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Effect of Repainting Process on Atmospheric Corrosion Behavior of Perforated Panel
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作者 Motoki Kuratani Kenji Yamakawa +4 位作者 Ryuji Kurono Yuma Kano Takato Sasaki Yutaka Yamada Osamu Sakurada 《Materials Sciences and Applications》 2021年第11期534-541,共8页
Steel structures are often painted to protect against corrosion. Repainting is one of the most important factors in maintaining the corrosion protection function of the coating. Various factors affect the life of the ... Steel structures are often painted to protect against corrosion. Repainting is one of the most important factors in maintaining the corrosion protection function of the coating. Various factors affect the life of the coating film, such as the surface preparation, the type of coating, and the number of coats. Surface preparation is important for the life of the coating film. However, appropriate surface treatment is difficult due to the complex shape of perforated panels, and it has been confirmed that corrosion progresses from the machined area. Therefore, appropriate pretreatment of the machined area is important for corrosion prevention. In this study, we investigated the effects of the repainting process on the atmospheric corrosion behavior of perforated panels. To reproduce the repainting process, a number of pretreatments were performed, such as salt spraying, blasting, and zinc phosphate treatment. In the salt spray test after pretreatment and painting, the corrosion progressed in cases with no zinc phosphate treatment and those left untreated for 48 h before painting. In addition, the coating film on the processed area was confirmed to be thin. These results suggested that appropriate pretreatment and sufficient thickness of the coating on the machined area would affect the occurrence of corrosion. 展开更多
关键词 Repaint Perforated Panel PRETREATMENT Machined Area painting thickness
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钢管拱桥防腐涂装设计与施工
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作者 韦春陆 《江苏建筑》 2020年第S01期38-40,共3页
通过对老桥主拱涂装失效的病害分析,采用了抗腐蚀性能更为优越的氟碳漆作为面漆材料,提高钢结构的涂层抗腐蚀能力及主拱结构的耐久性。结合桥梁交通运营要求,选择满堂支架及移动吊篮的施工方案,确保主拱涂装顺利施工。涂层厚度检测采用... 通过对老桥主拱涂装失效的病害分析,采用了抗腐蚀性能更为优越的氟碳漆作为面漆材料,提高钢结构的涂层抗腐蚀能力及主拱结构的耐久性。结合桥梁交通运营要求,选择满堂支架及移动吊篮的施工方案,确保主拱涂装顺利施工。涂层厚度检测采用涂料用量控制法保证涂层的厚度,结合湿膜测试法控制涂膜的均匀性,有效的保证了涂层的质量。 展开更多
关键词 钢管拱桥 涂装体系 防腐 涂层检测
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船舶涂装与涂料选用 被引量:3
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作者 陈岗军 陈彤 《船海工程》 北大核心 2006年第2期56-60,共5页
根据规范中对船舶各区域或部位的涂层配套系统、涂料种类、颜色、涂装道数、干膜厚度和膜厚分布要求,文中针对船舶的不同部位、使用寿命、经济性、工艺性等方面对涂料进行选择,为涂装设计者如何选取涂料等技术提供理论依据。
关键词 涂装 涂料 涂装膜厚
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