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Determination of air-void system and modified frost resistance number for freeze-thaw resistance evaluation of ternary blended concrete made of ordinary Portland cement/silica fume/class F fly ash

机译:确定普通硅酸盐水泥/硅灰/ F级粉煤灰制成的三元掺混混凝土的防气孔系统和改良的抗冻性值,以评估其抗冻融性

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摘要

Use of fly ash (FA) in concrete subjected to freeze-thaw (F-T) cycles in a cold region has been limited because of its slow hydration and low scaling resistance. One of the solutions to increase the utilization of FA in this area may adopt ternary blended concrete to overcome the shortcoming of FA. In this paper, the F-T resistance of plain concrete, binary concrete, and ternary blended concrete mixtures made of ordinary portland cement (OPC), 5%fixed silica fume (SF), and various Class F FA contents up to 45% as replacement of cement by weight were evaluated. Durability factor (DF), both frost resistance number (FRN) and modified FRN, and critical air void spacing factor (CAVSF) were determined to characterize the F-T resistance of all concrete mixtures. Except for non-air-entrained concrete containing OPC/5SF/15FA, air-entrained binary concretes containing OPC/OSF/35FA and OPC/0SF/45FA, and air-entrained ternary blended concrete containing OPC/5SF/45FA, all concretes had a good F-T resistance which exceeded DF of 60%. The critical air-void spacing factor for binary and ternary blended concretes for 60% DF was determined to be 198.2 mu m and 305.2 mu m respectively. Moreover, ternary blended concretes resulted in higher FRN than plain and binary concrete mixtures. Finally, air voids under 300 mu m size play a critical role in reducing the F-T damage of ternary concrete mixtures. Based on these results, it can be concluded that construction of the proper air-void system is required to ensure the F-T resistance of ternary blended concrete. Moreover, the modified FRN can be successfully used to evaluate the F-T resistance of ternary blended concrete.
机译:粉煤灰(FA)在寒冷地区经受冻融(F-T)循环的混凝土中的使用受到限制,因为它的水化速度慢且抗结垢性低。解决该问题的方法之一是采用三元混合混凝土来克服FA的缺点。本文用普通硅酸盐水泥(OPC),5%固定硅粉(SF)和各种F级FA含量高达45%制成的普通混凝土,二元混凝土和三元混合混凝土的FT耐性代替评价水泥的重量。确定了耐久性因数(DF),抗冻性数(FRN)和改性FRN以及临界气隙间距因数(CAVSF),以表征所有混凝土混合物的耐F-T性能。除了包含OPC / 5SF / 15FA的非加气混凝土,包含OPC / OSF / 35FA和OPC / 0SF / 45FA的加气二元混凝土,以及包含OPC / 5SF / 45FA的加气三元混合混凝土外,所有混凝土均具有良好的耐FT性能,超过DF的60%。确定了60%DF的二元和三元混合混凝土的临界气隙间距因子分别为198.2μm和305.2μm。此外,三元混合混凝土比普通和二元混凝土混合物产生更高的FRN。最后,小于300微米的空隙对减少三元混凝土混合物的F-T破坏起着关键作用。基于这些结果,可以得出结论,需要适当的气孔系统以确保三元混合混凝土的耐F-T性能。此外,改进的FRN可以成功地用于评估三元混合混凝土的抗F-T性能。

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