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Improving chloride ion penetration resistance of cement mortar by strong base anion exchange resin

机译:用强碱阴离子交换树脂提高水泥砂浆的耐氯离子渗透性

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摘要

How to improve the chloride penetration resistance of reinforced concrete in marine environment has always been an important research topic. In this paper, based on the adsorption properties of strong basic anion exchange resin (SB-AER) for chloride ion, SB-AER, silica fume (SF) and fly ash (FA) were milled into ternary admixtures with particle size less than 75 mu m. The effect of SB-AER on chloride ion penetration resistance of mortar was studied. In this experiment, the mechanical properties and compactness of mortar with different SB-AER content were tested by pressure testing machine and ultrasonic nondestructive flaw detector. The microstructure of mortar was observed by scanning electron microscope (SEM). The chloride ion binding capacity of mortar with different SB-AER content was qualitatively and quantitatively analyzed by chloride ion selective electrode method. All the results show that under the appropriate SB-AER content, the ternary admixture can effectively improve the chloride penetration resistance and mechanical properties of mortar. SB-AER-3 group (SB-AER, SF and FA are 3%, 5% and 10% of cement weight, respectively) has the best performance in these two aspects. (C) 2019 Elsevier Ltd. All rights reserved.
机译:如何提高海洋环境中钢筋混凝土的耐氯化物渗透性一直是重要的研究课题。本文基于强碱性阴离子交换树脂(SB-AER)对氯离子的吸附特性,将SB-AER,硅粉(SF)和粉煤灰(FA)研磨成粒径小于75的三元混合物。亩研究了SB-AER对砂浆抗氯离子渗透性的影响。在该实验中,通过压力试验机和超声波无损探伤仪对不同SB-AER含量的砂浆的力学性能和密实度进行了测试。通过扫描电子显微镜(SEM)观察砂浆的微观结构。采用氯离子选择性电极法定性和定量分析了不同SB-AER含量的砂浆的氯离子结合能力。所有结果表明,在适当的SB-AER含量下,三元掺合料可以有效提高砂浆的耐氯化物渗透性和力学性能。 SB-AER-3组(SB-AER,SF和FA分别占水泥重量的3%,5%和10%)在这两个方面表现最佳。 (C)2019 Elsevier Ltd.保留所有权利。

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