Understanding the effect of recycled concrete aggregate and cementitious materials on concrete's fire resistance

IF 0.9 Q4 CONSTRUCTION & BUILDING TECHNOLOGY Journal of Structural Fire Engineering Pub Date : 2021-12-17 DOI:10.1108/jsfe-09-2021-0056
Mohammed Ahmed Abed, Éva Lublóy
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引用次数: 3

Abstract

PurposeFire can severely affect concrete structures and with knowledge of the properties of materials, the damage can be assessed. Aggregate, cement matrix and their interaction are the most important components that affect concrete behaviour at high temperatures. The effect of incorporating recycled concrete aggregate or cementitious materials, namely, cement type and pulverized fly ash, are reviewed to provide a better understanding of their involvement in fire resistance.Design/methodology/approachMore investigation research is needed to understand the fire resistance of such sustainable concrete that was already constructed. The present study illustrates the effect of using recycled concrete aggregate and cementitious materials on the fire resistance of concrete. To do so, a literature review was conducted and relevant data were collected and presented in a simple form. The author's selected research findings, which are related to the presents study, are also presented and discussed.FindingsRecycled concrete aggregate enhances the concrete behaviour at high temperatures when it substitutes the natural aggregate by reasonable substitution (more than 25–30%). It also almost eliminates the possibility of spalling. Moreover, utilizing both supplementary cementitious materials with recycled concrete aggregate can improve the fire resistance of concrete. The incorporation of pulverized fly ash and slag in Portland cement or blended cement can generally keep the mechanical properties of concrete at a higher level after heating to a high temperature.Originality/valueRecycled concrete aggregate enhances the concrete behaviour at high temperatures when it substitutes the natural aggregate by reasonable substitution (more than 25–30%). It also almost eliminates the possibility of spalling. Moreover, utilizing both supplementary cementitious materials with recycled concrete aggregate can improve the fire resistance of concrete. The incorporation of pulverized fly ash and slag in Portland cement or blended cement can generally keep the mechanical properties of concrete at a higher level after heating to a high temperature.
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了解再生混凝土骨料和胶凝材料对混凝土耐火性能的影响
目的火灾会严重影响混凝土结构,在了解材料特性的情况下,可以评估损坏情况。骨料、水泥基质及其相互作用是影响混凝土高温性能的最重要成分。综述了掺入再生混凝土骨料或胶结材料(即水泥型和粉煤灰)的效果,以更好地了解它们在耐火性方面的作用。设计/方法/方法需要更多的调查研究来了解已经建造的这种可持续混凝土的耐火性。本研究说明了使用再生混凝土骨料和胶凝材料对混凝土耐火性能的影响。为此,我们进行了文献综述,收集了相关数据并以简单的形式呈现。还介绍和讨论了作者选择的与本研究相关的研究结果。发现当回收混凝土骨料通过合理的替代(超过25-30%)来替代天然骨料时,它可以增强混凝土在高温下的性能。它还几乎消除了剥落的可能性。此外,利用再生混凝土骨料作为补充胶凝材料可以提高混凝土的耐火性能。在硅酸盐水泥或混合水泥中掺入粉煤灰和矿渣通常可以在加热到高温后将混凝土的力学性能保持在较高水平。独创性/价值当再生混凝土骨料通过合理的替代(超过25-30%)来替代天然骨料时,它可以增强混凝土在高温下的性能。它还几乎消除了剥落的可能性。此外,利用再生混凝土骨料作为补充胶凝材料可以提高混凝土的耐火性能。在硅酸盐水泥或混合水泥中掺入粉煤灰和矿渣通常可以在加热到高温后将混凝土的力学性能保持在较高水平。
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来源期刊
Journal of Structural Fire Engineering
Journal of Structural Fire Engineering CONSTRUCTION & BUILDING TECHNOLOGY-
CiteScore
2.20
自引率
10.00%
发文量
28
期刊最新文献
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