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Experimental Study on the Electrochemical Anti-Corrosion Properties of Steel Structures Applying the Arc Thermal Metal Spraying Method

机译:电弧热金属喷涂法对钢结构电化学防腐性能的实验研究

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摘要

The arc thermal metal spraying method (ATMSM) provides proven long-term protective coating systems using zinc, aluminum and their alloys for steel work in a marine environment. This paper focuses on studying experimentally the anti-corrosion criteria of ATMSM on steel specimens. The effects of the types of spraying metal and the presence or absence of sealing treatment from the thermal spraying of film on the anti-corrosion performance of TMSM were quantitatively evaluated by electrochemical techniques. The results showed that ATMSM represented a sufficient corrosion resistance with the driving force based on the potential difference of more than approximately 0.60 V between the thermal spraying layer and the base substrate steel. Furthermore, it was found that the sealing treatment of specimens had suppressed the dissolution of metals, increased the corrosion potential, decreased the corrosion current density and increased the polarization resistance. Metal alloy Al–Mg (95%:5%) by mass with epoxy sealing coating led to the most successful anti-corrosion performance in these electrochemical experiments.
机译:电弧热金属喷涂方法(ATMSM)可提供经验证的使用锌,铝及其合金的长期防护涂层系统,用于海洋环境中的钢铁作业。本文着重于通过实验研究ATMSM在钢试样上的防腐蚀标准。通过电化学技术定量评估了喷涂金属的类型以及薄膜热喷涂是否存在密封处理对TMSM耐腐蚀性能的影响。结果表明,基于热喷涂层和基础基底钢之间的电势差大于约0.60 V,ATMSM在驱动力下具有足够的耐腐蚀性。此外,发现样品的密封处理抑制了金属的溶解,增加了腐蚀电位,降低了腐蚀电流密度并增加了耐极化性。带有环氧密封涂层的质量为Al-Mg(95%:5%)的金属合金在这些电化学实验中获得了最成功的防腐性能。

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