Properties of compositemodified asphalt with polyphosphoric acid and rubber powder(PDF)
长安大学学报(自然科学版)[ISSN:1006-6977/CN:61-1281/TN]
- Issue:
- 2018年05期
- Page:
- 9-17
- Research Field:
- 道路工程
- Publishing date:
Info
- Title:
- Properties of compositemodified asphalt with polyphosphoric acid and rubber powder
- Author(s):
- ZHOU Yuming1; WEI Jianguo1; SHI Song1; 2; GAO Jianping1; DUAN Xiaojuan1; CHENG Yi3
- Keywords:
- road engineering; performance index; dynamic shear rheology test; compositemodified asphalt; rubber powder; polyphosphoric acid
- PACS:
- -
- DOI:
- -
- Abstract:
- In order to study the comprehensive performance of polyphosphoric acid (PPA) and rubber powder composite modified asphalt and its applicable conditions were investigated. Conventional and dynamic shear rheological tests were conducted, using indicators of the degree of targeting, softening point, ductility, penetration ratio, rutting factor,phase angle, and complex modulus index. Compositemodified asphalts with different contents of rubber powder PPA were studied. The high and lowtemperature performance, as well as the temperaturesensitive and aging properties, were evaluated in detail. The results show that the hightemperature performance of compositemodified asphalt is significantly improved, the softening point is higher, and the antirutting factor is approximately 5 to 20 times higher than that of the matrix asphalt. The deformation of asphalt is smaller under conditions of high temperature and large frequency, which is beneficial to the antirutting effect of asphalt,in a dynamic shear rheological test. The elastic property is better under a permissible speed, which is beneficial to the antirutting of pavements. However, the addition of PPA and rubber powder does not improve the ductility of the asphalt. The higher the amount of asphalt, the greater the decrease in its ductility. Further, the lowtemperature performance of the asphalt decreases. The slope of the complex modulus index (GTS) of the modified asphalt declines, indicating that the temperature sensing performance is improved. The blending of the PPA can upgrade the antirutting factor of asphalt aging, lowering the degree of phase angle increase. The hightemperature deformation resistance of asphalt modified with PPA and compound rubber powder is better than that using only modified rubber powder. Therefore, the incorporation of PPA can effectively improve the high and lowtemperature performance, as well as the temperaturesensitive and aging properties. Among the results, 1.5% PPA+15% rubber powder composite modified asphalt showed the best overall performance. 6 tabs, 10 figs, 25 refs.
Last Update: 2018-10-23