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Electrochemical Study of Ni20Cr Coatings Applied by HVOF Process in ZnCl2-KCl at High Temperatures

机译:HVOF工艺在ZnCl2-KCl中高温下应用Ni20Cr涂层的电化学研究

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摘要

Corrosion behavior of Ni20Cr coatings deposited by HVOF (high velocity oxygen-fuel) process was evaluated in ZnCl2-KCl (1:1 mole ratio) molten salts. Electrochemical techniques employed were potentiodynamic polarization curves, open circuit potential, and linear polarization resistance (LPR) measurements. Experimental conditions included static air and temperatures of 350, 400, and 450 degrees C. 304-type SS was evaluated in the same conditions as the Ni20Cr coatings and it was used as a reference material to assess the coatings corrosion resistance. Coatings were evaluated as-deposited and with a grinded surface finished condition. Results showed that Ni20Cr coatings have a better corrosion performance than 304-type SS. Analysis showed that Ni content of the coatings improved its corrosion resistance, and the low corrosion resistance of 304 stainless steel was attributed to the low stability of Fe and Cr and their oxides in the corrosive media used.
机译:通过HVOF(高速氧气-燃料)工艺沉积的Ni20Cr涂层在ZnCl2-KCl(1:1摩尔比)熔融盐中的腐蚀行为进行了评估。所采用的电化学技术是电位动力学极化曲线,开路电势和线性极化电阻(LPR)测量。实验条件包括静态空气以及350、400和450摄氏度的温度。在与Ni20Cr涂层相同的条件下评估304型SS,并将其用作评估涂层耐腐蚀性的参考材料。评估涂层的沉积状态,并进行表面打磨处理。结果表明,Ni20Cr涂层具有比304型SS更好的腐蚀性能。分析表明,镀层中的镍含量提高了其耐蚀性,而304不锈钢的低耐蚀性归因于铁和铬及其氧化物在所用腐蚀介质中的低稳定性。

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