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Tytuł artykułu

On the non-exponentionality in degradation kinetics in functional ceramics.

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The peculiarities of non-exponential degradation kinetics Cu0.1Ni0.1Co1.6Mn1.2O4 ceramics are analyzed. It is shown that degradation kinetics in above materials, described by non-exponential function, corresponds to stretched or suppressed exponential-power relaxation function. The stretched degradation kinetics is proper for degradation transformations of one-type systems. The degradation transformations, including two or more different elementary processes, are described by supressed exponentional kinetics.
Rocznik
Strony
189--199
Opis fizyczny
Bibliogr. 17 poz., fot., rys., tab.
Twórcy
autor
  • Lviv Scientific Research Institute of Materials of SRC "Carat", 202, Stryjska St., Lviv, UA-79031, Ukraine
Bibliografia
  • [1] M.M. Vakiv, V.A. Balitska, O.I. Shpotyuk, Technology and design in electronics, 4, 61 (2003).
  • [2] V. Balitska, O. Shpotyuk, M. Vakiv, Inżynieria Materiałowa, 4, 189 (2001).
  • [3] V.O. Balitska, B. Butkievich, O.l. Shpotyuk, M.M. Vakiv, Microelectronics Reliability, 42, 2002 (2002).
  • [4] R. Hilfer, J. Non-Cryst. Solids, 305, 122 (2002).
  • [5] O.V. M a z u r i n, J. Non-Cryst. Solids, 25, 130 (1977).
  • [6] A.I. Kovacs, J.M. Hutchinson, J.J. Aklonis, Isobaric volume and enthalpy recovery of glasses. I. A critical survey of recent phenomenological approaches. - In: The structure of non-crystalline materials, London 1977, pp. 167-172.
  • [7] A. Felts, Amorphous and vitreous inorganic solids, Mir 1986, 557 p.
  • [8] R.D. Corsaro, Phys. Chem. Glasses, 17, 13 (1976).
  • [9] G. Williams, D.C. Watts, Trans. Faraday Soc., 66, 80 (1970).
  • [10] J. De Bast, P. Gilard, Phys. Chem. Glasses, 4, 117 (1963).
  • [11] E.V. Emelianova, P. Hertogen, V.I. Arkhipov, G.I. Adriaenssens, I. Non-Cryst. Sol., 266-269, 954 (2000).
  • [12] A.I. Gusarov, A.V. Dmytrjuk, A.N. Kononov, A.A. Mashkov, Zh. Eksp. Teor. Fiziki, 97, 525 (1990).
  • [13] Wan Ping Chen, Xiano Xing Wang, Jie Wang, Yu Wang, Helen Lai Wah Chan, Jap. J. Appl. Phys., 42, 6621-6622.
  • [14] M. Vakiv, O. Shpotyuk, O. Mrooz, I. Hadzaman, I. Europ. Ceram. Soc., 21, 1783(2001).
  • [15] J. Plewa, H. Altenburg, R. Ochrymovych, O. Shpotyuk, I. Hadzaman, New NTC electroceramics based on transition-metal manganites in thick-film performance, Abstr. Book of 8th Intern. Conf. on Electronic Ceramics and Their Application, Aug. 25-28, Rome, Italy 2002, pp. 154-155.
  • [16] J. Pogorzelska, I. Maciak, B.S. Butkiewicz, Proc. of 23-rd Inter. Conf. On Microelectronics, 12-15 May, Nis, Yugoslavia 2002, pp. 371-374.
  • [17] V.A. Balitska, I.M. Brunets, N.M. Vakiv, H.I. Klym, O.I. Shpotyuk, Technology and design in electronics, 3, 67 (2005).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BOS5-0017-0060
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