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电子辐照CuZnAl形状记忆合金马氏体稳定化的研究
引用本文:祖小涛,刘丽娟,封向东,林理彬,戴晶怡,傅平,霍永忠. 电子辐照CuZnAl形状记忆合金马氏体稳定化的研究[J]. 四川大学学报(自然科学版), 2002, 39(3): 484-486
作者姓名:祖小涛  刘丽娟  封向东  林理彬  戴晶怡  傅平  霍永忠
作者单位:1. 四川大学物理系·辐射物理及技术教育部重点实验室,成都,610064
2. 四川大学金属材料系,成都,610065
3. 中国工程物理研究院电子工程研究所,成都,610003
基金项目:国家自然科学基金 (10 175 0 4 2 )
摘    要:用能量 1.7MeV不同注量的电子辐照CuZnAl形状记忆合金样品 ,通过循环水冷的方法 ,将辐照控制在马氏体相进行 .实验结果表明 ,样品被辐照处理后 ,其马氏体相变温度和相变滞后 ,以及相变特征温度T0 都随辐照注量的增大而升高 ;当辐照注量在 6 .30× 10 2 0 m- 2 ~ 1.89×10 2 1m- 2 时 ,其相变温度变化渐趋平缓 .作者认为 ,这是由于电子辐照产生的点缺陷造成了马氏体相点阵畸变 ,从而诱生了马氏体稳定化

关 键 词:电子辐照 形状记忆合金 点缺陷 马氏体相变 马氏体稳定化
文章编号:0490-6756(2002)03-0484-03

Study of Effect of Electron Irradiation on Martensitic Stabilization in CuZnAl Shape Memory Alloy
ZU Xiao tao ,LIU Li juan ,FENG Xiang dong ,LIN Li bin ,DAI Jing yi ,FU Ping ,HUO Yong zhong. Study of Effect of Electron Irradiation on Martensitic Stabilization in CuZnAl Shape Memory Alloy[J]. Journal of Sichuan University (Natural Science Edition), 2002, 39(3): 484-486
Authors:ZU Xiao tao   LIU Li juan   FENG Xiang dong   LIN Li bin   DAI Jing yi   FU Ping   HUO Yong zhong
Affiliation:ZU Xiao tao 1,LIU Li juan 2,FENG Xiang dong 1,LIN Li bin 1,DAI Jing yi 3,FU Ping 3,HUO Yong zhong 2
Abstract:Specimens of shape memory CuZnAl shape memory alloys were irradiated with an energy of 1.7MeV electron over different injection capacity. During the irradiation the temperature of the sample was controlled such that the irradiation was carried out in the martensitic phase. The transformation temperature was measured under similar conditions before and after electron irradiation by means of differential scanning calorimeter (DSC).The authors found that the phase transition temperature and the hysteresis increased with increasing the fluence of the electron. And they began to keep a constant at last. The characteristic transformation temperature T 0 increased about 10K. The authors thought that the point defects make the lattice distortion of martensite phase induced by electron irradiation and bring about the stabilization of martensite, which led to the increase of transformation temperature and the hysteresis.
Keywords:electron irradiation  CuZnAl shape memory alloys  martensitic transformation  martensitic stabilization  point defect
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