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Microstructure of composite cements containing blast-furnace slag and silica nano-particles subjected to elevated thermally treatment temperature

机译:热处理温度高的含高炉渣和二氧化硅纳米粒子的复合水泥的微观结构

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This paper aims to study the effect of thermally treatment temperatures on composite cements containing nano-silica (NS) and blast-furnace slag (GBFS). The composite cements are composed of NS from 0, 1 and 4 mass% and GBFS from 0, 25, 50 and 65 mass%. The thermal resistance of composite cement pastes was studied after the specimens subjected to thermal treatment at 200, 400, 650, 850 and 950 degrees C, with rate of heating 5 degrees C/min for 2 h soaking time. The compressive strength, apparent density and total porosity of composite cement pastes were determined. Substitution of OPC with 25-50% GBFS in the presence of silica-nano-particles improves the fire resistance of composite cement pastes up to 650 degrees C. The relative compressive strength of unsuperplasticized mixes containing 25, 50 and 65 mass% GBFS (M25, M50 and M65 mixes) were 101.34-109.76%, 113.67-120.98%, 79.55-96.67%, 37.06-41.47% and 12.35-23.08%, whereas the relative compressive strength of superplasticized M25S, M50S and M65S mixes were 109.71-149.02%, 116.71-153.92%, 104.23-143.13%, 77.35-95.40% and 24.47-38.24% for samples thermally treated at 200, 400, 650, 850 and 950 degrees C. It can be concluded that superplasticized cement pastes made with 50 mass% in the presence of 4 mass% NS have higher thermal resistance up to 650 degrees C. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文旨在研究热处理温度对包含纳米二氧化硅(NS)和高炉矿渣(GBFS)的复合水泥的影响。该复合水泥由0、1和4质量%的NS和0、25、50和65质量%的GBFS组成。在200、400、650、850和950摄氏度,以5摄氏度/分钟的速度加热2小时的条件下对样品进行热处理之后,研究了复合水泥浆的热阻。测定了复合水泥浆的抗压强度,表观密度和总孔隙率。在二氧化硅-纳米颗粒的存在下用25-50%GBFS代替OPC可提高复合水泥浆的耐火性,最高可达650摄氏度。含有25、50和65质量%GBFS的未超塑化混合物的相对抗压强度(M25 ,M50和M65混合物)分别为101.34-109.76%,113.67-120.98%,79.55-96.67%,37.06-41.47%和12.35-23.08%,而超塑M25S,M50S和M65S混合物的相对抗压强度为109.71-149.02%分别在200、400、650、850和950摄氏度下热处理的样品的重量百分比分别为116.71-153.92%,104.23-143.13%,77.35-95.40%和24.47-38.24%。可以得出结论:以50质量%制成的超增塑水泥浆在4质量%的条件下,NS的耐热性最高可达650摄氏度。(C)2015 Elsevier Ltd.保留所有权利。

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