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Autogenous shrinkage and nano-mechanical properties of UHPC containing waste brick powder derived from construction and demolition waste

机译:含有施工和拆迁废弃物的UHPC的自生收缩和纳米力学性能

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摘要

Using recycled brick powder (RBP) as an alternative material in cement-based materials is an effective way to make high-value utilization of construction and demolition (C&D) waste. In this study, RBP was used to replace part of silica fume (SF) to improve the volume stability and environmental benefits of ultra-high performance concrete (UHPC), and the influence of different RBP contents on the mechanical strength, autogenous shrinkage, and microstructure of UHPC mixture was explored. The results show that although using 30-45% of RBP to replace SF reduces the strengths, an appropriate amount of RBP (15%) can significantly improve the mechanical strength of UHPC. Meanwhile, as the replacement rate of RBP increases, the autogenous shrinkage of UHPC decreases significantly. In addition, the incorporation of 15% RBP improves the solid packing state, and the internal curing effect of RBP improves the performance of the interface transition zone. From the perspective of nano-scale characteristics, the appropriate amount of RBP (15%) reduces the content of unhydrated phase, pore phase and high-density C-S-H in the matrix, while makes the ultra high-density C-S-H content increase significantly. Furthermore, UHPC mixed with 15% RBP shows lower cost and CO2-e emission. Therefore, it is feasible to use 15% RBP to replace SF to produce eco-friendly UHPC mixture.
机译:使用回收砖粉(RBP),如水泥基材料的替代材料是使建筑和拆卸(C&d)废物的高价值的利用率的有效途径。在这项研究中,RBP是用来代替硅粉(SF)的一部分,以提高体积稳定性和超高性能混凝土(UHPC)的环境效益,以及对机械强度不同RBP内容,自收缩的影响,并且UHPC混合物的微观结构进行了探讨。结果表明,虽然使用的RBP 30-45%,以取代减少SF的长处,RBP(15%)的合适的量可以提高显著UHPC的机械强度。同时,由于RBP增加置换率,UHPC的自收缩显著降低。此外,15%的RBP掺入改善了固体包装状态,和RBP的内部固化效果改善了界面过渡区的性能。从纳米尺度特征的角度来看,RBP适量(15%)减少了未水合相,孔隙相和高密度的C-S-H中的基体的内容,同时使超高密度C-S-H含量的增加显著。此外,UHPC用15%RBP示出了混合降低成本,CO2-E发射。因此,可行的是使用15%RBP取代SF以产生生态友好的UHPC混合物。

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