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Electrochemical Methods for Characterisation of Thermal Spray Corrosion Resistant Stainless Steel Coatings

机译:表征抗热喷涂腐蚀不锈钢涂层的电化学方法

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The use of thermal spray stainless steel coatings for protection of low alloyed steels against different types of corrosion is limited due to high porosity levels and oxide inclusions. In this paper electrochemical methods like corrosion potential monitoring and cyclic voltammetry are reported to monitor the corrosion resistance of thermal spray coatings. The studied stainless steel A1SI 316 coatings are deposited by arc spraying, plasma spraying or high velocity oxygen fuel (HVOF) spraying. The electrochemical tests are performed in a 0.5 M H_2SO_4 solution. It is found that none of the tested coatings had an electrochemical response equal to that of stainless steel alloy AISI 316. The results indicate that the HVOF coating has the highest corrosion resistance and the corrosion resistance of arc spray coatings can be improved by spraying in an inert argon atmosphere. The electrochemical response of the studied arc spray coatings is independent of substrate type (including the case of no substrate), indicating that the underlying alloy does not contribute to the corrosion process and only the coating itself is attacked. The HVOF coatings age rapidly in a 0.5 M H_2SO_4 solution. It is proposed that this is due to pore opening and pore widening.
机译:由于高孔隙率水平和氧化物夹杂物,限制了使用热喷涂不锈钢涂层来保护低合金钢免受不同类型的腐蚀。本文报道了电化学方法,如腐蚀电位监测和循环伏安法,以监测热喷涂涂层的耐腐蚀性。所研究的不锈钢A1SI 316涂层是通过电弧喷涂,等离子喷涂或高速氧气喷涂(HVOF)喷涂来沉积的。电化学测试在0.5 M H_2SO_4溶液中进行。结果发现,所测试的涂层的电化学响应均没有达到不锈钢合金AISI 316的电化学响应。结果表明,HVOF涂层具有最高的耐蚀性,并且可以通过在电弧喷涂中进行喷涂来提高电弧喷涂层的耐蚀性。惰性氩气气氛。所研究的电弧喷涂涂层的电化学响应与基材类型无关(包括没有基材的情况),这表明下面的合金对腐蚀过程没有贡献,仅腐蚀涂层本身。 HVOF涂层在0.5 M H_2SO_4溶液中迅速老化。提出这是由于开孔和扩孔引起的。

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