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哈斯勒合金Ni-Mn-Sn的磁热效应
引用本文:赵艳红,翟路路,宋志强,张伟,松林,特古斯.哈斯勒合金Ni-Mn-Sn的磁热效应[J].稀有金属,2012,36(3):390-394.
作者姓名:赵艳红  翟路路  宋志强  张伟  松林  特古斯
作者单位:内蒙古师范大学物理系,自治区功能材料物理与化学自治区重点实验室,内蒙古呼和浩特010022
基金项目:国家自然科学基金资助项目(50961010,51161016);内蒙古自然科学重点项目(20080404Zd01);内蒙古师范大学研究生创新基金项目(CXJJS10034)资助
摘    要:采用真空电弧熔炼法和高温淬火法制备了四元哈斯勒合金Ni50-xCuxMn36Sn14(x=0,2,4,6)的化合物。用X射线衍射仪和振动样品磁强计研究了合金的物相与磁热效应。结果表明,部分Cu元素对Ni的替代,并没有改变三元哈斯勒合金Ni-Mn-Sn原有的晶体结构,只是晶格常数开始有减小的趋势,晶胞的体积没有发生太大的变化。M-T曲线的结果表明,该系列哈斯勒合金样品在奥氏体相的铁磁交换作用增强,导致居里温度升高,而结构相变温度降低。此外,通过麦克斯韦方程计算了该系列合金的磁熵变(-ΔSm),在磁场变化为1.5 T的情况下,获得了Ni46Cu4Mn36Sn14合金在330 K附近的最大磁熵变(-ΔSmmax)约为2.0 J·(kg·K)-1。

关 键 词:哈斯勒合金  马氏体相变  居里温度  磁熵变

Magnetocaloric Effect of Heusler Alloy Ni-Mn-Sn
Zhao Yanhong , Zhai Lulu , Song Zhiqiang , Zhang Wei , Song Lin , Tegus O.Magnetocaloric Effect of Heusler Alloy Ni-Mn-Sn[J].Chinese Journal of Rare Metals,2012,36(3):390-394.
Authors:Zhao Yanhong  Zhai Lulu  Song Zhiqiang  Zhang Wei  Song Lin  Tegus O
Affiliation:Zhao Yanhong,Zhai Lulu,Song Zhiqiang,Zhang Wei,Song Lin,Tegus O(Municipality Key Laboratory of Physics and Chemistry of Functional Material,Physics Department,Inner Mongolia Normal University,Hohhot 010022,China)
Abstract:The Ni50-xCuxMn36Sn14(x=0,2,4,6) compounds were prepared by means of arc melting and high-temperature quenching.The structure and the phase transition characteristics of the compounds were investigated by using X-ray diffraction and Vibrating sample magnetometer.X-ray diffraction showed that substitution of Cu for Ni did not change the crystal structure of the ternary Heusler alloy Ni-Mn-Sn,but the lattice constants decreased,and the unit cell volume almost unchanged.Magnetic measurements showed that ferromagnetic exchange interaction enhanced in the austenite phase of the samples,leading to the increase of Curie temperature,while the structural phase transition temperature reduced.The maximal magnetic entropy change ΔSM of the Ni46Cu4Mn36Sn14 alloys was about 2.0 J ·(kg · K)-1,near the 330 K in a field change of 1.5 T.
Keywords:Heusler alloy  martensitic transformation  Curie temperature  magnetic entropy change
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