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Monitoring of an Army vehicle coating under Prohesion exposure by embedded sensors

机译:通过嵌入式传感器监测陆军车辆造型的陆军车辆涂层

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Two-layered organic coatings protect metallic structures against corrosion by reducing the transport of water, ions, and oxygen from the environment to the substrate and storing species that provide corrosion inhibition. The topcoat and the primer provide the former and latter, respectively, with the primer also providing adhesion between the topcoat and the substrate. A standard testing method for coatings is the ASTM G85 Prohesion test. This test involves alternating between wet and dry exposures. Wet exposures consist of 1- hour salt spray at 25 C and dry exposures, 1-hour air at 35 C. Apart from visual o o inspection, conventional monitoring of coating properties is achieved by ex-situ electrochemical tests under immersion in a suitable electrolyte. In-situ monitoring during the Prohesion test was performed for an Army coating system using embedded sensors located between the topcoat and primer. In-situ results associated with the Prohesion dry and fog exposures are presented from electrochemical impedance spectroscopy and electrochemical noise measurements. In-situ single-frequency impedance measurements were used to monitor the water uptake/loss associated with the exposures of the Prohesion test. Ex-situ monitoring was also performed for comparison with the in-situ embedded sensor monitoring.
机译:两层有机涂层通过将来自环境的水,离子和氧气的运输减少到基材和储存提供腐蚀抑制的物种来保护金属结构免受腐蚀。面涂层和底漆分别提供前者和后者,其中引物还具有在面涂层和基材之间提供粘附性。涂层的标准试验方法是ASTM G85洗脱试验。该测试涉及在潮湿和干燥的曝光之间交替。湿暴露在25℃和干曝光时由1小时盐喷雾组成,在35℃下的1小时空气,除了Visual O O检验外,通过在合适的电解质中的浸渍下的前u电化学测试实现常规监测涂层性能。使用位于面漆和底漆之间的嵌入式传感器进行洗手试验期间的原位监测。从电化学阻抗光谱和电化学噪声测量中提出了与皮肤干燥和雾曝光相关的原位结果。原位单频阻抗测量用于监测与皮肤曝光相关的水吸收/损失。还执行了与原位嵌入式传感器监控进行比较进行的前提监测。

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