Aluminium Titanate Sintering Study Aimed at Rational Design of Microstructure for Optimal Thermal Shock Characteristics

  • Alecu, Ioan D. (Rojan Advanced Ceramics Pty Ltd.) ;
  • Stead, Rodney J. (Rojan Advanced Ceramics Pty Ltd)
  • Published : 1999.03.01

Abstract

Aluminium titanate is highly anisotropic in thermal expansion. As a result, thermal stresses build up in the material and intergranular cracks can develop. Both the outstanding thermal shock resistance and the low mechanical strength of aluminium titanate ceramics are a result of intergranular microcracking. The authors have previously identified a possibility of remarkably increasing fracture toughness of aluminium titanate without excessive penalty on strength. The paper shows that sintered density and porosity measurements can be used for optimizing the sintering and microstructure of aluminium titanate for an ideal balance between toughness and strength and, hence, the best thermal shock resistance.

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References

  1. $30^{th}$Int. Symp. on Automotive Technology & automation, ISATA'97 Aluminium Titanate Ceramics-An Attractive Solution I. D. Alecu;R. J. Stead
  2. Br. Ceram. Trans. J. v.88 H. A. J. Thomas;R. Stevens
  3. Ceramic Age v.60 W. R. Buessem;N. R. Thielke;R. V. Sarakauskas
  4. J. Am. Ceram. Soc. v.61 J. J. Cleveland;R. C. Bradt
  5. J. Am. Ceram. Soc. v.70 Y. Ohya;Z. Nakagawa;K. Hamano
  6. J. Am. Ceram. Soc. v.70 Y. Ohya;Z. Nakagawa;K. Hamano
  7. European Materials Society Conference, EUROMAT '95 Thermal Stability of Aluminium Titantate Ceramics Under Reducing Atmosphere Conditions G. A. Dean;I. D. Alecu;R. J. Stead
  8. $2^{nd}$ Pacific Rim Ceramic Societies Conference, -PacRim 2 Development of a Thermally Stable composition of Aluminium Titanate I. D. Alecu;R. J. Stead;R. D. Beake;D. N. Phillips
  9. Advances in Ceramics v.10 Structure and Properties of MgO and $Al_2O_3$ Ceramics A. G. Evans;Y. Fu