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Interphase Precipitation – An Interfacial Segregation Model

机译:相间沉淀–界面分离模型

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The size and distribution of interphase precipitates in micro-alloyed steels is a crucial micro-structural feature to control for obtaining the necessary strength in low-cost automotive sheets. In order to optimize both alloy chemistry and thermal processing an enhanced understanding of the interphase precipitation mechanism is required. It is proposed that the evolution of inter-sheet spacing of MC carbides during the γ →α +MC transformation can be explained considering the interfacial segregation and the corresponding dissipation of Gibbs energy inside the moving interphase boundary. The inter-sheet spacing of interphase precipitates is controlled by a complex interplay between the interfacial energy and interfacial segregation, this is presented in form of an analytical model. It is shown that the general trend of refining inter-sheet spacing with growing ferrite half-thickness can be well predicted by the proposed model.
机译:微合金钢中相间析出物的大小和分布是控制微结构的关键,以控制其在低成本汽车板材中获得所需的强度。为了优化合金化学和热处理,需要增强对相间析出机理的理解。提出可以考虑界面偏析和相应的吉布斯能量耗散来解释在γ→i>α+ iMC转变过程中 MC碳化物的层间间距的演变。移动相间边界。相界面析出物的层间间距由界面能和界面偏析之间的复杂相互作用控制,这以分析模型的形式表示。结果表明,所提出的模型可以很好地预测随着铁素体半厚度的增加而细化片间间距的总体趋势。

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