The Effect of Composition on the Gamma Prime Distribution of Ni-Cr-Al-Nb Alloys
P.M. Mignanelli
Department of Materials Science and Metallurgy, University of Cambridge, Cambridge, CB3 0FS, UK
Search for more papers by this authorN.G. Jones
Department of Materials Science and Metallurgy, University of Cambridge, Cambridge, CB3 0FS, UK
Search for more papers by this authorH.J. Stone
Department of Materials Science and Metallurgy, University of Cambridge, Cambridge, CB3 0FS, UK
Search for more papers by this authorP.M. Mignanelli
Department of Materials Science and Metallurgy, University of Cambridge, Cambridge, CB3 0FS, UK
Search for more papers by this authorN.G. Jones
Department of Materials Science and Metallurgy, University of Cambridge, Cambridge, CB3 0FS, UK
Search for more papers by this authorH.J. Stone
Department of Materials Science and Metallurgy, University of Cambridge, Cambridge, CB3 0FS, UK
Search for more papers by this authorAnthony Banik
Search for more papers by this authorJoel Andersson
Search for more papers by this authorIan Dempster
Search for more papers by this authorRandy Helmink
Search for more papers by this authorXingbo Liu
Search for more papers by this authorAgnieszka Wusatowska-Sarnek
Search for more papers by this authorSummary
This chapter contains sections titled:
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Introduction
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Material and Experimental Procedures
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Results
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Discussion
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Conclusions
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Acknowledgements
References
- European aeronautics: A vision for 2020, European Commission, 2001
- Flightpath 2050 Europe's vision for aviation, European Commission, 2011
- R.C. Reed, The Superalloys: Fundamentals and Applications, Cambridge University Press, 2006
10.1017/CBO9780511541285 Google Scholar
- M.P. Jackson and R.C. Reed, Heat treatment of UDIMET 720Li: the effect of microstructure on properties, Materials Science and Engineering A, Vol. 259, p 85–97, 1999
- D. Raynor and J.M. Silcock, Strengthening mechanisms in γ′-precipitating alloys, Metal Science Journal, Vol. 4, p 121–130, 1970
- W. Huther and B. Reppich, Interaction of dislocations with coherent, stress-free, ordered particles, Z. Metallkunde, Vol. 69, p 628–634, 1978
- E. Balikci, R.A. Mirshams and A. Raman, Tensile strengthening in the nickel-base superalloy IN738LC, Journal of Materials Engineering and Performance, Vol. 9, No. 3, 324–329, 2000
- M. Aghaie-Khafri and M. Hajjavady, The effect of thermal exposure on the properties of a Ni-base superalloy, Materials Science and Engineering A, Vol. 487, p 388–393, 2008
- D.M. Collins, H.J. Stone, A modelling approach to yield strength optimisation in a nickel-base superalloy, International Journal of Plasticity, Vol. 54, p 96–112, 2014
- J.K. Tien, J.P. Collier and G. Vignoul, The role of niobium and other refractory elements in superalloys, Superalloys 718, 625, 706 and derivatives, p 553–566, 1989
- Z.Y. Meng, G.C. Sun and M.L. Li, The strengthening effect of tantalum in nickel-base superalloys, TMS Superalloys, p563-572, 1984
- Y. Xu, L. Zhang, J. Li, X. Xiao, X. Cao, G. Jia and Z. Shen, Relationship between Ti/Al ratio and stress-rupture properties in nickel-based superalloys, Materials Science and Engineering A, Vol. 544, p 48–53, 2012
- G.N. Maniar, J.E. Bridge, Jr., H.M. James and G.B. Heydt, Correlation of gamma-gamma prime mismatch and strengthening in Ni/Fe-Ni base alloys containing aluminium and titanium as hardeners, Metallurgical Transactions, Vol. 1, p 31–42, 1970
- R.F. Miller and G.S. Ansell, Low temperature mechanical behavior of Ni-15Cr-Al-Ti-Mo alloys, Metallurgical Transactions A, Vol. 8, p 1979–1991, 1977
- E.C. Guo and F.J. Ma, The strengthening effect of Nb on Ni-Cr-Ti type wrought superalloy, TMS Superalloys, p431-438, 1980
- M.S.A Karunaratne and R.C. Reed, Inter diffusion of the platinum-group metals in nickel at elevated temperatures, Acta Materialia, Vol. 51,p p 905–2919, 2003
- Y. Mishima, S. Ochiai, N. Hamao, M. Yodogawa and T. Suzuki, Solid solution hardening of nickel - Role of transition metal and B-subgroup solutes, Transactions of the Japan Institute of Metals, Vol. 27, No. 9, p 656–664, 1986
- D.W. Scott, On optimal and data-based histograms, Biometrika, Vol. 66, No. 3, p 605–610, 1979
- W.T. Loomis, J.W. Freeman and D.L. Sponseller, The influence of molybdenum on the γ′ phase in experimental nickel-base superalloys, Metallurgical Transactions, Vol. 3, p 989–1000, 1972
- R.A. Ricks, A.J. Porter and R.C. Ecob, The growth of γ′ precipitates in nickel-base superalloys, Acta Metallurgica, Vol. 31, p 43-53, 1983
- P. Nash, Phase Diagrams of Binary Nickel Alloys, ASM International, 1991
- D.A. Grose and G.S. Ansell, The influence of coherency strain on the elevated temperature tensile behavior of Ni-15Cr-AI-Ti-Mo alloys, Metallurgical Transactions A, 1981, 12A, (9), p l631–1645
- D. Locq, M. Marty and P. Caron, Optimisation of the mechanical properties of a new PM superalloy for disk applications, TMS Superalloys, p 395–403, 2000
- A.M. Wusatowska-Sarnek, M.J. Blackburn and M. Aindow, Techniques for microstructural characterization of powder-processed nickel-based superalloys, Materials Science and Engineering A, Vol. 360, p 390-395, 2003