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Hydrophobic Polyurethane Coating against Corrosion of Reinforced Concrete Structures Exposed to Marine Environment

机译:疏水性聚氨酯涂层防止钢筋混凝土结构暴露于海洋环境的腐蚀

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The environment, in which structures are exposed influences durability performance and deterioration. The durability degradation of structural concrete located in aggressive marine environments due to corrosion is a major problem in the construction industry. Deterioration due to corrosion is associated with quantifiable losses, which is a financial burden for any developed country. The initiation of corrosion can be obviated to some extent by different methods. Hydrophobic coatings are waterproofing coatings on the external surfaces of concrete structures, which are used to combat the problem of deterioration due to corrosion and to extend the serviceability of reinforced concrete structures. Polyurethane coatings can be used to protect structural materials, particularly those exposed to corrosion, abrasion, weathering, and other processes that would help to degrade base materials over time. From the experimental study conducted, a total of 58 specimens of different descriptions were cast and subjected to several tests, including chloride permeability, chemical resistance, chloride diffusion, water absorption, and corrosion-accelerated procedures using the galvanostatic method. The results indicate that the effectiveness of polyurethane in resisting the diffusion of chloride is eight times greater than that of the base concrete specimen. It has a lower percentage weight reduction, considering acid penetration. The chloride permeability of the coated specimens was negligible, and the water absorption was low. The crack frequency was reduced in the specimens with hydrophobic coatings. The group of specimens with hydrophobic coatings had lower corrosion rates and narrower crack openings and had less reduction in diameter. Furthermore, it takes longer for cracks to develop on the surface of the specimen with polyurethane coatings. It has a lower amount of corrosion, and it takes a longer period to accumulate a critical amount of corrosion. Thus, hydrophobic polyurethane coatings are highly effective in reducing the chloride permeability and water penetration values, which helps to eliminate corrosion and lengthen the service life of structures located in an aggressive marine environment.
机译:环境,其中结构暴露影响耐久性能和恶化。位于侵略性海洋环境腐蚀引起的混凝土结构的耐久性下降是建筑行业的主要问题。由于腐蚀变质与量化的损失,这是任何发达国家财政负担有关。腐蚀的启动可以通过不同的方法被省略到一定程度。疏水性涂层是防水混凝土结构,其被用来对抗劣化的问题,由于腐蚀并延长钢筋混凝土结构的适用性的外表面上的涂层。聚氨酯涂料可以用于保护结构材料,特别是那些暴露于腐蚀,磨损,风化和其它过程,这将有助于降解基材随时间。从所进行的试验研究,共有58个标本不同描述浇铸并进行多次试验,包括氯离子渗透性,耐化学性,氯离子扩散性,吸水性,以及使用该恒电流法腐蚀加速程序。结果表明,聚氨酯的抵抗氯化物的扩散的效果是比基混凝土试样的八倍。它有一个较低的百分比重量减轻,考虑酸渗透。涂覆样品的氯化物渗透性是可忽略的,且吸水率低。裂纹频率是与疏水性涂层的试样减少。该基团与疏水性涂层样品具有较低的腐蚀速率和更窄的裂缝开口并具有在直径小的降低。此外,它需要更长的时间裂纹与聚氨酯涂料试样的表面上发展。它具有耐腐蚀的低量,这需要较长的时间来积累腐蚀的临界量。因此,疏水性聚氨酯涂料是在减少氯离子渗透性和水的渗透值,这有助于消除腐蚀并延长位于一个积极的海洋环境的结构的使用寿命非常有效的。

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