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Hydration mechanism and performances of tri-cementitous materials system compounded with clinker limestone powder and fly ash

机译:用熟料石灰石粉末和粉煤灰复合三水泥材料系统的水化机理及性能

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摘要

Hydration mechanism and performance of tri-cementitious material, which contains clinker, limestone powder and fly ash, are studied. It is showed that when mixed materials ratio increases from 20% to 40%, the water amount for standard consistency will increase remarkably, and when dosage of limestone powder is 50% in mixed material, the water amount for standard consistency will reach minimum, i.e. 26%; but when limestone powder ratio reaches 40%, the fluidity of slurry reaches maximum, and then it drops with increasing of limestone powder ratio. It is also found that increasing of dosages of mixed materials will decrease flexural strength and compressive strength, and increasing of ratio of limestone powders can result in decreasing of compressive strength at 28 days curing time, especially when ratio of mixed material is 20%. In order to explain the rules that above-mentioned, the particles size distribution is studied, and the hydration mechanism is analyzed.
机译:研究了含有熟料,石灰石粉和粉煤灰的三水泥材料的水合机理和性能。结果表明,当混合材料比率从20%增加到40%时,标准一致性的水量显着增加,并且当混合材料的石灰石粉末的剂量为50%时,标准一致性的水量将达到最小值,即26%;但是,当石灰石粉末的比率达到40%时,浆料的流动性达到最大值,然后随着较石灰石粉末的增加而下降。还发现,混合材料剂量的增加将降低弯曲强度和抗压强度,并且较石灰石粉末的比例的增加可能导致在28天的固化时间下降低压缩强度,特别是当混合材料的比例为20%时。为了解释上述规则,研究了颗粒尺寸分布,并分析了水化机制。

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