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首页> 外文期刊>Journal of Zhejiang University. Science, A >Effect of temperature on the hydration process and strength development in blends of Portland cement and activated coal gangue or fly ash
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Effect of temperature on the hydration process and strength development in blends of Portland cement and activated coal gangue or fly ash

机译:温度对波特兰水泥和活性煤矸石混合中水合过程和强度发展的影响

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This paper describes the results of an investigation into the effect of the variation of curing temperatures between 0 and 60 (C on the hydration process, pore structure variation, and compressive strength development of activated coal gangue-cement blend (ACGC). Hardened ACGC pastes cured for hydration periods from 1 to 360 d were examined using the non-evaporable water method, thermal analysis, mercury intrusion porosimetry, and mechanical testing. To evaluate the specific effect of activated coal gangue (ACG) as a supplementary cementing material (SCM), a fly ash-cement blend (FAC) was used as a control. Results show that raising the curing temperature accelerates pozzolanic reactions involving the SCMs, increasing the degree of hydration of the cement blends, and hence increasing the rate of improvement in strength. The effect of curing temperature on FAC is greater than that on ACGC. The pore structure of the hardened cement paste is improved by increasing the curing temperature up to 40 °C, but when the curing temperature reaches 60 °C, the changing nature of the pore structure leads to a decrease in strength. The correlation between compressive strength and the degree of hydration and porosity is linear in nature.
机译:本文介绍了对0和60(C对水合过程,孔隙结构变异和活性煤矸石 - 水泥混合物(ACGC)的抗压强度发育的固化温度变化的研究结果。硬化的ACGC糊剂使用非蒸发的水法,热分析,汞侵入孔隙测定法和机械测试来检查从1至360d的水化期固化。评估活性煤矸石(ACG)作为补充胶结材料(SCM)的特定效果,将粉煤灰水泥混合物(FAC)用作对照。结果表明,提高固化温度加速涉及SCM的火山灰反应,增加水泥共混物的水合程度,从而提高了强度的改善速率。固化温度对FAC的影响大于ACGC。通过增加固化温度U提高硬化水泥浆料的孔结构P至40°C,但是当固化温度达到60°C时,孔隙结构的变化性质导致强度的降低。抗压强度与水合度与孔隙度之间的相关性本质上是线性的。

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