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Strength Deterioration of Concrete in Sulfate Environment: An Experimental Study and Theoretical Modeling

机译:硫酸盐环境中混凝土的强度劣化:实验研究与理论模型

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摘要

Sulfate corrosion is one of the most important factors responsible for the performance degradation of concrete materials. In this paper, an accelerated corrosion by a sulfate solution in a dry-wet cycle was introduced to simulate the external sulfate corrosion environment. The deterioration trend of concrete strength and development law of sulfate-induced concrete corrosion depth under sulfate attacks were experimentally studied. The damaged concrete section is simply but reasonably divided into uncorroded and corroded layers and the two layers can be demarcated by the sulfate corrosion depth of concrete. The accelerated corrosion test results indicated that the strength degradation of concrete by sulfate attack had a significant relation with the corrosion depth. Consequently, this paper aims to reveal such relation and thus model the strength degradation law. A large amount of experimental data has finally verified the validity and applicability of the models, and a theoretical basis is thus provided for the strength degradation prediction and the residual life assessment of in-service concrete structures under sulfate attacks.
机译:硫酸盐腐蚀是负责混凝土材料性能下降的最重要因素之一。在本文中,引入了干湿循环中硫酸盐溶液的加速腐蚀以模拟外部硫酸盐腐蚀环境。实验研究了硫酸盐攻击下硫酸盐诱导混凝土腐蚀深度的具体实力和发展规律的恶化趋势。损坏的混凝土部分简单地但合理地分为未划分的层和腐蚀层,两层可以通过混凝土的硫酸盐腐蚀深度来划分。加速腐蚀试验结果表明,硫酸盐攻击混凝土的强度降解与腐蚀深度具有重要关系。因此,本文旨在揭示这种关系,从而模拟强度降解法。大量的实验数据终于验证了模型的有效性和适用性,因此提供了硫酸盐攻击下的实施强度降解预测和在职混凝土结构的剩余寿命评估的理论基础。

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