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Effect of waterproofing coatings on steel reinforcement corrosion and physical properties of concrete

机译:防水涂料对钢筋锈蚀和混凝土物理性能的影响

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This paper reports the results of a study conducted to evaluate steel reinforcement corrosion and some physical properties of concrete specimens coated with two polymer-based, a cement-based polymer-modified, and a cement-based waterproofing coatings. The coated and uncoated concrete specimens were subjected to accelerated corrosion to determine the time-to- corrosion initiation. The physical properties were also evaluated by subjecting the concrete specimens to wetting/drying cycles and heating/cooling cycles for five months. The physical properties evaluated were water absorption, water permeability, chloride permeability, and adhesion. The accelerated corrosion test results clearly showed that the specimens coated with the polyurethane elastomer-based water-profing material performed better than concrete specimens coated with other waterproofing materials. This was followed by the specimens coated with cement-based polymer modified, epoxy-based, and cement-based coatings in descending order. The two polymer-based coatings showed better performance than the cement-based polymer-modified and cement-based coatings in terms of the evaluated physical properties.
机译:本文报告了一项研究结果,该研究旨在评估涂有两种聚合物基,水泥基聚合物改性和水泥基防水涂料的混凝土样品的钢筋腐蚀和某些物理性能。对带涂层的和未带涂层的混凝土试样进行加速腐蚀,以确定腐蚀开始的时间。还通过对混凝土样品进行润湿/干燥循环和加热/冷却循环五个月来评估其物理性能。评价的物理性能为吸水率,水渗透性,氯化物渗透性和粘附性。加速腐蚀试验结果清楚地表明,涂有聚氨酯弹性体基防水材料的样品的性能要好于涂有其他防水材料的混凝土样品。接下来是按顺序降序涂覆水泥基聚合物改性,环氧基和水泥基涂层的试样。就评估的物理性能而言,两种基于聚合物的涂料均表现出比基于水泥的聚合物改性涂料和基于水泥的涂料更好的性能。

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