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Corrosive Behavior Study of Q235 Steel Coated with Epoxy Composites in Substation Environment

机译:Q235钢涂层在变电站环境中涂覆Q235钢的腐蚀行为研究

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In this work, the epoxy composite coating composited by zinc rich epoxy primer and silver epoxy enamel, was sprayed on the surface of Q235 steel. The anticorrosion of as-prepared samples in substation environment with atmospheric exposure for 18 months, and in 5% NaCl aqueous solution for 250 days were evaluated and compared, respectively. Electrochemical impedance spectroscopy (EIS) was employed to analyze the corrosive behavior of epoxy composite coating in 5% NaCl aqueous solution, the weather resistance and salt resistance were also evaluated. Additionally, the structure changes of epoxy composite coating induced by salt immersion and atmospheric exposure were characterized by fourier transform infrared (FT-IR). The results are demonstrated that the epoxy composite coating is corroded to be invalid after immersed into 5% NaCl aqueous solution for 250 days, which the impedance decreases from 3.967×10~9·cm~2 to 9.780×10~2·cm~2. The mechanism of corrosion is proposed that the corrosive medium gradually penetrate into the composite coating to form micro electric circuit through micro pores, resulting in the increase of porosity and corrosive rate for the composite coating. However, the impedance of epoxy composite coating in substation environment for 18 months is still 2.708×10~6·cm~2, indicating the good corrosion resistance.
机译:在这项工作中,通过锌富含环氧引物和银环氧搪瓷组成的环氧复合涂层喷雾在Q235钢的表面上。在具有大气暴露18个月的变电站环境中的反腐蚀样品,并分别在5%NaCl水溶液中进行了250天的250天。采用电化学阻抗光谱(EIS)分析环氧复合涂层在5%NaCl水溶液中的腐蚀性,还评估了耐候性和耐盐性。另外,通过傅里叶变换红外(FT-IR)表征了盐浸和大气暴露诱导的环氧复合涂层的结构变化。结果证明了环氧复合涂层在浸入5%NaCl水溶液中腐蚀以无效250天,阻抗从3.967×10〜9·cm〜2至9.780×10〜2·cm〜2减少。提出了腐蚀机理,腐蚀介质逐渐渗透到复合涂层中以通过微孔形成微电路,从而增加了复合涂层的孔隙率和腐蚀速率。然而,在变电站环境中的环氧复合涂层18个月的阻抗仍然是2.708×10〜6·cm〜2,表明耐腐蚀性良好。

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