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Surface Treatment to Improve Corrosion Resistance of Pure Titanium

机译:表面处理可提高纯钛的耐腐蚀性

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The corrosion behavior of pure titanium UNS R50250 and UNS R50400 were investigated and compared with electrochemical behavior of Ti-0.2Pd and Ti-0.3Mo-0.8Ni alloys (UNS R52400 and UNS R53400 respectively). Surface treatments, especially anodic oxidations, were conducted in order to enhance the corrosion resistance of pure titanium up to the corrosion resistance of titanium alloys one. Samples were then tested with potentiodynamic analyses in chloride and fluoride containing solutions, in order to find critical pitting potentials for each condition and treatment. The results show that, despite all anodization treatments increased titanium corrosion resistance to different extents, no treatment was able to increase it up to UNS R52400 level. A suggestion on the best anodization procedure to increase corrosion resistance while maintaining ease of treatment is given based on potentiodynamic test results.
机译:研究了纯钛UNS R50250和UNS R50400的腐蚀行为,并将其与Ti-0.2Pd和Ti-0.3Mo-0.8Ni合金(分别为UNS R52400和UNS R53400)的电化学行为进行了比较。为了提高纯钛的耐蚀性至钛合金之一的耐蚀性,进行了表面处理,特别是阳极氧化。然后在含氯化物和氟化物的溶液中通过电位动力学分析测试样品,以发现每种情况和处理的临界点蚀电位。结果表明,尽管所有阳极氧化处理均在不同程度上提高了钛的耐腐蚀性,但没有任何一种处理能够将其提高到UNS R52400的水平。根据电位动力学测试结果,提出了最佳阳极氧化工艺的建议,以提高耐蚀性同时保持易于处理。

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