会议论文详细信息
10th International School-Conference on Materials for Extreme Environment: Development, Production and Application
Investigation of microstructure and thermal stability of pulsed plasma processed chromium ferritic-martensitic steels
Emelyanova, O.^1 ; Dzhumaev, P.^1 ; Yakushin, V.^1 ; Polsky, V.^1
National Research Nuclear University MEPhI, Moscow Engineering Physics Institute, Kashirskoye shosse 31, Moscow
115409, Russia^1
关键词: Ferritic-martensitic steels;    Fusion applications;    Homogeneous structure;    Initial microstructures;    Microstructure investigations;    Near-surface layers;    Pulsed plasma flows;    X-ray microanalysis;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/130/1/012042/pdf
DOI  :  10.1088/1757-899X/130/1/012042
来源: IOP
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【 摘 要 】

This paper presents results of the microstructural evolution and thermal stability of the promising Russian ferritic-martensitic steels (EP 823, EP 900, EK 181 and ChS 139) for the nuclear and fusion application after surface modification by high temperature pulsed plasma flows (HTPPF) treatment. Investigations of microstructure, topography and elemental content changes associated with irradiation by nitrogen plasma with energy density 19-28 J/ cm2and pulse duration 20 μs were carried out. Changes in microstructure and elemental content occurring in the modified surface layer were characterized by means of scanning electron microscopy (SEM) and X-ray microanalysis (EDS and WDS). It was shown that independently of initial microstructure and phase composition, HTPPF treatment of ferritic- martensitic steels leads to formation of ultrafine homogeneous structure in the near surface layers with typical grain size ∼100 nm. Results of microstructure investigations after annealing during 1 hour demonstrates significant thermal stability of nanostructure formed by HTPPF treatment.

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