Skip to main content

Zusammenfassung

Zu den Hochtemperaturwerkstoffen werden alle Materialien gezählt, die oberhalb rund 500 °C dauerhaft für Bauteile eingesetzt werden können und damit langzeitig ausreichende mechanische Eigenschaften und Hochtemperatur-Korrosionsbeständigkeit aufweisen müssen. Dafür kommen metallische und keramische Werkstoffe in Frage sowie intermetallische Phasen, welche eine Stellung zwischen den Metallen und den Keramiken einnehmen.

This is a preview of subscription content, log in via an institution to check access.

Access this chapter

Chapter
USD 29.95
Price excludes VAT (USA)
  • Available as PDF
  • Read on any device
  • Instant download
  • Own it forever
eBook
USD 54.99
Price excludes VAT (USA)
  • Available as PDF
  • Read on any device
  • Instant download
  • Own it forever

Tax calculation will be finalised at checkout

Purchases are for personal use only

Institutional subscriptions

Preview

Unable to display preview. Download preview PDF.

Unable to display preview. Download preview PDF.

Weiterführende Literatur zu Kap. 6

  1. T.B. Massalski (Ed.), Binary Alloys Phase Diagrams, ASM International, Materials Park/Ohio, 1990

    Google Scholar 

  2. J. Falke, M. Regitz (Hrsg.), Römpp Chemie-Lexikon, Georg Thieme Verlag, Stuttgart, 1990

    Google Scholar 

  3. G.R. Wallwork, Rep. Prog. Phys. 39 (1976), 401–485

    CAS  Google Scholar 

  4. Stahl-Eisen-Liste, Verein Deutscher Eisenhüttenleute (Hrsg.), Verlag Stahleisen, Düsseldorf, 9. Aufl., 1994

    Google Scholar 

  5. M.J. Bennett, D.P. Moon, in: The Role of Active Elements in the Oxidation Behaviour of High Temperature Metals and Alloys, E. Lang (Ed.), Elsevier Appl. Sci., London, 1989, 111–129

    Chapter  Google Scholar 

  6. J. Glen, J. Iron Steel Inst., 186 (1957), 34

    Google Scholar 

  7. A. Rahmel, Mitt. VGB, 74 (1961), 319–332

    Google Scholar 

  8. H. Naoi et al., in: D. Coutsouradis et al. (Eds.), Materials for Advanced Power Engineering 1994, Part I, Kluwer Academic Publ., Dordrecht, 1994, 425–434

    Chapter  Google Scholar 

  9. J.H. Davidson et al., in: Behaviour of High Temperature Alloys in Aggressive Environments, I. Kirman et al. (Eds.), Proc. Int. Conf. Petten/The Netherlands, 15–18 Oct. 1979, The Metals Society, London, 1980, 209–224

    Google Scholar 

  10. Y. Mishima, S. Ochiai, T. Suzuki, Acta metall. 33 (1985), 1161–1169

    Article  CAS  Google Scholar 

  11. D.R. Coupland, C.W. Hall, I.R. McGill, Platinum Metals Rev., 26 (1982), 146–157

    CAS  Google Scholar 

  12. G. Frank, Dissertation Universität Erlangen-Nürnberg, 1990

    Google Scholar 

  13. T.M. Pollock, A.S. Argon, Acta metall. mater., 42 (1994), 1859–1874

    Article  CAS  Google Scholar 

  14. L. Müller, T. Link, M. Feller-Kniepmeier, Scripta metall. mater., 26 (1992), 1297–1302

    Article  Google Scholar 

  15. H. Biermann, Röntgenographische Bestimmung von inneren Spannungen in der Nickelbasis-Superlegierung SRR 99, Fortschr.-Ber. VDI, Reihe 5, Nr. 325, VDI-Verlag, Düsseldorf, 1993, 64

    Google Scholar 

  16. L.R. Woodyatt, C.T. Sims, H.J. Beattie Jr., Trans. Met. Soc. AIME, 236 (1966), 519–527

    CAS  Google Scholar 

  17. L. Pauling, Phys. Rev., 54 (1938), 899–904

    Article  CAS  Google Scholar 

  18. L. Darken, R.W. Gurry: Physical Chemistry of Metals, McGraw-Hill, New York, 1953, 86

    Google Scholar 

  19. M. Morinaga, N. Yukawa, H. Ezaki, H. Adachi, Phil. Mag. A, 51 (1985), 223–246

    Article  CAS  Google Scholar 

  20. M. Morinaga, N. Yukawa, H. Ezaki, H. Adachi, Phil. Mag. A, 51 (1985), 247–252

    CAS  Google Scholar 

  21. K. Matsugi, Y. Murata, M. Morinaga, N. Yukawa, in: S.D. Antolovich et al. (Eds.), Superalloys 1992, Proc. 7th Int. Symp. on Superalloys, Seven Springs/Pa., The Minerals, Metals & Materials Society, Warrendale/Pa., 1992, 307–316

    Google Scholar 

  22. Structures of Nimonic Alloys, Henry Wiggin & Comp. Ltd., Publication 3563, 1974

    Google Scholar 

  23. A.K. Koul, R. Thamburaj, Metall. Trans., 16A (1985), 17–26

    Article  Google Scholar 

  24. U. Oestern, Diplomarbeit, FH Osnabrück, 1994

    Google Scholar 

  25. R. Weigelt, Diplomarbeit, FH Osnabrück, 1995

    Google Scholar 

  26. A.K. Koul, D.D. Morphy, Microstructural Science, 11 (1983), 79–88

    CAS  Google Scholar 

  27. A.K. Koul, G.H. Gessinger, Acta metall., 31 (1983), 1061–1069

    Article  CAS  Google Scholar 

  28. H. Loyer Danflou, M. Macia, T.H. Sanders, T. Khan, in: R.D. Kissinger et al. (Eds.), Superalloys 1996, Proc. 8th Int. Symp. on Superalloys, Seven Springs/Pa., The Minerals, Metals & Materials Society, Warrendale/Pa., 1996, 119–127

    Google Scholar 

  29. M. McLean: Directionally Solidified Materials for High Temperature Service, The Metals Society, London, 1983

    Google Scholar 

  30. T.M. Pollock et al., in: S.D. Antolovich et al. (Eds.), Superalloys 1992, Proc. 7th Int. Symp. on Superalloys, Seven Springs/Pa., The Minerals, Metals & Materials Society, Warrendale/Pa., 1992, 125–134

    Google Scholar 

  31. A.F. Giamei, B.H. Kear, Metall. Trans., 1A (1970), 2185–2192

    Article  CAS  Google Scholar 

  32. S.M. Copley, A.F. Giamei, S.M. Johnson, M.F. Hornbecker, Metall. Trans., 1A (1970), 2193–2204

    Article  CAS  Google Scholar 

  33. D. Goldschmidt, Mat.-wiss. u. Werkstofftech., 25 (1994), 311–320

    Article  CAS  Google Scholar 

  34. R.F. Singer, in: D. Coutsouradis et al. (Eds.), Materials for Advanced Power Engineering, Proc. Int. Conf. Liège 1994, Kluwer Acad. Publ., Dordrecht, 1994, 1707–1729

    Google Scholar 

  35. M.A. Taha, W. Kurz, Z. Metallkd., 72 (1981), 546–549

    CAS  Google Scholar 

  36. D. Ma, P.R. Sahm, Z. Metallkd., 87 (1996), 634–639

    CAS  Google Scholar 

  37. W.S. Walston, J.C. Schaeffer, W.H. Murphy, in: R.D. Kissinger et al. (Eds.), Super-alloys 1996, Proc. 8th Int. Symp. on Superalloys, Seven Springs/Pa., The Minerals, Metals & Materials Society, Warrendale/Pa., 1996, 9–18

    Google Scholar 

  38. E.W. Ross, K.S. O’Hara, in: R.D. Kissinger et al. (Eds.), Superalloys 1996, Proc. 8th Int. Symp. on Superalloys, Seven Springs/Pa., The Minerals, Metals & Materials Society, Warrendale/Pa., 1996, 19–25

    Google Scholar 

  39. K.S. O’Hara et al., U.S. Patent No. 5,482, 789, 1996

    Google Scholar 

  40. V. Sass, U. Glatzel, M. Feller-Kniepmeier, in: R.D. Kissinger et al. (Eds.), Superalloys 1996, Proc. 8th Int. Symp. on Superalloys, Seven Springs/Pa., The Minerals, Metals & Materials Society, Warrendale/Pa., 1996, 283–290

    Google Scholar 

  41. Y. Kondo et al., in: R.D. Kissinger et al. (Eds.), Superalloys 1996, Proc. 8th Int. Symp. on Superalloys, Seven Springs/Pa., The Minerals, Metals & Materials Society, Warrendale/Pa., 1996, 297–304

    Google Scholar 

  42. Introducing Mechanical Alloying, Huntington Alloys, Broschüre 77–310

    Google Scholar 

  43. G.F. Hüttig, Z. Metallkde., 48 (1957), 352–356

    Google Scholar 

  44. C.P. Jongenburger, Secondary Recrystallisation in Oxide-Dispersion Strengthened Nickel-Base Alloys, Thèse No. 773 (1988), École Polytechnique Fédérale de Lausanne/Schweiz

    Google Scholar 

  45. C. Jongenburger, R.F. Singer, in: E. Arzt, L. Schultz (Eds.), New Materials by Mechanical Alloying Techniques, DGM conf. Calw-Hirsau (FRG), 1988, DGM Informationsgesellschaft Verlag, Oberursel, 1989, 157–174

    Google Scholar 

  46. J.D. Whittenberger, in: E. Arzt, L. Schultz (Eds.), New Materials by Mechanical Alloying Techniques, DGM conf. Calw-Hirsau (FRG), 1988, DGM Informationsgesellschaft Verlag, Oberursel, 1989, 201–215

    Google Scholar 

  47. R.A. Testin, B.A. Ewing, J.A. Spees, in: S.D. Antolovich et al. (Eds.), Superalloys 1992, Proc. 7th Int. Symp. on Superalloys, Seven Springs/Pa., The Minerals, Metals & Materials Society, Warrendale/Pa., 1992, 83–92

    Google Scholar 

  48. R. Bürgel, B. Trück, unveröffentlichte Ergebnisse, Brown Boveri & Cie. Mannheim, 1983

    Google Scholar 

  49. W. Jakobeit, PM Mo-TZM Turbine Blades — Demands on Mechanical Properties, Int. J. Refractory & Hard Metals, 2 (1983), 133

    Google Scholar 

  50. C.S. Barrett, T.B. Massalski: Structure of Metals, McGraw-Hill, New York, 1966

    Google Scholar 

  51. M.H. Yoo et al., Acta metall. mater., 41 (1993), 987–1002

    Article  CAS  Google Scholar 

  52. G. Sauthoff: Intermetallics, VCH, Weinheim, 1995

    Google Scholar 

  53. D.B. Miracle, Acta metall. mater., 41 (1993), 649–684

    Article  CAS  Google Scholar 

  54. R. Darolia, W.S. Walston, M.V. Nathal, in: R.D. Kissinger et al. (Eds.), Superalloys 1996, Proc. 8th Int. Symp. on Superalloys, Seven Springs/Pa., The Minerals, Metals & Materials Society, Warrendale/Pa., 1996, 561–570

    Google Scholar 

  55. C.M. Austin, T.J. Kelly, in: R.D. Kissinger et al. (Eds.), Superalloys 1996, Proc. 8th Int. Symp. on Superalloys, Seven Springs/Pa., The Minerals, Metals & Materials Society, Warrendale/Pa., 1996, 539–543

    Google Scholar 

  56. Y.-W. Kim, J. Metals, 46 (1994), No. 7, 30–39

    CAS  Google Scholar 

  57. F.H. Froes, C. Suryanarayana, D. Eliezer, J. Mat. Sci., 27 (1992), 5113–5140

    Article  CAS  Google Scholar 

  58. Werkstoffe u. Korr., 48 (1997), 1–78 (gesamtes Heft 1/97)

    Google Scholar 

  59. F.H. Froes, C. Suryanarayana, D. Eliezer, J. Mat. Sci., 27 (1992), 5113–5140

    Article  CAS  Google Scholar 

  60. D.M. Shah, in: S.D. Antolovich et al. (Eds.), Superalloys 1992, Proc. 7th Int. Symp. on Superalloys, Seven Springs/Pa., The Minerals, Metals & Materials Society, Warrendale/Pa., 1992, 409–422

    Google Scholar 

  61. E. Drost, H. Gölitzer, M. Poniatowski, S. Zeuner, Metall, 50 (1996), 492–498

    CAS  Google Scholar 

  62. R.T. Holt, W. Wallace, Int. Metals Review, 21 (1976), March, 1–24

    Google Scholar 

  63. M. Kohno, M. Miyakawa, S. Kinoshita, A. Suzuki, in: Conf. on Advances in Materials for Fossil Power Plants, Chicago/IL, Am. Soc. Metals ASM, 81–88

    Google Scholar 

  64. Metals Technology, 11 (1984), Oktober-Heft

    Google Scholar 

  65. M. McLean, A. Strang, Met. Technol., 11 (1984), 454–464

    CAS  Google Scholar 

  66. C.H. White, P.M. Williams, M. Morley, Advanced Mat. & Proc., 137 (1990), April, 53–57

    Google Scholar 

  67. N.A. Waterman, M.F. Ashby (Eds.): Elsevier Materials Selector, Vol. 2, Elsevier, London, 1991

    Google Scholar 

  68. M.V. Nathal, S.R. Levine, in: S.D. Antolovich et al. (Eds.), Superalloys 1992, Proc. 7th Int. Symp. on Superalloys, Seven Springs/Pa., The Minerals, Metals & Materials Society, Warrendale/Pa., 1992, 329–340

    Google Scholar 

  69. K. Komeya, M. Matsui, in: R.W. Cahn, P. Haasen, E.J. Kramer (Eds.), Materials Science and Technology, Vol. 11, M.V. Swain (Vol. Ed.), VCH, Weinheim, 1994, 517–565

    Google Scholar 

  70. J.C. Williams, in: R.W. Cahn, A.G. Evans, M. McLean (Eds.), High-Temperature Structural Materials, Chapman & Hall, London, 1996, 17–31

    Google Scholar 

Seven Springs-Konferenzen

  • J.K. Tien et al. (Eds.): Superalloys 1980, Proc. 4th Int. Symp. on Superalloys, Seven Springs/Pa, Amer. Soc. Metals ( ASM ), Metals Park/Oh., 1980

    Google Scholar 

  • M. Gell et al. (Eds.): Superalloys 1984, Proc. 5th Int. Symp. on Superalloys, Seven Springs/Pa, Met. Soc. AIME, New York, 1984

    Google Scholar 

  • D.N. Duhl et al. (Eds.): Superalloys 1988, Proc. 6th Int. Symp. on Superalloys, Seven Springs/Pa., Met. Soc. AIME, New York, 1988

    Google Scholar 

  • S.D. Antolovich et al. (Eds.): Superalloys 1992, Proc. 7th Int. Symp. on Superalloys, Seven Springs/Pa., The Minerals, Metals & Materials Society, Warrendale/Pa., 1992

    Google Scholar 

  • R.D. Kissinger et al. (Eds.): Superalloys 1996, Proc. 8th Int. Symp. on Superalloys, Seven Springs/Pa., The Minerals, Metals & Materials Society, Warrendale/Pa., 1996

    Google Scholar 

  • R. Brunetaud et al. (Eds.): High Temperature Alloys for Gas Turbines 1982, Proc. Int. Conf. Liège 1982, D. Reidel Publ., Dordrecht, 1982

    Google Scholar 

  • W. Betz et al. (Eds.): High Temperature Alloys for Gas Turbines and Other Applications 1986, Proc. Int. Conf. Liège 1986, D. Reidel Publ., Dordrecht, 1986

    Google Scholar 

  • E. Bachelet et al. (Eds.): High Temperature Materials for Power Engineering 1990, Proc. Int. Conf. Liège 1990, Kluwer Acad. Publ., Dordrecht, 1990

    Google Scholar 

  • D. Coutsouradis et al. (Eds.): Materials for Advanced Power Engineering 1994, Proc. Int. Conf. Liège 1994, Kluwer Acad. Publ., Dordrecht, 1994

    Google Scholar 

  • E. Arzt, L. Schultz (Eds.): New Materials by Mechanical Alloying Techniques, DGM Conf. Calw-Hirsau (FRG), 1988, DGM Informationsges. Verlag, Oberursel, 1989

    Google Scholar 

  • C.S. Barrett, T.B. Massalski: Structure of Metals, McGraw-Hill, New York, 1966

    Google Scholar 

  • W. Betteridge, J. Heslop (Eds.): The Nimonic Alloys and Other Nickel-Base High-Temperature Alloys, Edward Arnold, 1974

    Google Scholar 

  • R.W. Cahn, A.G. Evans, M. McLean (Eds.): High-Temperature Structural Materials, Chapman & Hall, London, 1996

    Google Scholar 

  • R.W. Cahn, P. Haasen, E.J. Kramer (Eds.): Materials Science and Technology, Vol. 7, Constitution and Properties of Steels, F.B. Pickering (Volume Editor), VCH, Weinheim, 1992

    Google Scholar 

  • R.W. Cahn, P. Haasen, E.J. Kramer (Eds.): Materials Science and Technology, Vol. 8, Structure and Properties of Nonferrous Alloys, K.H. Matucha (Volume Editor), VCH, Weinheim, 1996

    Google Scholar 

  • W. Kleber: Einführung in die Kristallographie, Verl. Technik, Berlin, 1990

    Google Scholar 

  • M. McLean: Directionally Solidified Materials for High Temperature Service, The Metals Society, London, 1983

    Google Scholar 

  • Metals Handbook Ninth Edition, Vol. 3, American Society for Metals, Metals Park, Ohio, 1980

    Google Scholar 

  • G. Sauthoff: Intermetallics, VCH, Weinheim, 1995

    Google Scholar 

  • C.T. Sims, N.S. Stoloff, W.C. Hagel (Eds.): Superalloys II, John Wiley & Sons, New York, 1987

    Google Scholar 

  • N.A. Waterman, M.F. Ashby (Eds.): Elsevier Materials Selector, Vol. 2, Elsevier, London, 1991

    Google Scholar 

  • Werkstoffkunde Stahl, Bd. 1 und 2, Verein Deutscher Eisenhüttenleute (Hrsg.), Springer/Berlin, Verlag Stahleisen/Düsseldorf, 1984/1985

    Google Scholar 

Download references

Author information

Authors and Affiliations

Authors

Rights and permissions

Reprints and permissions

Copyright information

© 1998 Friedr. Vieweg & Sohn Verlagsgesellschaft mbH, Braunschweig / Wiesbaden

About this chapter

Cite this chapter

Bürgel, R. (1998). Hochtemperaturlegierungen. In: Handbuch Hochtemperatur-Werkstofftechnik. Vieweg+Teubner Verlag, Wiesbaden. https://doi.org/10.1007/978-3-322-99904-7_6

Download citation

  • DOI: https://doi.org/10.1007/978-3-322-99904-7_6

  • Publisher Name: Vieweg+Teubner Verlag, Wiesbaden

  • Print ISBN: 978-3-322-99905-4

  • Online ISBN: 978-3-322-99904-7

  • eBook Packages: Springer Book Archive

Publish with us

Policies and ethics