日本機械学会論文集 A編
Online ISSN : 1884-8338
Print ISSN : 0387-5008
低合金鋼の下限界近傍の微小疲労き裂進展に及ぼす水素侵入と水素雰囲気の影響
植田 祐太久保田 祐信近藤 良之
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2010 年 76 巻 765 号 p. 602-609

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The effects of hydrogen on fatigue crack propagation behavior of short fatigue crack and crack closure behavior were studied using low alloy steel SCM440H. Fatigue crack propagation test using specimen with s a 50μm deep pre-crack was carried out at a frequency of 28.4Hz in air, vacuum and hydrogen gas. Hydrogen pre-charge was done by cathodic polarization method. The concentration of absorbed hydrogen was 0.83ppm in hydrogen charged specimen and 0.06ppm in uncharged specimen. The fatigue crack propagation rate of uncharged material was dependent on environment. The acceleration of fatigue crack propagation rate by absorbed hydrogen was about 2 to 5 times irrespective of environment. As a result, the fatigue crack propagation rate of hydrogen pre-charged material tested in air was the highest. The crack opening stress was higher in hydrogen gas and in vacuum compared with that in air. Fatigue crack propagation rate was summarized in two independent bands when plotted against effective stress intensity factor. This means that the effects of environment (vacuum, air and hydrogen) and stress ratio (R=-1, 0, 0.6) could be explained by crack closure phenomenon. However, the acceleration of crack propagation by absorbed hydrogen could not be explained only by crack closure phenomenon.
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