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金属学报  2004, Vol. 40 Issue (9): 975-980     
  论文 本期目录 | 过刊浏览 |
定向凝固铁磁形状记忆合金Ni2MnGa的固-液界面形态
蒋成保 刘敬华 张涛 徐惠彬
北京航空航天大学材料学院; 北京100083
The Solid-Liquid Interface Morphology of the Unidirectionally Solidified Ni2MnGa Magnetic Shape Memory Alloy
JIANG Chengbao; LIU Jinghua; ZHANG Tao; XU Huibin
School of Materials Science and Engineering; Beijing University of Aeronautics and Astronautics; Beijing 100083
引用本文:

蒋成保; 刘敬华; 张涛; 徐惠彬 . 定向凝固铁磁形状记忆合金Ni2MnGa的固-液界面形态[J]. 金属学报, 2004, 40(9): 975-980 .
, , , . The Solid-Liquid Interface Morphology of the Unidirectionally Solidified Ni2MnGa Magnetic Shape Memory Alloy[J]. Acta Metall Sin, 2004, 40(9): 975-980 .

全文: PDF(14897 KB)  
摘要: 采用超高温度梯度真空区熔法定向凝固制备了Ni2MnGa晶体, 改变晶体生长速度、温度梯度和熔区长度, 获得了平直的固-液生长界面, 制备出Ni2MnGa单晶. 用光学显微镜观察了Ni50Mn29Ga21晶粒的竞争生长过程. 制备的定向凝固试样无宏观成分偏析. X射线衍射分析仅显示四方结构马氏体Ni2MnGa 400峰和004峰, 晶体生长轴向择优取向为立方奥氏体<100>方向. 采用差式扫描量热分析(DSC)和热重法(TG)分别测定试样中不同部位的相转变温度和Curie温度. 在稳定生长区, 沿轴向马氏体相变温度在10 ℃左右变化, 而Curie温度几乎没有变化. 这进一步表明采用该方法制备的Ni2MnGa晶体沿轴向成分 均匀, 且马氏体相变温度一致.
关键词 Ni2MnGa晶体生长定向凝固     
Abstract:The crystals of Ni2MnGa were prepared by high temperature gradient zone-melting unidirectional solidification. Through altering the growth velocity, the temperature gradient and the zone-melting length, a flat solid-liquid interface can be obtained, and a single crystal was successfully prepared. The crystal growth competition was observed in Ni50Mn29Ga21 alloy. No obvious composition macro-segregation was detected. In X-ray diffraction pattern only 400 and 004 peaks of the tetragonal martensitic structure appear, showing the preferred orientation along <100> of the high-temperature cubic austenite Ni2MnGa. DSC and TG methods were applied to describe the distributions of the martensitic transition temperature and Curie temperature along the solidified axis of the Ni50Mn29Ga21, no obvious change for Curie temperature and about 10℃ increase for the martensitic transition temperature were observed, further indicating the homogeneity of the composition along the growth axis.
Key wordsNi2MnGa    crystal growth    unidirectional solidification
收稿日期: 2003-12-28     
ZTFLH:  TG111.4  
[1] O'Handley R C. Appl Phys, 1998; 83: 3263
[2] Wu G H, Yu C H, Meng L Q, Chen J L, Yang F M, Qi S R, Zhan W S, Wang Z, Zheng Y F, Zhao L C. Appl PhysLett, 1999; 75: 2990
[3] Jiang C B, Liang T, Xu H B, Zhang M, Wu G H. ApplPhys Lett, 2002; 81: 1818
[4] Murray S J, Marioni M, Allen S M, O'Handley R C. ApplPhys Lett, 2000; 77: 886
[5] Sozinov A, Likhachev A A, Lanska N, Ullakko K. ApplPhys Lett, 2002; 80: 1746
[6] Schlagel D L, Wu Y L, Zhang W, Lograsso T A. J AlloysCompds, 2000; 312: 77
[7] Pons J, Chernenko V A, Sautamarta R, Cesari E. ActaMater, 2000; 48: 3027
[8] Jiang C B, Feng G, Xu H B. Appl Phys Lett, 2002; 80:1619
[9] Albertini F, Pareti L, Paoluzi A, Morellon L, Algarabel PA, Ibarra M R, Righi L. Appl Phys Lett, 2002; 81: 4032
[10] Straka L, Heczko O, Lanska N. IEEE Trans Magn, 2002;38: 2835
[11] Jiang C B, Muhammad Y, Deng L F, Wu W, Xu H B.Acta Mater, 2004; 52: 2779
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