Inconel® Alloy 740: Potential for Use in A-USC Castings
Paul D. Jablonski,
Jeffrey A. Hawk,
Paul D. Jablonski
National Energy Technology Laboratory, 1450 Queen Avenue SW, Albany, OR 97321 United States
Search for more papers by this authorJeffrey A. Hawk
National Energy Technology Laboratory, 1450 Queen Avenue SW, Albany, OR 97321 United States
Search for more papers by this authorPaul D. Jablonski,
Jeffrey A. Hawk,
Paul D. Jablonski
National Energy Technology Laboratory, 1450 Queen Avenue SW, Albany, OR 97321 United States
Search for more papers by this authorJeffrey A. Hawk
National Energy Technology Laboratory, 1450 Queen Avenue SW, Albany, OR 97321 United States
Search for more papers by this authorBook Editor(s):Eric Ott, Anthony Banik,
Joel Andersson,
Ian Dempster,
Tim Gabb, Jon Groh, Karl Heck, Randy Helmink,
Xingbo Liu,
Agnieszka Wusatowska-Sarnek,
Anthony 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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Experimental
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Results and Discussion
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Summary and Conclusions
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Disclaimer
References
- R. Viswanathan, J.F. Henry, J. Tanzosh, G. Stanko, J. Shingledecker, B. Vitalis, and R. Purgert, “U.S. Program on Materials Technology for Ultra-Supercritical Coal Power Plants,” J. Mater. Engr. Perform., 14 (2005) 281-292.
- R. Viswanathan, A.F. Armor and G. Booras, “A Critical Look at Supercritical Power Plants,” Power, 4 (2004) 42-49.
- http://www.netl.doe.gov/technologies/coalpower/advresearch/Ultrasupercritical.html.
- M.T. Perrot-Simonetta and A. Kobylanski, “Influence of Trace Elements on Hot Ductility of an Ultra High Purity Invar Alloy,” J. Phys. IV France, 05 (1995) C7-323-C7-334.
- R. Le Gall, G. Dazelle, O. Danylova, and S. Witzke, “Effect of Sulfur and Phosphorus on Ductility of As Cast Iron-Nickel-Chromium Alloys, Direct Observations on In-Situ Fractured Surface by AES and TEM,” Mater. Sci. Forum, 426-432 (2003) 1041-1046.
- D. McLean, Grain Boundaries in Metals (Oxford, UK: Clarendon Press, 1957).
- M. Allart, F. Christien, R. Le Gall, P. Nowakowski and C.R.M. Grosvenor, “A Multitechnique Investigation of Sulfur Grain Boundary Segregation in Nickel,” Scripta Mater., 68 (2013) 793-796.
- M. Allart, F. Christien and R. Le Gall, “Ultra-fast Sulphur Grain Boundary Segregation During Hot Deformation of Nickel,” Acta Mater., 61 (2013) 7938-7946.
- A.B. Vladimirov, V.N. Kaigorodov, S.M. Klotsman and IS. Trakhtenberg, “Diffusion of Antimony in Nickel,” Fiz. Met. Metalloved, 39 (1975) 319.
- R. Le Gall and G. Saindrenan, “Effects of Metastable Diffusion Short-Circuits on Surface Segregation,” Interface Sci., 11 (2003) 59-66.
- F. Christien, R. Le Gall and G. Saindrenan, “Application of Percolation Theory to Surface Segregation During Recovery,” Acta Mater., 51 (2003) 521-534.
- THERMOCALC, Version 3.1 (Stockholm, Sweden: Royal Institute of Technology, 2013).
- D. Li, F. Cosandey, G. E. Maurer, R. Foote, and J. K. Tien, “Understanding the Role of Cerium During VIM Refining of Nickel-Chromium and Nickel-Iron Alloys,” Metall. Trans. B, 13 (1982) 603-611.
- P.D. Jablonski, J.A. Hawk, C.J. Cowen and P.J. Maziasz, “ Processing of Advanced Alloys for A-USC Steam Turbine Applications,” Proc. 6th Int. Conf on Adv. in Mat. Tech. for Fossil Power Plants, D. Gandy, J.P. Shingledecker, and R. Viswanathan, Eds., (Palo Alto, CA: Electric Power Research Institute, 2010) 872-885.
- P.D. Jablonski and C.J. Cowen, “Homogenizing a Nickel-Based Superalloy: Thermodynamic and Kinetic Simulation and Experimental Results,” Metall. Trans. B, 40 (2009) 182-186.
- P.D. Jablonski and C.J. Cowen, “ Computationally Optimized Homogenization Heat Treatment of Metal Alloys,” S-119,015, U.S. Patent Office, August, 2009.
- H.F. Taylor, E.A. Rominski and C.W. Briggs, “The Fluidity of Ingot Iron and Carbon and Alloy Cast Steels,” Trans. AFS, 49 (1941) 1-93.
- P.D. Jablonski, “ Induction Furnace Testing of the Durability of Prototype Crucibles in a Molten Metal Environment,” Proc. 2005 Int. Symp. Liq. Metal Processing and Casting, P.D. Lee, A. Mitchell, R.L. Williamson and A.S. Ballantyne, Eds., (Materials Park, OH: ASM International, 2005) 113–119.
- E. Scheil, “Bemerkungen zur schichtkristallbildung,” Z. Metallkd, 34 (1942) 70-72 (in German).
- G.H. Gulliver, “The Quantitative Effect of Rapid Cooling Upon the Constitution of Binary Alloys,” J. Inst. Met., 9 (1913) 120-57.
- DICTRA, Version 25 (Stockholm, Sweden: Royal Institute of Technology, 2008).
- Special Metals, Inconel Alloy 740, SMC-090 (2004) 4 pages.
- S.J. Patel, “Introduction to Inconel Alloy 740: An Alloy Designed for Superheater Tubing in Coal-Fired Ultra-Supercritical Boiler,” Acta Metall. Sinica, 18 (2005) 479-488.
- J.P. Shingledecker and G.M. Pharr, “The Role of Eta Phase Formation on the Creep Strength and Ductility of INCONEL Alloy 740 at 1023 K (750d̀C),” Metall. Mater. Trans. A, 43 (2012) 1902-1910.
- J.P. Shingledecker, N.D. Evans and G.M. Pharr, “Influence of Composition and Grain Size on the Creep Rupture Behavior of Inconel Alloy 740,” Mater. Sci. Eng. A, 578 (2013) 277-286.
- A.M. Casias, “ Influence of Composition on Precipitation Behavior and Stress Rupture Properties in INCONEL® 740 Series Superalloys,” Ph.D. Dissertation, Colorado School of Mines, 2013.
- C.J. Cowen, P.E. Danielson and P.D. Jablonski, “The Microstructural Evolution of Inconel Alloy 740 During Solution Heat Treatment, Aging, and Exposure at 760d̀C,” J. Mater. Engr. Perform., 20 (2011) 1078-1083.
- W.R. Sun, S.R. Guo, S.Z. Lu and Z.O. Hu, “Effect of Sulfur on the Solidification and Segregation in Inconel 718 Alloy,” Mater. Letters, 31 (1997) 195-200.