Microstructure and Transformation Characteristics with Cooling Rate in Cu-Al-Ni Based SMA Ribbons Fabricated by Melt-Spinning

Cu-Al-Ni계 형상기억리본 제조시 냉각속도에 따른 미세조직 및 변태특성

  • Lee, Y.S. (Division of Metall. and Mater. Engr. & BK 21, Chosun University) ;
  • Jang, W.Y. (Division of Metall. and Mater. Engr. & BK 21, Chosun University) ;
  • Lee, E.G. (Division of Metall. and Mater. Engr. & BK 21, Chosun University)
  • 이영수 (조선대학교 공과대학 금속.재료공학부, BK21 핵심사업팀) ;
  • 장우양 (조선대학교 공과대학 금속.재료공학부, BK21 핵심사업팀) ;
  • 이은구 (조선대학교 공과대학 금속.재료공학부, BK21 핵심사업팀)
  • Received : 2000.06.13
  • Published : 2000.07.30

Abstract

The microstructural change and transformation characteristics with cooling rate i.e. wheel speed were investigated in 82.8wt%Cu-12.8wt%Al-4.3wt%Ni SMA ribbons fabricated by melt-spinning. The thickness and width of ribbon were decreased with increasing wheel speed, while the uniformity of it was improved. At same wheel speed, the grain size of the contact surface of ribbon was smaller than that of free surface. The mean grain size was decreased with increasing wheel speed, resulted in obtaining grains with $3{\mu}m$ in mean diameter in the wheel speed of 30 m/s. However, micro-voids and cracks at grain boundary could be observed at higher wheel speed. $M_s$ and $A_s$ temperatures were decreased, and $M_s{\sim}M_f$ and $A_s{\sim}A_f$ temperature ranges were broadened with increasing wheel speed. All the ribbons were retained the ordered $D0_3$ due to rapid cooling, the volume fraction of it was increased with increasing wheel speed.

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Acknowledgement

Supported by : 조선대학교