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SEM and hot corrosion evaluation of 80Ni-20Cr coating applying electrochemical techniques

机译:电化学技术对80Ni-20Cr涂层进行SEM和热腐蚀评估

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The corrosion resistance of 80 wt. % Ni-20Cr coating applied by the powder flame thermal spray technique on AISI 304 stainless steel has been evaluated in 80 mol % Na_2SO_4-20V_2O_5 molten salt using electrochemical techniques. The testing temperatures were 700, 800 and 900°C, and the electrochemical techniques included potentiodynamic polarization curves (PPC) and electrochemical noise (EN). The objective of this research was to obtain the corrosion mechanism from the EN technique and polarization curves. The current and potential time series data were analyzed in the time domain. A SEM analysis of the corroded samples demonstrated that at 900°C a mechanism of sulfur penetration into the substrate was the most important corrosive attack. According with the electrochemical results, the 80 wt. % Ni-20Cr coating suffered localized corrosion and mixed corrosion, determining that the major localized corrosion was observed at the higher temperature.
机译:耐腐蚀性为80重量%。使用电化学技术在80mol%Na_2SO_4-20V_2O_5熔盐中评估了在AISI 304不锈钢上施加的粉末火焰热喷涂技术的%NI-20CR涂层。测试温度为700,800和900°C,电化学技术包括电位偏振曲线(PPC)和电化学噪声(EN)。本研究的目的是从ZH技术和极化曲线获得腐蚀机制。在时域中分析了电流和潜在的时间序列数据。腐蚀样品的SEM分析证明,在900℃下,硫渗透到基材中的机制是最重要的腐蚀性攻击。根据电化学效果,80重量%。 %NI-20CR涂层均遭受局部腐蚀和混合腐蚀,确定在较高温度下观察到主要局部腐蚀。

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