Zhao Yunqi, Gu Xiaowei, Qiu Jingping, Zhang Weifeng, Li Xiaohui
School of Resources and Civil Engineering, Northeastern University, Shenyang 110819, China.
Science and Technology Innovation Center of Smart Water and Resource Environment, Northeastern University, Shenyang 110819, China.
Materials (Basel). 2021 Aug 25;14(17):4807. doi: 10.3390/ma14174807.
In this paper iron tailing sand (TS) are used as aggerate to develop ultra high-performance concrete (UHPC). The mix proportion of UHPC is designed and TS were added by 25%, 50%, 75% and 100% (wt.%, i.e., weight percentage) to replace natural river sand. Firstly, the influence of TS on the slurry behavior was carried out. The experimental result indicates that with the continuously increasing content of TS, the workability of slurry decreases, while the air content increases. Considering the workability, the optimal replacing dosage of TS should be less than 50%. Then, tests for the hardened specimens were taken. The compressive behavior and micro-porosity deteriorate with increasing content of TS, and the compressive strength had a positive linear relationship with the workability, which indicated that the decline the compressive behavior is mainly due to the loss of flowability. Finally, autogenous shrinkages of UHPC with different TS dosage were also tested. At the same time, the micro-structure of specimens was discussed, which was deteriorate with the increasing dosage of TS. Therefore, comprehensively considering the compressive behavior, micro-structure and shrinkage behavior, as much as 50% of the aggregate could be replaced by TS when developing UHPC.
在本文中,铁尾矿砂(TS)被用作骨料来制备超高性能混凝土(UHPC)。设计了UHPC的配合比,并分别以25%、50%、75%和100%(重量百分比,即wt.%)的比例添加TS来替代天然河砂。首先,研究了TS对浆体性能的影响。实验结果表明,随着TS含量的不断增加,浆体的工作性降低,而含气量增加。考虑到工作性,TS的最佳替代用量应小于50%。然后,对硬化试件进行了测试。随着TS含量的增加,抗压性能和微孔率变差,抗压强度与工作性呈正线性关系,这表明抗压性能的下降主要是由于流动性的损失。最后,还测试了不同TS用量的UHPC的自收缩。同时,对试件的微观结构进行了讨论,其随着TS用量的增加而变差。因此,综合考虑抗压性能、微观结构和收缩性能,在制备UHPC时,最多可用TS替代50%的骨料。