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Testing and Modeling Composite Coatings with Silanes for Protecting Reinforced Concrete in Saltwater Environment

机译:盐水环境中用于保护钢筋混凝土的硅烷复合涂料的测试和建模

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摘要

There is increasing interest in developing relatively quick test procedures to evaluate the effectiveness of composite coatings to reduce the infiltration of water and salt solutions into concrete structures to rapidly rehabilitate and extend the service life of reinforced concrete structures. In this study, concrete was first treated with two different types of silanes and then coated with a latex-based coating to investigate the sensitivity of the test procedure to resist the diffusion of water and 15% NaCl salt solution into concrete at room temperature. The concrete used in this study had a compressive strength of 36.5 MPa, with about 1.6% water absorption capacity in 21 days. The performance of concrete with composite coatings was investigated by using the immersion test, followed by the drying test. On the basis of 21 days of immersion test in water, the weight increase in specimens coated with one type of silane and latex coating was 1.21%, which was half of what was observed with the other silane and latex coating. Similar trends were observed with 15% salt solution, and hence, the test method adopted in this study was sensitive in selecting the composite coating. A new thin-film model was developed to predict the weight change of coated concrete cylinders during the drying phase. Finite-element (FE) modeling of the weight-change phenomenon showed that the initial rate and total weight change after 21 days of immersion testing was governed by the effective mass transfer coefficient, thickness, and a saturation parameter of the composite coating.
机译:开发相对快速的测试程序以评估复合涂料减少水和盐溶液渗入混凝土结构以快速修复并延长钢筋混凝土结构使用寿命的兴趣日益浓厚。在这项研究中,混凝土首先用两种不同类型的硅烷处理,然后涂上乳胶基涂料,以研究测试程序在室温下抵抗水和15%NaCl盐溶液扩散到混凝土中的敏感性。本研究中使用的混凝土的抗压强度为36.5 MPa,在21天内的吸水率约为1.6%。通过浸没测试,然后进行干燥测试,研究了具有复合涂层的混凝土的性能。在水中浸泡21天后,涂有一种硅烷和乳胶涂层的样品的重量增加了1.21%,是另一种涂有硅烷和乳胶涂层的样品的一半。在15%的盐溶液中也观察到了类似的趋势,因此,本研究采用的测试方法在选择复合涂层时非常敏感。开发了一种新的薄膜模型来预测干燥阶段中涂层混凝土圆柱体的重量变化。重量变化现象的有限元(FE)建模表明,浸泡测试21天后的初始速率和总重量变化受复合涂层的有效传质系数,厚度和饱和参数控制。

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