材料
Online ISSN : 1880-7488
Print ISSN : 0514-5163
ISSN-L : 0514-5163
TiAl系金属間化合物の疲労き裂伝ぱ特性と微視組織の影響
Rajappa GNANAMOORTHY武藤 睦治正橋 直哉水原 洋治
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1996 年 45 巻 8 号 p. 919-926

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Fatigue crack growth tests on four kinds of γ-base TiAl alloys with different microstructures were carried out. The basic mechanism of fatigue crack growth and the effect of microstructure on fatigue crack growth properties were discussed in detail. It was found that microcrack nucleation in the near crack tip region, growth and coalescence to a main crack are the dominant mechanism of fatigue crack growth. The fatigue crack growth resistance of lamellar microstructure material was higher than that of duplex microstructure material, which in turn was higher than that of equiaxed microstructure material. In the lamellar microstructure materials, crack growth resistance was low when the orientation of lamellar lath coincided with the crack growth direction. These differences in crack growth resistance might be induced by the stress shielding effect due to bridging on the crack wake.
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