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首页> 外文期刊>Surface review and letters >A NOVEL METHOD FOR STUDYING THE CORROSION RESISTANCE AND MICROSTRUCTURE OF ENAMEL COATING MODIFIED ON HIGH-STRENGTH STEEL IN 3.5 wt.% NaCl SOLUTION
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A NOVEL METHOD FOR STUDYING THE CORROSION RESISTANCE AND MICROSTRUCTURE OF ENAMEL COATING MODIFIED ON HIGH-STRENGTH STEEL IN 3.5 wt.% NaCl SOLUTION

机译:一种新的3.5重量%钢改性搪瓷涂层耐腐蚀性和微观结构。%NaCl溶液

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摘要

A new method was introduced to research the corrosion resistance of enamel coatings which were sintered at different temperatures in this paper.(1-4) Scanning electrochemical microscopy (SECM) conjunction with capacitance-potential test and Mott-Schottky analysis technique were used to study the coating failure process and semiconductor conduction behavior of enamel coating in 3.5 wt.% NaCl solution. The high strength steel (SAPH440) was selected as the metal substrate. The coatings which were sintered at different temperatures on the high strength steel were analyzed and their corrosion behaviors and microstructures were also measured by potentiodynamic polarization curves, Mott-Schottky analysis technique and scanning electrochemical microscopy.(5-10) In this paper, five kinds of enamel coatings were prepared on high strength steel. The SECM results show that the Faraday current of the microprobe tip gradually decreases with the soaking time increasing, which indicates that the coatings become failure slowly with the invasion of water and aggressive ions. At the same time, the tip current was homogeneous during the immersion process, which reflected that the surface of the sample remained stable, no obvious bulges appeared. Capacitance-potential test and Mott-Schottky analysis(7,8) show that the external ions and water molecules gradually penetrate into the coating; coating showed characteristics of n-type semiconductor as time increases, the capacitance increases gradually, the space charge layer thickness decreases, slope of Mott-Schottky curve decreased gradually which indicates that the failure of coating in the process of soaking slowly with the charge carrier density increases.
机译:引入了一种新方法,研究了本文的不同温度下烧结的搪瓷涂层的耐腐蚀性。(1-4)扫描电化学显微镜(SECM)与电容电位测试和Mott-Schottky分析技术的结合研究3.5重量%的釉质涂层涂层破坏过程和半导体传导行为。%NaCl溶液。选择高强度钢(Saph440)作为金属基材。分析在高强度钢的不同温度下烧结的涂层,并通过电位偏振曲线,MOTT-Schottky分析技术和扫描电化学显微镜测量它们的腐蚀行为和微观结构。(5-10)本文,五种在高强度钢上制备搪瓷涂层。 SECM结果表明,微孔尖端的法拉第电流随着浸泡时间的增加逐渐减少,这表明涂层随着水和侵蚀离子的侵蚀而缓慢变为衰竭。同时,尖端电流在浸入过程中均匀,这反映了样品的表面保持稳定,没有明显凸起。电容 - 电位测试和Mott-Schottky分析(7,8)表明外离子和水分子逐渐渗透到涂层中;由于时间增加,涂层显示N型半导体的特性,电容逐渐增加,空间电荷层厚度降低,Mott-Schottky曲线的斜率逐渐降低,表明涂覆在浸泡过程中涂覆的涂层的失效,均匀地用电荷载体密度浸泡。增加。

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