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ANTIPHASE DOMAIN BOUNDARY ENERGY OF γ′ [Ni_3(Al,Ti)] PARTICLES WITH VARIOUS Al CONTENTS AND THEIR STRENGTHENING CONTRIBUTION TO A Ni-BASE ALLOY GH99 |
by YANG Nansen; WEI yuhuan; SONG Chenyi; JIAO Lanying (Central Iron and Steel Research Institute; Ministry of Metallurgical Indastry; Beijing) |
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Cite this article:
by YANG Nansen; WEI yuhuan; SONG Chenyi; JIAO Lanying (Central Iron and Steel Research Institute; Ministry of Metallurgical Indastry; Beijing). ANTIPHASE DOMAIN BOUNDARY ENERGY OF γ′ [Ni_3(Al,Ti)] PARTICLES WITH VARIOUS Al CONTENTS AND THEIR STRENGTHENING CONTRIBUTION TO A Ni-BASE ALLOY GH99. Acta Metall Sin, 1986, 22(6): 29-35.
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Abstract The critical diameter of γ′ [Ni_3(Al,Ti)] particales in the transition from dislocation cutting to by-passing in a Ni-base alloy GH99 under tensile deformation at room temperature is about 60 nm. Under the same condition, the γ′ strengthening mechanism is of the dislocation cutting. To the γ′-phase, an increase in Al content makes to raise its antiphase domain boundary energy and the critical resolved shear stress on plastic deformation of the alloy. The theoretically calculated yield strength of the alloy GH99 at room temperature is close to the measured one. The γ′ precipitation strengthening contributes to the yield strength of the alloy makiing up about 45 to 64% of the total, and increases with the increase of its Al content, But the strengthening by grain boundary carbide is not worth more than 2—3%.
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Received: 18 June 1986
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1 Stoloff, N.S., The Superalloys, Eds. Sims, C.T.; Hagel, W.C., Wiley, New York, 1972, p. 79. 2 Martens, V.; Nembach, E., Acta Metalt., 23(1975) , 149. 3 Decker, R.F., Source Book on Materials for Elevated-Temperature Applications, Ed. Bradley, E.F., ASM, Metals Park, Ohio, 1979, p. 275. 4 朱静;师燕渝;焦兰英,GH99合金中γ′沉淀相的反相畴界能测定,中国航空学会透射电镜1984年学术交流会论文。 5 Brown, L.M.; Ham, R.K., Strengthening Methods in Crystals, Eds. Killy, A.; Nicholson, R. B., Elsevier, Amsterdam, 1971, p. 12. 6 Shimanuki, Y., Trans. Jpn. Inst. Met., 22(1981) , 6. 7 杨枬森;魏育环;于万众;董殿生,时效热处理温度对GH99合金γ’行为和力学性能的影响,待发表。 8 Kocks, U.F., Acta Metall., 6(1958) , 85. 9 Shimanuki-Y.; Doi, H., Trans. Jpn. Inst. Met., 16(1975) , 123. |
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