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首页> 外文期刊>Russian physics journal >Mechanism of the fcc-bcc martensitic transformation with the fastest transformation of close-packed planes. I. The lattice parameter ratio and habitus planes
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Mechanism of the fcc-bcc martensitic transformation with the fastest transformation of close-packed planes. I. The lattice parameter ratio and habitus planes

机译:fcc-bcc马氏体相变机制与密排平面最快的相变。一,晶格参数比和惯性平面

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摘要

In terms of the concepts of heterogeneous nucleation and the related driving wave process, a version of the dynamic theory of the formation of martensite crystals is stated in which the wave process initiates the fastest transformation of close-packed {ie659-01} atomic planes of a parent fcc phase into {ie659-02} planes of a bcc phase. The lattice parameter ratio and the orientations of habit planes are analytically related with the elastic properties of the γ-phase. Quantitative estimation performed with the use of elastic moduli for an iron-nickel alloy yields habitus orientations close to {ie659-03}. An experiment is proposed to verify the theoretical predictions. A new pattern of the short-wave correction that finishes the fcc-bcc rearrangement is set forth.
机译:根据异相成核的概念和相关的驱动波过程,提出了马氏体晶体形成动力学理论的一种形式,其中波过程引发了密堆积{ie659-01}原子平面的最快转变。父fcc阶段进入bcc阶段的{ie659-02}平面。晶格参数比和惯性平面的取向与γ相的弹性有关。使用弹性模量对铁镍合金进行的定量估计会产生接近{ie659-03}的惯性取向。提出了一个实验来验证理论预测。提出了完成fcc-bcc重排的短波校正的新模式。

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