Effect of manganese on the cavitation erosion resistance of iron-chromium-carbon-silicon alloys for replacing cobalt-base Stellite

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초록

The cavitation erosion behavior of Fe-Cr-C-Si-xMn (x = 5 10 and 15 wt%) alloys were investigated for 50 It Using 20 kHz vibratory cavitation erosion test equipment. Low-Mn alloys (< 5 wt% Mn) and high alloys (> 10 wt% Mn) exhibited the gamma -> alpha' and gamma -> epsilon strain-induced martensitic transformation, respectively. Mn-addition above 10 wt% was observed to increase the cavitation erosion resistance of the Fe-based alloy. It was concluded that the gamma -> epsilon strain-induced martensitic transformation would be more beneficial than the gamma -> alpha' strain-induced martensitic transformation due to the blocking of the dislocation motion, thus increasing the hardness of the matrix by effective work-hardening. The phase transformation was examined by X-ray diffraction before and after the cavitation erosion tests and the surface damage of the tested specimens was also investigated by scanning electron and optical microscopy.

키워드

C0200I0500P0300S1000WEAR-RESISTANTSTEELS
제목
Effect of manganese on the cavitation erosion resistance of iron-chromium-carbon-silicon alloys for replacing cobalt-base Stellite
저자
Kim, Ji HuiNa, Kwang SuKim, Gyung GukYoon, Chong S.Kim, Seon Jin
DOI
10.1016/j.jnucmat.2006.02.072
발행일
2006-06
유형
Article; Proceedings Paper
저널명
Journal of Nuclear Materials
352
1-3
페이지
85 ~ 89