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Microstructure and corrosion performance of oxide coatings on aluminium by plasma electrolytic oxidation in silicate and phosphate electrolytes

机译:硅酸盐和磷酸盐电解质中等离子电解氧化铝表面氧化物涂层的组织和腐蚀性能

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摘要

Ceramic coatings are fabricated on pure aluminium by plasma electrolytic oxidation (PEO) in three kinds of electrolyte systems [E1: 0.05M NaOH+0.033 M Na2SiO3, E2: 0.025M NaOH+0.008M (NaPO3)(6) and E3: 0.025M NaOH+0.066M Na2SiO3+0.008M (NaPO3)(6)]. The voltage-time responses show that the PEO process of E2 has the highest discharging voltage, which results in the biggest pores and heaviest cracks on the surfaces. X-ray diffraction results show that coatings produced in E1 and E3 are mainly composed of gamma-Al2O3 and mullite, while coatings produced in E2 are mainly composed of alpha-Al2O3. After PEO treatment the corrosion resistance of aluminium is improved significantly and the coatings produced in E3 perform the best corrosion resistance.
机译:在三种电解质体系中,通过等离子电解氧化(PEO)在纯铝上制造陶瓷涂层[E1:0.05M NaOH + 0.033 M Na2SiO3,E2:0.025M NaOH + 0.008M(NaPO3)(6)和E3:0.025M NaOH + 0.066M Na2SiO3 + 0.008M(NaPO3)(6)]。电压-时间响应表明,E2的PEO过程具有最高的放电电压,这会导致最大的孔和最大的表面裂纹。 X射线衍射结果表明,在E1和E3中产生的涂层主要由γ-Al2O3和莫来石组成,而在E2中产生的涂层主要由α-Al2O3组成。经过PEO处理后,铝的耐蚀性得到显着改善,E3中生产的涂层表现出最佳的耐蚀性。

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