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CREEP CRACK GROWTH IN GH901 SUPER ALLOY |
WU Sifa;KONG Qingping Institute of Solid State Physics; Academia Sinica; HefeiProfessor;Institute of Sotid State Physies;Academia Sinica;Hefei |
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Cite this article:
WU Sifa;KONG Qingping Institute of Solid State Physics; Academia Sinica; HefeiProfessor;Institute of Sotid State Physies;Academia Sinica;Hefei. CREEP CRACK GROWTH IN GH901 SUPER ALLOY. Acta Metall Sin, 1988, 24(1): 51-54.
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Abstract Creep crack growth of an Fe-Ni base alloy GH901 (similar to Incoloy901) was studied at 650--715℃ by electrical potential technique. The crack initiationand growth can be described by stress intensity K_I. When the initial stressintensity K_(Ii) was smaller than a threshold value K_(It), no crack growth was detectedin the testing time (200h). When K_(Ii) was larger than K_(It), the creep crack growthrate can be represented by an Arrhenius type equation. The activation energy forcreep crack growth was found in agreement with that for grain boundary diffusion.Fractography by SEM shows that the path of crack growth is along grain bound-aries. The physical origin of the threshold stress intensity K_(It) and the microscopicprocess of creep crack growth was explained in the light of grain boundary diffusionmechanism.
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Received: 18 January 1988
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1 孔庆平.金属学报,1977;13:231 2 Brown W F, Scrawloy J E. ASTM Spec Tech Publ, №410, 1969; 12 3 Johnson A H. Material Research and Standards, 1965; 5: 442 4 Sadananda K, Shahinian P. Eng Fract Mech, 1981; 15: 327 5 吴东棣.理化检验(物理分册),1984;20(2) :12 6 #12 7 Sadananda K. Shahinian P. Metall Trans, 1977; 8A: 439 8 Raj Rishi, Ashby M F. Acta Metall, 1975; 23: 65 |
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