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Prediction on flow behaviors of individual grains in DP600 steel with grain features

机译:具有晶粒特征的DP600钢中单个晶粒的流动行为预测

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In describing the flow behaviors of ferrite and martensite phases in dual phase steels, a dislocation-based flow model without considering microstructure features was discussed and developed. The model indicates that the flow stress of individual phase was influenced by contents of chemical elements (e.g. Mn, P, Si, Cu, Ni, Cr, Mo, Nssand C) and ferrite grain size (dα). To verify the inhomogeneous flow behavior in microstructure, the flow curves of ferrite and martensite phases in multiple regions of DP600 steel were predicted. It was found that the flow behavior of individual phase varied significantly in microstructure and the difference was attributed to various microstructure variables (e.g. martensite volume fraction, carbon content and grain size). To achieve a precise description of the inhomogeneous flow behavior in microstructure, flow models of ferrite and martensite grains were proposed by considering microstructure variables. According to measured indentation yield strengths of different ferrite grains, their flow curves were obtained from the proposed model. The results indicate that different grains differed significantly in the flow curve and the difference was associated with grain features referring to grain size, grain shape and martensite distribution around ferrite grain.
机译:在描述双相钢中铁素体和马氏体相的流动行为时,讨论并建立了一种基于位错的流动模型,该模型不考虑微观结构特征。该模型表明,各相的流应力受化学元素(例如Mn,P,Si,Cu,Ni,Cr,Mo,Nssand C)和铁素体晶粒尺寸(dα)的影响。为了验证组织中的不均匀流动行为,预测了DP600钢多个区域中铁素体和马氏体相的流动曲线。发现各相的流动行为在微观结构上显着变化,并且该差异归因于各种微观结构变量(例如,马氏体体积分数,碳含量和晶粒尺寸)。为了精确描述微观结构中的不均匀流动行为,通过考虑微观结构变量,提出了铁素体和马氏体晶粒的流动模型。根据测得的不同铁素体晶粒的压痕屈服强度,从所提出的模型获得了它们的流动曲线。结果表明,不同晶粒的流动曲线存在显着差异,且差异与晶粒特征有关,晶粒特征涉及晶粒尺寸,晶粒形状和铁素体晶粒周围的马氏体分布。

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