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Utilizing Iron Ore Tailing as Cementitious Material for Eco-Friendly Design of Ultra-High Performance Concrete (UHPC)

机译:利用铁矿石拖尾作为胶凝材料以实现超高性能混凝土的环保设计(UHPC)

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摘要

In this research, iron ore tailing (IOT) is utilized as the cementitious material to develop an eco-friendly ultra-high performance concrete (UHPC). The UHPC mix is obtained according to the modified Andreasen and Andersen (MAA) packing model, and the applied dosage of IOT is 10%, 20%, and 30% (by weight), respectively. The calculated packing density of different mixtures is consistent with each other. Afterwards, the fresh and hardened performance of UHPC mixtures with IOT are evaluated. The results demonstrate that the workability of designed UHPC mixtures is increased with the incorporation of IOT. The heat flow at an early age of designed UHPC with IOT is attenuated, the compressive strength and auto shrinkage at an early age are consequently reduced. The addition of IOT promotes the development of long-term compressive strength and optimization of the pore structure, thus the durability of designed UHPC is still guaranteed. In addition, the ecological estimate results show that the utilization of IOT for the UHPC design can reduce the carbon emission significantly.
机译:在本研究中,铁矿石拖尾(物联网)用作水泥材料,以开发生态友好的超高性能混凝土(UHPC)。根据改性的Andreasen和Andersen(MAA)包装模型获得UHPC混合物,物质的施用剂量分别为10%,20%和30%(重量)。不同混合物的计算密度彼此一致。然后,评估UHPC混合物的新鲜和硬化性能。结果表明,设计的UHPC混合物的可加工性随着物联网的掺入而增加。设计UHPC的早期热流具有IOT,因此减少了较小时代的抗压强度和自动收缩。 IOT的增加促进了长期抗压强度的发展和孔隙结构的优化,因此仍然保证设计的UHPC的耐久性。此外,生态估计结果表明,IOT对UHPC设计的利用可以显着降低碳排放。

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