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Influence of Oxygen Contents on the Microstructure, High Temperature Oxidation and Corrosion Resistance Properties of Cr–Si–O–N Coatings

机译:含氧量对Cr-Si-O-N涂层微观结构,高温氧化和耐蚀性能的影响

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Cr–Si–O–N coatings with different oxygen contents were deposited by multi-arc ion plating, where various O2/(N2 + O2) reactive gas rates were adopted. The XRD and XPS results showed that the CrN crystals disappeared with the increasing of the oxygen flux ratio to 10 at.%. The microhardness of all the Cr–Si–O–N coatings was approximately 2000 Hv0.05, which were dramatically plummeted compared to that of the Cr–Si–N coatings (≈3300 Hv0.05). The Cr–Si–O–N coatings were annealed under 800 °C and 1200 °C in the air atmosphere for 2 h to study the high-temperature oxidation resistance of the coatings. Meanwhile, Cr–Si–O–N coatings with different O2/(N2 + O2) rates were also used to carry out the corrosion resistance testing using the electrochemical working station in 3.5% NaCl solution under free air condition at room temperature. The results indicated that the coatings containing oxygen were more vulnerable to the high-temperature destruction and more easily corroded in the NaCl electrolyte.
机译:通过多弧离子镀沉积具有不同氧含量的Cr-Si-O-N涂层,其中采用了各种O2 /(N2 + O2)反应气体速率。 XRD和XPS结果表明,随着氧通量比增加到10at。%,CrN晶体消失。所有Cr–Si–O–N涂层的显微硬度约为2000 Hv0.05,与Cr–Si–N涂层的显微硬度相比,急剧下降(≈3300Hv0.05)。 Cr-Si-O-N涂层在空气中于800°C和1200°C的温度下退火2小时,以研究涂层的高温抗氧化性。同时,还使用了具有不同O2 /(N2 + O2)比率的Cr-Si-O-N涂层,在室温下在自由空气条件下使用电化学工作站在3.5%NaCl溶液中进行了耐腐蚀性测试。结果表明,含氧涂层更容易受到高温破坏,并且在NaCl电解液中更容易被腐蚀。

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