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The effects of alkali-silica reaction on the mechanical properties of concretes with three different types of reactive aggregate

机译:碱-二氧化硅反应对三种不同类型反应性骨料混凝土力学性能的影响

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This paper investigates the degradation of the mechanical properties of concretes made with three types of aggregate affected by alkali-silica reaction (ASR). Three standard testing methods - ASTM C289, JASS 5N T-603 and ASTM C1260 - were used to identify the reactivity of ASR of the three aggregates selected. The test results show that all three aggregates are potentially deleterious. A new acceleration method based on JASS 5N T-603 and ASTM C1260 was proposed for concrete specimens. In the acceleration method, cylindrical concrete specimens were used, additional alkali material was added to the concrete mixture and the specimens were stored under conditions similar to ASTM C1260. The preconditioned concrete specimens were then used for evaluating the mechanical properties of the ASR-affected concrete in terms of strength and stiffness. The test results show that special attention must be paid to the effects of two opposing mechanisms on the strength and stiffness of concrete: hydration reactions and ASR. Hydration reactions enhance the mechanical properties, whereas ASR does the opposite. The changes in length of concrete specimens were also measured, which showed that the basic trends for change in length and mechanical properties may be different. It is better to examine the effect of ASR on both change in length and mechanical properties. The size and reactivity of the aggregate are very important factors for the mechanical properties of ASR-affected concretes. Within the two-month testing period, the reactive fine aggregate might cause ASR expansion and the reactive coarse aggregates might not.
机译:本文研究了受碱-硅反应(ASR)影响的三种骨料制成的混凝土的机械性能退化。三种标准测试方法-ASTM C289,JASS 5N T-603和ASTM C1260-用于确定所选三种聚集体的ASR反应性。测试结果表明,所有三种聚集体都可能有害。提出了一种基于JASS 5N T-603和ASTM C1260的混凝土试样加速方法。在加速方法中,使用了圆柱形混凝土标本,向混凝土混合物中添加了其他碱性材料,并将标本在类似于ASTM C1260的条件下存储。然后将经过预处理的混凝土试样用于评估受ASR影响的混凝土的强度和刚度的机械性能。测试结果表明,必须特别注意两种相反的机制对混凝土强度和刚度的影响:水合反应和ASR。水合反应可增强机械性能,而ASR则相反。还测量了混凝土试样长度的变化,这表明长度和力学性能变化的基本趋势可能有所不同。最好检查ASR对长度变化和机械性能的影响。骨料的大小和反应性是影响ASR影响的混凝土力学性能的重要因素。在两个月的测试期内,活性细骨料可能会导致ASR膨胀,而活性粗骨料可能不会。

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