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2017 | OriginalPaper | Buchkapitel

9. Nickel-Based Superalloys

verfasst von : D. V. V. Satyanarayana, N. Eswara Prasad

Erschienen in: Aerospace Materials and Material Technologies

Verlag: Springer Singapore

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Abstract

Nickel-based superalloys are an exceptional class of structural materials for high temperature applications, particularly in the challenging environment of the turbine sections of aircraft engines. Continued improvements in the properties of these materials have been possible through close control of chemistry and microstructure as well as the introduction of advanced processing technologies. Surface modification by application of coating technology concurrent with the introduction of directional structures and then single crystals, has extended the useful temperature range of superalloys. Further improvements are likely with the development and implementation of tools for alloy design, microstructure-process evolution, and mechanical-property modelling. To date, six generations of single crystal (SC) nickel-based superalloys have been developed with improved creep properties and phase stability. Therefore it appears that the evolution of advanced nickel-based superalloys is a never ending process, and their replacement in turbine engine applications seems to be impossible at least for a few more decades. The present chapter is a brief review of various aspects pertaining to chemical composition, heat treatment, microstructure, properties and applications of both cast, and wrought alloys as well as the evolution of advanced cast nickel-based superalloys.

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Literatur
1.
Zurück zum Zitat Betteridge W (1974) The Nimonic alloys, and other Nickel-base high temperature alloys. In: Betteridge W, Heslop J (eds) Edward Arnold, London, UK Betteridge W (1974) The Nimonic alloys, and other Nickel-base high temperature alloys. In: Betteridge W, Heslop J (eds) Edward Arnold, London, UK
2.
Zurück zum Zitat Sims CT, Stoloff NS, Hagel WC (1987) Superalloys II. Wiley, Hoboken, NJ, USA Sims CT, Stoloff NS, Hagel WC (1987) Superalloys II. Wiley, Hoboken, NJ, USA
3.
Zurück zum Zitat Meetham GW, Van de Voorde MH (2000) Materials for high temperature engineering applications. Springer-Verlag, Berlin, Germany Meetham GW, Van de Voorde MH (2000) Materials for high temperature engineering applications. Springer-Verlag, Berlin, Germany
4.
Zurück zum Zitat Donachie MJ, Donachie SJ (2002) Superalloys: a technical guide, 2nd edn. ASM International. Materials Park, OH, USA Donachie MJ, Donachie SJ (2002) Superalloys: a technical guide, 2nd edn. ASM International. Materials Park, OH, USA
5.
Zurück zum Zitat Reed RC (2006) The superalloys: fundamentals and applications. Cambridge University Press, Cambridge, UK Reed RC (2006) The superalloys: fundamentals and applications. Cambridge University Press, Cambridge, UK
6.
Zurück zum Zitat Muktinutalapati NR (2011) Materials for gas turbines—an overview, advances in gas turbine technology. Benini E (ed). Intech Open Source Publisher: book.department@intechopen.com, pp 293–314 Muktinutalapati NR (2011) Materials for gas turbines—an overview, advances in gas turbine technology. Benini E (ed). Intech Open Source Publisher: book.department@intechopen.com, pp 293–314
7.
Zurück zum Zitat MacKay A, Gabb TP, Smialek JL, Nathal MV (2009) Alloy design challenge: development of low density superalloys for turbine blade applications. Rebecca Glenn Research Center, Cleveland, Ohio 44135, NASA/TM—2009-215819 MacKay A, Gabb TP, Smialek JL, Nathal MV (2009) Alloy design challenge: development of low density superalloys for turbine blade applications. Rebecca Glenn Research Center, Cleveland, Ohio 44135, NASA/TM—2009-215819
8.
Zurück zum Zitat Caron P, Khan T, Evolution of Ni-based superalloys for single crystal gas turbine blade applications. Aerosp Sci Technol 3(8):513–523 Caron P, Khan T, Evolution of Ni-based superalloys for single crystal gas turbine blade applications. Aerosp Sci Technol 3(8):513–523
9.
Zurück zum Zitat Khan T (1986) High temperature alloys for gas turbines and other applications. In: Betz W et al (eds) D. Reidel Publishing Company, Dordrecht, Holland, p 21 Khan T (1986) High temperature alloys for gas turbines and other applications. In: Betz W et al (eds) D. Reidel Publishing Company, Dordrecht, Holland, p 21
10.
Zurück zum Zitat Cetel AD, Duhl DN (1992) Second generation columnar grain Nickel-base superalloy. In: Antolo SD, Stusrud RW, MacKay RA, Anton L, Khan T, Kissinger RD, Klarstrom L (eds) Superalloys 1992, TMS, Warrendale, PA, USA, pp 287–296 Cetel AD, Duhl DN (1992) Second generation columnar grain Nickel-base superalloy. In: Antolo SD, Stusrud RW, MacKay RA, Anton L, Khan T, Kissinger RD, Klarstrom L (eds) Superalloys 1992, TMS, Warrendale, PA, USA, pp 287–296
11.
Zurück zum Zitat Pollock TM, Tin S (2006) Propulsion and power, vol 22, 2, p 361 Pollock TM, Tin S (2006) Propulsion and power, vol 22, 2, p 361
12.
Zurück zum Zitat Diego Colombo (2006–2007) Nickel-based superalloys and their application in the aircraft industry. Anno accademico, Universita Deglistudi Di Trento, Italy Diego Colombo (2006–2007) Nickel-based superalloys and their application in the aircraft industry. Anno accademico, Universita Deglistudi Di Trento, Italy
13.
Zurück zum Zitat Caron P, Lavigne O (2011) Recent studies at onera on superalloys for single crystal turbine blades. J Aerosp Lab 3, pp 1–14 Caron P, Lavigne O (2011) Recent studies at onera on superalloys for single crystal turbine blades. J Aerosp Lab 3, pp 1–14
14.
Zurück zum Zitat Second Generation single crystal superalloy(Developed under NIMS1/Toshiba2 collaboration), High Temperature Materials Group, Materials Engineering Laboratory (MEL), National Institute for Materials Science(NIMS), Japan, August, 2004 Second Generation single crystal superalloy(Developed under NIMS1/Toshiba2 collaboration), High Temperature Materials Group, Materials Engineering Laboratory (MEL), National Institute for Materials Science(NIMS), Japan, August, 2004
15.
Zurück zum Zitat Li JR, Zhong ZG, Tang DZ, Liu SZ, Wei P, Wei PY, Wu ZT, Huang D, Han M (2000) A Low-cost second geneution single crystal superalloy DD6. In: Pollock TM, Kissinger RD, Bowman RR, Green KA, McLean S, Olson, Schina JJ (eds) Superalloys 2000, TMS, Warrendale, PA, USA, pp 777–783 Li JR, Zhong ZG, Tang DZ, Liu SZ, Wei P, Wei PY, Wu ZT, Huang D, Han M (2000) A Low-cost second geneution single crystal superalloy DD6. In: Pollock TM, Kissinger RD, Bowman RR, Green KA, McLean S, Olson, Schina JJ (eds) Superalloys 2000, TMS, Warrendale, PA, USA, pp 777–783
16.
Zurück zum Zitat Cetel AD, Duhl DN (1988) Second generation nickel base single crystal superalloy. In: Reichman S, lhhl DN, Maurer G, Antolovich, S, Lund C (eds) Superalloys 1988, TMS, Warrendale, PA, USA, pp 235–244 Cetel AD, Duhl DN (1988) Second generation nickel base single crystal superalloy. In: Reichman S, lhhl DN, Maurer G, Antolovich, S, Lund C (eds) Superalloys 1988, TMS, Warrendale, PA, USA, pp 235–244
17.
Zurück zum Zitat Ericson Gary L, JOM BS (2006) A new third generation, single crystal, casting superalloy 47(5):36–39 Ericson Gary L, JOM BS (2006) A new third generation, single crystal, casting superalloy 47(5):36–39
18.
Zurück zum Zitat Walston S, O’Hara, KS, Ross EW, Pollock TM, Murphy WH (1996) RENE N6: third generation single crystal superalloy. In: Kissinger RD, Deye DJ, Anton DL, C&l AD, Nathal MV, Pollo TM, Woodford DA (eds) Superalloys 1996, TMS, Warrendale, PA, USA, pp 27–34 Walston S, O’Hara, KS, Ross EW, Pollock TM, Murphy WH (1996) RENE N6: third generation single crystal superalloy. In: Kissinger RD, Deye DJ, Anton DL, C&l AD, Nathal MV, Pollo TM, Woodford DA (eds) Superalloys 1996, TMS, Warrendale, PA, USA, pp 27–34
19.
Zurück zum Zitat Caron P, Khan T (1996) Evolution of Ni-based superalloys for single crystal gas turbine blade applications. Office National d’Etudeset de Recherches Aérospatiales (ONERA), BP72 - 92322, Châtillon Cedex, France Caron P, Khan T (1996) Evolution of Ni-based superalloys for single crystal gas turbine blade applications. Office National d’Etudeset de Recherches Aérospatiales (ONERA), BP72 - 92322, Châtillon Cedex, France
20.
Zurück zum Zitat Zietara M, Ceteland A, Czyrska-Filemonowicz A (2011), Microstructure stability of 4th generation single crystal superalloy, pwa 1497, during high temperature creep deformation. Materials Transactions, vol 52, no 3, pp 336–339 Zietara M, Ceteland A, Czyrska-Filemonowicz A (2011), Microstructure stability of 4th generation single crystal superalloy, pwa 1497, during high temperature creep deformation. Materials Transactions, vol 52, no 3, pp 336–339
21.
Zurück zum Zitat Walston S, Cetel A, MacKay R, O’Hara K, Duhl D, Dreshfield R (2004) Joint development of a fourth generation single crystal superalloy. In : 10th international symposium on superalloys cosponsored by the seven springs international symposium committee. The Minerals, Metals, and Materials Society (TMS), the TMS High Temperature Alloys Committee, and ASM International Champion, PA, USA, pp 19–23 Walston S, Cetel A, MacKay R, O’Hara K, Duhl D, Dreshfield R (2004) Joint development of a fourth generation single crystal superalloy. In : 10th international symposium on superalloys cosponsored by the seven springs international symposium committee. The Minerals, Metals, and Materials Society (TMS), the TMS High Temperature Alloys Committee, and ASM International Champion, PA, USA, pp 19–23
22.
Zurück zum Zitat Kawagishi Kyoko, Harada Hiroshi, Sato Akihiro, Kobayashi Toshiharu (2006) JOM 58(1):43–46CrossRef Kawagishi Kyoko, Harada Hiroshi, Sato Akihiro, Kobayashi Toshiharu (2006) JOM 58(1):43–46CrossRef
23.
Zurück zum Zitat Sato A, Yeh AC, Kobayashi T, Yokokawa T, Harada H, Murakumo T, Zhang JX (2007) Energy materials 2(1):19–25CrossRef Sato A, Yeh AC, Kobayashi T, Yokokawa T, Harada H, Murakumo T, Zhang JX (2007) Energy materials 2(1):19–25CrossRef
24.
Zurück zum Zitat Sato A, Harada H, Yeh A-C, Kawagishi K, Kobayashi T, Koizumi Y, Tadaharu Y, Zhang J-X (2008) A 5th generation SC superalloy with balanced high temperature properties and processability. In: Reed RC, Green KA, Caron P, Gabb, Fahrman MG, Huron ES, Wodard SA (eds) Superalloys 2008, TMS, Warrendale, PA, USA, pp 131–138 Sato A, Harada H, Yeh A-C, Kawagishi K, Kobayashi T, Koizumi Y, Tadaharu Y, Zhang J-X (2008) A 5th generation SC superalloy with balanced high temperature properties and processability. In: Reed RC, Green KA, Caron P, Gabb, Fahrman MG, Huron ES, Wodard SA (eds) Superalloys 2008, TMS, Warrendale, PA, USA, pp 131–138
25.
Zurück zum Zitat Nickel base single crystal superalloys, TMS-196, July, 2008, High temperature materials center, National Institute for Materials Science, Japan Nickel base single crystal superalloys, TMS-196, July, 2008, High temperature materials center, National Institute for Materials Science, Japan
26.
Zurück zum Zitat Kawagishi K, Yeh A-C, Yokokawa T, Kobayashi T, Koizumi Y, Harada H (2012) Development of an oxidation resistant high strength sixth generation SC superalloy. In: 12th international symposium on superalloys. In: Huron ES, Reed RC, Hardy MC, Mills MJ, Montero RE, Portella PD, Telesman J (eds) TMS, Warrendale, PA, USA, pp 189–195 Kawagishi K, Yeh A-C, Yokokawa T, Kobayashi T, Koizumi Y, Harada H (2012) Development of an oxidation resistant high strength sixth generation SC superalloy. In: 12th international symposium on superalloys. In: Huron ES, Reed RC, Hardy MC, Mills MJ, Montero RE, Portella PD, Telesman J (eds) TMS, Warrendale, PA, USA, pp 189–195
27.
Zurück zum Zitat Ross EW (1967) Rene 100-a sigma-free turbine blade alloy. J Met 19(12):12–14 Ross EW (1967) Rene 100-a sigma-free turbine blade alloy. J Met 19(12):12–14
28.
Zurück zum Zitat Nystrom JD, Nystrom TM, Murphy WH, Garg A (1997) Discontinuous cellular precipitation in a high-refractory nickel-base superalloy. Metall Mater Trans 28A:2443–2452CrossRef Nystrom JD, Nystrom TM, Murphy WH, Garg A (1997) Discontinuous cellular precipitation in a high-refractory nickel-base superalloy. Metall Mater Trans 28A:2443–2452CrossRef
29.
Zurück zum Zitat Wlodek ST (1964) The structure of IN100. Trans ASM 57:110–119 Wlodek ST (1964) The structure of IN100. Trans ASM 57:110–119
30.
Zurück zum Zitat Rae CMF, Reed RC (2001) The precipitation of topologically close-packed phases in rhenium-containing superalloys. Acta Mater 49(10):4113–4125CrossRef Rae CMF, Reed RC (2001) The precipitation of topologically close-packed phases in rhenium-containing superalloys. Acta Mater 49(10):4113–4125CrossRef
31.
Zurück zum Zitat Darolia R, Lahrman DF, Field RD (1988) Formation of topologically closed packed phases in nickel base single crystal superalloys. TMS, Warrendale, PA, USA, pp 255–264 Darolia R, Lahrman DF, Field RD (1988) Formation of topologically closed packed phases in nickel base single crystal superalloys. TMS, Warrendale, PA, USA, pp 255–264
32.
Zurück zum Zitat Agren J (1996) Calculation of phase diagrams: Calphad. Curr Opin Solid State Mater Sci 1:355–360CrossRef Agren J (1996) Calculation of phase diagrams: Calphad. Curr Opin Solid State Mater Sci 1:355–360CrossRef
33.
Zurück zum Zitat Kattner UR (1997) Thermodynamic modeling of multicomponent phase equilibria. J Met 49(12):14–19 Kattner UR (1997) Thermodynamic modeling of multicomponent phase equilibria. J Met 49(12):14–19
34.
Zurück zum Zitat Saunders N, Fahrmann M, Small CJ (2000) The application of CALPHAD calculations to Ni-Based superalloys. Superalloys 2000. TMS, Warrendale, PA, USA, pp 803–811CrossRef Saunders N, Fahrmann M, Small CJ (2000) The application of CALPHAD calculations to Ni-Based superalloys. Superalloys 2000. TMS, Warrendale, PA, USA, pp 803–811CrossRef
35.
Zurück zum Zitat Wu K, Chang YA, Wang Y (2004) Simulating interdiffusion microstructuresin Ni–Al–Cr diffusion couples: a phase field approach coupled with calphad database. ScriptaMaterialia 50:1145–1150 Wu K, Chang YA, Wang Y (2004) Simulating interdiffusion microstructuresin Ni–Al–Cr diffusion couples: a phase field approach coupled with calphad database. ScriptaMaterialia 50:1145–1150
37.
Zurück zum Zitat Loria ED (1989) Proceedings of conference on superalloy 718—metallurgy and applications, TMS, Warrendale, PA, USA Loria ED (1989) Proceedings of conference on superalloy 718—metallurgy and applications, TMS, Warrendale, PA, USA
38.
Zurück zum Zitat Loria ED (1991) Proceedings of conference on superalloy 718, 625 and various derivatives. TMS, Warrendale, PA, USA Loria ED (1991) Proceedings of conference on superalloy 718, 625 and various derivatives. TMS, Warrendale, PA, USA
39.
Zurück zum Zitat Loria ED (1994) Superalloys 718, 625, and various derivatives. The Minerals, Metals & Materials Society, Warrendale, PA, USA Loria ED (1994) Superalloys 718, 625, and various derivatives. The Minerals, Metals & Materials Society, Warrendale, PA, USA
40.
Zurück zum Zitat Loria ED (1997) Superalloys 718, 625, 706 and various derivatives. The Minerals, Metals & Materials Society. Warrendale, PA, USA Loria ED (1997) Superalloys 718, 625, 706 and various derivatives. The Minerals, Metals & Materials Society. Warrendale, PA, USA
41.
Zurück zum Zitat Loria ED (2001) Proceedings of the fifth international conference on superalloys 718, 625, 706 and various derivatives. TMS, Warrendale, PA, USA Loria ED (2001) Proceedings of the fifth international conference on superalloys 718, 625, 706 and various derivatives. TMS, Warrendale, PA, USA
42.
Zurück zum Zitat Loria ED (2005) Proceedings of sixth international symposium on superalloys 718, 625, 706 and derivatives. TMS, Warrendale, PA, USA Loria ED (2005) Proceedings of sixth international symposium on superalloys 718, 625, 706 and derivatives. TMS, Warrendale, PA, USA
43.
Zurück zum Zitat Furrer D, Fecht H (1999) JOM, vol 51, 1, pp 14–17 Furrer D, Fecht H (1999) JOM, vol 51, 1, pp 14–17
44.
Zurück zum Zitat Das N, Trans. IIM, vol 63, 210, pp 265–274 Das N, Trans. IIM, vol 63, 210, pp 265–274
45.
Zurück zum Zitat Tien JK, Caulfield T (1988) Superalloys, supercomposites and superceramics. Academic Press, New York, USA Tien JK, Caulfield T (1988) Superalloys, supercomposites and superceramics. Academic Press, New York, USA
46.
Zurück zum Zitat Tin S, Pollock TM, Murphy W (2001) Stabilization of thermosolutal convective instabilities in Ni-based single crystal superalloys: carbon additions and freckle formation. Metall Mater Trans 32A(7):1743–1753CrossRef Tin S, Pollock TM, Murphy W (2001) Stabilization of thermosolutal convective instabilities in Ni-based single crystal superalloys: carbon additions and freckle formation. Metall Mater Trans 32A(7):1743–1753CrossRef
47.
Zurück zum Zitat Tin S, Pollock TM (2004) Predicting freckle formation in single crystal Ni-base superalloys. J Mater Sci 39(24):7199–7205CrossRef Tin S, Pollock TM (2004) Predicting freckle formation in single crystal Ni-base superalloys. J Mater Sci 39(24):7199–7205CrossRef
48.
Zurück zum Zitat Beckermann C, Gu JP, Boettinger WJ (2000) Development of a freckle predictor via rayleigh number method for single-crystal superalloy castings. Metall Mater Trans 31A(10):2545–2557CrossRef Beckermann C, Gu JP, Boettinger WJ (2000) Development of a freckle predictor via rayleigh number method for single-crystal superalloy castings. Metall Mater Trans 31A(10):2545–2557CrossRef
49.
Zurück zum Zitat Wang W, Lee PD, McLean M (2003) A model of solidification microstructures in Nickel-Based superalloys: Predicting primary dendrite spacing selection. Acta Mater 51(10):2971–2987CrossRef Wang W, Lee PD, McLean M (2003) A model of solidification microstructures in Nickel-Based superalloys: Predicting primary dendrite spacing selection. Acta Mater 51(10):2971–2987CrossRef
50.
Zurück zum Zitat Pollock TM, Murphy WH (1996) The breakdown of solidification in high refractory nickel-base superalloys. Metall Mater Trans 27A(4):1081–1094CrossRef Pollock TM, Murphy WH (1996) The breakdown of solidification in high refractory nickel-base superalloys. Metall Mater Trans 27A(4):1081–1094CrossRef
51.
Zurück zum Zitat Giamei AF, Kear BH (1970) Nature of freckles in nickel-base superalloys. Metall Trans A 1:2185–2192CrossRef Giamei AF, Kear BH (1970) Nature of freckles in nickel-base superalloys. Metall Trans A 1:2185–2192CrossRef
52.
Zurück zum Zitat Copley SM, Giamei AF, Johnson SM, Hornbecker MF (1970) Origin of freckles in unidirectionally solidified castings. Metall Trans A 1(8):2193–2204CrossRef Copley SM, Giamei AF, Johnson SM, Hornbecker MF (1970) Origin of freckles in unidirectionally solidified castings. Metall Trans A 1(8):2193–2204CrossRef
53.
Zurück zum Zitat Giamei AF, Tschinkel JG (1976) Liquid metal cooling—a new solidification technique. Metall Trans A 7A:1427–1434CrossRef Giamei AF, Tschinkel JG (1976) Liquid metal cooling—a new solidification technique. Metall Trans A 7A:1427–1434CrossRef
54.
Zurück zum Zitat Elliott AJ, Tin S, King WT, Huang SC, Gigliotti MFX, Pollock TM (2004) Directional solidification of large superalloy castings with radiation and liquid-metal cooling: a comparative assessment. Metall Mater Trans A 35A(10):3221–3231CrossRef Elliott AJ, Tin S, King WT, Huang SC, Gigliotti MFX, Pollock TM (2004) Directional solidification of large superalloy castings with radiation and liquid-metal cooling: a comparative assessment. Metall Mater Trans A 35A(10):3221–3231CrossRef
55.
Zurück zum Zitat Huron ES (1992) Serrated yielding in a nickel-base superalloy. TMS, Warrendale, PA, USA, pp 675–684 Huron ES (1992) Serrated yielding in a nickel-base superalloy. TMS, Warrendale, PA, USA, pp 675–684
56.
Zurück zum Zitat Pollock TM, Field RD (2002) Dislocations and high temperature plastic deformation of superalloy single crystals. In: Nabarro FRN, Duesbery MS (eds) Dislocations in solids, vol 11. Elsevier, Amsterdam, pp 549–618 Pollock TM, Field RD (2002) Dislocations and high temperature plastic deformation of superalloy single crystals. In: Nabarro FRN, Duesbery MS (eds) Dislocations in solids, vol 11. Elsevier, Amsterdam, pp 549–618
58.
Zurück zum Zitat Kear BH, Wilsdorf HGF (1962) Trans Metall Soc AIME 224:382–386 Kear BH, Wilsdorf HGF (1962) Trans Metall Soc AIME 224:382–386
59.
Zurück zum Zitat Copley SM, Kear BH (1967) Trans AIME 239:984–992 Copley SM, Kear BH (1967) Trans AIME 239:984–992
60.
Zurück zum Zitat Murakumo T, Kobayashi T, Koizumi Y, Harada H (2004) Creep of Ni-base single-crystal superalloys with various gamma volume fraction. Acta Mater 52(12):3737–3744CrossRef Murakumo T, Kobayashi T, Koizumi Y, Harada H (2004) Creep of Ni-base single-crystal superalloys with various gamma volume fraction. Acta Mater 52(12):3737–3744CrossRef
61.
Zurück zum Zitat Karunarante MSA, Reed RC (2003) Interdiffusion of platinum-group metals in nickel at elevated temperatures. Acta Mater 51(10):2905–2914CrossRef Karunarante MSA, Reed RC (2003) Interdiffusion of platinum-group metals in nickel at elevated temperatures. Acta Mater 51(10):2905–2914CrossRef
62.
Zurück zum Zitat Reed RC, Karunarantne MSA (2000) Interdiffusion in the face-centered cubic Phase of Ni–Re, Ni–Ta and Ni–W systems between 900 °C and 1300 °C. Mater Sci Eng A 281(1–2):229–233 Reed RC, Karunarantne MSA (2000) Interdiffusion in the face-centered cubic Phase of Ni–Re, Ni–Ta and Ni–W systems between 900 °C and 1300 °C. Mater Sci Eng A 281(1–2):229–233
63.
Zurück zum Zitat Walston WS, Cetel A, MacKay R, O’Hara K, Duhl D, Dreshfield R, Joint development of a fourth generation single crystal superalloy. TMS, Warrendale, PA, USA, pp 15–24 Walston WS, Cetel A, MacKay R, O’Hara K, Duhl D, Dreshfield R, Joint development of a fourth generation single crystal superalloy. TMS, Warrendale, PA, USA, pp 15–24
64.
Zurück zum Zitat Tanaka R (2000) Research and development of ultra-high temperature materials in Japan. Mater High Temp 17(4):457–464CrossRef Tanaka R (2000) Research and development of ultra-high temperature materials in Japan. Mater High Temp 17(4):457–464CrossRef
65.
Zurück zum Zitat Shyam A, Torbet CJ, Jha SK, Larsen JM, Caton MJ, Szczepanski CJ, Pollock TM, Jones JW (2004) Development of ultrasonic fatigue for rapid, high temperature fatigue studies in turbine engine materials. TMS, Warrendale, PA, USA, pp 259–267 Shyam A, Torbet CJ, Jha SK, Larsen JM, Caton MJ, Szczepanski CJ, Pollock TM, Jones JW (2004) Development of ultrasonic fatigue for rapid, high temperature fatigue studies in turbine engine materials. TMS, Warrendale, PA, USA, pp 259–267
66.
Zurück zum Zitat Miner RV, Gayada J, Maier RD (1982) Fatigue and creep fatigue deformation of several nickel-base superalloys at 650 °C. Metall Trans A 13A(10):1755–1765CrossRef Miner RV, Gayada J, Maier RD (1982) Fatigue and creep fatigue deformation of several nickel-base superalloys at 650 °C. Metall Trans A 13A(10):1755–1765CrossRef
67.
Zurück zum Zitat Clavel M, Pineau A (1982) Fatigue behavior of two nickel-base alloys: Experimental results on low cycle fatigue, fatigue crack propagation and substructures. Mater Sci Eng 55(2):157–171CrossRef Clavel M, Pineau A (1982) Fatigue behavior of two nickel-base alloys: Experimental results on low cycle fatigue, fatigue crack propagation and substructures. Mater Sci Eng 55(2):157–171CrossRef
68.
Zurück zum Zitat Chan KS, Hack JE, Leverant GR (1987) Fatigue crack growth in mar-m200 single crystals. Metall Trans 18A(4):581–591CrossRef Chan KS, Hack JE, Leverant GR (1987) Fatigue crack growth in mar-m200 single crystals. Metall Trans 18A(4):581–591CrossRef
69.
Zurück zum Zitat Antolovich SD, Lerch B (1989) Cyclic deformation, fatigue and fatigue crack propagation in Ni-base alloys. In: Tien JK, Caulfield T (eds) Superalloys, supercomposites and superceramic. Academic Press, New York, USA, pp 363–412CrossRef Antolovich SD, Lerch B (1989) Cyclic deformation, fatigue and fatigue crack propagation in Ni-base alloys. In: Tien JK, Caulfield T (eds) Superalloys, supercomposites and superceramic. Academic Press, New York, USA, pp 363–412CrossRef
70.
Zurück zum Zitat Wright PK, Jain M, Cameron D (2004) High cycle fatigue in a single crystal superalloy: time dependence at elevated temperature. TMS, Warrendale, PA, pp 657–666 Wright PK, Jain M, Cameron D (2004) High cycle fatigue in a single crystal superalloy: time dependence at elevated temperature. TMS, Warrendale, PA, pp 657–666
71.
Zurück zum Zitat Crompton JS, Martin JW (1984) Crack growth in a single crystal superalloy at elevated temperature. Metall Trans A 15A:1711–1718CrossRef Crompton JS, Martin JW (1984) Crack growth in a single crystal superalloy at elevated temperature. Metall Trans A 15A:1711–1718CrossRef
72.
Zurück zum Zitat Larsen JM, Christodoulou (2004) Using materials prognosis to maximize the utilization of complex mechanical systems. J Met 56(3):15–28 Larsen JM, Christodoulou (2004) Using materials prognosis to maximize the utilization of complex mechanical systems. J Met 56(3):15–28
74.
Zurück zum Zitat Das N (2008) Unpublished work, DMRL, Hyderabad, India Das N (2008) Unpublished work, DMRL, Hyderabad, India
Metadaten
Titel
Nickel-Based Superalloys
verfasst von
D. V. V. Satyanarayana
N. Eswara Prasad
Copyright-Jahr
2017
Verlag
Springer Singapore
DOI
https://doi.org/10.1007/978-981-10-2134-3_9

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