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Deformation temperature and postdeformation annealing effects on severely deformed TiNi alloy by equal channel angular extrusion
作者姓名:Zhenhua Li and Xianhua Cheng School of Mechanical and Power Engineering  Shanghai Jiaotong University  Shanghai  China.
作者单位:Zhenhua Li and Xianhua Cheng School of Mechanical and Power Engineering,Shanghai Jiaotong University,Shanghai 200030,China.
摘    要:Micron TiNi alloy blocks were fabricated at high temperature by equal channel angular extrusion (ECAE) using hot-forged Ti-50.3at%Ni alloy as the raw material and the effects of deformation temperature and postdeformation annealing on the severely deformed TiNi alloy by ECAE were investigated. The results show that the TiNi alloy processed by ECAE undergoes severe plastic deformation, and lowering the deformation temperature and increasing the number of extrusions contribute to grain refine- ment. When the annealing temperature is below 873 K, static recovery is the main restoration process; when the temperature rises to 973 K, static recrystallization occurs. It is found that fine particles are precipitated when the TiNi alloy processed by ECAE is an- nealed at 773 K.

关 键 词:TiNi记忆合金  变形温度  结晶体  退火技术
收稿时间:9 December 2006

Deformation temperature and postdeformation annealing effects on severely deformed TiNi alloy by equal channel angular extrusion
Zhenhua Li and Xianhua Cheng School of Mechanical and Power Engineering,Shanghai Jiaotong University,Shanghai ,China..Deformation temperature and postdeformation annealing effects on severely deformed TiNi alloy by equal channel angular extrusion[J].Journal of University of Science and Technology Beijing,2007,14(6):533-537.
Authors:Zhenhua Li  Xianhua Cheng
Affiliation:School of Mechanical and Power Engineering, Shanghai Jiaotong University, Shanghai 200030, China
Abstract:Micron TiNi alloy blocks were fabricated at high temperature by equal channel angular extrusion (ECAE) using hotforged Ti-50.3at%Ni alloy as the raw material and the effects of deformation temperature and postdeformation annealing on the severely deformed TiNi alloy by ECAE were investigated. The results show that the TiNi alloy processed by ECAE undergoes severe plastic deformation, and lowering the deformation temperature and increasing the number of extrusions contribute to grain refinement. When the annealing temperature is below 873 K, static recovery is the main restoration process; when the temperature rises to 973 K, static recrystallization occurs. It is found that fine particles are precipitated when the TiNi alloy processed by ECAE is annealed at 773 K.
Keywords:TiNi shape memory alloy  equal channel angular extrusion (ECAE)  static recrystallization  ultrafine-grained (UFG) structure
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