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首页> 外文期刊>Materials transactions >Influence of Phosphate Concentration on Plasma Electrolytic Oxidation of AZ80 Magnesium Alloy in Alkaline Aluminate Solution
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Influence of Phosphate Concentration on Plasma Electrolytic Oxidation of AZ80 Magnesium Alloy in Alkaline Aluminate Solution

机译:碱性铝酸盐溶液中磷酸盐浓度对AZ80镁合金等离子体电解氧化的影响

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摘要

Plasma electrolytic oxidation of AZ80 magnesium alloy in alkaline aluminate electrolytes develops MgAl_20_4-based highly crystalline oxide coatings with the morphology changing largely with phosphate concentration in electrolyte. The thickness of the coatings increases with phosphate concentration from 5 mum in phosphate-free electrolyte to ~70mum in the electrolyte containing 0.1mol-dm~(-3) phosphate after anodizing for 900 s. The formation of the latter thick coating is associated with intense sparking during anodizing. The thick coatings formed in the electrolytes containing 0.075 and 0.1 mol-dm~(-3) phosphate are highly cracked. In contrast, the coating formed in the electrolyte containing 0.05 mol-dm~(-3)phosphate is relatively uniform, showing the highest corrosion protection in 0.5 mol-dm~(-3) NaCl solution. The coatings consist of two layers, comprising an outer thick layer with high concentration of aluminum and an inner thin magnesium-rich layer.
机译:在碱性铝酸盐电解质中对AZ80镁合金进行等离子电解氧化,开发出基于MgAl_20_4的高度结晶氧化物涂层,其形貌随电解质中磷酸盐的浓度变化很大。阳极氧化900 s后,涂层厚度随磷酸盐浓度的增加而增加,从无磷酸盐电解液中的5um增加到含有0.1mol-dm〜(-3)磷酸盐的电解液中的〜70mum。后者厚涂层的形成与阳极氧化过程中强烈的火花有关。在含有0.075和0.1 mol-dm〜(-3)磷酸盐的电解质中形成的厚涂层被高度开裂。相反,在含0.05 mol-dm〜(-3)磷酸盐的电解液中形成的涂层相对均匀,在0.5 mol-dm〜(-3)NaCl溶液中显示出最高的防腐性能。涂层由两层组成,包括一层高浓度的铝外层和一层富含镁的内层。

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