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首页> 外文期刊>Magazine of Concrete Research >Effect of temperature on the strength development of mortar mixes with GGBS and fly ash
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Effect of temperature on the strength development of mortar mixes with GGBS and fly ash

机译:温度对GGBS和粉煤灰砂浆混合料强度发展的影响

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摘要

The concrete mixes used in this study had 28 d mean strengths of 50 and 30 MPa and also had Portland cement (PC) partially replaced with ground granulated blastQ-furnace slag (GGBS) and fly ash (FA). These mixes were the same as those used in a UKQ-based project that involved casting of blocks, walls and slabs. The strength development of 'equivalent' mortar mixes was determined in the laboratory for curing temperatures of 10, 20, 30, 40 and 50 degrees C. High curing temperatures were found to have a beneficial effect on the earlyQ-age strength, but a detrimental effect on the longQ-term strength. GGBS was found to be more sensitive to high curing temperatures than PC and FA, as reflected in its higher 'apparent' activation energy. The accuracy of strength estimates obtained from maturity functions was examined. The temperature dependence of the NurseQ-Saul function (i.e. concrete strength gain rate varies linearly with temperature) was not sufficient to account for the improvement in earlyQ-age strengths resulting from high curing temperatures. The ArrheniusQ-based function, on the other hand, overestimated them because of the detrimental effect of high curing temperature on strength starting from a very early age. Both functions overestimated the longQ-term strengths, as neither function accounts for the detrimental effect of high curing temperatures on the ultimate compressive strength.
机译:本研究中使用的混凝土混合料的28 d平均强度分别为50和30 MPa,并且波特兰水泥(PC)的一部分被磨碎的高炉Q炉渣(GGBS)和粉煤灰(FA)代替。这些混合物与基于UKQ的项目中使用的混合物相同,该项目涉及砌块,墙壁和楼板的浇铸。在实验室中确定了固化温度为10、20、30、40和50摄氏度时“等效”砂浆混合物的强度发展。发现较高的固化温度对早期Q年龄强度具有有益的影响,但有不利影响对长期Q强度的影响。 GGBS被发现比PC和FA对高固化温度更敏感,这体现在GGBS较高的“表观”活化能上。检查了从成熟度函数获得的强度估计值的准确性。 NurseQ-Saul函数的温度依赖性(即混凝土强度增加率随温度线性变化)不足以说明由于高固化温度导致的早期Q年龄强度的提高。另一方面,基于ArrheniusQ的函数高估了它们,因为高固化温度从很小的年龄开始就对强度产生不利影响。两种功能都高估了长期的Q强度,因为这两种功能都不能解释高固化温度对最终抗压强度的不利影响。

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