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Influence of mineral by-products on compressive strength and microstructure of concrete at high temperature

机译:矿物副产品对高温混凝土抗压强度和微观结构的影响

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摘要

In the present work, Granulated Blast Furnace Slag (GBFS) and Fly ash (FA) were used as partial replacement of Natural Sand (NS) and Ordinary Portland Cement (OPC) by weight. One control mix, one with GBFS, three with FA and three with GBFS-FA combined mixes were prepared. Replacements were 50% GBFS with NS and 20%, 30% and 40% FA with OPC. Preliminary investigation on development of compressive strength was carried out at 7, 28 and 90 days to ensure sustainability of waste materials in concrete matrix at room temperature. After 90days, thermo-mechanical study was performed on the specimen for a temperature regime of 200 degrees-1000 degrees C followed by furnace cooling. Weight loss, visual inspection along with colour change, residual compressive strength and microstructure analysis were performed to investigate the effect of replacement of GBFS and FA. Although adding waste mineral by-products enhanced the weight loss, their pozzolanicity and formation history at high temperature played a significant role in retaining higher residual compressive strength even up to 800 degrees C. On detail microstructural study, it has been found that addition of FA and GBFS in concrete mix improved the density of concrete by development of extra calcium silicate gel before fire and restricts the development of micro-cracks at high temperature as well. In general, the authors are in favour of combined replacement mix in view of high volume mineral by-products utilization as fire protection.
机译:在本作工作中,粒状高炉渣(GBF)和飞灰(FA)用作自然砂(NS)和普通波特兰水泥(OPC)的部分更换。制备一种控制混合物,具有GBF的一种,具有FA和三种具有GBFS-FA组合混合物的三种。用OPC,替代品与NS和20%,30%,30%和40%的FA。在7,28和90天进行抗压强度发展的初步调查,以确保室温下混凝土基质中废料的可持续性。经过90天后,在试样上进行热机械研究,用于200度-1000摄氏度的温度制度,然后进行炉冷却。减肥,目视检查以及颜色变化,进行残留抗压强度和微观结构分析,研究更换GBFS和FA的效果。虽然添加废物矿物副产品增强了体重减轻,但它们在高温下的Pozzolanicity和地层历史在保持较高的残余抗压强度甚至高达800℃的情况下起显着作用。关于细节微观结构研究,已经发现添加了FA混凝土中的GBFS在火灾前通过开发额外的硅酸钙凝胶来改善混凝土的密度,并限制高温下微裂纹的发育。一般而言,作者鉴于大量矿物副产品用作防火,作者赞成组合替代混合物。

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