Corrosion and Wear performances analysis of PVD CrMoN/Cr Coatings

Kheireddine Bouzid, Rim Lamari, N. E. Beliardouh, C. Nouveau, B. Biswas
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引用次数: 1

Abstract

Tools coated CrN based alloys are currently used in several industries for machining and manufacturing, but present severe wear, limiting their service life. Seeking an alternative, three CrMoN monolayers (~1µm in thickness) coatings with varying in the Mo percentage content were elaborated using the RF magnetron co-sputtering method. These coatings were evaluated and compared with the alloy currently used (CrN) by electrochemical tests in NaCl solution (stationary and no stationary method) and sliding wear tests (ball-on-disc configuration) performed at room temperature. The results indicate that the samples coated with CrMoN presented better performance against wear and corrosion than the uncoated sample. Among the coatings, the labeled C1 (27 % Mo) showed the best corrosion resistance as it presents a positive corrosion potential Ecorr. However, the best wear resistance (lowest coefficient of friction) was shown by coating labeled C4 (33 % Mo). All of the tested specimens underwent abrasive wear in addition to adhesive wear.
PVD CrMoN/Cr涂层的腐蚀磨损性能分析
工具涂层CrN基合金目前用于多个行业的机械加工和制造,但存在严重的磨损,限制了它们的使用寿命。为了寻找替代方案,采用射频磁控共溅射方法制备了三种不同Mo百分比含量的CrMoN单层(厚度~1 μ m)涂层。通过NaCl溶液中的电化学测试(固定和非固定方法)和室温下的滑动磨损测试(球盘结构),对这些涂层进行了评估,并与目前使用的合金(CrN)进行了比较。结果表明,包覆CrMoN的样品比未包覆CrMoN的样品具有更好的耐磨损和耐腐蚀性能。在涂层中,标记的C1 (27% Mo)具有最佳的耐腐蚀性,其腐蚀电位为正Ecorr。而C4 (33% Mo)涂层的耐磨性最好(摩擦系数最低)。所有的试样都经历了磨料磨损和粘着磨损。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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