Progress in the Research and Manufacture of GH4169 Alloy

Jin-hui DU,Xu-dong LU,Qun DENG,Zhong-nan BI

Journal of Iron and Steel Research International ›› 2015, Vol. 22 ›› Issue (8) : 657-663.

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Journal of Iron and Steel Research International ›› 2015, Vol. 22 ›› Issue (8) : 657-663.
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Progress in the Research and Manufacture of GH4169 Alloy

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Abstract

GH4169 alloy has been widely used in fields such as aviation,aerospace,and petrochemical,because of its excellent combination of mechanical and processing properties. These properties include good high-temperature strength,excellent creep and fatigue resistance,and good processing and welding performance. The requirement for high performance,high reliability,and long service life of modern engines has led to the incentive to develop GH4169 alloys with improved performance,such as increased temperature-bearing capacity,improved creep endurance,and better fatigue resistance. Advances during the past thirty years in ba-sic research and industrial technology related to GH4169 alloy were systematically summarized,including advances in alloy modi-fication,melting process optimization,and hot deformation technology.

Key words

GH4169, alloying, radial forging, isothermal forging, hot die forging

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DU, DENG, BI Progress in the Research and Manufacture of GH4169 Alloy[J]. Journal of Iron and Steel Research International, 2015, 22(8): 657-663

References

[1] S. Azadian, L.Y. Wei, R. Warren. Delta phase precipitation in Inconel 718. Materials Characterization, 2004, 53: 7-16.
[2] D.Y. Cai, W.H. Zhang, P.L. Nie, W.C. Liu, M. Yao. Dissolution kinetics of ? phase and its influence on the notch sensitivity of Inconel 718. Materials Characterization, 2007, 58: 220-225.
[3] A. Devaux, L. Naze, R. Molins, A. Pineau, A. Organista, J.Y. Guedou, et al. Gamma double prime precipitation kinetic in Alloy 718. Materials Science and Engineering A, 2008, A486: 117-122.
[4] J.P. Collier, S.H. Wong, J.C. Phillips, J.K. Tien. The effect of varying Al,Ti, and Nb content on the phase stability of Inconel 718. Metallurgical Transactions A, 1988,19A: 1657-1666.
[5] F.Q. Xu, E.C. Guo, E.A. Loria, P.G. Zhang. Thermal stability of modified 718 alloys aged for 2000 hours at 700oC. Superalloys 718,625,706 and Various Derivatives, Edited by E.A. Loria, Pennsylvania: TMS, 1997, 503-509.
[6] E.C. Guo, F.Q. Xu, E.A. Loria. Further studies on thermal stability of modified 718 alloys. Superalloys 718,625,706 and Various Derivatives, Edited by E.A. Loria, Pennsylvania: TMS, 1994, 721-734.
[7] R. Cozar, A. Pineau. Morphology of ?' and ?" precipitates and thermal stability of inconel 718 type alloys. Metallugical Transactions, 1973, 4: 47-59.
[8] J.X. Dong, X.S. Xie, Z.S. Xu, S.H. Zhang, M.Z. Chen, J.F. Radavich. Tem study on microstructure behavior of alloy 718 after long time exposure at high temperatures. Superalooys 718,625,706 and Various Derivatives. Edited by E.A. Loria, Pennsylvania: TMS, 1994, 649-658.
[9] X.S. Xie, Q. Liang, J.X. Dong, W.G. Meng, Z.C. Xu, M.Z. Chen, F.G. Wang, Y. Cai, J.S. Zhang, N. Wang, E. Andrieu, A. Pineau. Investigation on high thermal stability and creep resistant modified inconel 718 with combined precipitation of ?" and ?'. Superalloys 718,625,706 and Various Derivatives, Edited by E.A. Loria, Pennsylvania: TMS, 1994, 711-720.
[10] W.D. Cao, R.L. Kennedy. The effect of phosphorous on mechanical properties of alloy 718. Superalooys 718,625,706 and Various Derivatives, Edited by E.A. Loria, Pennsylvania: TMS, 1994, 463-477.
[11] W.D. Cao, R.L. Kennedy. Effect and mechanism of phosphorus and boron on creep deformation of alloy 718. Superalooys 718,625,706 and Various Derivatives, Edited by E.A. Loria, Pennsylvania: TMS, 1997, 511-520.
[12] J.H. Du, X.D. Lu, Q. Deng, J.L. Qu, J.Y. Zhuang, Z.Y. Zhong. High-temperature structure stability and mechanical properties of novel 718 superalloy. Materials Science & Engineering A, 2007, A452-453: 584-591.
[13] J.H. Du, X.D. Lu, Q. Deng, J.L. Qu, J.Y. Zhuang, Z.Y. Zhong. Microstructure and mechanical properties of novel 718 superalloy. Acta Metallurgica Sinica, 2006, 19(6): 418-424.
[14] R.L. Kennedy. Allvac 718Plus, Superalloy for the Next Forty Years. Superalloys 718, 625, 706 and Various Derivatives, Edited by E.A. Loria, Pennsylvania: TMS, 2005, 1-14.
[15] J.H. Du, Q. Deng, J.X. Dong, et.al, Recent progress of manufacturing technologies on C & W superalloys in china. 8th International Symposium on Superalloy 718 and Derivatives, Pennsylvania: TMS, 2014, 33-46.
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