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首页> 外文期刊>Electrochimica Acta >Failure behavior of nano-SiO_2 fillers epoxy coating under hydrostatic pressure
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Failure behavior of nano-SiO_2 fillers epoxy coating under hydrostatic pressure

机译:纳米SiO_2填料环氧涂料在静水压力下的破坏行为

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The failure of organic coating (epoxy resin filled with 5 mass% nano-SiO_2 particles) on mild steel under high hydrostatic pressure (35 atm) has been studied compared with that under atmospheric pressure (1 atm), using impedance measurements, gravimetric testing, adhesion testing and scanning electron microscopy (SEM). The results show that high hydrostatic pressure accelerated the failure of the organic coating by promoting diffusion of water in the coating, which speeds up water spread and electrochemical reactions at the interface. The roughness of the coating and steel has been discussed from point of view of their respective fractal dimensions D_(fc) and D_(fdl), as deduced from impedance measurements.
机译:研究了在高静水压力(35 atm)下与低气压下(1 atm)相比,低碳钢上有机涂层(填充了5质量%纳米SiO_2颗粒的环氧树脂)的失效,通过阻抗测量,重量分析,附着力测试和扫描电子显微镜(SEM)。结果表明,高静水压力通过促进涂层中水的扩散而加速了有机涂层的破坏,从而加速了界面处的水扩散和电化学反应。已经从由阻抗测量得出的分形维数D_(fc)和D_(fdl)的角度讨论了涂层和钢的粗糙度。

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