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Mechanical Properties and Corrosion

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Corrosion of High-Performance Ceramics

Abstract

The influence of the environment is one of the reasons preventing a successful application of nonoxide ceramics in different high-temperature devices. Nevertheless mechanical tests on them are often performed only in inert media. According to the present knowledge [6.1, 2] the strength of ceramics on heating should slightly change first within the temperature range of brittle fracture, then increase somewhat when the temperature of brittle-ductile transition (~ 0.5 – 0.6 T m) is approached, and at last decrease sharply in the temperature range of viscous flow (Fig. 6.1).

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References

  1. R.W. Davidge, A.G. Evans: Mater. Sci. Eng. 6, 281–298 (1970)

    Article  Google Scholar 

  2. V.I. Trefilov, Yu.V. Milman, I.V. Gridneva: Crystal Res. Technol. 19, 413–421 (1984)

    Article  Google Scholar 

  3. F. Thevenot: “Boron Carbide — a Comprehensive Review” in Euro-Ceramics, ed. by G. de With, R.A. Terpstra, R. Metselaar, Vol. 2 (Elsevier, London 1989) pp. 2. 1–2. 25

    Google Scholar 

  4. G. Orange, T. Epicier, G. Fantozzi: L’industrie Ceramique No. 12, 829–835 (1981)

    Google Scholar 

  5. R.K. Govila: Am. Cer. Soc. Bull. 65, 1287–1292 (1986)

    Google Scholar 

  6. Yu.G. Gogotsi, O.N. Grigorjew, W.P. Yaroschenko: Silikattechnik 41, 156–160 (1990)

    Google Scholar 

  7. G. Grathwohl, F. Thümmler• Ceramurgia Int. 6, No 2, 43–50 (1980)

    Article  Google Scholar 

  8. U. Ernstberger, G. Grathwohl, F. Thümmler: Int. J. High Tech. Cer. 3, 43–61 (1987)

    Article  Google Scholar 

  9. O. Van Der Biest, S. Valkiers, L. Garguet, T. Tambuyser, I. Baele: Brit. Cer. Proc. 39, 33–44 (1987)

    Google Scholar 

  10. G. Grathwohl, F. Thümmler: Ber. DKG 52, 268–270 (1975)

    Google Scholar 

  11. J.M. Birch, B. Wilshire: J. Mater. Sci. 13, 2627–2636 (1978)

    Article  ADS  Google Scholar 

  12. D. Jiang, G. Kuang, Z. Pan, S. Tan, J. Mao, S. Ke: “Oxidation Behaviour and High-Temperature Strength of Hot-Pressed SiC with Various Sintering Aids”, in High-Tech Ceramics, ed. by P. Vincenzini, Materials Science Monographs, 38C ( Elsevier, Amsterdam 1987 )

    Google Scholar 

  13. G.A. Gogotsi, Yu.G. Gogotsi, D.Yu. Ostrovoj, O.V. Ivashchenko: Ogneupory No. 2, 19–24 (1989) [in Russian]

    Google Scholar 

  14. G.A. Gogotsi, Yu.G. Gogotsi, D.Yu. Ostrovoj: Ogneupory No. 10, 27–30 (1989) [in Russian]

    Google Scholar 

  15. R.W. Davidge: Mechanical Behaviour of Ceramics (Cambridge University Press 1979)

    Google Scholar 

  16. Yu.G. Gogotsi, V.A. Lavrenko: Ogneupory No. 5, 25–28 (1985) [in Russian]

    Google Scholar 

  17. U. Ernstberger, H. Cohrt, F. Porz, F. Thümmler: cfi/ Ber. DKG 60, 167–173 (1983)

    Google Scholar 

  18. G.G. Trantina: Am. Cer.Soc. Bull. 57, 440–443 (1978)

    Google Scholar 

  19. F.F. Lange: J. Am. Cer. Soc. 53, 290 (1970)

    Article  Google Scholar 

  20. F. Thümmler, G. Grathwohl: “High-Temperature Oxidation and Creep of Si3N4- and SiC-Based Ceramics and Their Mutual Interaction” in Proc. MRS Int. Meeting on Advanced Materials (Mat. Res. Soc. 1989 ) pp. 237–253

    Google Scholar 

  21. G.A. Gogotsi, S.A. Firstov, A.D. Vasil’ev, Yu.G. Gogotsi, V.V. Kovylyaev: Sov. Powd. Met. Metal Cer. 26, 589–594 (1987) [English transi • Poroshk. Met. No. 7, 84–90 (1987)]

    Google Scholar 

  22. G.A. Gogotsi, Ya.L. Groushevsky, O.B. Dashevskaya, Yu.G. Gogotsi, V.A. Lavrenko: J. Less.-Com. Met. 117, 225–230 (1986)

    Article  Google Scholar 

  23. G.A. Gogotsi, Yu.G. Gogotsi, D.Yu. Ostrovoj: J. Mat. Sci. Lett. 7, 814–816 (1988)

    Article  Google Scholar 

  24. G.A. Gogotsi, Yu.G. Gogotsi, V.V. Kovylyaev, D.Yu. Ostrovoj, V.Ya. Ivas’kevich: Soy. Powd. Met. Metal Cer. 28, 487–490 (1987) [English transl.: Poroshk. Met. No 6, 77–82 (1989)]

    Google Scholar 

  25. G. De With: J. Mater. Sci. 19, 457–466 (1984)

    Article  ADS  Google Scholar 

  26. G.A. Gogotsi, Yu.G. Gogotsi, V.P. Zavada, V.V. Traskovsky: Strength of Mat. 21, 918–922 (1989) [English transl.: Problemy Prochnosti No. 7, 76–80 (1989)]

    Google Scholar 

  27. N.S. Jacobson, J.L. Smialek, D.S. Fox: “Molten Salt Corrosion of SiC and Si3N4”, in Handbook of Ceramics and Composites, ed. by N.P. Cheremisinoff, Vol. 1 ( Marcel Dekker, New York 1990 ) pp. 99–136

    Google Scholar 

  28. Yu.G. Gogotsi: Fiz.-Khim. Mekhanika Mat. 23, No 4, 73–82 (1987) [in Russian]

    Google Scholar 

  29. O.V. Mazurin, M.V. Streltsova, T.P. Shvaiko-Shvaikovskaya: Properties of Glasses and Glass Melts, Vol. 1 ( Nauka, Leningrad 1973 ) [in Russian]

    Google Scholar 

  30. Yu.G. Gogotsi, V.P. Zavada, N.N. Zudin, V.V. Ivzhenko, V.V. Traskovsky: Sverkhtv. Mat. No 3, 25–29 (1990) [in Russian]

    Google Scholar 

  31. L.N. Petrov: Stress Corrosion (Vishcha Shkola, Kiev 1986 ) [in Russian]

    Google Scholar 

  32. D.F. Dailly, G.W. Hastings, S. Lash. Proc. Brit. Cer. Soc. 31, 191–200 (1981)

    Google Scholar 

  33. M.E. Gulden, A.G. Metcalf: J. Am. Cer. Soc. 59, 391–396 (1976)

    Article  Google Scholar 

  34. A.G. Metcalf: in Proc. Workshop on Ceramics for Advanced Heat Engines, Orlando, Jan. 24–26, 1977, pp. 279–286

    Google Scholar 

  35. J.E. Ritter, S.M. Wiederhorn, N.J. Tighe, E.R. Fuller: in Ceramics for High-Performance Application, Proc. 6th Army Mater. Techn. Conf., Orcas Island, July 10–13, 1979 (New York, 1983) pp. 503–533

    Google Scholar 

  36. R.J. Charles, W.B. Hillig: in High-Strength Materials, ed. by V.F. Zackey ( Wiley, New York 1965 ) pp. 682–705

    Google Scholar 

  37. S.M. Wiederhorn, E.R. Fuller, R. Thomson: Metal Sci. No. 8 /9, 450–458 (1980)

    Google Scholar 

  38. R. Thomson: J. Mater. Sci. 15, 1014–1026 (1980)

    Article  ADS  Google Scholar 

  39. E.R. Fuller, R. Thomson: J. Mater. Sci. 15, 1027–1034 (1980)

    Article  ADS  Google Scholar 

  40. A.S. Krausz, J. Mshana, K. Krausz: Eng. Fract. Mech. 13, 759–766 (1980)

    Article  Google Scholar 

  41. M.G. Gee, L.N. McCartney: Proc. Brit. Cer. Soc. 32, 133–147 (1982)

    Google Scholar 

  42. G.P. Cherepanov: Mechanics of Brittle Fracture ( Nauka, Moscow 1974 ) [in Russian]

    Google Scholar 

  43. R. Adams, P.W. McMillan: J. Mater. Sci. 12, 643–657 (1977)

    Article  ADS  Google Scholar 

  44. C. Rinaldi: Ceramurgia 8, 20–24 (1978)

    Google Scholar 

  45. T.E. Easier, R.C. Bradt, R.E. Tressler: J. Am. Cer. Soc. 65, 317–320 (1982)

    Article  Google Scholar 

  46. G.D. Quinn: Cer. Eng. Sci. Proc. 3, 77–98 (1982)

    Article  Google Scholar 

  47. R.E. Tressler, M. McNallan (ads.): Corrosion and Corrosive Degradation of Ceramics, in Ceramic Transactions, Vol. 10 ( Am. Cer. Soc., Westerville 1990 )

    Google Scholar 

  48. G. Ziegler: Proc. Brit. Cer. Soc. 32, 213–225 (1982)

    Google Scholar 

  49. G.R. Terwilliger: J. Am. Ger. Soc. 57, 48–49 (1974)

    Google Scholar 

  50. S.A. Bortz: SAMPE J. 1, 16–31 (1981)

    Google Scholar 

  51. W.C. Bourne, R.E. Tressler: Am. Cer. Soc. Bull. 59, 443–452 (1980)

    Google Scholar 

  52. P. Belair, J. Desmaison, Y. Bigay: “Influence of Heat Treatments under Oxidizing Atmospheres on the Mechanical Properties of RBSN Materials”, in Euro-Ceramics, ed. by G. de With, R.A. Terpstra, R. Metselaar, Vol. 3 ( Elsevier, London 1989 ) pp. 492–493

    Google Scholar 

  53. Yu.G. Gogotsi, V.P. Zavada, V.V. Traskovsky: Strength of Mat. No. 11, 1555–1559 (1987) [English transi • Problemy Prochnosti No. 11, 82–86 (1987)]

    Google Scholar 

  54. Yu.G. Gogotsi, V.P. Zavada, V.V. Traskovsky: Fiz.-Khim. Mekhanika Mat. 24, No 6, 17–21 (1988) [in Russian]

    Google Scholar 

  55. G.A. Gogotsi, Yu.G. Gogotsi, V.P. Zavada, V.V. Traskovsky: Cer. Int. 15, 305–310 (1989)

    Article  Google Scholar 

  56. G. Himsolt: Z. Werkstofftechnik 13, 225 (1982)

    Google Scholar 

  57. G.S. Pisarenko, Yu.G. Gogotsi, V.P. Zavada, V.V. Traskovsky: Dokl. Akad. Nauk SSSR 304, 1184–1187 (1989) [in Russian]

    Google Scholar 

  58. Yu.G. Gogotsi: “Effect of Oxidation on Fracture of Nonoxide Ceramics”, in Fracture Mechanics and Physics of Brittle Materials ( IPM AN UkrSSR, Kiev 1990 ) pp. 115–122 [in Russian]

    Google Scholar 

  59. A.L. Rabinovich: Introduction to Mechanics of Reinforced Polymers ( Nauka, Moscow 1970 )

    Google Scholar 

  60. R.K. Govila, J.A. Mangels, J.R. Baer: J. Am. Cer. Soc. 68, 413–418 (1985)

    Article  Google Scholar 

  61. D. Steinmann: Sprechsaal 122, 215–223 (1989)

    Google Scholar 

  62. S.H. Knickerbocker, A. Zangvill, S.D. Brown: J. Am. Cer. Soc. 67, 365–369 (1984)

    Article  Google Scholar 

  63. G. Ziegler: “Thermo-Mechanical Properties of Silicon Nitride and Their Dependence on Microstructure”, in Preparation and Properties of Silicon Nitride—Based Materials, ed. by D.A. Bonnell, T.Y. Tien, Materials Science Forum, Vol. 47 ( Trans. Tech. Publications, 1989 ) pp. 162–203

    Google Scholar 

  64. R. Kossowsky: J. Am. Cer. Soc. 56, 531–535 (1973)

    Article  Google Scholar 

  65. M. Boussuge, D. Broussaud, J. Lamon: Proc. Brit. Cer. Soc. 32, 205–212 (1982)

    Google Scholar 

  66. J.L. Henshall, D.J. Rowcliff, J.W. Edington: J. Amer. Cer. Soc. 62, 36–41 (1979)

    Article  Google Scholar 

  67. K.D. McHenry, R.E. Tressler: J. Mater. Sci 12, 1272–1278 (1977)

    Article  ADS  Google Scholar 

  68. J.L. Henshall: Proc. 5th Int. Conf. on Fracture, Cannes, March 29–April 3, 1981 (Cannes, 1982) pp. 1541–1549

    Google Scholar 

  69. K.D. McHenry, R.E. Tressler: J. Am. Cer. Soc. 63, 152–156 (1980)

    Article  Google Scholar 

  70. G.A. Gogotsi, Yu.G. Gogotsi, D.Yu. Ostrovoj: Ogneupory No. 10, 27–30 (1989) [in Russian]

    Google Scholar 

  71. M.A. Walton, R.C. Bradt: Proc. Brit. Cer. Soc. 32, 249–260 (1982)

    Google Scholar 

  72. D.E. Schwab, D.M. Kotchick: Am. Cer. Soc. Bull. 59, 805–808, 813 (1980)

    Google Scholar 

  73. D. Avigdor, S.D. Brown: J. Am. Cer. Soc. 61, 97–99 (1978)

    Article  Google Scholar 

  74. N.L. Hecht, S.D. Jang, D.E. McCullum: Adv. Ceram. 24A, 133–144 (1988)

    Google Scholar 

  75. R.H. Dauskardt, R.O. Ritchie: Cer. Eng. Sci. Proc. 10, 1146 (1989)

    Article  Google Scholar 

  76. M.V. Swain, V. Zelizko: Adv. Ceram. 24B, 595–606 (1988)

    Google Scholar 

  77. F.F. Lange: J. Am. Cer. Soc. 69, 237–240 (1986)

    Article  Google Scholar 

  78. H. Olapinski, U. Dworak, W. Burger: “High-Temperature Durability of Zirconia”, in Ceramic Materials and Components for Engines, Proc. 2nd Int. Symp., Lübeck-Travemünde, April 14–17, 1986, ed. by W. Bunk, H. Hausner (Verlag DKG, 1986 ) pp. 535–549

    Google Scholar 

  79. G.A. Gogotsi, Yu.G. Gogotsi, V.P. Zavada, V.V. Traskovsky: Mat. High Temp. 9, 209–216 (1991)

    Google Scholar 

  80. M.A. Lamkin, F.L. Riley, R.J. Fordham: “Hot Corrosion of Silicon Nitride in the Presence of Sodium and Vanadium Compounds”, in High-Temperature Corrosion of Technical Ceramics, ed. by R.J. Fordham ( Elsevier, London 1990 ) pp. 181–191

    Google Scholar 

  81. Technology Update. Am. Cer. Soc. Bull. 67, 1886 (1988)

    Google Scholar 

  82. J.J. Swab, G.L. Leatherman: J. Europ. Cer. Soc. 5, 333–340 (1989)

    Article  Google Scholar 

  83. Yu. Gogotsi, D. Ostrovoj, V. Traskovsky: “Deformation and Creep of Silicon Nitride-Matrix Composites”, in Mechanics of Creep Brittle Materials–2, ed. by A.C.F. Cocks, A.R.S. Ponter ( Elsevier, London 1991 ) pp. 230–241

    Chapter  Google Scholar 

  84. C. Razim, C. Kaniut, K.-H. Thiemann: “Keramik als Werkstoff für verschleissbeanspruchte Bauteile”, in Verschleiß und Korrosion. Vorträge der Konferenz, Köln, 22–23. Mai 1990 (DKG, 1990 ) pp. 1–19

    Google Scholar 

  85. S.A. Horton, J. Denape, D. Broussaud, D. Dowson, F.L. Riley, N. Wallbridge: “The Wear Behaviour of Sialon and Silicon Carbide Ceramics in Sliding Contact”, in Nonoxide Technical and Engineering Ceramics, ed. by S. Hampshire ( Elsevier, London 1986 ) pp. 281–298

    Chapter  Google Scholar 

  86. A. Bellosi: Adv. Cer. Glass 1, 18–23 (1990)

    Google Scholar 

  87. H. Kolaska, K. Dreyer: “Verschleissverhalten von Schneidkeramik”, in Verschleiß und Korrosion. Vorträge der Konferenz,Köln, 22–23. Mai 1990 (DKG, 1990) SS. 111–131

    Google Scholar 

  88. Yu.G. Gogotsi, V.V. Koval’chuk, V.V. Zametailo, R.G. Timchenko, I.A. Kossko, A.M. Koval’chenko: Trenie i Iznos 10, 295–301 (1989) [in Russian]

    Google Scholar 

  89. Yu.G. Gogotsi, A.M. Koval’chenko, I.A. Kossko, V.P. Yaroshenko: Trenie i Iznos 11, 661–667 (1990) [in Russian]

    Google Scholar 

  90. A.M. Koval’chenko, I.A. Kossko, Yu.G. Gogotsi: “Investigation of Nonoxide Ceramics-Steel Interaction in Friction” in Physical Materials Science and Physico-Chemical Fundamentals for Development of New Materials, ed. by V.V. Skorokhod ( IPM AN UkrSSR, Kiev 1989 ) pp. 108–113 [in Russian]

    Google Scholar 

  91. Yu.G. Gogotsi, O.N. Grigor’ev, A.M. Koval’chenko, I.A. Kossko, V.P. Yaroshenko: TIZ Int. Powd. Mag. 113, 701–702 (1989)

    Google Scholar 

  92. A.N. Pilyankevich, V.F. Britun, Yu.G. Tkachenko, V.K. Yulyugin: Poroshk. Met. No. 8, 93–97 (1986) [in Russian]

    Google Scholar 

  93. Yu.G. Gogotsi, A.M. Koval’chenko, I.A. Kossko, V.P. Yaroshenko: “High-Speed Sliding of Ceramics Against Steel” in Urgent Problems of Materials Science, ed. by V.V. Skorokhod ( IPM AN UkrSSR, Kiev 1991 ) pp. 101–106 [in Russian]

    Google Scholar 

  94. A.G. Evans, T.G. Langdon: “Structural Ceramics” in Progress in Materials Science, Vol. 21 ( Pergamon Press, Oxford 1976 ) pp. 171–441

    Google Scholar 

  95. G.G. Trantina: J. Am. Cer. Soc. 62, 377–380 (1979)

    Article  Google Scholar 

  96. A.G. Evans: Int. J. Fracture 9, 267–275 (1973)

    Article  Google Scholar 

  97. A.G. Evans, L.R. Russell, D.W. Richerson: Metall. Trans. A. 6, 707–716 (1975)

    Article  Google Scholar 

  98. D.P.H. Hasselman, E.P. Chen, C.L. Ammann et al.: J. Am. Cer. Soc. 58, 513–516 (1975)

    Article  Google Scholar 

  99. J.C. Uy: Proc. Workshop on Ceramics for Advanced Heat Engines, Orlando, Jan. 24–26, 1977, pp. 259–267

    Google Scholar 

  100. A. Paluszny: Proc. Workshop on Ceramics for Advanced Heat Engines, Orlando, Jan. 24–26, 1977, pp. 231–239

    Google Scholar 

  101. G.A. Gogotsi, V.P. Zavada: Problemy Prochnosti No. 2, 53–56 (1985) [in Russian]

    Google Scholar 

  102. V.P. Zavada, S.G. Nikolsky, V.A. Strizhalo, V.P. Terent’ev: Problemy Prochnosti No. 8, 41–46 (1988) [in Russian]

    Google Scholar 

  103. R.K. Govila: in Ceramics for High-Performance Application, Proc. 6th Army Mater. Techn. Conf., Orcas Island, July 10–13, 1979 (New York, 1983) pp. 535–567

    Google Scholar 

  104. R.C. Bradt, F.F. Lange, D.P.H. Hasselman, A.G. Evans (eds.): Fracture Mechanics of Ceramics,Vols. 1–6 (Plenum Press, New York 1974–1982)

    Google Scholar 

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Gogotsi, Y.G., Lavrenko, V.A. (1992). Mechanical Properties and Corrosion. In: Corrosion of High-Performance Ceramics. Springer, Berlin, Heidelberg. https://doi.org/10.1007/978-3-642-77390-7_6

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