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211 E Gondar et al Joumal of the European Ceramic Society 27(2007)2103-2110 5. Schaus, M. and Pohl, M, Nd-YaG-Laser simulated thermal shock and ther- 14. Hlava, T, Thermal and stress analysis of silicon nitride subjected to repeated mal fatigue behaviour. Metall. 1998. 5. 464. thermal shocks. PhD Thesis, SiF STU Bratislava, 2005. 6. Absi, J. and Glandus, J. C, Improved method for severe thermal shock 15. Gondar, E, Hlava, T and Rosko, M, Verification of the stresses developed testing of ceramics by water quenching. J. Eur. Ceram. Soc., 2004, 24, in silicon nitride by repeated thermal shocks. J. Eur. Ceram. Soc., in press 2835-2838 corrected proof. 7. E, The testing method of resistance of silicon nitride based technical 16. Turner, J. R. and Thayer, J, Introduction to Analysis of variance: ceramics to thermal loading. Conferment project, SiFSTU Bratislava, 1998 Design, Analysis In ion. Sage Publications, Thousand Oaks, 8. Rosko, M, Stress analysis in silicon nitride subjected to a combination of 2001 thermal shocks and mechanical loading. In Proceedings of JUNIORMAT 17 Casella, G and Berger, R L. Statistical Inference. Duxbury Press, 2001 05,2005,pp.67-70 18. Hasselman, D. P. H, Unified theory of thermal shock fracture initiation 9. Pulc, V, Gondar, E and Misik, P. Graphitic oven. Patent AO229412, CSSR and crack propagation in brittle ceramics. J. A. Ceram. Soc., 1969, 52, 15 April 1986 600-604 10. Pulc, V. and Svec, P, Interaction of diamond indentor and silicon nitride- 19. Tancret, F, Comments on"thermal shock resistance of yttria-stabilized zir- based ceramics in the region of elastic-plastic deformation In Proceeding onia with palmqvist indentation cracks, J. Eur Ceram. Soc., in press, of Material in Engineering Practise 98, 1998, Pp. 196-202. corrected proo 11. Gondar, E, Rosko, M. and Zemankova, M, Study of depth profile of 20. Pettersson, P, Johnsson, M. and Shen, Z, Parameters for measuring the indented cracks in silicon nitride Metallic Mater. 2005. 43. 124-133 thermal shock of ceramic materials with an indentation-quench 12. Lube, T, Indentation crack profiles in silicon nitride. J. Eur: Cera. Soc., Eur Ceram Soc.,2002,22,1883-1889. 2001,21,211-218 21. Hampel, F R, Ronchetti, E. M, Rousseeuw, P J and Stahel, w.A., Robust 13. Pulc, V. Gondar, E and Svec, P, Testing method of the resistance of tech- Statistics: The Approach Based on Influence Functions. wiley, New York, nical ceramics to thermal fatigue. Patent Pending 518-2 1986.2110 E. Gondar et al. / Journal of the European Ceramic Society 27 (2007) 2103–2110 5. Schaus, M. and Pohl, M., Nd-YaG-Laser simulated thermal shock and ther￾mal fatigue behaviour. Metall, 1998, 5, 464. 6. Absi, J. and Glandus, J. C., Improved method for severe thermal shock testing of ceramics by water quenching. J. Eur. Ceram. Soc., 2004, 24, 2835–2838. 7. Gondar, E., The testing method of resistance of silicon nitride based technical ceramics to thermal loading. Conferment project, SjF STU Bratislava, 1998. 8. Rosko, M., Stress analysis in silicon nitride subjected to a combination of thermal shocks and mechanical loading. In Proceedings of JUNIORMAT 05, 2005, pp. 67–70. 9. Pulc, V., Gondar, E. and Misik, P., Graphitic oven. Patent AO 229412, CSSR, 15 April 1986. 10. Pulc, V. and Svec, P., Interaction of diamond indentor and silicon nitride￾based ceramics in the region of elastic–plastic deformation. In Proceedings of Material in Engineering Practise 98, 1998, pp. 196–202. 11. Gondar, E., Rosko, M. and Zemankova, M., Study of depth profile of indented cracks in silicon nitride. Metallic Mater., 2005, 43, 124–133. 12. Lube, T., Indentation crack profiles in silicon nitride. J. Eur. Ceram. Soc., 2001, 21, 211–218. 13. Pulc, V., Gondar, E. and Svec, P., Testing method of the resistance of tech￾nical ceramics to thermal fatigue. Patent Pending 518-2001. 14. Hlava, T., Thermal and stress analysis of silicon nitride subjected to repeated thermal shocks. PhD Thesis, SjF STU Bratislava, 2005. 15. Gondar, E., Hlava, T. and Rosko, M., Verification of the stresses developed in silicon nitride by repeated thermal shocks. J. Eur. Ceram. Soc., in press, corrected proof. 16. Turner, J. R. and Thayer, J., Introduction to Analysis of Variance: Design, Analysis & Interpretation. Sage Publications, Thousand Oaks, 2001. 17. Casella, G. and Berger, R. L., Statistical Inference. Duxbury Press, 2001. 18. Hasselman, D. P. H., Unified theory of thermal shock fracture initiation and crack propagation in brittle ceramics. J. Am. Ceram. Soc., 1969, 52, 600–604. 19. Tancret, F., Comments on “thermal shock resistance of yttria-stabilized zir￾conia with palmqvist indentation cracks”, J. Eur. Ceram. Soc., in press, corrected proof. 20. Pettersson, P., Johnsson, M. and Shen, Z., Parameters for measuring the thermal shock of ceramic materials with an indentation-quench method. J. Eur. Ceram. Soc., 2002, 22, 1883–1889. 21. Hampel, F. R., Ronchetti, E. M., Rousseeuw, P. J. and Stahel, W. A., Robust Statistics: The Approach Based on Influence Functions. Wiley, New York, 1986
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