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Proportioning of Steel Fibre Reinforced Concrete Mixes for Pavement Construction and Their Impact on Environment and Cost

机译:钢纤维增强混凝土在路面施工中的比例及其对环境和成本的影响

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Steel fibre reinforced concrete (SFRC) is a construction material investigated for more than 40 years including for pavement applications. A number of studies have demonstrated the technical merits of SFRC pavements over conventional concrete pavements; however little work has been carried out on the environmental and economical impact of SFRC during the pavement's life cycle. Therefore, extended research was undertaken within the framework of the EU funded project “EcoLanes” to estimate the environmental and economical loadings of SFRC pavements. The innovative concept of the project is the use of recycled steel tyre-cord wire as concrete fibre reinforcement, which provides additional environmental benefits for tyre recycling over landfilling. Within the project framework a demonstration of a steel-fibre-reinforced roller-compacted concrete (SFR-RCC) pavement was constructed in a rural area in Cyprus. In order to assess the economical and environmental picture of the demonstration pavement, life cycle cost analysis (LCCA) and life cycle assessment (LCA) studies were undertaken, which also compared the under study pavement design with four conventional alternatives. The main output of the studies is that SFR-RCC is more environmentally and economically sustainable than others. In addition, various concrete mix designs were investigated by considering parameters such as fibre type and dosage, cement type, and transportation distances to the construction site. Fibre dosage has been highlighted as a crucial factor compared with economical and environmental loadings in SFR-RCC pavement construction.
机译:钢纤维混凝土(SFRC)是一种经过40多年研究的建筑材料,包括用于路面的材料。大量研究表明,SFRC路面优于传统混凝土路面的技术优势。然而,在人行道的生命周期中,关于SFRC的环境和经济影响的工作很少。因此,在欧盟资助的项目“ EcoLanes”的框架内进行了广泛的研究,以估算SFRC路面的环境和经济负荷。该项目的创新概念是将再生钢轮胎帘线用作混凝土纤维增强材料,与垃圾填埋场相比,这为轮胎回收提供了更多的环境效益。在项目框架内,在塞浦路斯的农村地区进行了钢纤维增强碾压混凝土(SFR-RCC)路面的演示。为了评估示范行人路的经济和环境状况,进行了生命周期成本分析(LCCA)和生命周期评估(LCA)研究,并将研究中的人行道设计与四种常规替代方案进行了比较。研究的主要结果是SFR-RCC在环境和经济上比其他方法更具可持续性。另外,通过考虑诸如纤维类型和用量,水泥类型以及到施工现场的运输距离等参数,研究了各种混凝土混合料的设计。与SFR-RCC路面施工中的经济和环境负荷相比,纤维用量已被视为一个关键因素。

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