年次大会講演論文集
Online ISSN : 2433-1325
会議情報
705 超細粒鋼(SUF 鋼)の疲労き裂伝ぱにおよぼす結晶方位および微視組織の影響
木村 英彦秋庭 義明田中 啓介田原 安晃服部 豊石川 忠
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会議録・要旨集 フリー

p. 117-118

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The effect of crystallographic orientation and microstructure on fatigue crack propagation behavior in ultrafine-grained specimens with the average grain size of less than 2μm was investigated by EBSP (Electron backscatter patterns). The results show that fatigue crack bifurcation, which has been proven to be the dominant factor of the excellent fatigue property introducing crack closure, was introduced either at grain boundaries or within grains with the ratio of 1 : 1. The mechanism of the bifurcation was explained by introducing the slip factor. ζ. Fatigue crack bifurcates at a grain boundary when it propagates from a grain containing a single slip system with the outstandingly largest ζ to the other grain holding many slip systems with large ζ. The intragranular bifurcation was observed in the grain with dozens of slip systems with the same largest ζ.
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© 2003 一般社団法人日本機械学会
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