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Effect Of Current Density On The Microstructure And Corrosion Behaviour Of Plasma Electrolytic Oxidation Treated Am50 Magnesium Alloy

机译:电流密度对等离子电解氧化处理的Am50镁合金显微组织和腐蚀行为的影响

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Plasma electrolytic oxidation (PEO) of an AM50 magnesium alloy was accomplished in a silicate-based electrolyte using a DC power source. Coatings were produced at three current densities, i.e. 15 mA cm~(-2), 75 mA cm~(-2), and 150 mA cm~(-2) and were characterised for thickness, roughness, microstructural morphology, phase composition, and corrosion resistance. Even though the 15 min treated coatings produced at higher current density levels were thicker, they showed poor corrosion resistance when compared to that of the coatings obtained at 15 mA cm~(-2). Short-term treatments (2 min and 5 min) at 150 mA cm"2 yielded coatings of thickness and corrosion resistance comparable to that of the low current density coatings. The superior corrosion resistance of the low thickness coatings is attributed to the better pore morphology and compactness of the layer.
机译:AM50镁合金的等离子电解氧化(PEO)使用直流电源在硅酸盐基电解质中完成。以三种电流密度(即15 mA cm〜(-2),75 mA cm〜(-2)和150 mA cm〜(-2))生产涂层,并对涂层的厚度,粗糙度,微结构形态,相组成进行表征。和耐腐蚀性。尽管在较高电流密度水平下生产的15分钟处理过的涂层较厚,但与在15 mA cm〜(-2)下获得的涂层相比,它们仍显示出较差的耐腐蚀性。在150 mA cm“ 2下进行的短期处理(2分钟和5分钟)产生的涂层的厚度和耐蚀性可与低电流密度的涂层相比。层的紧密度。

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