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Influence of KF concentration on thickness and energy consumption of micro-arc oxidation coatings on LY12 aluminum alloy substrate

机译:KF浓度对LY12铝合金基体微弧氧化膜厚度和能耗的影响

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In this paper,ceramic coatings were produced on LY 12 aluminum alloy by the micro-arc oxidation (MAO) technique in an alkali sodium silicate electrolyte consisting of different KF concentrations(0~15g/l).The influence of KF concentration on making energy consumption and thickness of the MAO coatings was studied.Results revealed that increasing KF concentration caused an increase in the thickness and roughness of coatings and a decrease in the average energy during the MAO process.In response to the increase in KF concentration,the little content of F-in the coatings were increased simultaneously.However,the phase structure and composition of the coatings hardly varied with different KF concentrations.Moreover,it was observed that the coatings produced in electrolytic solution with 10g/L concentration of KF obtained an excellent thickness and making energy,but the coatings were ablated locally with the KF concentration of higher than 10g/L for more than 60 minutes.
机译:本文采用微弧氧化(MAO)技术,在不同KF浓度(0〜15g / l)组成的碱式硅酸钠电解液中,在LY 12铝合金上制备了陶瓷涂层。结果表明,随着KF浓度的增加,KF浓度的增加导致KF浓度的增加导致MAO涂层厚度和粗糙度的增加以及平均能量的下降。镀层中F-的含量同时增加。但是,随着KF浓度的增加,镀层的相结构和组成几乎不变。此外,观察到在浓度为10g / L的KF的电解液中生成的镀层具有优异的厚度并产生能量,但是当KF浓度高于10g / L时,涂层会被局部烧蚀60分钟以上。

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