The Thermal Shock Resistance of Mg-PSZ/LaPO4 Ceramics

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Abstract:

The mechanical properties and thermal shock behavior of Mg-PSZ/LaPO4 ceramics was investigated. The thermal shock resistance of the materials was evaluated by water quenching and a subsequent three-point bending test to determine the flexural strength degradation. Mg-PSZ/15LaPO4 composite showed a higher thermal shock resistance and behaved as a typical refractory. The calculation of thermal shock resistance parameters for the composites and the monolith had indicated possible explanations for the differences in thermal shock behavior.

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Advanced Materials Research (Volumes 785-786)

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187-190

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September 2013

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© 2013 Trans Tech Publications Ltd. All Rights Reserved

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[1] C. Wenzel, C.G. Aneziris: Mater. Sci. Eng. Vol. B176 (2011), p.32.

Google Scholar

[2] Q. Liu, S. An, W. Qiu: Solid State Ionics 121(1999), p.61.

Google Scholar

[3] W.J. Wei, Y. Lin: J. Euro. Ceram. Soc. Vol. 20 (2000), p.1159.

Google Scholar

[4] C.G. Aneziris, E.M. Pfaff, H.R. Maier: J. Euro. Ceram. Soc. Vol. 20 (2000), p.1729.

Google Scholar

[5] Z. Li, J. Liu and H. Du: Mater. Sci. Eng. Vol. A517 (2009), p.154.

Google Scholar

[6] Z. Li, J. Liu and S. Li: J. Alloy. Comp. Vol. 480(2009), p.863.

Google Scholar

[7] K. Niihara, R. Morena and D.P.H. Hasselman: J. Mater. Sci. Lett. Vol. 1(1982), p.13.

Google Scholar

[8] Z. Zhou, P. Ding and S. Tan: Mater. Sci. Eng. Vol. A405(2005), p.272.

Google Scholar

[9] H. Toraya, M. Yoshimura and S. Somiya: J. Am. Ceram. Soc. Vol. 67(1984), p.119.

Google Scholar

[10] D.P.H. Hasselman: J. Am. Ceram. Soc. Vol. 52(1969), p.600.

Google Scholar

[11] R. Morrell, in: Handbook of Properties of Technical & Engineering Ceramics, Part 1: An Introduction for the Engineer and Designer. London: HMSO (1985).

Google Scholar