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作 者:罗研良 干伟忠[1] 任旭初 王金权 刘佩佩[1] 蒋海平[1]
机构地区:[1]宁波工程学院,浙江宁波315016 [2]浙江舟山跨海大桥有限公司,浙江宁波315040 [3]宁波市杭州湾大桥发展有限公司,浙江宁波315327
出 处:《宁波工程学院学报》2013年第4期30-37,84,共9页Journal of Ningbo University of Technology
基 金:国家自然科学基金项目(51078190);浙江省自然科学基金资助项目(Y1100403)
摘 要:通过模拟试验,研究了3种不同类型的钢管桩样片在杭州湾海域5种环境分区中的腐蚀形态和电信号反馈。实验结果表明,涂敷环氧粉末涂层的钢管桩样片表面基本没有腐蚀,涂层完好无损,而其他钢管桩样片则出现不同程度腐蚀,其中浪溅区腐蚀最严重,泥下区腐蚀较轻微;腐蚀电位逐渐变负,随后出现稳态,最后趋向于零;浪溅区腐蚀电位最负,泥下区腐蚀电位最正;相同环境中,涂敷环氧涂层的样片腐蚀电位比其他样片更正,有焊缝样片腐蚀电位比无焊缝样片稍负。The corrosion morphologies and feedbacks of electrical signals of 3 different kinds of steel pipe piles in 5 environmental zones of Hangzhou Bay are studied through simulation test. The result shows that, it has nearly no corrosion on the surface of epoxy powder coated steel pipe piles while varying degrees of corrosion appears on the others. The corrosion of the steel pipe piles exposed in splash zone is the most serious while those covered in the sea mud have relatively light corrosion. The corrosion potential gradually becomes negative, then goes steady, and finally tends to zero. the corrosion potentials of the steel pipe piles in splash zone are the most negative while those in mud zone are the most positive. Compared in the same environment, the corrosion potential of epoxy powder coated steel pipe piles is more positive than others. And the corrosion potential of the steel pipe piles with weld is slightly more negative than that with no weld.
分 类 号:TU761.13[建筑科学—建筑技术科学]
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