[1] Metallurgy, Processing and Properties of Superalloys, Heat
Resistant Materials, ASM Specialty Handbook, ASM International, Edited
by J. R. Davis, p. 221-254.
[2] F. Decker, Strengthening mechanisms in nickel-base superalloys,
Steel Strengthening Mechanisms Symposium, Zurich, Switzerland, (1969),
275-296.
[3] The Superalloys, Edited by C. T. Sims and W. C. Hagel, John Wiley
& Sons, 1972, p. 3.
[4] R. H. Kane, The Evolution of High Temperature Alloys: A Designers
Perspective, Heat-Resistant Materials, Proceedings of the First
International Conference, Florida, Sisconsin, USA/23-26 September,
1991, pg 1 edited by K. Natesan and D. J. Tillack.
[5] Gary L. Ericson, Cannon-Muskegon Corporation, Polycrystalline Cast
Superalloys, ASM Handbook, Vol. 1, p. 982.
[6] Tresa M. Pollock and Sammy Tin, Nickel-based superalloys for
advanced turbine engines: Chemistry, microstructure, and properties,
Journal of Propulsion and Power 22(2) (2006), 361.
[7] J. W. Brooks and P. J. Bridges, Metallurgical Stability of Inconel
Alloy 718, Superalloys, Edited by S. Reichman, D. N. Dulhl, G. Maurer,
S. Antolovich and C. Lund, (1988), 33, in English.
[8] Mathew J. Donachie and Stephen J. Donachie, Superalloys, A
Technical Guide, 2nd Edition, ASM International, Materials Park, OH,
2002, p 1-9.
[9] X. Huang and M. C. Chaturvedi, An investigation of microstrcuture
and HAZ microfissuring of cast alloy Su 718, superalloys 718, 625, 706
and various derivatives, Edited by E. A. Loria, The Minerals, Metals &
Materials Society (1994), 871-880.
[10] T. D. Bayha, M. Lu and K. E. Kloske, Investment casting of
Allvac® 718 plus™ alloy, superalloys 718, 625, 706 and
derivatives, Edited by E. A. Loria, TMS, The Minerals, Metals &
Materials Society (2005), 223.
[11] Zhu Yaoxiao, Zhang Shunnan, Xu Leying, Bi Jing, Hu Zhuangqi and
Shi Changxu, Superalloys with low segregation, superalloys, Edited by
S. Reichman, D. N. Dulhl, G. Maurer, S. Antolovich and C. Lund,
(1988), 703.
[12] John J. Schirra, Development of an improved heat treatment for
investment cast inconel 718 (PWA 649), superalloys 718, 625, 706 and
various derivatives, Edited by E. A. Loria, The Minerals, Metals &
Materials Society (1997), 439-446, in English.
[13] John F. Radavich, The physical metallurgy of cast and wrought
alloy 718, superalloy 718-metallurgy & application, The Minerals,
Metals & Materials Society (1989), 229-240.
[14] Swati Biswas, M. D. Ganeshachar, B. R. Sridhar and S.
Ramachandra, Studies on elemental heterogeneity in investment cast Su
718 using scanning electron microscopy (SEM), EMSI Golden Jubilee
Conference ( 50), 6-8th July 2011, Hyderabad, India.
[15] AMS 5383E, SAE Aerospace Materials Specification, 2007.
[16] C. T. Sims, Niobium in superalloys: A perspective, High
Temperature Technology 2(4) (1984), 185-201.