首页> 外文会议>SP-228; International Symposium on Utilization of High-Strength/High-Performance Concrete vol.2; 20050620-24; Washington,DC(US) >Effects of Elevated Temperature on the Strength Development and Microstructure of High-Performance Concrete with Fly Ash
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Effects of Elevated Temperature on the Strength Development and Microstructure of High-Performance Concrete with Fly Ash

机译:高温对粉煤灰高性能混凝土强度发展和微观结构的影响

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The objective of this paper is to study the effects of the elevated internal temperature on the strength development and microstructure of high performance concrete with 40 % fly ash in mass structures. The concrete walls were designed using three different depths, being 1.5 m, 0.8 m, and 0.3 m. Temperature histories at different locations in the walls were recorded and the strength development of concrete at those locations was measured. In addition, the change of the degree of hydration, hydration products, and microstructure development of concrete at the different locations were investigated. Test results indicated that high elevated temperatures in mass concrete structures with fly ash significantly accelerate the strength development of concrete at the early ages, while the long-term strength development is decreased. The long-term strength loss is caused by the reduction of the degree of hydration and increased the total porosity and amount of smaller pores. The use of fly ash in mass concrete structure reduces the detrimental effect of high curing temperature on the strength development of concrete.
机译:本文的目的是研究内部温度升高对粉煤灰含量为40%的高性能混凝土强度发展和微观结构的影响。混凝土墙的设计采用三种不同的深度,分别为1.5 m,0.8 m和0.3 m。记录墙壁不同位置的温度历史,并测量这些位置的混凝土强度。此外,还研究了不同位置混凝土的水合度,水合产物和微观结构发展的变化。试验结果表明,粉煤灰在大体积混凝土结构中较高的高温显着加速了早期的混凝土强度发展,而长期强度发展却有所下降。长期强度损失是由于水合度降低,总孔隙率增加和小孔数量增加所致。在大体积混凝土结构中使用粉煤灰减少了高固化温度对混凝土强度发展的有害影响。

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