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Impact of calcium leaching on chloride diffusion behavior of cement pastes exposed to ammonium chloride aqueous solution

机译:钙浸出对暴露于氯化铵水溶液的水泥浆氯离子扩散行为的影响

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摘要

Calcium leaching is a procedure being able to greatly impact the internal chemical environment and the microstructure, which mainly decide the chloride diffusion behavior of concrete. However, the detailed rules and mechanisms were rarely studied in the current literatures. In this paper, pure cement pastes were casted for the immersion test. Ammonium chloride aqueous solution was employed as the source solution to simulate the coupling interaction of calcium leaching and chloride diffusion. Vickers hardness and chloride profiles were measured to present the effects of calcium leaching on chloride diffusion behavior. Morphology and EDS linear scanning results of degraded pastes were also given to reveal the micro-mechanism. Results show that leaching can greatly change the internal chemical environment and the microstructure of cement pastes, thereby changing the chloride diffusion behavior and degrading the chloride-ingress resistance. In the leached specimens, chloride profiles are remarkably different from the classical curves predicted by Pick's 2nd law. Losing the binding matrix, the total chloride contents of the degraded zones turn smaller and almost approximate to the water-soluble ones. Due to the microstructure degradation, chloride profile fronts in degraded zones move faster towards the deep. (C) 2017 Elsevier Ltd. All rights reserved.
机译:钙的浸出是能够极大地影响内部化学环境和微观结构的过程,主要决定混凝土中氯化物的扩散行为。然而,在当前文献中很少研究详细的规则和机制。在本文中,将纯水泥浆浇铸用于浸泡测试。以氯化铵水溶液为原料溶液,模拟了钙的浸出与氯化物扩散的耦合作用。测量了维氏硬度和氯化物分布,以显示钙浸出对氯化物扩散行为的影响。还给出了降解浆料的形态和EDS线性扫描结果,以揭示其微观机理。结果表明,浸出可以极大地改变水泥浆的内部化学环境和微观结构,从而改变氯化物的扩散行为,并降低耐氯化物侵蚀性能。在浸出的样品中,氯化物的轮廓与皮克第二定律预测的经典曲线显着不同。失去结合基质,降解区域的总氯含量变小,几乎接近水溶性区域。由于微观结构的退化,退化区域中的氯化物轮廓前沿向深处移动的更快。 (C)2017 Elsevier Ltd.保留所有权利。

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