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首页> 外文期刊>Magazine of Concrete Research >Pore and strength characteristics of alkali-activated slag paste with seawater
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Pore and strength characteristics of alkali-activated slag paste with seawater

机译:海水碱化矿渣膏的孔隙和强度特性

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摘要

This study investigates the pore and strength characteristics of alkali-activated slag paste, using seawater (SW) and tap water (TW) as the mixing water. During the investigation, the water/binder ratio was 0.45 and the activator used was sodium hydroxide (NaOH). Activator concentrations of 2, 4 and 6% of the binder weight were used. The compressive strength was measured and X-ray diffraction, mercury-intrusion porosimetry (MIP) and scanning electron microscopy analyses were conducted to determine the cause of the change in strength and pore structure. The results indicate that the compressive strength for early and later ages improved with the use of SW instead of TW. When SW was used, calcium-silicate-hydrate gel and Friedel's salt were identified as the hydration reactants. Based on the MIP measurements, when the sodium hydroxide concentration was increased, the pore size and number of pores decreased to form a denser matrix. In particular, samples containing SW had an increased number of gel pores (<0.01 mu m).
机译:本研究以海水(SW)和自来水(TW)作为混合水,研究了碱活化矿渣糊的孔隙和强度特性。在研究过程中,水/粘合剂的比例为0.45,使用的活化剂为氢氧化钠(NaOH)。使用粘合剂重量的2、4和6%的活化剂浓度。测量抗压强度,并进行X射线衍射,压汞法(MIP)和扫描电子显微镜分析,以确定强度和孔结构变化的原因。结果表明,使用SW代替TW可以提高早期和晚期的抗压强度。当使用SW时,水合硅酸钙凝胶和弗里德尔盐被鉴定为水合反应物。基于MIP测量,当氢氧化钠浓度增加时,孔尺寸和孔数量减少以形成更致密的基质。特别地,含有SW的样品具有增加的凝胶孔数量(<0.01μm)。

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