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Effect of Hydrogen Nanobubbles on the Mechanical Strength and Watertightness of Cement Mixtures

机译:氢纳米吡盐对水泥混合物机械强度和水密性的影响

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摘要

This study analyzed the effects of applying highly concentrated hydrogen nanobubble water (HNBW) on the workability, durability, watertightness, and microstructure of cement mixtures. The number of hydrogen nanobubbles was concentrated twofold to a more stable state using osmosis. The compressive strength of the cement mortar for each curing day was improved by about 3.7–15.79%, compared to the specimen that used general water, when two concentrations of HNBW were used as the mixing water. The results of mercury intrusion porosimetry and a scanning electron microscope analysis of the cement paste showed that the pore volume of the specimen decreased by about 4.38–10.26%, thereby improving the watertightness when high-concentration HNBW was used. The improvement in strength and watertightness is a result of the reduction of the microbubbles’ particle size, and the increase in the zeta potential and surface tension, which activated the hydration reaction of the cement and accelerated the pozzolanic reaction.
机译:该研究分析了高浓度氢纳米胶水(HNBW)对水泥混合物的可加工性,耐久性,水密性和微观结构的影响。使用渗透性浓缩氢纳米泡的数量以更稳定的状态。与使用一般水的样品相比,每个固化天的水泥砂浆的压缩强度提高了约3.7-15.79%,当使用两种浓度的HNBW作为混合水时。水泥膏的汞侵入孔隙率和扫描电子显微镜分析的结果表明,样品的孔体积降低约4.38-10.26%,从而在使用高浓度HNBW时改善了水密性。强度和水密性的改善是微泡颗粒尺寸的降低的结果,以及ζ电位和表面张力的增加,其激活了水泥的水化反应并加速了火山灰反应。

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