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Fretting Corrosion Behavior of Experimental Ti-20Cr Compared to Titanium

机译:实验性Ti-20Cr与钛相比的微动腐蚀行为

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摘要

Experimental cast titanium alloys containing 20 mass% chromium (Ti-20Cr) show preferable mechanical properties and a good corrosion resistance. This study evaluated the fretting corrosion behavior of Ti-20Cr. Ti-20Cr (n = 4) and commercially pure titanium (CP-Ti, n = 6) disk specimens were used. The fretting corrosion test was performed by electrochemical corrosion at 0.3 V in 0.9% saline solution and mechanical damage using 10 scratching cycles with three different scratching speeds (10–40 mm/s) at 10 N. After testing, the activation peak, repassivation time and surface morphology of each specimen were analyzed. The differences between the results were tested by parametric tests (α = 0.05). The average activation peaks were significantly higher in CP-Ti than in Ti-20Cr (p < 0.01), except at 20 mm/s. In the series of scratching speeds, faster scratching speeds showed higher activation peaks. The maximum activation peaks were also higher in CP-Ti. Slight differences in the repassivation time were observed between the materials at every scratching speed; faster scratching speeds showed shorter repassivation times in both materials (p < 0.05). CP-Ti showed severe damage and significantly higher wear depth than Ti-20Cr (p < 0.05). In conclusion, adding chromium to titanium reduced surface damage and improved the fretting corrosion resistance.
机译:含有20质量%铬(Ti-20Cr)的实验铸造钛合金显示出较好的机械性能和良好的耐腐蚀性。本研究评估了Ti-20Cr的微动腐蚀行为。使用了Ti-20Cr(n = 4)和商业纯钛(CP-Ti,n = 6)圆盘样品。微动腐蚀试验是通过在0.9%盐溶液中在0.3 V的电压下进行电化学腐蚀并在10 N下使用10次刮擦循环(在10 N下具有三种不同的刮擦速度(10-40 mm / s))进行机械损伤来进行的。测试后,活化峰,重新钝化时间分析每个样品的表面形态。结果之间的差异通过参数检验进行了检验(α= 0.05)。除了20 mm / s的速度外,CP-Ti的平均活化峰明显高于Ti-20Cr(p <0.01)。在一系列的划痕速度中,更快的划痕速度显示出更高的活化峰。 CP-Ti中的最大活化峰也更高。在每种刮擦速度下,材料之间的重新钝化时间略有不同。更快的刮擦速度表明两种材料的再钝化时间都较短(p <0.05)。 CP-Ti较Ti-20Cr表现出严重的损坏和明显更高的磨损深度(p <0.05)。总之,在钛中添加铬可减少表面损伤并提高耐微动腐蚀性能。

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