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Strength and durability of high-volume fly ash concrete

机译:大体积粉煤灰混凝土的强度和耐久性

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The effects of replacing 10, 40 or 60% of the cement content by low-calcium fly ash on the compressive strength and durability of the concrete were investigated. An appropriate amount of (super)plasticiser was added to the mix to obtain good workability. At an early age the compressive strength decreases with increasing level of cement replacement. After 28 days the compressive strength increased relatively more for high-volume fly ash concrete than for the control concrete. Concrete with fly ash performed better in lactic/acetic and sulphuric acid during accelerated experiments. The chloride diffusion coefficients resulting from accelerated chloride migration tests were significantly lower for concrete with fly ash than for the control concrete, except for the mixture with 60% replacement of the cement content. The resistance to frost/thaw cycles was similar for all concrete mixtures. The carbonation depth after 9 weeks in a 10% carbon dioxide (CO_2) environment increased with increasing fly ash content. High volumes of fly ash also decreased significantly the resistance against the combined action of frost and de-icing salts (3% sodium chloride (NaCI) solution). From these results it can be concluded that high-volume fly ash concrete has a potential for commercial use in particular applications.
机译:研究了用低钙粉煤灰代替10%,40%或60%的水泥含量对混凝土的抗压强度和耐久性的影响。将适量的(超级)增塑剂添加到混合物中以获得良好的可加工性。在早期,抗压强度随水泥替代量的增加而降低。 28天后,高掺量粉煤灰混凝土的抗压强度相对于对照混凝土的抗压强度相对增加更多。在加速实验中,粉煤灰的混凝土在乳酸/乙酸和硫酸中的性能更好。粉煤灰混凝土的加速氯化物迁移试验所产生的氯化物扩散系数比对照混凝土要低得多,除了混合物中水泥含量替代了60%。所有混凝土混合物对霜冻/融化循环的抵抗力相似。在10%的二氧化碳(CO_2)环境中9周后,碳化深度随粉煤灰含量的增加而增加。大量的粉煤灰还显着降低了对霜冻和除冰盐(3%氯化钠(NaCl)溶液)联合作用的抵抗力。从这些结果可以得出结论,高粉煤灰混凝土在特定应用中具有商业用途的潜力。

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