Galfenol的电化学沉积

R. Kay, J. Ng, C. Popov, P. Record, M. Desmulliez
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引用次数: 0

摘要

本文介绍了在赫尔电池装置上电化学沉积铁镓合金Galfenol的结果。在赫尔电池中,阴极相对于阳极电极被设置在一个预先确定的角度,这使得可以在单个样品上评估大范围的电流密度。镀铜衬底采用含有硫酸铁和含有不溶性铂阳极的硫酸镓的水溶液进行电镀。用柠檬酸钠作为络合剂抑制镀膜内Fe(OH)3的生成。采用能量色散x射线光谱法测定了矿床中Fe和Ga的含量。20%的Ga和80%的Fe的比例已被证明对Galfenol具有最大的磁致伸缩响应,并且在本研究中实现了这一材料百分比。发现电流密度和浴液配方对镀层成分起着至关重要的作用。高电流区域在沉积物中产生了更高水平的镓。x射线衍射测量表明,沉积的结晶结构在20%的Ga成分镀膜中含有BCC Fe相。然而,这些结果与发表的相图和由此产生的能量色散x射线光谱学结果相矛盾。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Electrochemical deposition of Galfenol
This paper presents the results of the electrochemical deposition of Galfenol, an iron-gallium alloy, obtained from a Hull cell apparatus. In a Hull cell, the cathode is set at a pre-determined angle with respect to the anode electrode, which enables a wide range of current densities to be evaluated across a single sample. Copper clad substrates were electroplated using an aqueous based solution containing iron sulphate and gallium sulphate containing an insoluble platinum anode. Sodium citrate was used as a complexing agent to inhibit the formation of Fe(OH)3 within the plated film. Energy Dispersive X-Ray spectroscopy was carried out to determine the Fe and Ga percentages within the deposits. A proportion of 20% Ga and 80% Fe has been shown to give the maximum magnetostrictive response for Galfenol and this material percentage was achieved in this study. Current density and bath formulation were found to play a crucial role in deposit composition. High current areas yielded higher levels of Gallium within the deposits. X-ray Diffraction measurements determined that the deposited crystalline structure of the deposit contains BCC Fe phases within the 20% Ga composition plated film. However these results contradict the published phase diagrams and resultant Energy Dispersive X-Ray Spectroscopy results.
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