The effect of a magnetic field on the electrodeposition of iron-nickel alloy

I. Ohno, M. Mukai
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引用次数: 6

Abstract

The effect of a magnetic field on the electrodeposition of a thin film of iron-nickel alloy for magnetic material was examined. The cathode potential during the electrodeposition of a ferromagnetic iron-nickel alloy in the magnetic field was compared with that of non-magnetic copper and magnetic nickel. The effect of a magnetic field on the form of the electrodeposit was examined.

It was observed that the effect of a magnetic field on the cathode potential was to increase polarization in the electrodeposition of nickel and iron-nickel alloy and magnetic metals. The polarization effect was greater when the magnetic field was perpendicular to the electrolytic current flux than when the two fluxes were in parallel. The form of the electrodeposit changed greatly with changes in the direction of the magnetic field.

磁场对铁镍合金电沉积的影响
研究了磁场对磁性材料铁镍合金薄膜电沉积的影响。比较了铁磁性铁镍合金电沉积过程中的阴极电位与非磁性铜和磁性镍的阴极电位。研究了磁场对镀层形态的影响。研究发现,在镍、铁镍合金和磁性金属的电沉积过程中,磁场对阴极电位的影响是增加极化。当磁场垂直于电解电流磁通时,极化效应大于两磁通平行时的极化效应。随着磁场方向的改变,镀层的形态发生了很大的变化。
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