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Phase Transformations of Nanocrystalline Martensitic Materials

机译:纳米晶马氏体材料的相变

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摘要

The physical phenomena and engineering applications of martensitic phase transformations are the focus of intense ongoing research. The martensitic phase transformation and functional properties such as the shape-memory effect and superelasticity are strongly affected by the crystal size at the nanoscale. The current state of research on the impact of crystal size on the phase stability of the martensite is reviewed summarizing experimental results of various nanostructured martensitic materials and discussing the corresponding theoretical approaches. The review outlines the effects of crystal size on the complex morphology of the martensite, leading to interface structures not encountered in coarse-grained bulk materials. The unique shape-memory properties of martensitic materials can persist even at the nanoscale. Nanocrystalline martensitic materials can be processed to obtain tailored functional properties in combination with enhanced strength. Structural changes of metallic nanowires are similar to those arising by martensitic phase transformations and also can lead to shape-memory effects, as predicted by atomistic simulations.
机译:马氏体相变的物理现象和工程应用是正在进行的大量研究的重点。马氏体相变和功能特性(如形状记忆效应和超弹性)受纳米级晶体尺寸的强烈影响。综述了晶体尺寸对马氏体相稳定性影响的研究现状,总结了各种纳米结构马氏体材料的实验结果,并讨论了相应的理论方法。该综述概述了晶体尺寸对马氏体复杂形态的影响,从而导致在粗粒散装材料中未遇到的界面结构。马氏体材料独特的形状记忆特性甚至可以在纳米尺度上保持不变。纳米晶马氏体材料可以进行加工以获得具有增强强度的定制功能特性。金属纳米线的结构变化与马氏体相变引起的结构变化相似,并且还可能导致形状记忆效应,这是原子模拟所预测的。

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