High Temperature Creep Deformation of Mechanically Alloyed Al-Ti-Si Alloy

기계적 합금법에 의한 Al-Ti-Si합금의 고온 크립 변형

  • 최철진 (한국기계연구원 재료공정연구부) ;
  • 박원욱 (한국기계연구원 재료공정연구부)
  • Published : 1995.12.31

Abstract

The high temperature deformation of mechanically alloyed Al-Ti-Si alloy (Al-9.64wt% Ti-1.56wt% Si) was investigated by performing constant load compression creep tests over the temperature range of $673^\circC$K to $723^\circC$K. From the calculation based on the modified power law creep equation for dispersion strengthened alloy, the true creep activation energy, was 176kJ/mole, the true stress exponent was 4.9. Considering the value of activation energy, stress exponent, the shape of primary creep region, it could be concluded that creep deformation in the MA Al-Ti-Si alloy is controlled by dislocation climb.

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