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Compressive strength assessment of sulfate-attacked concrete by using sulfate ions distributions

机译:硫酸盐离子分布对硫酸盐侵袭混凝土的抗压强度评估

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Sulfate attack is a major cause of concrete durability deteriorations. Mass loss, strength reductions, and expansive strain of concrete specimens are generally used in laboratory testing to identify the resistance of concrete materials to sulfate attack. However, these indicators cannot be directly used to quantitatively predict the bearing capacity of actual concrete structures under sulfate attack. There exists a significant size effect between laboratory and engineering size concrete components. In this study, the durability performance of concrete specimens, exposed to sulfate attack and dry-wet cycles, was investigated. Mass loss, dynamic elastic modulus, compressive strength, and sulfate ions distributions of deteriorated concrete were measured over time. Test results indicate that the newly defined integral area of sulfate ions distributions is a suitable index to describe the non-uniform deteriorations behavior of sulfate-attacked concrete; and a novel method based on the homogenizations theory is proposed to predict the deteriorations level of components of attacked concrete structures, which provides a potential use in assessing the loading capacity of actual concrete structures based on accelerated test results in a laboratory. (C) 2021 Elsevier Ltd. All rights reserved.
机译:硫酸盐攻击是混凝土耐久性劣化的主要原因。实验室测试通常用于混凝土样本的质量损失,强度降低和膨胀菌株,以识别混凝土材料对硫酸盐发作的抗性。然而,这些指标不能直接用于定量预测硫酸盐攻击下实际混凝土结构的承载力。实验室和工程尺寸混凝土组件之间存在显着大小的效果。在本研究中,研究了暴露于硫酸盐攻击和干湿循环的混凝土样本的耐久性性能。随着时间的推移,测量了劣化混凝土的质量损失,动态弹性模量,抗压强度和硫酸硫离子分布。测试结果表明,新定义的硫酸根部分布的整体面积是描述硫酸盐攻击混凝土的非均匀劣化行为的合适指标;并且提出了一种基于均化理论的新方法,以预测攻击混凝土结构的部件的劣化水平,这提供了在实验室中加速测试结果评估实际混凝土结构的负载能力的潜在用途。 (c)2021 elestvier有限公司保留所有权利。

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