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- W2565187415 abstract "Nanocrytallization of metals/steels has been the subject of widespread research, since nano-structure (NS) of materials often renders highly favorable, enhanced mechanical properties such as extended fatigue life, and ultra-stable/high strength [ 1 ]. Shot peening, as a surface plastic deformation technology, was proven to be an effective way of inducing NS in the surface of metals. In this work, the austenitic ( γ ) stainless steels were shot peened, and heat treated at 500 〜800°C for various span (1〜l00hrs). The microstructural evolution during the whole process was comprehensively studied by using the EBSD and TEM, of which the specimens were prepared by various modified samples preparation procedures [ 2 ], such as cross-sectional and depth- specific plan-view specimens, utilizing a TEM specimen for EBSD-SEM-TEM analyses (3mm thin foil, and carbon extraction replica). After shot peening, the gradient microstructures from the top treated surface to deep matrix were characterized as, 1) NS (phase of γ , α′ ε) surface, 2) ultra-fine grain (phase of γ , ε, and with deformation twins, shear band, etc.), 3) coarse grain with planar dislocation arrays, indicating the strain induced phase transformation of γ (fcc) to α′- (bcc) and ε'- (hcp) martensite. Analyses of the heat treated specimens indicated that reverse phase transformation of α′-, ε'-martensite to γ occurred with the precipitation of M 23 C 6 in the reversed transformed grains (Figure)." @default.
- W2565187415 created "2017-01-06" @default.
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- W2565187415 date "2015-11-01" @default.
- W2565187415 modified "2023-09-25" @default.
- W2565187415 title "B22-O-06Microstructural Evolution of 304SS upon Shot Peening and Heat Treatment" @default.
- W2565187415 cites W2335744939 @default.
- W2565187415 doi "https://doi.org/10.1093/jmicro/dfv151" @default.
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