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Observation of Precipitation Evolution in Fe-Ni-Mn-Ti-Al Maraging Steel by Atom Probe Tomography

机译:原子探针层析成像观察Fe-Ni-Mn-Ti-Al马氏体时效钢的析出演化

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摘要

We describe the full decomposition sequence in an Fe-Ni-Mn-Ti-Al maraging steel during isothermal annealing at 550 °C. Following significant pre-precipitation clustering reactions within the supersaturated martensitic solid solution, (Ni,Fe)3Ti and (Ni,Fe)3(Al,Mn) precipitates eventually form after isothermal aging for ~60 seconds. The morphology of the (Ni,Fe)3Ti particles changes gradually during aging from predominantly plate-like to rod-like, and, importantly, Mn and Al were observed to segregate to these precipitate/matrix interfaces. The (Ni,Fe)3(Al,Mn) precipitates occurred at two main locations: uniformly within the matrix and at the periphery of the (Ni,Fe)3Ti particles. We relate this latter mode of precipitation to the Mn-Al segregation.
机译:我们描述了Fe-Ni-Mn-Ti-Al马氏体时效钢在550°C等温退火过程中的完全分解顺序。在过饱和马氏体固溶体中发生显着的预沉淀聚类反应后,等温老化约60分钟后,最终形成(Ni,Fe)3 Ti和(Ni,Fe)3 (Al,Mn)沉淀秒。 (Ni,Fe)3 Ti颗粒的形貌在时效过程中从主要的板状变为棒状,并且重要的是,观察到Mn和Al偏析到这些析出物/基体界面。 (Ni,Fe)3 (Al,Mn)析出物出现在两个主要位置:均匀地分布在基体内和(Ni,Fe)3 Ti颗粒的外围。我们将后一种沉淀模式与Mn-Al偏析联系起来。

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  • 来源
    《Metallurgical and Materials Transactions A》 |2009年第13期|3069-3075|共7页
  • 作者单位

    School of Mechanical Materials and Mechatronics Engineering University of Wollongong Wollongong NSW 2522 Australia;

    Department of Materials Engineering Monash University Clayton VIC 3800 Australia;

    Materials Science and Technology Division Oak Ridge National Laboratory Oak Ridge TN 37831-6136 USA;

    Australian Key Centre for Microscopy ampamp Microanalysis The University of Sydney Sydney NSW 2006 Australia;

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