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为了提高粉末高温合金FGH97的拉伸强度,同时保持基础合金良好的塑性、高温持久性能和较好的组织稳定性,通过正交设计和热力学计算,调整了FGH97中Co、Cr、Mo、W4种固溶强化元素的含量,结合热力学计算结果筛选出3种成分的设计合金,对合金进行显微组织观察、物理化学相分析、室温高温拉伸等力学性能检测,以及长时效热处理试验.结果表明:在FGH97基础上调整成分的设计合金具有更高的室温、高温拉伸强度,实现了很好的强化效果;设计合金塑性损失不明显,还具有更长的高温持久寿命及较好的组织稳定性.

参考文献

[1] Y. Yuan;Y.F. Gu;T. Osada.A new method to strengthen turbine disc superalloys at service temperatures[J].Scripta materialia,201211(11):884-889.
[2] B. Seiser;R. Drautz;D.G. Pettifor.TCP phase predictions in Ni-based superalloys: Structure maps revisited[J].Acta materialia,20112(2):749-763.
[3] C. M. F. RAE;R. C. REED.THE PRECIPITATION OF TOPOLOGICALLY CLOSE-PACKED PHASES IN RHENIUM-CONTAINING SUPERALLOYS[J].Acta materialia,200119(19):4113-4125.
[4] Simonetti M.;Caron P..Role and behaviour of mu phase during deformation of a nickel-based single crystal superalloy[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,19981/2(1/2):1-12.
[5] R. KRISHNA;S.V. HAINSWORTH;S.P.A. GILL.Topologically Close-Packed μ Phase Precipitation in Creep-Exposed Inconel 617 Alloy[J].Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science,20133(3):1419-1429.
[6] 张义文;迟悦.俄罗斯粉末冶金高温合金研制新进展[J].粉末冶金工业,2012(5):37-45.
[7] JIAN MAO;KEH-MINN CHANG;WANHONG YANG.Cooling Precipitation and Strengthening Study in Powder Metallurgy Superalloy U720LI[J].Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science,200110(10):2441-2452.
[8] Agnieszka M. Wusatowska-Sarnek;Gautam Ghosh;Gregory B. Olson;Martin J. Blackburn;Mark Aindow.Characterization of the microstructure and phase equilibria calculations for the powder metallurgy superalloy IN100[J].Journal of Materials Research,200311(11):2653-2663.
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