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TiNiCu形状记忆合金热机械训练诱发双向记忆效应的DSC曲线特征
引用本文:王治国,祖小涛,封向东,邓炯,戴晶怡,傅平.TiNiCu形状记忆合金热机械训练诱发双向记忆效应的DSC曲线特征[J].航空材料学报,2004,24(3):1-4.
作者姓名:王治国  祖小涛  封向东  邓炯  戴晶怡  傅平
作者单位:1. 电子科技大学,应用物理系,四川,成都,610054
2. 四川大学,物理系,四川,成都,610064
3. 中国工程物理研究院,电子工程研究所,四川绵阳,621907
基金项目:国家自然科学基金(10175042),中物院基金(99040536)资助项目
摘    要:利用示差扫描量热法(DSC)研究了TiNiCu双向记忆弹簧训练过程中热机械训练及退火对合金相变特征的影响。结果表明,训练前升温时,DSC曲线表现出的吸热峰由多个小峰组成,随着训练次数的增加,峰的个数减少,具有稳定双向记忆效应的试样中,升温时只出现一个锐利的峰。这是因为在训练过程中引入特定取向的位错,产生一定的应力场,使得马氏体变体的取向比较一致,相变点基本相同所致。由于位错的引入,引起相变点As和Af下降。训练不同次数的样品400℃退火后,由多个小峰组成的吸热峰合并为一个峰,这是由退火导致热机械训练诱发特定取向的位错恢复引起的。

关 键 词:TiNiCu形状记忆合金  热机械训练  双向记忆效应  DSC
文章编号:1005-5053(2004)03-0001-04
修稿时间:2002年9月13日

Characterization of DSC curves of the two-way shape memory effect induced by thermo-mechanical training in TiNiCu alloy
WANG Zhi-guo,ZU Xiao-tao,FENG Xiang-dong,DENG Jiong,DAI Jing-yi,FU Ping.Characterization of DSC curves of the two-way shape memory effect induced by thermo-mechanical training in TiNiCu alloy[J].Journal of Aeronautical Materials,2004,24(3):1-4.
Authors:WANG Zhi-guo  ZU Xiao-tao  FENG Xiang-dong  DENG Jiong  DAI Jing-yi  FU Ping
Institution:WANG Zhi-guo~1,ZU Xiao-tao~1,FENG Xiang-dong~2,DENG Jiong~2,DAI Jing-yi~3,FU Ping~3
Abstract:Transformation characters of TiNiCu two-way shape memory (TWSM) spring were investigated by differential scanning calorimetry DSC measurement during thermo-mechanical training. The results showed that before training the profile of endothermic peaks were composed of several small peaks. With training the amount of the small peaks decreased. After the stabilized TWSME induced into the TiNiCu alloy, there was only one sharp peak appear. This can attribute to the dislocations structures creates an anisotropic stress field, which guides the orientation of martensite variants very similar. And the dislocations also leads to the decrease of A_s and A_f. Annealing induced the small peaks merge into one peak which resulted from the annihilation of the dislocation introduced by thermo-mechanical training.
Keywords:TiNiCu shape memory alloy  thermo-mechanical training  two-way shape memory effect  DSC
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