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首页> 外文期刊>Ultramicroscopy >Combined nano-SIMS/AFM/EBSD analysis and atom probe tomography, of carbon distribution in austenite/s-martensite high-Mn steels
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Combined nano-SIMS/AFM/EBSD analysis and atom probe tomography, of carbon distribution in austenite/s-martensite high-Mn steels

机译:结合纳米SIMS / AFM / EBSD分析和原子探针断层扫描技术,对奥氏体/ S-马氏体高锰钢中的碳分布进行了分析

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摘要

We introduce a new experimental approach for the identification of the atomistic position of interstitial carbon in a high-Mn binary alloy consisting of austenite and s-martensite. Using combined nano-beam secondary ion mass spectroscopy, atomic force microscopy and electron backscatter diffraction analyses, we clearly observe carbon partitioning to austenite. Nano-beam secondary ion mass spectroscopy and atom probe tomography studies also reveal carbon trapping at crystal imperfections as identified by transmission electron microscopy. Three main trapping sites can be distinguished: phase boundaries between austenite and s-martensite, stacking faults in austenite, and prior austenite grain boundaries. Our findings suggest that segregation and/or partitioning of carbon can contribute to the austenite-to-martensite transformation of the investigated alloy.
机译:我们介绍了一种新的实验方法,用于鉴定由奥氏体和s-马氏体组成的高Mn二元合金中间隙碳的原子位置。使用组合的纳米束二次离子质谱,原子力显微镜和电子背散射衍射分析,我们可以清楚地观察到碳向奥氏体的分配。纳米束二次离子质谱和原子探针层析成像研究还显示,如通过透射电子显微镜确定的那样,晶体缺陷处的碳捕获。可以区分三个主要的俘获部位:奥氏体和s-马氏体之间的相界,奥氏体中的堆积断层和先前的奥氏体晶界。我们的发现表明,碳的偏析和/或分配可以促进所研究合金的奥氏体向马氏体转变。

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