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Partially-exposed cast-in-situ concrete degradation induced by internal-external sulfate and magnesium multiple coupled attack

机译:由内外硫酸盐和镁多耦合攻击诱导的部分暴露的铸型混凝土降解

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摘要

The safety of partially exposed concrete structures is threatened by the complicated corrosive sources in sulfate-rich saline areas. Experimental tests were conducted in the present study, taking internal sulfate, external sulfate-magnesium multiple combined attack into consideration, to simulate the corrosion process of partially exposed concrete. The diameter, weight and compressive strength were measured during the immersion period. Sulfate concentration of concrete samples was measured by chemical method. Microstructural and mineral properties were analyzed by SEM, XRD and TG tests after immersion. Results show that internal sulfate attack speeds up corrosion process to a large extent, bring great expansion and damage. Partially exposed condition further accelerates the degradation and failure process of concrete. Magnesium in the environments retards the degradation caused by both internal and external sulfate attack, enhancing the resistance ability of cast-in-situ concrete against cracking. Also, the diffusion of sulfates is slowed by magnesium induced corrosion products since the diffusion paths are blocked. Partially exposed working condition and internal sulfate attack greatly accelerate the degradation induced by sulfate attack. Magnesium in the environments could retard the degradation process and enhance the resistance ability of cast-in-situ concrete against sulfate attack. (c) 2021 Elsevier Ltd. All rights reserved.
机译:部分暴露的混凝土结构的安全性受到富含硫酸盐的盐水区复杂的腐蚀来源。实验试验在本研究中进行,采用内部硫酸盐,外部硫酸盐 - 镁多种组合发作考虑,模拟部分暴露混凝土的腐蚀过程。在浸渍期间测量直径,重量和抗压强度。通过化学方法测量混凝土样品的硫酸盐浓度。通过浸泡后通过SEM,XRD和TG试验分析微观结构和矿物质。结果表明,内部硫酸盐攻击在很大程度上加速了腐蚀过程,带来了极大的膨胀和损坏。部分暴露的条件进一步加速了混凝土的降解和失效过程。环境中的镁延迟了内部和外部硫酸盐攻击引起的降解,增强了原位混凝土抗裂的耐受能力。而且,硫酸盐的扩散被镁诱导的腐蚀产物减缓,因为扩散路径被阻断。部分暴露的工作条件和内部硫酸盐攻击大大加速了硫酸盐发作诱导的降解。环境中的镁可以延迟降解过程,提高原位混凝土对硫酸盐攻击的耐受能力。 (c)2021 elestvier有限公司保留所有权利。

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