Mechanical Properties of Ultrafine Grained 5052 Al Alloy produced by Cryogenic Rolling Process

극저온 압연으로 제조된 5052 Al Alloy의 기계적 성질

  • Lee Y. B. (School of Advanced Materials Engineering, Kookmin university) ;
  • Nam W. J. (School of Advanced Materials Engineering, Kookmin university)
  • 이영범 (신소재공학부, 국민대학교) ;
  • 남원종 (신소재공학부, 국민대학교)
  • Published : 2004.08.01

Abstract

The effect of annealing temperature on microstructures and mechanical properties of the sheets received $88\%$ reduction at cryogenic temperature was investigated for the annealing temperature of $150\~300^{\circ}C$, in comparison with those at room temperature. The presence of equiaxed grains, whose size is about 200nm in a diameter, was observed in 5052 Al alloy deformed $88\%$ and annealed $200^{\circ}C$ for an hour. When compared with the deformation at room temperature, the deformation at cryogenic temperature showed the higher strengths and equivalent elongation after annealing at the annealing temperature below $200^{\circ}C$. However, for annealing above $250^{\circ}C$ materials deformed at cryogenic temperature showed the lower strength than those deformed at room temperature. This behavior might be attributed to the higher rate of recrystallization and growth in materials deformed at cryogenic temperature during annealing, due to the lager density of dislocations accumulated during the deformation.

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