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首页> 外文期刊>Journal of Materials Research and Technology >Early-age hydration characteristics and kinetics of Portland cement pastes with super low w/c ratios using ice particles as mixing water
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Early-age hydration characteristics and kinetics of Portland cement pastes with super low w/c ratios using ice particles as mixing water

机译:使用冰颗粒作为混合水的超低W / C比率的早期水合特性和波特兰水泥浆料的动力学

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摘要

The liquid water was replaced by ice particles for preparing homogenous structural Portland cement (PC) pastes at super low w/c ratios from 0.08 to 0.16. For introducing the process of PC hydration, a sophisticated conduction calorimeter was adopted to measure the early-age hydration heat evolution. The hydration kinetic parameters were determined by Krstulovic–Dabic model based on data of hydration heat evolution. The concentrations of K+and Na+of the pore solution were measured by ICP-OES. Experimental results showed that the acceleration period of the hydration process of PC paste was improved by increasing w/c ratio due to the improvement of space available for hydration product growth. The hydration mechanism of PC paste changed to nucleation and crystal growth (NG) - diffusion (D) when its w/c ratio below 0.16, representing a more intense hydration reaction than that of PC with a normal w/c ratio of 0.30. The concentrations of K+and Na+of pore solution of hydrated PC paste decreased with the increase of w/c ratios, which led to the alkalinity of that decreased with the increase of w/c ratios. In addition, the mechanical properties of hardened PC pastes were enhanced by increasing w/c ratios from 0.08 to 0.16, which could be attributed to the decrease of porosities of hardened pastes.
机译:液体水被冰颗粒取代,用于在超低的W / C比以0.08至0.16上制备均匀结构薄层水泥(PC)浆料。为了引入PC水合的过程,采用复杂的传导热计测量早期水合热量进化。基于水合热进化数据,通过Krstulovic-DabiC模型测定水合动力学参数。通过ICP-OES测量孔溶液的K +和Na +的浓度。实验结果表明,由于可用于水合产物生长的空间的改善,通过增加W / C比率提高了PC浆料的水合过程的加速期。当其W / C比率低于0.16时,PC浆料的水化机制改变为成核和晶体生长(Ng) - 扩散(D),其比PC的常规W / C比为0.30的PC的水合反应更强烈的水化反应。水合PC浆料孔溶液的浓度随着W / C比的增加而降低,这导致了随着W / C比率的增加而降低的碱度。此外,通过增加0.08至0.16的W / C比率提高了硬化的PC浆料的机械性能,这可能归因于硬化浆料的孔隙率降低。

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