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水发泡沥青水分散失及其对粘度影响的研究

Investigation of Moisture Dissipation of Water-Foamed Asphalt and Its Influence on the Viscosity.

作者信息

Li Ning, Tang Wei, Yu Xin, Zhan He, Ma Hui, Ding Gongying, Zhang Yu

机构信息

College of Civil and Transportation Engineering, Hohai University, Nanjing 210098, Jiangsu, China.

Jiangsu Expressway Engineering Maintenance Technology Center, Nanjing 211106, Jiangsu, China.

出版信息

Materials (Basel). 2020 Nov 24;13(23):5325. doi: 10.3390/ma13235325.

Abstract

Water-foamed asphalt is capable of improving the workability of asphalt mixture. It has been extensively used for its energy-saving and emission-reducing features. Water plays an essential part in improving the workability of water-foamed asphalt mixture. However, there is still lack in profound studies of moisture dissipation of the water-foamed asphalt over time and its influence on workability. In this study, the evolutions of residual water content and rotational viscosity of the water-foamed asphalt with time were respectively measured by the analytical balance and modified rotational viscometer (RV). The atomic force microscopy (AFM) analysis was conducted to discuss the mechanism of viscosity reduction of water-foamed asphalt. The results showed that moisture evaporation is significantly influenced by the foaming water content and ambient temperature, which results in the different stabilizing time of water-foamed asphalt. When water-foamed asphalt was stabilized, the residual water inside the asphalt was less than 0.01% relative to the asphalt mass. The AFM analysis showed that the foaming process changed the distribution of wax in the water-foamed asphalt resulting in reduction of viscosity. The viscosity reduction of asphalt is highly related to the initial foaming water content. After the foaming process, the viscosity keeps stable and is independent of moisture dissipation.

摘要

温拌沥青能够改善沥青混合料的工作性能。因其具有节能减排的特性,已被广泛应用。水在改善温拌沥青混合料的工作性能方面起着至关重要的作用。然而,目前对于温拌沥青中水分随时间的散失及其对工作性能的影响仍缺乏深入研究。在本研究中,分别采用分析天平与改良旋转粘度计(RV)测定了温拌沥青的残留含水量和旋转粘度随时间的变化。通过原子力显微镜(AFM)分析探讨了温拌沥青粘度降低的机理。结果表明,水分蒸发受发泡含水量和环境温度的显著影响,这导致了温拌沥青的稳定时间不同。当温拌沥青稳定时,沥青内部的残留水分相对于沥青质量小于0.01%。AFM分析表明,发泡过程改变了温拌沥青中蜡的分布,从而导致粘度降低。沥青的粘度降低与初始发泡含水量高度相关。发泡过程后,粘度保持稳定,且与水分散失无关。

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