Effects of Silicone Rubber on Rheological Properties and Aging Characteristics of Asphalt Binder

被引:0
作者
Li, Maoqing [1 ]
Gao, Zichen [2 ]
He, Zewen [3 ]
Ma, Jiachen [1 ]
Zhao, Wenhui [3 ]
Dang, Shihao [1 ]
Wei, Chenhao [1 ]
机构
[1] Shaanxi Coal Chem Ind Technol Res Inst Co Ltd, Xian 710100, Peoples R China
[2] Tianjin Transportat Res Inst, Tianjin 300060, Peoples R China
[3] Changan Univ, Sch Mat Sci & Engn, Xian 710018, Peoples R China
关键词
silicone rubber; rheological properties; high-temperature stability; toluene insoluble test; HIGH-TEMPERATURE PERFORMANCE; VISCOSITY;
D O I
10.3390/polym16131903
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
Silicone rubber (SR) is a kind of polymer insulation material with excellent performance. With the service life of silicone rubber products reaching the limit, how to dispose of waste silicone rubber is an urgent problem to be solved. In this paper, silicone rubber-modified asphalt binder (SRMA) was prepared by SR and 90# base asphalt binder. The simulated short-term aging and long-term aging tests of SRMA were carried out using the thin film oven aging test (TFOT) and pressure aging vessel test (PAV). The rotary viscosity test and dynamic shear rheological test (DSR) were applied to the rheological properties of SRMA before and after aging. The degradation degree and chemical composition changes of SR were explored by the toluene insoluble matter test, Fourier transform infrared spectroscopy (FTIR), and a Fluorescence microscope (FM). The results demonstrate that SR can significantly affect the aging resistance, fatigue life, and high-temperature stability of SRMA. As the content of SR rose, the elastic component in SRMA increased, leading to a nice performance in stability at high temperatures and fatigue resistance. However, excessive content (14%wt and 16%wt) had a negative influence on the performance of SRMA. So, the optimal content was speculated to be between 12% and 14%. Furthermore, SR and asphalt binder would be aged and degraded together in the aging process, and this phenomenon was more obvious during long-term aging.
引用
收藏
页数:17
相关论文
共 41 条
[1]   Investigation of the Performance of Silicone Rubber Modified Bitumen [J].
Akbulut, Huseyin ;
Gurer, Cahit .
SILICON, 2022, 14 (15) :9721-9731
[2]   Investigations of Physical and Rheological Properties of Aged Rubberised Bitumen [J].
Ali, Asim Hassan ;
Mashaan, Nuha S. ;
Karim, Mohamed Rehan .
ADVANCES IN MATERIALS SCIENCE AND ENGINEERING, 2013, 2013
[3]  
Amin M, 2007, SCI CHINA SER E, V50, P697, DOI 10.1007/s11431-007-0053-X
[4]  
Azahar N., 2016, Int. J. Agric, V2, P212
[5]   A review on the crumb rubber-modified asphalt in the Middle East [J].
Badughaish, Abdulrahman ;
Wang, Jiayu ;
Hettiarachchi, Chamod ;
Xiao, Feipeng .
JOURNAL OF MATERIAL CYCLES AND WASTE MANAGEMENT, 2022, 24 (05) :1679-1692
[6]   New Method for Detecting Asphalt Contamination within Fine Aggregate Medium through Chemical Testing [J].
Bowers, Benjamin F. ;
Huang, Baoshan ;
Shu, Xiang .
JOURNAL OF MATERIALS IN CIVIL ENGINEERING, 2013, 25 (02) :252-256
[7]   Crumb Rubber Modifier in Road Asphalt Pavements: State of the Art and Statistics [J].
Bressi, Sara ;
Fiorentini, Nicholas ;
Huang, Jiandong ;
Losa, Massimo .
COATINGS, 2019, 9 (06)
[8]  
Chinese Standard, 2011, JTG E20-2011
[9]   A model for oxidative aging of rubber-modified asphalts and implications to performance analysis [J].
Chipps, JF ;
Davison, RR ;
Glover, CJ .
ENERGY & FUELS, 2001, 15 (03) :637-647
[10]  
Dong RK, 2019, TRANSPORTATION RESEARCH CONGRESS 2017: SUSTAINABLE, SMART, AND RESILIENT TRANSPORTATION, P189