Effect of heat treatment on corrosion behaviour of deposited Fe–40Al intermetallics

J. González-Rodríguez, M. Casales, M. Amaya, L. Martínez
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引用次数: 4

Abstract

Abstract A study using electrochemical techniques of the susceptibility to corrosion in 0·1M NaCl solution (pH 3) of atomised and deposited Fe–40Al (at.-%) intermetallic material at room temperature is reported. Specimens were heat treated at temperatures of 600 and 900°C for 24 and 72 h. Potentiodynamic polarisation, linear polarisation resistance, potential–time, and electrochemical current noise data were collected. The untreated material displayed higher corrosion resistance than the heat treated material. In the treated material, the corrosion resistance increased with both the time and temperature of heat treatment. Also, untreated material was more susceptible to pitting corrosion than heat treated material. As the temperature or the time of heat treatment was increased, the material became more resistant to pitting. This improvement in resistance to pitting was related to a decrease in surface defects, such as pores and cracks, and an increase in grain size. Thus, heat treatment lowered the number of active sites and helped the material to establish a more protective film.
热处理对沉积Fe-40Al金属间化合物腐蚀行为的影响
摘要采用电化学技术研究了Fe-40Al (at.-%)雾化沉积金属间材料在0·1M NaCl溶液(pH 3)中的室温腐蚀敏感性。样品分别在600和900℃的温度下热处理24和72 h。收集动电位极化、线性极化电阻、电位时间和电化学电流噪声数据。未经处理的材料比经过热处理的材料具有更高的耐腐蚀性。在处理过的材料中,耐蚀性随热处理时间和温度的增加而增加。此外,未经处理的材料比热处理的材料更容易发生点蚀。随着热处理温度或时间的增加,材料的抗点蚀性增强。这种抗点蚀性能的提高与表面缺陷(如孔隙和裂纹)的减少以及晶粒尺寸的增加有关。因此,热处理降低了活性位点的数量,并有助于材料建立更强的保护膜。
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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