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Uncertainty Of The Measurement Of DC Conductivity Of Eramics At Elevated Temperatures Cover

Uncertainty Of The Measurement Of DC Conductivity Of Eramics At Elevated Temperatures

Open Access
|Mar 2015

References

  1. [1] ŠTUBŇA, I.—KOZÍK, T.: Electric Conductivity of Kaolin in the Temperature Range 150–560 °C, Journal of Thermal Analysis 46 (1996), 607–610.10.1007/BF02135040
  2. [2] TRNOVCOVÁ, V.—PODOBA, R.—ŠTUBŇA, I.: DC Conductivity of Kaolin-Based Ceramics in the Temperature Range 20–600 °C, Épitőanyag – Building Materials 64 (2012), 52–55.
  3. [3] TRNOVCOVÁ, V.—FURÁR, I.—HANIC, F.: Influence of Technological Texture on Electrical Properties of Industrial Ceramics, J. of Physics and Chemistry of Solids 68 (2007), 1135–1139.10.1016/j.jpcs.2007.03.004
  4. [4] PODOBA, R.—ŠTUBŇA, I.—TRNOVCOVÁ, V.—TRNÍK, A.: Temperature Dependence of DC Electrical Conductivity of Kaolin, J. Thermal Analysis and Calorimetry vol 118 (2013), 567-601.
  5. [5] SHEIKH-ZADE, R. M.: Study of Kaolin Sintering by an Electric Conductivity Method, Ogneupory No. 1 (1972), 21–23.
  6. [6] ORESHKIN, P. T.: Electrical Conductivity of Refractories, Metallurgia, Moskva, 1965. (in Russian)
  7. [7] BOGORODICKIJ, N. P.—PASYNKOV, V. V.—TAREEV, B. M.: Electrotechnical Materials, Gosudarstvennoe energeticheskoe izdatelstvo, Moskva, 1963. (in Russian)
  8. [8] MAITI, G. C.—FREUND, F.: Dehydratation-Related Proton Conductivity in Kaolinite, Clay Minerals 16 (1981), 395–413.10.1180/claymin.1981.016.4.08
  9. [9] BLUMENTHAL, R. N.—SEITZ, M. A.: Experimental Techniques, In: Electrical Conductivity in Ceramics and Glass, part A. (N.M. Tallan, eds.), Marcel Dekker Inc., New York, 1974.
  10. [10] Kohlrausch praktische Physik 3, Teubner Verlag, Stuttgart, 1968.
  11. [11] PTÁČEK, P.—ŠOUKAL, F.—OPRAVIL, T.—NOSKOVÁ, M.—HAVLICA, J.—BRANDŠTETR, J.: Crystallization of Spinel Phase from Metakaoline: The Nonisothermal Thermodilatometric CRH Study, Powder Technology 243 (2013), 40–45.10.1016/j.powtec.2013.03.031
  12. [12] PTÁČEK, P.—KREČKOVÁ, M.—ŠOUKAL, F.—OPRAVILL, T.—HAVLICA, J.—BRANĆDĆTETR, J.: The Kinetics and Mechanism of Kaolin Powder Sintering I. The Dilatometric CRH Study of Sinter-Crystallization of mullite and Cristobalite, Powder Technology 232 (2012), 24–30.10.1016/j.powtec.2012.07.060
  13. [13] BROŽ, J.et al: The Fundamentals of Physical Measurement, SPN, Praha, 1967. (in Czech)
  14. [14] PODOBA, R.—ŠTUBŇA, I.—VOZÁR, L.: A.C. Conductivity of Wet Green Electroporcelain Mixture, In: Proc. of the Conf. 25. DIDMATTECH 2012, Selye University, Komárno, 2012, pp. 35–41.
  15. [15] Evaluation of Measurement Data – Guide to the Expression of Uncertainty in Measurement, Joint Committee for Guides in Metrology, Sévres Cedex 2010.
  16. [16] MYSLÍK, J.: Electromagnetic Field – a Basic Theory, Technická literatura BEN, Praha 1998. (in Czech)
DOI: https://doi.org/10.1515/jee-2015-0005 | Journal eISSN: 1339-309X | Journal ISSN: 1335-3632
Language: English
Page range: 34 - 39
Submitted on: May 15, 2014
Published on: Mar 11, 2015
Published by: Slovak University of Technology in Bratislava
In partnership with: Paradigm Publishing Services
Publication frequency: 6 issues per year

© 2015 Igor Štubňa, Viera Trnovcová, Libor Vozár, Štefan Csáki, published by Slovak University of Technology in Bratislava
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.