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首页> 外文期刊>Journal of coatings technology and research >A new acceleration factor for the testing of corrosion protective coatings: flow-induced coating degradation
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A new acceleration factor for the testing of corrosion protective coatings: flow-induced coating degradation

机译:用于测试防腐涂层的新加速因子:流动引起的涂层降解

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摘要

For corrosion protective coatings that are designed to give lifetimes of protection that may extend to 50 years, valid accelerated test methods are necessary to develop improved systems and validate performance. Fluid flow over metals has long been believed to influence the corrosion process. Studies have been focused on the effects of flow rate on the corrosion of bare metals. The influence of fluid flow on the degradation of metal-protective coatings has received less attention. This paper describes a preliminary study on the influence of laminar flow on organic coatings. A Hele-Shaw cell and its associated fluid control apparatuses are incorporated into the electrochemical cell setup. The barrier properties of the coating as a function of immersion time and flow rate have been monitored by electrochemical impedance spectroscopy. We observe that the barrier properties of the coating measured electrochemically decrease exponentially with the increasing flow rate. We propose that the flowing electrolyte solution could be used in acceleration tests for the lifetime prediction of organic coatings as the acceleration of failure we have observed does not appear to change the mechanism of failure. Further analysis is proposed to validate immersion flow rate as a universal accelerating parameter for coating failure.
机译:对于旨在提供可能长达50年的保护寿命的防腐蚀涂料,必须使用有效的加速测试方法来开发改进的系统并验证性能。长期以来,人们一直认为金属上的流体流动会影响腐蚀过程。研究集中在流速对裸金属腐蚀的影响上。流体流动对金属保护涂层降解的影响受到的关注较少。本文介绍了层流对有机涂料影响的初步研究。 Hele-Shaw电池及其相关的流体控制设备已合并到电化学电池设置中。涂层的阻隔性能随浸入时间和流速的变化已通过电化学阻抗光谱法进行了监测。我们观察到,随着流速的增加,电化学测量的涂层的阻隔性能呈指数下降。我们建议将流动的电解质溶液用于加速测试中,以预测有机涂层的寿命,因为我们观察到的故障加速似乎并未改变故障机制。提出了进一步的分析,以验证浸没流速作为涂层失效的通用加速参数。

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