Xu Haiqin, Wu Shaopeng, Li Hechuan, Zhao Yuechao, Lv Yang
State Key Laboratory of Silicate Materials for Architectures, Wuhan University of Technology, Wuhan 430070, China.
Materials (Basel). 2020 Feb 17;13(4):889. doi: 10.3390/ma13040889.
Steel slag, a by-product of steelmaking, imposes lots of negative impacts on the environment. For alleviating negative impacts, more and more experiments have been carried out to explore the application possibility of steel slag. The purpose of this study is to explore the feasibility of steel slag being applied in induction healing asphalt concretes to replace coarse and fine aggregate. Surface texture and pore sizes of steel slag were firstly tested, and then steel slag and basalt asphalt mixtures modified with steel fibers were prepared. Moisture susceptibility, dynamic stability, mechanical property, thermal property, induction heating speed, natural cooling speed and healing property of the asphalt mixtures were evaluated. Results showed that steel slags had more obvious holes in the surface while the surface area is much larger than that of basalt. Furthermore, steel fibers and steel slag both have dynamic stability, and steel fibers contribute to increased moisture resistance while steel slag is not. Steel slag asphalt concrete showed better mechanical property and better capacity to store heating. Steel slag asphalt mixtures had a similar heating speed to basalt asphalt mixtures but a significantly slower cooling rate. Finally, the induction healing test and CT scanning test demonstrated that steel slag asphalt mixtures had a similar healing ability to basalt asphalt mixtures. It can be concluded that steel slags have the potential to replace the natural aggregates to be applied in induction heating self-healing asphalt concretes.
钢渣作为炼钢的副产品,对环境造成诸多负面影响。为减轻负面影响,人们开展了越来越多的实验来探索钢渣的应用可能性。本研究的目的是探究钢渣用于感应修复沥青混凝土以替代粗、细集料的可行性。首先测试了钢渣的表面纹理和孔径,然后制备了用钢纤维改性的钢渣和玄武岩沥青混合料。对沥青混合料的水稳定性、动稳定度、力学性能、热性能、感应加热速度、自然冷却速度和修复性能进行了评估。结果表明,钢渣表面有更明显的孔洞,且表面积远大于玄武岩。此外,钢纤维和钢渣均具有动稳定度,钢纤维有助于提高抗水损害能力,而钢渣则不然。钢渣沥青混凝土表现出更好的力学性能和蓄热能力。钢渣沥青混合料的加热速度与玄武岩沥青混合料相似,但冷却速度明显较慢。最后,感应修复试验和CT扫描试验表明,钢渣沥青混合料的修复能力与玄武岩沥青混合料相似。可以得出结论,钢渣有潜力替代天然集料应用于感应加热自修复沥青混凝土。