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Performance Evaluation of Cement-Based Surface Coatings

机译:水泥基表面涂层的性能评估

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摘要

Concrete structures in aggressive environments are prone to a reduction in their design service-life due to one or more of the following causes: reinforcement corrosion, sulfate attack, chemical attack etc. In addition to utilizing a good quality concrete, protective measures, such as use of coated bars, and/or application of surface coatings, are now commonly utilized by the construction industry worldwide. Cement-based coatings are now widely used as they are considered to be safe from the point of view of preserving the alkaline nature of concrete pore solution. This paper presents results of an investigation conducted to evaluate the performance of cement-based surface coatings in environments commonly occurring in the field. The performance of selected cement-based surface coatings was evaluated by ascertaining their adhesion to the concrete substrate, crack bridging ability, chloride diffusion, moisture resistance, water permeability, carbonation diffusion, and chemical resistance. Best adhesion was exhibited by the epoxy-modified cementitious coating. Similarly, the chloride permeability was also the lowest in this type of coating. The crack bridging ability of the polymer modified cementitious coating was better than other cement-based coatings investigated in this study. These results indicate that epoxy modified cement-based coating provides adequate protection to concrete.
机译:由于以下一种或多种原因,在侵蚀性环境中的混凝土结构易于缩短其设计使用寿命:钢筋腐蚀,硫酸盐侵蚀,化学侵蚀等。除了使用优质混凝土外,还应采取保护措施,例如世界各地的建筑行业现在普遍使用涂覆棒和/或表面涂层。水泥基涂料由于可以保持混凝土孔隙溶液的碱性,因此被认为是安全的,因此现在被广泛使用。本文介绍了为评估水泥基表面涂料在现场常见环境中的性能而进行的研究的结果。通过确定其对混凝土基材的粘附性,裂缝桥接能力,氯化物扩散性,耐湿性,透水性,碳酸化扩散性和耐化学性来评估所选水泥基表面涂料的性能。环氧改性的水泥涂料表现出最佳的附着力。类似地,在这种类型的涂层中,氯化物渗透率也是最低的。在这项研究中,聚合物改性水泥基涂料的裂缝桥接能力优于其他水泥基涂料。这些结果表明,环氧改性水泥基涂料为混凝土提供了足够的保护。

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