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Study on the Damage Risk of Dam Concrete Suffering Alkali-Silica Reaction Based on 7 Years Outdoor Field Exposure Testing, Part I: The Influence of Maximum Size of Aggregate

机译:基于7年室曝光试验的大坝混凝土患有碱 - 二氧化硅反应的损伤风险研究,第一部分:总体尺寸的影响

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Alkali-aggregate reaction is one of the most serious concrete durability problems threating the safety of dam. Some accelerated test methods with high temperature and high alkalinity are usually used in laboratory to evaluate the reactivity of aggregates or the effectiveness of suppression measures. In this paper, an outdoor field exposure station was built to objectively assess the damage risk of real dam concrete suffering alkali-silica reaction. 25 concrete blocks measuring 450 by 450 by 450 mm in size were tested at first stage, all immersed into water to simulate the environment of dam concrete. The influences of the size of aggregate and the amount of cementing materials were tested at the same time. After 7 years field exposure testing, the results showed that: the crack risk of blocks was notproportional to the expansion rates, but influenced by the maximum diameter of aggregate. The block with bigger aggregate had smaller expansion rate, but cracked more easily. If the sizes of aggregate were the same, less cementing materials would cause bigger expansion.The constraint effect is bigger than the effect of alkali content increasing caused by increasing the amount of cementing materials.
机译:碱聚集反应是威胁大坝安全的最严重的具体耐用性问题之一。具有高温和高碱度的一些加速试验方法通常用于实验室,以评估聚集体的反应性或抑制措施的有效性。本文建立了一个室外场曝光站,以客观地评估真实坝混凝土患有碱性二氧化硅反应的损伤风险。在第一阶段测试25个混凝土块450×450×450毫米的450毫米,全部浸入水中以模拟坝混凝土的环境。同时测试骨料尺寸和胶结材料的量的影响。经过7年的现场曝光测试,结果表明:块的裂缝风险与扩张速率绝不为一体,而是受到总骨料的最大直径的影响。具有更大骨料的块具有较小的膨胀率,但更容易破裂。如果聚集体的尺寸相同,则较少的固井材料会导致更大的扩展。约束效果大于通过增加胶结材料量引起的碱含量增加的影响。

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