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High Temperature Performance of Self-Compacting High-Volume Fly Ash Concrete Mixes

机译:自密实高掺量粉煤灰混凝土混合物的高温性能

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Quite often, concrete in structures is likely to get exposed to high temperatures, including an incident of fire. The strength-retention properties of concrete after such an exposure are of great importance in terms of the serviceability of buildings. This paper presents an experimental study on the strength retention and impermeability aspects of a set of self compacting, high-volume fly ash concrete mixes under elevated temperatures. Five self-compacting concrete mixes with a higher 60% level of cement replacement with fly-ash, are designed and the effects of elevated temperatures, in the range of 200-800℃, on the physical, mechanical and durability properties of these mixes are assessed. The assessment is in terms of the weight losses and the reduction in the compressive strengths of concrete cubes and split tensile strengths of concrete cylinders. The durability characteristics are assessed in terms of RCPT test results on these mixes. Performances of these self compacting concrete mixes (SCC) at elevated temperatures are also compared with two normally-vibrated concrete mixes (NCs) of an equivalent M30 strength grade. Test results indicate that weight of the specimens significantly get reduced with an increase in the level of elevated temperature, with sharp variations beyond 600°C. The experimental results also show that large improvements against chloride-ion penetration and better strength-retention at higher temperatures can be realized with self-compacting high-volume fly-ash concrete mixes additionally admixed with GGBFS and silica fume.
机译:通常,结构中的混凝土很容易暴露在高温下,包括起火。就建筑物的可使用性而言,这种暴露后的混凝土的强度保持特性非常重要。本文提出了在高温下一组自密实,高掺量粉煤灰混凝土混合物的强度保持性和抗渗性方面的实验研究。设计了五种自密实混凝土掺合料,其中粉煤灰替代水泥的含量更高,达到60%,并且在200-800℃范围内的高温对这些掺合料的物理,机械和耐久性能产生影响评估。评估是根据重量损失和混凝土立方体的抗压强度的降低以及混凝土圆柱体的抗拉强度的降低。根据这些混合物的RCPT测试结果评估了耐久性能。这些自密实混凝土混合物(SCC)在高温下的性能也与M30强度等级等效的两种普通振动混凝土混合物(NC)进行了比较。测试结果表明,随着温度的升高,样品的重量显着降低,超过600°C时急剧变化。实验结果还表明,通过与GGBFS和硅粉混合使用的自密实高掺量粉煤灰混凝土混合物,可以实现对氯离子渗透的较大改进,并在较高温度下具有更好的强度保持性。

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