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Effects of ceramic coating by micro-plasma oxidation on the corrosion resistance of Ti-6Al-4V alloy

机译:微等离子体氧化陶瓷涂层对Ti-6Al-4V合金耐蚀性的影响

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Micro-plasma oxidation (MPO) technique has been developed quickly in recent years. The ceramic coatings produced by MPO are reported to possess fine properties and promising application prospects in many fields. The aim of this work was to study the specific corrosion resistance of Ti-6Al-4V with ceramic coating by MPO and the effects of the coating on the corrosion resistance through the comparison between the coated samples and the Ti-6Al-4V substrate. Compound ceramic coatings were prepared on Ti-6Al-4V alloy by pulsed bipolar micro-plasma oxidation in the NaAlO2 system. The phase composition and element distribution in the coating were investigated by X-ray diffractometry and JEOL SUPERPROBE 733 electron probe micro-analyzer, respectively. The corrosion resistance properties of the coated samples were examined by the weight loss tests in three sorts of acids, potentiodynamic anodic curves and polarizing curve in 3.5% NaCl solution, and the galvanic couple corrosion current of coated samples with LY12 aluminum alloy and H62 yellow brass, respectively. The ceramic coating is composed of Al2TiO5, alpha-Al2O0 and rutile TiO2, of which Al2TiO5 is the main crystalline, and the content of rutile TiO2 in the inner layer is more than that in the outer layer of the coating, while the content of alpha-Al2O3 in the inner layer is less than that in the outer layer of the coating. The coating is of double-layer structure with the loose and porous outer layer and the compact inner layer. The content of Ti in the coating is less than that of the substrate, and Ti in the inner layer is more than that in the outer layer. The content of Al in the coating is more than that of the substrate; Al in the coating first increases, and then decreases from the substrate to the surface. The corrosion resistance of the coated samples in H2SO4 and HCl was improved five times, compared with the Ti-6Al-4V substrate. Besides, the corrosion resistance of the coated samples was better than that of the Ti-6Al-4V substrate in 3.5% NaCl solution, whether considering the point corrosion resistance or the uniform corrosion resistance. Meanwhile, the galvanic corrosion resistance of the coated samples coupled with LY12 aluminum and H62 yellow brass, respectively, was also improved due to the insulated ceramic coatings grown on it. (c) 2004 Elsevier B.V. All rights reserved.
机译:近年来,微等离子体氧化(MPO)技术得到了快速发展。据报道,由MPO生产的陶瓷涂料在许多领域都具有优良的性能和广阔的应用前景。这项工作的目的是通过比较涂层样品和Ti-6Al-4V基材,研究MPO陶瓷涂层的Ti-6Al-4V的特定耐蚀性以及该涂层对耐蚀性的影响。在NaAlO2系统中,通过脉冲双极微等离子体氧化在Ti-6Al-4V合金上制备复合陶瓷涂层。用X射线衍射仪和JEOL SUPERPROBE 733电子探针微分析仪分别研究了涂层中的相组成和元素分布。通过在三种酸中的重量损失测试,在3.5%NaCl溶液中的电位动力学阳极曲线和极化曲线以及LY12铝合金和H62黄色黄铜的涂层样品的电偶腐蚀电流,对涂层样品的耐腐蚀性进行了测试。 , 分别。陶瓷涂层由Al2TiO5,α-Al2O0和金红石型TiO2组成,其中Al2TiO5为主要晶体,内层金红石型TiO2的含量高于外层,而α型含量涂层的内层中的-Al 2 O 3小于涂层的外层中的-Al 2 O 3。涂层为双层结构,具有疏松多孔的外层和致密的内层。涂层中的Ti含量小于基材的含量,内层的Ti含量大于外层的含量。涂层中的Al含量高于基材的含量。涂层中的Al首先增加,然后从基材到表面减少。与Ti-6Al-4V基材相比,涂层样品在H2SO4和HCl中的耐腐蚀性提高了五倍。此外,无论是点腐蚀还是均匀腐蚀,涂层样品在3.5%NaCl溶液中的耐蚀性均优于Ti-6Al-4V基材。同时,由于在其上生长了绝缘陶瓷涂层,分别与LY12铝和H62黄色黄铜结合的涂层样品的耐电偶腐蚀性能也得到了改善。 (c)2004 Elsevier B.V.保留所有权利。

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