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Gd0.95Nb0.05合金磁热效应的研究
引用本文:侯雪玲,张 鹏,胡星浩,徐 晖,倪健森,周邦新.Gd0.95Nb0.05合金磁热效应的研究[J].稀有金属材料与工程,2010,39(1):126-128.
作者姓名:侯雪玲  张 鹏  胡星浩  徐 晖  倪健森  周邦新
作者单位:上海大学,上海,200072
基金项目:上海市纳米中心“纳米稀土磁制冷工质材料的研究”资助项目(0352nm030)
摘    要:采用X射线衍射技术、直接磁热效应测量仪和VSM振动样品磁强计研究电弧熔铸和400℃,1h热处理后低纯Gd0.95Nb0.05合金的磁热效应。结果表明:适量Nb的加入不改变商业Gd的居里温度,但明显提高了商业Gd的磁热效应,最大绝热温变由3.1K增加到3.5K,1.5T磁场下最大磁熵变为3.99J/(kg·K);Gd0.95Nb0.05合金经过400℃,1h热处理后,居里温度提高了2K,最大绝热温变和最大磁熵变有不同程度的增加。与高纯Gd相比,商业原料制备的Gd0.95Nb0.05合金成本低廉,是一种非常实用的磁制冷工质材料。

关 键 词:Gd0.95Nb0.05合金  绝热温变  磁熵变  热处理  
收稿时间:2009/1/14 0:00:00

Study on Magnetocaloric Effect of Gd0.95Nb0.05 Alloys
Hou Xueling,Zhang Peng,Hu Xinghao,Xu Hui,Ni Jiansen and Zhou Bangxin.Study on Magnetocaloric Effect of Gd0.95Nb0.05 Alloys[J].Rare Metal Materials and Engineering,2010,39(1):126-128.
Authors:Hou Xueling  Zhang Peng  Hu Xinghao  Xu Hui  Ni Jiansen and Zhou Bangxin
Affiliation:Shanghai University;Shanghai 200072;China
Abstract:Magnetocaloric effect of low-purity Gd_(0.95)Nb_(0.05) alloys after arc-casting and 400 oC, 1 h heat treatment was studied by X-ray diffraction technique, direct magnetocaloric effect measuring instrument and vibrating sample magnetometer (VSM). The results show that proper amount of Nb addition doesn't change the Curie temperature of Gd but obviously improves its magnetocaloric effect. The maximum adiabatic temperature change of Gd_(0.95)Nb_(0.05) alloys increases to 3.5 K from 3.1 K in 1.2 T magnetic field, higher than that of commercial low-purity Gd. Meanwhile the maximum magnetic entropy of Gd_(0.95)Nb_(0.05) alloys reaches to 3.99 J/(kg·K) in 1.5 T magnetic field. After 400 oC, 1 h heat treatment, Curie temperature of Gd_(0.95)Nb_(0.05) alloys increases by 2 K, the maximum adiabatic temperature change increases to 3.6 K in 1.2 T magnetic field, and the maximum magnetic entropy also increases to 4.09 J/(kg·K) in 1.5 T magnetic field. Gd_(0.95)Nb_(0.05) alloys are a potential candidate of magnetic cooling materials with relatively low cost in commercial field.
Keywords:Gd0  95Nb0  05 alloy  adiabatic temperature change  isothermal magnetic entropy  heat treatment  
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