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A structural, magnetostrictive and M?ssbauer study of Tb0.3Dy0.7(Fe0.9 T 0.1)1.95 alloys
Authors:Zheng Xiaoping  Zhang Peifeng  Fan Duowang  Li Fashen and Hao Yuan
Institution:(1) Key Laboratory of Opto-Electronic Technology and Intelligent Control, Education Ministry of China, Lanzhou Jiaotong University, 730070 Lanzhou, China;(2) Lanzhou Teachers College, 730070 Lanzhou, China;(3) Key Laboratory for Magnetism and Magnetic Materials, Education Ministry of China, Lanzhou University, 730000 Lanzhou, China;(4) State Key Laboratory of New Nonferrous Metal Materials, Lanzhou University of Technology, 730050 Lanzhou, China
Abstract:The effect of IIIA metal and transition metalT substitution for Fe on crystal structure, magnetostriction and spontaneous magnetostriction, anisotropy and spin reorientation of a series of polycrystalline Tb0.3 Dy0.7 (Fe0.9 T 0.1)1.95 (T=Mn, Fe, Co, B, Al, Ga) alloys at room temperature were investigated systematically. It was found that the primary phase of the Tb0.3 Dy0.7 (Fe0.9 T 0.1)1.95 alloys is the MgCu2-type cubic Laves phase structure for different substitution. The magnetostriction λ{ins} decrases greatly for the substitution of IIIA metal, B, Al and Ga, but is saturated more easily for Al and Ga substitution, showing that the Al and Ga substitution is beneficial to a decrease in the magnetocrystalline anisotropy of Tb0.3 Dy0.7 (Fe0.9 T 0.1)1.95 alloys. However, the substitution of transition metal Mn and Co decreases slightly the magnetostriction λ{ins}. It was also found that the effect of different substitutions on the spontaneous magnetostriction λ{in111} is distinct. The analysis of the M?ssbauer spectra indicates that the easy magnetization direction in the {110} plane deviates slightly from the main axis of symmetry for Al and Ga substitution, namely spin reorientation, but it does not change evidently for B, Mn and Co substitution.
Keywords:magnetostriction  cubic Laves phase  spin reorientation  M?ssbauer
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