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首页> 外文期刊>Journal of Cleaner Production >Analysis of potential use of fibre reinforced recycled aggregate concrete for sustainable pavements
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Analysis of potential use of fibre reinforced recycled aggregate concrete for sustainable pavements

机译:分析纤维增强再生骨料混凝土在可持续路面中的潜在用途

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摘要

Fibre reinforced concrete (FRC) has advantages, such as minimizing cracking, increasing the composite absorption of energy and enhancing the residual strength. At the same time, the demand for sustainability led to the development of using construction and demolition waste as recycled aggregates in structural and non-structural components. The aim of this study is to analyse the technical and environmental feasibility of using fibre reinforced recycled aggregate concrete (FRRAC) in pavements. An experimental program was carried out to assess the mechanical behaviour of the FRC and FRRAC. Then, a case of study was performed to evaluate the feasibility of using FRRAC in pavements design, in which the fibre content and CO2 emissions (CE) were estimated for different slab thicknesses. It was observed that, to support the same design loads, slabs thicker than 0.22 m require similar fibre contents, independently of the concrete mix. Besides, it was confirmed that the CE are lower for the alternative with recycled aggregate for slab thicknesses higher than 0.20 m. In conclusion, these results open up the possibility of using FRRAC to produce more sustainable rigid pavements. (C) 2019 Elsevier Ltd. All rights reserved.
机译:纤维增强混凝土(FRC)具有许多优点,例如最大程度地减少开裂,增加复合材料对能量的吸收并提高残余强度。同时,对可持续性的需求导致使用建筑和拆除废物作为结构和非结构组件中的再生骨料的发展。这项研究的目的是分析在路面中使用纤维增强再生骨料混凝土(FRRAC)的技术和环境可行性。进行了实验程序以评估FRC和FRRAC的机械性能。然后,进行了一个研究案例,以评估在路面设计中使用FRRAC的可行性,其中估算了不同板厚的纤维含量和CO2排放量(CE)。观察到,为了承受相同的设计载荷,厚于0.22 m的平板需要类似的纤维含量,而与混凝土的配合量无关。此外,已经证实,对于厚度大于0.20 m的再生骨料,其CE较低。总之,这些结果为使用FRRAC生产更可持续的刚性路面开辟了可能性。 (C)2019 Elsevier Ltd.保留所有权利。

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