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Enhancement of Material Properties of Lime-Activated Slag Mortar from Intensified Pozzolanic Reaction and Pore Filling Effect

机译:增强石灰激活炉渣砂浆的材料特性,从强化的火山糊糊反应和孔隙灌注效应

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摘要

To utilize alkali-activated materials widely, this study investigates the effects of an intensified pozzolanic reaction and pore filling by silica fume on various material properties of lime-activated slag mortar. Although ground-granulated blast-furnace slag is classified as a cementitious material, it commonly requires an activator to enhance the performance of structural materials. In the first step of the improvement strategy, slag reaction is activated by hydrated lime. Next, silica fume is added to densify the microstructure by the physical pore filling effect and/or the pozzolanic reaction that additionally forms hydration products. This increased the compressive strength by 18% at 28 days and by 25% at 91 days under ambient curing condition, mainly due to the physical effect. Moreover, elevated temperature curing for three days was highly effective to further improve the strength, and to accelerate strength development. This is because both the physical effect and the chemical reaction are effective at the high temperature curing condition. The conducted microstructural investigation provided the evidence for the intensified pozzolanic reaction and pore filling effect, both of which are closely related to the mechanical properties. It is also found that the use of silica fume positively contributes to the dimensional stability. Since the developed material exhibits high strength (>40 MPa after 14 days) without Portland cement or highly toxic chemicals, it can be practically used as an eco-friendly structural mortar.
机译:为了广泛利用碱活化的材料,本研究研究了硅粉对硅烟雾的强化火山灰反应和孔隙填充物的影响石灰激活渣砂浆的各种材料性能。虽然地粒状的高炉炉渣被归类为水泥材料,但通常需要活化剂以增强结构材料的性能。在改进策略的第一步中,通过水合石灰激活炉渣反应。接下来,加入二氧化硅烟油以使微观结构通过物理孔隙填充效果和/或额外形成水合产物的波佐烷反应来致密化微观结构。这种在28天的抗压强度在28天内提高了18%,在环境固化条件下在91天内达25%,主要是由于物理效应。此外,升高的温度固化为三天,高效进一步提高强度,并加速强度发育。这是因为物理效应和化学反应都是有效的在高温固化条件下。进行的微观结构调查提供了强化的波佐烷反应和孔隙填充效果的证据,这两者都与机械性​​能密切相关。还发现,二氧化硅烟雾的使用积极有助于尺寸稳定性。由于发达的材料在没有波特兰水泥或高度毒性化学物质的情况下表现出高强度(> 40MPa),因此它可以实际上用作环保结构砂浆。

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