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Influence of graphene particles on the micro-arc oxidation behaviors of 6063 aluminum alloy and the coating properties

机译:石墨烯颗粒对6063铝合金微弧氧化行为和涂层性能的影响

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Ceramic coatings with different concentrations of graphene particles were prepared on 6063 Al alloy by Micro-arc oxidation (MAO) technique. Effect of graphene particles on the micro-arc oxidation behaviors and coating properties was investigated. The results showed that: The addition of graphene particles reduced the breakdown voltage and promoted the reaction of MAO. The MAO coating thickness and hardness increased with graphene particles. XRD patterns confirmed that all the MAO coatings mainly contained gamma-Al2O3 phase, and characteristic peaks of graphene were detected by Raman spectra. The SEM observation indicated that the coating porosity was reduced with discharge holes plugged up when the content of graphene particles was more than 0.15 g/L, and cracks appeared as the concentration was 0.2 g/L. Electrochemical corrosion tests (polarization curve and EIS) showed that the corrosion resistance of the composite coatings with graphene particles increased greatly, and the best corrosion resistance was found in the coating deposited with 0.15 g/L graphene particles. The same results of corrosion resistance were also verified by salt-spray corrosion test. (C) 2017 Elsevier B.V. All rights reserved.
机译:采用微弧氧化技术在6063铝合金上制备了不同浓度石墨烯的陶瓷涂层。研究了石墨烯颗粒对微弧氧化行为和涂层性能的影响。结果表明:石墨烯颗粒的加入降低了击穿电压并促进了MAO的反应。 MAO涂层的厚度和硬度随石墨烯颗粒的增加而增加。 X射线衍射图谱证实,所有的MAO涂层主要含有γ-Al2O3相,并通过拉曼光谱检测了石墨烯的特征峰。 SEM观察表明,当石墨烯颗粒的含量大于0.15 g / L时,堵塞排气孔,降低了涂层的孔隙率;浓度为0.2 g / L时,出现了裂纹。电化学腐蚀试验(极化曲线和EIS)表明,含石墨烯颗粒的复合涂层的耐蚀性大大提高,并且以0.15 g / L石墨烯颗粒沉积的涂层具有最佳的耐蚀性。盐雾腐蚀试验也证实了相同的耐腐蚀性结果。 (C)2017 Elsevier B.V.保留所有权利。

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