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首页> 外文期刊>Coatings >The Effect of Electrolytic Solution Composition on the Structure, Corrosion, and Wear Resistance of PEO Coatings on AZ31 Magnesium Alloy
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The Effect of Electrolytic Solution Composition on the Structure, Corrosion, and Wear Resistance of PEO Coatings on AZ31 Magnesium Alloy

机译:电解液组合物对AZ31镁合金PEO涂层结构,腐蚀和耐磨性的影响

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Plasma electrolytic oxidation coatings were prepared in aluminate, phosphate, and silicate-based electrolytic solutions using a soft-sparking regime in a multi-frequency stepped process to compare the structure, corrosion, and wear characteristics of the obtained coatings on AZ31 magnesium alloy. The XRD results indicated that all coatings consist of MgO and MgF2, while specific products such as Mg2SiO4, MgSiO3, Mg2P2O7, and MgAl2O4 were also present in specimens based on the selected solution. Surface morphology of the obtained coatings was strongly affected by the electrolyte composition. Aluminate-containing coating showed volcano-like, nodular particles and craters distributed over the surface. Phosphate-containing coating presented a sintering-crater structure, with non-uniform distributions of micro-pores and micro-cracks. Silicate-containing coating exhibited a scaffold surface involving a network of numerous micro-pores and oxide granules. The aluminate-treated sample offered the highest corrosion resistance and the minimum wear rate (5 × 10?5 mm3 N?1 m?1), owing to its compact structure containing solely 1.75% relative porosity, which is the lowest value in comparison with other samples. The silicate-treated sample was degraded faster in long-term corrosion and wear tests due to its porous structure, and with more delay in the phosphate-containing coating due to its larger thickness (30 μm).
机译:在多频阶梯法中使用软火花型制度在铝酸盐,磷酸盐和基于硅酸盐的电解质溶液中制备等离子体电解氧化涂料,以比较所得涂层对AZ31镁合金的结构,腐蚀和磨损特性。 XRD结果表明所有涂层由MgO和MgF 2组成,而基于所选溶液,样品中还存在特定产品如Mg2SiO4,MgsiO3,Mg2O7和MgAl2O4。所得涂层的表面形态受电解质组合物的影响。含铝酸盐的涂层显示出气体样,结节性颗粒和分布在表面上的陨石坑。含磷酸盐的涂层呈现烧结陨石坑结构,具有非均匀的微孔和微裂纹分布。含硅酸盐的涂层表现出涉及许多微孔和氧化物颗粒的网络的支架表面。铝酸盐处理的样品提供了最高的耐腐蚀性和最小磨损率(5×10?5 mm3 n?1m≤1),由于其紧凑的结构,其具有仅为1.75%的相对孔隙率,这是与其相比的最低值其他样品。由于其多孔结构,硅酸盐处理的样品在长期腐蚀和磨损试验中降低,并且由于其较大的厚度(30μm),含磷酸盐的涂层具有更多延迟。

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