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A comparison of hydration properties of cement–low quality fly ash binder and cement–limestone powder binder

机译:水泥-低质量粉煤灰粘结剂和水泥-石灰石粉状粘结剂的水化性能比较

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The hydration properties of the binder containing low quality fly ash or limestone powder were compared in this study. Isothermal calorimetry was performed to measure the hydration heat of the binders during the first 3 days. Mercury intrusion porosimetry, scanning electron microscope, and thermogravimetry–differential thermal analysis were all used to determine the pore structure and hydration products of paste. The compressive strength of the pastes of age 3, 7, 28, and 90 days was also tested. The results indicate that the ground low quality fly ash can improve the mechanical properties of composite cementitious material and ameliorate the hydration properties and microstructure compared with the inert admixture limestone powder. The chemical activity of low quality fly ash presents gradually and appears high pozzolanic effect at later period, and it can accelerate the generation of hydration products containing more chemically bonded water. This leads to the higher rate of strength growth and cement hydration degree, the more compact microstructure and reasonable pore size distribution. Additionally, low quality fly ash delays the induction period, but shortens the acceleration period, therefore there is no significant influence on the second exothermic peak occurrence time.
机译:在这项研究中比较了含有低质量粉煤灰或石灰石粉的粘合剂的水合性能。进行等温量热法以测量前三天的粘合剂的水合热。压汞法,扫描电子显微镜和热重分析-差示热分析法都用于确定糊的孔结构和水合产物。还测试了3天,7天,28天和90天的浆料的抗压强度。结果表明,与惰性掺合石灰石粉相比,磨碎的劣质粉煤灰可以改善复合胶凝材料的力学性能,改善水合性能和微观结构。低质量粉煤灰的化学活性逐渐出现,并在后期出现高火山灰作用,并可以加速水合产物的化学键合。这导致强度增长和水泥水合度的速率越高,微观结构越紧凑,孔径分布越合理。此外,低质量的粉煤灰会延迟诱导期,但会缩短加速期,因此对第二个放热峰的产生时间没有重大影响。

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