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Investigation of the Effects of Magnesium-Sulfate as Slag Activator

机译:镁 - 硫酸盐作为渣活化剂的影响研究

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This study is about the mechanical and microstructural properties of alkali-activated slag (AAS) paste using magnesium sulfate (MS) as an activator. MS is 2%, 4%, 6%, 8% and 10% contents of binder weight and water-binder ratio is 0.35. Compressive strength, X-ray diffraction, mercury-intrusion porosimetry, and thermal analysis were performed for analysis. The MS contents at which the maximum compressive strength appeared varied according to the measurement age. Hydration products affecting compressive strength and pore structure were ettringite and gypsum. As a result, the changes of ettringite and gypsum depending on the contents of MS have a great influence on the pore structure, which causes the change of compressive strength. The high MS contents increases the amount of gypsum in the hydration products, and the excess gypsum causes high expansion, which increases the diameter and amount of pores, thereby reducing the compressive strength.
机译:该研究是关于碱活化炉渣(AAS)浆料的机械和微观结构性能使用硫酸镁(MS)作为活化剂。 MS为2%,4%,6%,8%和10%的粘合剂重量和水 - 粘合剂比例为0.35。 进行抗压强度,X射线衍射,汞入侵孔隙瘤和热分析进行分析。 根据测量时代,最大压缩强度出现的MS内容物质。 影响抗压强度和孔隙结构的水合产物是Ettringite和石膏。 结果,取决于MS内容的Ettringite和石膏的变化对孔结构产生了很大的影响,这导致抗压强度的变化。 高MS内容物增加了水合产物中石膏的量,过量的石膏导致高膨胀,这增加了孔的直径和量,从而降低了抗压强度。

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