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Effects of Mo substituted Nb on magnetic properties of Finemet alloy
引用本文:梁工英,黄一坤,G.Friedman. Effects of Mo substituted Nb on magnetic properties of Finemet alloy[J]. 中国有色金属学会会刊, 2002, 12(2): 189-192
作者姓名:梁工英  黄一坤  G.Friedman
作者单位:[1]DepartmentofMaterialsPhysics,ScienceSchool,Xi'anJiaotongUniversity,Xi'an710049,China [2]DepartmentofElectricalEngineeringandComputerScience,UrfiversityofIllinois,Chicago,IL60607,USA
摘    要:Different Mo contents have been added into traditional Finemet alloy to form Fe73.5Cu1Nb3-x MoxSil3B9.5( x = 0 - 3) alloys. The change in DC and AC magnetic properties with Mo for Nb substimtlon was investigated. The results show that, with adding Mo, although the DC relative permeability decreases and the coercive force increases slightly,the saturation flux density Bs can be increased, and the core loss of the alloy can be decreased. The AC permeability of samples contained Mo is higher than that of alloy without Mo content. Fe73.sCu1Nb1Mo2Si13B9.5 alloy has the highest saturation flux density Bs. Fe73.sCu1Nb2Mo1Si13B9.5 alloy has the best frequency dependence on the AC permeability and core loss.

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Effects of Mo substituted Nb on magnetic properties of Finemet alloy
G.Friedman. Effects of Mo substituted Nb on magnetic properties of Finemet alloy[J]. Transactions of Nonferrous Metals Society of China, 2002, 12(2): 189-192
Authors:G.Friedman
Abstract:Different Mo contents have been added into traditional Finemet alloy to form Fe73.5Cu1Nb3- x Mo x Si13B9.5 ( x =0~3) alloys. The change in DC and AC magnetic properties with Mo for Nb substitution was investigated. The results show that, with adding Mo, although the DC relative permeability decreases and the coercive force increases slightly, the saturation flux density B S can be increased, and the core loss of the alloy can be decreased. The AC permeability of samples contained Mo is higher than that of alloy without Mo content. Fe73.5Cu1Nb1Mo2Si13B9.5 alloy has the highest saturation flux density B S. Fe73.5Cu1Nb2Mo1Si13B9.5 alloy has the best frequency dependence on the AC permeability and core loss.
Keywords:magnetic materials  nano crystalline  soft magnetic properties
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