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首页> 外文期刊>Construction and Building Materials >Impact on fresh, mechanical, and microstructural properties of high strength self-compacting concrete by marble cutting slurry waste, fly ash, and silica fume
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Impact on fresh, mechanical, and microstructural properties of high strength self-compacting concrete by marble cutting slurry waste, fly ash, and silica fume

机译:大理石切割浆废料,粉煤灰和硅粉对高强度自密实混凝土的新鲜,机械和微结构性能的影响

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Disposal of marble cutting slurry waste (MCSW) has acquired a disastrous proportion and is a leading cause of environmental and health-related issues. On the other hand, high strength self-compacting concrete (HSSCC) is being widely used which requires a higher quantity of cement and ultimately resulting in the substantial CO2 emission to the environment. The aim of this study is to produce economical and ecoefficient HSSCC using MCSW, fly ash (FA), and silica fume (SF). This would help to beneficially use MCSW and minimize the need to use large quantities of cement in HSSCC production, thus significantly reducing CO2 emissions. Total sixteen number of HSSCC mixes in binary, ternary and quaternary form were prepared by incorporating MCSW, FA, and SF as a replacement of cement. Among all HSSCC mixes, one mix was prepared with a 100% cement binder which was named as control mix. The impact on fresh properties was assessed by slump flow, T-S00 time, V-funnel time, fresh density, L-box height ratio, J-ring flow, and J-ring step height. Mechanical performance in terms of compressive strength, and other properties like percentage of water absorption, percentage of voids, and dry bulk density were also examined. The microstructural investigation was carried out using the Scanning electron microscope (SEM) and Fourier transform infrared radiation (FTIR) techniques. It was observed that the incorporation of MCSW and FA improved the fresh properties of HSSCC. A combined use of 10% MCSW and 15% FA with 5% SF as cement replacement resulted in enhanced mechanical performance and amended microstructure. (C) 2019 Elsevier Ltd. All rights reserved.
机译:大理石切割浆废物(MCSW)的处理所造成的损失是灾难性的,是导致环境和健康相关问题的主要原因。另一方面,高强度自密实混凝土(HSSCC)被广泛使用,这需要大量的水泥,并最终导致向环境排放大量的CO2。这项研究的目的是使用MCSW,粉煤灰(FA)和硅粉(SF)生产经济高效的HSSCC。这将有助于有益地使用MCSW,并将HSSCC生产中使用大量水泥的需求降至最低,从而显着减少CO2排放。通过将MCSW,FA和SF掺入水泥中,制备了16种二元,三元和四元形式的HSSCC混合料。在所有HSSCC混合料中,使用100%水泥粘合剂制备了一种混合料,称为对照混合料。通过坍落度流动,T-S00时间,V形漏斗时间,新鲜密度,L箱高度比,J形环流动和J形环台阶高度来评估对新鲜性能的影响。还检查了机械性能,包括抗压强度和其他特性,如吸水率,空隙率和干密度。使用扫描电子显微镜(SEM)和傅立叶变换红外辐射(FTIR)技术进行了微观结构研究。观察到MCSW和FA的结合改善了HSSCC的新鲜性能。将10%的MCSW和15%的FA与5%的SF混合使用,可提高机械性能并改善微观结构。 (C)2019 Elsevier Ltd.保留所有权利。

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