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Enhanced autogenous healing of ground granulated blast furnace slag blended cements and mortars

机译:磨碎的高炉矿渣掺合水泥和砂浆的自生修复效果增强

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In this study, the autogenous healing characteristics of cementitious materials with ground granulated blast furnace slag (GGBFS) and crystalline admixtures were investigated. The main variables were the replacement of cement by GGBFS (15–50%) and crystalline admixture types (anhydrite, Na2SO4, and Na2CO3). Isothermal calorimetry analysis was performed to evaluate the potential for crack self-healing. The water flow test was used to evaluate the autogenous healing performance after inducing cracks in 7-day aged specimens. The autogenous healing products were analyzed through scanning electron microscopy (SEM). Cumulative heat was the highest when the GGBFS replacement percentage was 15% and the crystalline admixtures were used simultaneously, and it decreased when the replacement percentage of GGBFS increased. The results of the water flow test showed that crack self-healing performance was enhanced as the replacement ratio of GGBFS was increased up to 30%. The crack self-healing performance was the highest when anhydrite and Na2SO4were used at the same time. SEM analysis showed that the types of self-healing products affected the crack self-healing performance.
机译:在这项研究中,研究了磨碎的粒状高炉矿渣(GGBFS)和结晶混合物对胶凝材料的自生愈合特性。主要变量是用GGBFS(15–50%)和晶体混合物类型(硬石膏,Na2SO4和Na2CO3)替代水泥。进行了等温量热分析,以评估裂纹自我修复的可能性。水流试验用于评估7天老化试样在产生裂纹后的自体愈合性能。通过扫描电子显微镜(SEM)分析自体愈合产物。当GGBFS替代百分比为15%且同时使用结晶混合物时,累积热量最高,而当GGBFS替代百分比增加时则降低。水流试验的结果表明,随着GGBFS的置换率提高到30%,裂纹的自愈性能得到了提高。当同时使用硬石膏和Na2SO4时,裂纹的自愈性能最高。 SEM分析表明,自修复产品的类型影响了裂纹的自修复性能。

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