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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Application of Martensitic Transformation Fundamentals to Select Appropriate Alloys for Grain Refining Through Martensite Thermomechanical Treatment
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Application of Martensitic Transformation Fundamentals to Select Appropriate Alloys for Grain Refining Through Martensite Thermomechanical Treatment

机译:马氏体转变基本原理在通过马氏体热机械处理选择合适的晶粒细化合金中的应用

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The main objective of the current work is to present a predictive model capable of assessing appropriation of a chemical composition for being used in the martensite thermomechanical treatment to develop nano/ultrafine-grained microstructures in austenitic steels. For this pur pose, the correlation between stacking fault energy (SFE), driving force for transformation of martensite to austenite, fraction of deformation-induced α'-martensite, and saturation strain ( ε_s) in some ternary Fe-Cr-Ni alloys and commercial austenitic steels was investigated. It was shown that the volume fraction of a'-martensite and ε_s (key parameters in the martensite treatment) are closely related to SFE and the driving force of the alloys. In addition, a nickel-free austenitic alloy was used to evaluate the discussions. A fairly good agreement was found between the calculated and the experimental results.
机译:当前工作的主要目的是提出一种预测模型,该模型能够评估用于马氏体热机械处理以开发奥氏体钢中纳米/超细晶粒组织的化学成分的分配。为此,在某些三元Fe-Cr-Ni合金中,堆垛层错能(SFE),马氏体向奥氏体转变的驱动力,形变诱导的α'-马氏体分数和饱和应变(ε_s)之间的相关性包括:对商用奥氏体钢进行了研究。结果表明,马氏体的a'马氏体的体积分数和ε_s(马氏体处理中的关键参数)与SFE和合金的驱动力密切相关。另外,使用无镍奥氏体合金来评估讨论。在计算结果和实验结果之间找到了相当好的协议。

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