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Corrosion of Ti coating prepared by modified HVOF process

机译:通过改性的HVOF工艺制备Ti涂层的腐蚀

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Titanium exhibits very good corrosion resistance property because of the formation of very dense oxide coating. Expecially the good corrosion against Cl- solution for titanium material makes it wide applications in sea industry. It is very difficult to deposite Titanium coating under atmospheric condition due to the strong affinity with oxygen and nitrogen especially in high temperature plume. Except the expensive LPPS process, much attention has been paid to the newly developed cold spraying. Unfortunately the stringent requirement for the starting power and low production efficiency limit the application of the cold spraying. A modified HVOF process was developed by reducing the outlet diameter of chamber and by directly introducing water into chamber, therefore lower plume temperature and higher chamber pressure than conventional HVOF process can be achieved. Attempts to deposite Titanium coating were carried out, and immersion of Titanium coated A3 steel into artificial seawater was performed in order to evaluate the density of as-sprayed Titanium coating. The results showed that dense Titanium coating could be obtained after parameter optimization and very few corrosion spot was observed on the surface of Titanium coated A3 steel after immersion into artificial seawater for 120 h.
机译:钛由于形成非常致密的氧化物涂层,钛表现出非常好的耐腐蚀性。实际上,对钛材料的良好的腐蚀使其在海洋工业中提供广泛的应用。由于与氧气和氮的强亲和力,特别是在高温羽毛中,在大气条件下难以在大气条件下进行钛涂层非常困难。除了昂贵的LPP过程外,还有很多关注新开发的冷喷涂。不幸的是,对起始电源和低生产效率的严格要求限制了冷喷涂的应用。通过减小室的出口直径和将水直接引入腔室来开发改进的HVOF工艺,因此可以实现比传统的HVOF工艺更低的羽流温度和更高的腔室压力。进行钛涂层的试图进行,并进行钛涂覆的A3钢浸入人造海水中,以评估喷雾钛涂层的密度。结果表明,在浸入人工海水中,在钛涂覆的A3钢的表面上观察到致密钛涂层,在浸入人工海水中,观察到钛涂覆的A3钢的表面非常差。

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