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首页> 外文期刊>Journal of nanoscience and nanotechnology >Corrosion Resistance of Plasma Electrolytic Oxidation Coatings on LD7 Alloy in Oxalate and Dihydrogen Phosphate Electrolytes
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Corrosion Resistance of Plasma Electrolytic Oxidation Coatings on LD7 Alloy in Oxalate and Dihydrogen Phosphate Electrolytes

机译:草酸盐和二氢电解质LD7合金上等离子体电解氧化涂层的耐腐蚀性

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摘要

Two plasma electrolytic oxidation (PEO) coatings were fabricated on LD7 aluminum alloy in oxalate and dihydrogen phosphate electrolytes. The phase composition, morphology and corrosion resistant of the two PEO coatings were analyzed by X-ray diffraction (XRD), scanning electron microscopy (SEM) and electrochemical test. Both PEO coatings presented three-layer structure, i.e., a porous outer layer, a relative dense intermediate layer with nano-size micro-pores and an inner nanoscale barrier layer at the coating/substrate interface. It was found that the porosity of the coating in oxalate electrolyte was lower than that in dihydrogen phosphate electrolyte. The small quantity of the nanosize micro-pores might be attributed to the appearance of "soft spark" in oxalate electrolyte, whereas the large number of micro-pores and cracks should be related to intensive micro-discharges in dihydrogen phosphate electrolyte during PEO process. The compact coating with nano-size micropores in oxalate electrolyte provided better protection than that in dihydrogen phosphate electrolyte from corrosion.
机译:在草酸和二氢电解质中的LD7铝合金上制造了两种等离子体电解氧化(PEO)涂层。通过X射线衍射(XRD),扫描电子显微镜(SEM)和电化学测试分析了两个PEO涂层的相组合物,形态和耐腐蚀。两个PEO涂层呈现三层结构,即多孔外层,具有纳米尺寸微孔的相对致密的中间层和涂层/衬底界面处的内纳米级阻挡层。发现草酸盐电解质中涂层的孔隙率低于磷酸二氢电解质中的孔隙率。少量纳米型微孔可能归因于草酸盐电解质中的“软火花”的外观,而大量的微孔和裂缝应在PEO过程中与二氢磷酸二氢电解质中的密集微量放电有关。具有纳米尺寸微孔的紧凑型涂层在草酸盐电解质中提供比来自腐蚀的二氢电解质中的更好的保护。

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