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Correlations of Electrolyte State and Characteristics of Microplasma Coatings with Quantity of Transmitted Electricity

机译:电解质状态的相关性和传输电量微量涂层的特性

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摘要

The dependences of variations in the characteristics of coatings and electrolyte state (gross and detailed compositions, respectively) on the quantity of transmitted electricity are experimentally studied according to a concrete complex of initial and boundary conditions. In spite of the relatively minor variations in the elemental composition of a silicate-alkaline electrolyte, the substantial influence of surface morphology and other characteristics of coatings has been revealed. The hypothesis has been formulated that the processes of the formation of heteropolyneuclear complexes based on oxo-hydroxo forms of Si(IV) and Al(III) are responsible for the revealed decrease in electrolyte conductivity and scattering ability.
机译:根据初始条件和边界条件的具体组合,实验研究了涂层特性和电解质状态(分别为总成分和详细成分)的变化对传输电量的依赖关系。尽管硅酸盐碱性电解液的元素组成变化相对较小,但涂层的表面形态和其他特性仍有很大影响。提出了一个假设,即基于Si(IV)和Al(III)的氧-氢氧形式的杂多晶配合物的形成过程是电解质电导率和散射能力下降的原因。

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