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Homogeneity of Magnetostriction of Tb--Dy--Fe—Co<110> Oriented Alloy Rod
引用本文:马天宇,严密,王庆伟.Homogeneity of Magnetostriction of Tb--Dy--Fe—Co<110> Oriented Alloy Rod[J].金属学报,2007,43(7):688-692.
作者姓名:马天宇  严密  王庆伟
作者单位:浙江大学硅材料国家重点实验室,杭州310027
基金项目:国家自然科学基金 , 教育部跨世纪优秀人才培养计划 , 中国博士后科学基金
摘    要:采用区熔定向凝固方法,先以30 mm/h低速生长,再以480 mm/h高速生长,制备了磁致伸缩性能较为均匀的《110》取向Tb0.36Dy0.64(Fel-xCox)2(x=0,0.1,0.15)合金棒.研究了不同晶体生长阶段的轴向择优取向和微观组织对磁致伸缩性能的影响.结果表明,轴向择优取向度主要影响样品在无预压应力条件下的磁致伸缩性能;富稀土相分布主要影响样品在施加预压应力条件下的磁致伸缩性能.沿合金棒轴向,从底部到顶部择优取向度逐渐增高,富稀土相由网状分布变为平行排列,造成合金棒顶部和中部的磁致伸缩性能较底部更高.磁化场为240 kA/m时磁致伸缩不均匀度小于6%,显示了良好的均匀性.

关 键 词:Tb-Dy-Fe合金  磁致伸缩  晶体生长  择优取向  不均匀度  取向度  合金棒  磁致伸缩性能  均匀性  MAGNETOSTRICTION  HOMOGENEITY  ALLOY  显示  不均匀度  磁化场  平行排列  相分布  富稀土相  应力条件  预压  样品  结果  影响  微观组织  择优取向
文章编号:0412-1961(2007)07-0688-05
收稿时间:2006-11-16
修稿时间:2006-11-162007-02-08

HOMOGENEITY OF MAGNETOSTRICTION OF Tb-Dy-Fe-Co 〈110〉 ORIENTED ALLOY ROD
MA Tianyu,YAN Mi,WANG Qingwei.HOMOGENEITY OF MAGNETOSTRICTION OF Tb-Dy-Fe-Co 〈110〉 ORIENTED ALLOY ROD[J].Acta Metallurgica Sinica,2007,43(7):688-692.
Authors:MA Tianyu  YAN Mi  WANG Qingwei
Affiliation:State Key Laboratory of Silicon Materials, Zhejiang University, Hangzhou 310027
Abstract:<110>oriented Tb_(0.36)Dy_(0.64)(Fe_(1-x)Co_x)_2(x=0,0.1,0.15)rods with homogeneous mag- netstriction have been prepared by zone melting directional solidification method.The preferred ori- entations and magnetostrictions of different sections of the rods have been investigated by XRD and standard strain gauge at room temperature,respectively.It was found that the magnetostriction is sensitive to both the crystal orientation and the distribution of the pseudo-eutectic rare earth phase. In comparison with the bottom section of the rods with net-like pseudo-eutectic rare earth phase, higher magnetostriction is always obtained from the middle and top sections with parallel-arranged rare earth phase.The inhomogeneity of magnetostriction under magnetic field of 240kA/m is less than 6%,indicating better homogeneity.
Keywords:Tb-Dy-Fe alloy  magnetostriction  crystal growth  preferred orientations  inhomogeneity
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