4.7 Article

Effect of pore clustering on the mechanical properties of ceramics

Journal

JOURNAL OF THE EUROPEAN CERAMIC SOCIETY
Volume 22, Issue 4, Pages 403-409

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/S0955-2219(01)00303-X

Keywords

Al2O3; elastic modulus; mechanical properties; modelling; porosity; strength

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The reduction in strength and, to a lesser extent, Young's modulus with increased amounts of discrete pores is frequently greater than that predicted by models based on a homogenous pore distribution. The effect of pore distribution has been examined in the present work by producing samples containing a non-homogenous distribution of pores and comparing the results with data reported for samples containing homogenously distributed pores. Young's modulus and, to a greater extent, strength were shown to have stronger dependencies on the porosity content than would be predicted for homogeneous samples. By considering the material as a composite consisting of a pore-rich continuous phase containing a dispersion of pore-free material, various models were used to predict behaviour. It was found that the strength of the material is likely to be governed by the properties of the continuous phase, while the Young's modulus is a function of the properties of the two phases, with the porous phase being described by the Spriggs equation. The implications of the different dependencies of strength and Young's modulus in terms of the resistance to crack propagation following a thermal shock were then considered. predictions of retained strength were in good agreement with those observed after water quenching. (C) 2002 Elsevier Science Ltd. All rights reserved.

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