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Magnetoactive Oxide Layers Formed on Titanium by Plasma-Electrolytic Technique

机译:通过等离子体电解技术在钛上形成的磁化氧化物层

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Two kinds of iron-containing coatings, specifically those obtained from electrolytes containing polyphosphate iron complexes (no. 1) and from electrolyte suspensions (no. 2), are formed and studied. According to the microprobe analysis, the iron content in the coatings is 6-7 at %. Coatings of type 1 are paramagnetic, while coatings of type 2 are ferromagnetic. The distribution of elements over the depth of coatings is heterogeneous and the typical components of the surfaces have different compositions. Iron and titanium are concentrated at the bottom and walls of pores. Upon annealing in air, iron and titanium phosphates crystallize in coatings no. 1, while maghemite is formed in coatings no. 2. Based on the results obtained, the supposition is made that the ferromagnetic properties of type 2 coatings are determined by the presence of fine-dispersed magnetite and/or maghemite particles in them, as well as titanium-magnetite and/or titanium-maghemite grains.
机译:形成和研究并研究了两种含铁涂层,特别是从含有多磷酸铁复合物(NO.1)和电解质悬浮液(NO.2)的电解质中获得的那些。 根据微探针分析,涂层中的铁含量为6-7%。 1型涂层是顺磁性的,而2型涂层是铁磁性的。 在涂层深度上的元素分布是异质的,并且表面的典型组分具有不同的组成。 熨斗和钛浓缩在孔的底部和墙壁上。 在退火时,在空气中,铁和磷酸钛在涂料中结晶。 1,而Maghemite在涂料中形成。 2.基于所得的结果,假设2型涂层的铁磁性特性是通过在它们中存在细分散的磁铁矿和/或磁性颗粒的存在,以及钛 - 磁铁矿和/或钛 - 磁性石 谷物。

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