties differences and brings negative impacts on the applications of DP steel during deformation. In this study, the chemical compositions, martensite volume fraction, and ferrite grain average diameter are investigated by the tests with DP780 steels from different production lines. The finite element models are established based on the microstructures of DP780 steels. Different mechanical properties of DP780 steels with various chemical compositions and microstructures are investigated on the stress-strain relationship and elongation by means of finite element simulation. A novel method with the failure element ratio as an indicator is proposed to evaluate the elongation of DP780 steel based on the micro-mechanism of tensile fracture. The quantitative effects are obtained separately in the forms of carbon content, martensite volume fraction, and ferrite grain average diameter on the mechanical properties of DP780 steel. It is suggested that the detailed chemical compositions and microstructures should be specified for the criterion of mechanical performance of DP steels.
机译:由于制造过程不同,来自不同生产线的双相钢的化学成分和微观结构是不一致的。它负责机械性能差异,对变形过程中DP钢的应用带来负面影响。在该研究中,通过来自不同生产线的DP780钢的测试研究了化学成分,马氏体体积分数和铁氧体晶粒平均直径。基于DP780钢的微观结构建立有限元模型。通过有限元模拟研究了具有各种化学组成和微结构的DP780钢的不同机械性能和微结构。提出了一种具有失效元素比作为指示剂的新方法,以基于拉伸骨折的微机制来评估DP780钢的伸长。定量效应以碳含量,马氏体体积分数和铁氧体晶粒平均直径分别获得,对DP780钢的机械性能分别获得。建议应为DP钢的机械性能标准指定详细的化学组成和微观结构。

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