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Effect of Magnetic Field annealing on magnetic properties of Co-rich amorphous nanowires

机译:磁场退火对共富无定形纳米线磁性的影响

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The applications of ferromagnetic CoFeB for the fabrication of read/write heads have been described by Liao [1]. Lioao applied magnetic field during plating in orthogonal directions and tailored the magnetic anisotropy and permeability proportionately [2]. The magnetic field annealing/stress to induce uniaxial anisotropy in nanocrystalline material (trade mark "Finemet")[3] and amorphous materials[4] have also been investigated. During last few decades, the researchers working in the fields of magnetic materials engineering have paid much attention towards CoFe alloys because of their high saturation magnetization and elevated curie temperatures. In case of the bulk CoFe alloy composition diagram, the maximum intrinsic magnetic induction are for cobalt contents approximately equal to 50% and greater than 90% [5]. Our present work is related to the fabrication of nanowires by adding boron at the these two compositions in the CoFe alloy i.e.,[Co{sub}50Fe{sub}50]{sub}(x-1)B{sub}x and [Co{sub}94Fe{sub}6]{sub}(x-1)B{sub}x for x=2 to 13.
机译:廖[1]描述了铁磁性CoFeB对读/写头的制造的应用。 Lioao在正交方向上的电镀过程中施加磁场,按比例定制磁各向异性和渗透率[2]。还研究了磁场退火/应力以诱导纳米晶体材料中的单轴各向异性(商标“Finemet”)[3]和无定形材料[4]。在过去的几十年中,由于其高饱和磁化和居里温度升高,研究人员在磁性材料工程领域工作的研究人员对CoFe合金进行了很多关注。在散装CoFe合金组合物图的情况下,最大内在磁诱导对于钴含量大约等于50%并且大于90%[5]。我们目前的工作是通过在CoFe合金即这两种组合物中添加硼与纳米线的制造中,[CO {子} 50Fe {子} 50] {子}(X-1)B {子} x和[ co {sub} 94fe {sub} 6] {sub}(x-1)b {sub} x for x = 2到13。

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