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钢渣粉含量及养护条件对碱激发超高性能混凝土基材料性能的影响

Effects of Steel Slag Powder Content and Curing Condition on the Performance of Alkali-Activated Materials Based UHPC Matrix.

作者信息

Shi Kangyi, Deng Hongyang, Hu Jinxuan, Zhou Junqi, Cai Xinhua, Liu Zhiwei

机构信息

School of Civil Engineering and Architecture, Wuhan Polytechnic University, Wuhan 430072, China.

State Key Laboratory of Water Resources and Hydropower Engineering Science, Wuhan University, Wuhan 430072, China.

出版信息

Materials (Basel). 2023 May 21;16(10):3875. doi: 10.3390/ma16103875.

Abstract

The accumulation of steel slag and other industrial solid wastes has caused serious environmental pollution and resource waste, and the resource utilization of steel slag is imminent. In this paper, alkali-activated ultra-high-performance concrete (AAM-UHPC) was prepared by replacing ground granulated blast furnace slag (GGBFS) powder with different proportions of steel slag powder, and its workability, mechanical properties, curing condition, microstructure, and pore structure were investigated. The results illustrate that the incorporation of steel slag powder can significantly delay the setting time and improve the flowability of AAM-UHPC, making it possible for engineering applications. The mechanical properties of AAM-UHPC showed a tendency to increase and then decrease with the increase in steel slag dosing and reached their best performance at a 30% dosage of steel slag. The maximum compressive strength and flexural strength are 157.1 MPa and 16.32 Mpa, respectively. High-temperature steam or hot water curing at an early age was beneficial to the strength development of AAM-UHPC, but continuous high-temperature, hot, and humid curing would lead to strength inversion. When the dosage of steel slag is 30%, the average pore diameter of the matrix is only 8.43 nm, and the appropriate steel slag dosage can reduce the heat of hydration and refine the pore size distribution, making the matrix denser.

摘要

钢渣等工业固体废弃物的堆积造成了严重的环境污染和资源浪费,钢渣的资源利用迫在眉睫。本文通过用不同比例的钢渣粉替代磨细粒化高炉矿渣(GGBFS)粉制备了碱激发超高性能混凝土(AAM-UHPC),并对其工作性能、力学性能、养护条件、微观结构和孔隙结构进行了研究。结果表明,钢渣粉的掺入可显著延长AAM-UHPC的凝结时间并提高其流动性,使其具备工程应用的可能性。AAM-UHPC的力学性能随钢渣掺量的增加呈先增大后减小的趋势,在钢渣掺量为30%时达到最佳性能。最大抗压强度和抗折强度分别为157.1MPa和16.32MPa。早期高温蒸汽或热水养护有利于AAM-UHPC强度发展,但持续高温湿热养护会导致强度倒缩。当钢渣掺量为30%时,基体平均孔径仅为8.43nm,适当的钢渣掺量可降低水化热并细化孔径分布,使基体更加致密。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/814d/10224246/4c4dd8a2a895/materials-16-03875-g001.jpg

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