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混凝土防腐涂料的侵蚀性能评价与研究 被引量:1
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作者 陈晓鹏 《江西建材》 2023年第12期125-127,共3页
文中旨在通过试验,评估不同混凝土防腐涂料在盐雾环境下的侵蚀性能,涉及混凝土试样的准备和多种防腐涂料的涂覆,包括环氧树脂、聚氨酯、丙烯酸、硅烷基和水性涂料。通过30 d的盐雾暴露试验,分析涂层的完整性、腐蚀程度、附着力及其物理... 文中旨在通过试验,评估不同混凝土防腐涂料在盐雾环境下的侵蚀性能,涉及混凝土试样的准备和多种防腐涂料的涂覆,包括环氧树脂、聚氨酯、丙烯酸、硅烷基和水性涂料。通过30 d的盐雾暴露试验,分析涂层的完整性、腐蚀程度、附着力及其物理和化学变化。试验结果显示,聚氨酯涂料因其出色的耐腐蚀性能和良好的附着力而表现最佳,环氧树脂涂料尽管轻微受损,也显示出良好的性能,硅烷基和水性涂料在极端环境下的表现较差。 展开更多
关键词 混凝土防腐涂料 盐雾试验 聚氨酯涂料 环氧树脂涂料
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Microbiologically Induced Corrosion of Concrete and Protective Coatings in Gravity Sewers 被引量:2
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作者 Marjorie Valix Diyana Zamri +3 位作者 Hiro Mineyama Wai Hung Cheung Jeffrey Shi Heri Bustamante 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2012年第3期433-438,共6页
Microbiologically induced corrosion of concrete (MICC) and its protective coatings has a high eco-nomic impact on sewer maintenance and rehabilitation. A better understanding of the micro-organisms and the bio- geni... Microbiologically induced corrosion of concrete (MICC) and its protective coatings has a high eco-nomic impact on sewer maintenance and rehabilitation. A better understanding of the micro-organisms and the bio- genie acids that are generated in the sewer is essential in controlling the corrosion of concrete pipes and protective coatings. The role of succession of micro-organisms growth in the corrosion of concrete and protective coatings was evaluated in this study. Examination of various sewer pipe materials exhibiting various extents of degradation, including concrete, cement based and epoxy based coating revealed the presence of both organic and biogenic sulphuric acids. This reflects the activity of fungi and the thiobacilli strains. Organism growth and metabolism were strongly related to the substrate pH. Fungi were found to grow and metabolise organic acids at pH from 2.0-8.0. Whilst the thiobacilli strains grew and generated sulohuric acids at oH below 3.0. The successive growth of the organisms provides an impgrtant bearing in deyeloping improved strateegies.to better manage sewers. 展开更多
关键词 CONCRETE microbiologically induced corrosion FUNGI BACTERIA
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