J Mater Sci Technol ›› 2004, Vol. 20 ›› Issue (03): 245-248.

• Research Articles • Previous Articles     Next Articles

Applied Strain Field on Microstructure Optimization of Ti-Al-Nb Alloy Computer Simulated by Phase Field Approach

Wei GUO, Yaping ZONG, Gang WANG, Liang ZUO   

  1. Department of Materials Science and Engineering, Northeastern University, Shenyang 110004, China
  • Received:1900-01-01 Revised:1900-01-01 Online:2004-05-28 Published:2009-10-10
  • Contact: Yaping ZONG

Abstract: The effects of applied tensile strain on the coherent α2 →O-phase transformation in Ti-Al-Nb alloys are explored by computer simulation using a phase-field method. The focus is on the influence of the applied strain direction on the microstructure and volume fraction of the O-phase precipitates. It is found that altering applied strain direction can modify microstructure of Ti-25Al-10~12Nb (at.~pct) alloy duringα2 →O-phase transformation effectively and full laminate microstructure in the Ti-25Al-10Nb (at. pct) alloy can be realized by an applied strain only along the direction 30° away from theα2 phase <10 0> in magnitude equivalent to the stress-free transformation strain. The simulation also shows that not only the magnitude of applied strain but also the applied strain direction influences the O-phase volume fraction and the effect of strain direction on the volume fraction is up to 25%.

Key words: Phase field simulation, Strain induced phase transformation, Ti-Al-Nb alloy...