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Crystallographic structure and magnetic properties of electrodeposition cobalt and cobalt alloys

机译:电沉积钴和钴合金的晶体结构和磁性

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摘要

The connection between plating conditions and elements of the structure (phase composition, texture and its perfection, grain size) is considered first and then is discussed the correlation between structure parameters and magnetic properties. The structure parameters' influence on magnetic properties is explained in light of the contribution of different types of magnetic energy. The dependence of magnetic properties of cobalt layers on the phase composition and texture perfection is demonstrated using specific X-ray methods for their quantitative determination for the case of axial texture presence. The hierarchy of the structural parameters' effect on the magnetic properties of electrodeposited cobalt is outlined. The influence of internal stress (caused by hydrogen desorption) on the magnetic properties of electrodeposited cobalt is illustrated in case, where the structure remains unchanged. The data for the calculated (on the base of the existing axial texture) and the measured values of magnetostriction of Co-Fe coatings are compared. The dependence of coercivity on Co-Ni alloy composition is explained by assuming simultaneous action of several structure parameters. A possible influence of interparticle separation along the grain boundaries on the magnetic properties of electrodeposited films is briefly considered.
机译:首先要考虑镀覆条件与结构元素之间的联系(相组成,织构及其完善性,晶粒尺寸),然后讨论结构参数与磁性能之间的关系。根据不同类型的磁能的贡献,解释了结构参数对磁性能的影响。使用特定的X射线方法对钴层的磁性质对相组成和结构完善性的依赖性进行了定量确定,以用于确定轴向结构存在的情况。概述了结构参数对电沉积钴磁性能的影响的层次结构。在结构保持不变的情况下,说明了内应力(由氢解吸引起)对电沉积钴磁性能的影响。比较计算出的数据(基于现有的轴向织构)和Co-Fe涂层的磁致伸缩测量值。通过假设多个结构参数的同时作用来说明矫顽力对Co-Ni合金成分的依赖性。简要考虑了沿晶界的颗粒间分离对电沉积膜磁性能的可能影响。

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