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Effect of alternating pressure of seawater on protective properties of organic coating on steel substrate

机译:海水交变压力对钢基有机涂层防护性能的影响

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In natural seawater environment, temperature and chlorine ion are important factors for organic coating degradation. The alternating pressure of seawater can also affect the lifetime in deep-sea environment and probably is conducive to synergistic effects with other ageing factors. The present work is to investigate the effect of alternating pressure of seawater on protective properties of epoxy organic coating on 907A steel substrate, and evaluates the organic coating degradation process after pressure tests at atmospheric pressure. EIS was used to study the degradation process of the organic coating in natural seawater. The results demonstrated that the impedance of coating under alternating pressure of seawater conditions decreased faster than that at atmospheric pressure. With the increase of alternating pressure cycles, the entire degradation process of organic coating was accelerated. It is concluded that alternating pressure of seawater has to be considered as an aggressive factor like temperature or chlorine ion.
机译:在天然海水环境中,温度和氯离子是导致有机涂层降解的重要因素。海水的交变压力也会影响深海环境的寿命,并且可能有助于与其他衰老因素产生协同效应。目前的工作是研究海水的交变压力对907A钢基材上环氧有机涂层保护性能的影响,并评估在大气压下进行压力测试后有机涂层的降解过程。 EIS用于研究天然海水中有机涂层的降解过程。结果表明,在海水压力交替变化的情况下,涂层的阻抗下降速度快于大气压。随着交替压力循环的增加,有机涂层的整个降解过程得以加速。结论是,必须将海水的交变压力视为温度或氯离子等侵蚀性因素。

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