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作 者:佘祖新[1,2] 王洪伦 张涛 何建新[1,4] 王莞 SHE Zu-xin;WANG Hong-lun;ZHANG Tao;HE Jian-xin;WANG Wan(Southwest Research Institute of Technology and Engineering,Chongqing 400039,China;Jiangjin Atmospheric Material Corrosion National Field Observation and Research Station,Jiangjin 402260,China;Unit 63796,Haikou 571126;Atmospheric Materials Corrosion and National Field Observation and Research Station,Wanning 571500,China)
机构地区:[1]西南技术工程研究所,重庆400039 [2]重庆江津大气环境材料腐蚀国家野外科学观测研究站,重庆402260 [3]63796部队,海口571126 [4]海南万宁大气环境材料腐蚀国家野外科学观测研究站,海南万宁571500
出 处:《装备环境工程》2021年第7期70-74,共5页Equipment Environmental Engineering
摘 要:目的研究氟碳重防腐涂层在循环盐雾试验后的防护性能。方法开展氟碳涂层的实验室循环盐雾试验,通过电化学阻抗谱、附着力、光泽、色差测试等方法对氟碳涂层的各性能进行分析表征,并使用等效电路图对电化学阻抗谱数据进行拟合,评价涂层在盐雾试验后的腐蚀保护性能。结果循环盐雾试验1440 h后,涂层无失光、变色、粉化等现象,模值由1.42×10^(11)·cm^(2)下降至7.26×10^(10)·cm^(2),下降幅度较小。结论经循环盐雾试验后的氟碳涂层仍具有优异的防护性能。The corrosion protection behavior of fluorocarbon coating after cyclic salt spray test was investigated in this paper.The cyclic salt spray test was carried out according to GB/T 31588.1.The electrochemical impedance spectroscopy(EIS),adhesion,gloss and color difference tests were used to characterize the performance of the fluorocarbon coating.The electrochemical impedance spectroscopy data were fitted with equivalent circuit diagrams to evaluate the corrosion protection performance of the coating after salt spray test.After 1440 h of cyclic salt spray test,the coating had no tarnish,discoloration and powdering,the modulus value dropped from 1.42×10^(11)·cm^(2) to 7.26×10^(10)·cm^(2).The results indicated that the fluorocarbon coating still has excellent corrosion protection performance after the cyclic salt spray test.
分 类 号:TG174.4[金属学及工艺—金属表面处理]
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