Rheological Performance Analysis of Different Preventive Maintenance Materials in Porous High-Viscosity Asphalt Pavements

Author:

Xu Bin1,Wang Weiying2ORCID,Sun Yiren3ORCID,Gong Mingyang3

Affiliation:

1. Research and Development Center of Transport Industry of New Materials, Technologies Application for Highway Construction and Maintenance, Zhong Lu Gao Ke (Beijing) Road Technology Co., Ltd., Ministry of Transport, Beijing 100088, China

2. The Key Laboratory of Road and Traffic Engineering, Ministry of Education, Tongji University, 4800 Cao’an Road, Shanghai 201804, China

3. School of Transportation and Logistics, Dalian University of Technology, Dalian 116024, China

Abstract

Porous asphalt pavements are widely used in rainy and wet areas for their skid resistance, noise reduction, runoff minimization and environmental sustainability. Long-term moisture vapor erosion and the destabilization of large pore structures can easily result in pavement problems such as fragmentation, spalling, cracking, and excessive permanent deformation. To this end, four different preventive maintenance materials, including the rejuvenation (RJ), cohesion reinforcement (CEM), polymerization reaction, and emulsified asphalt (EA) types, were selected in this paper to improve the high-viscosity porous asphalt pavement. The effects of the different preventive maintenance materials on the temperature sensitivity, rheological properties and fatigue performance of high-viscosity modified asphalt were evaluated through temperature sweep, frequency sweep, multi-stress creep recovery (MSCR), linear amplitude sweep (LAS), and bending beam rheometer (BBR) tests. The results showed that the four preventive maintenance materials exhibit different enhancement mechanisms and effects. RJ improves the fatigue properties, deformation resistance and low-temperature cracking resistance of aged asphalt by adding elastomeric components; CEM materials are more conducive to increasing the low-temperature crack resistance of aged asphalt; while GL1 and EA improve the viscoelastic behavior of aged asphalt, but the effect of the dosing ratio needs to be considered.

Funder

National Natural Science Foundation of China

China Postdoctoral Science Foundation

Key Scientific Research Project of Ministry of Transport of China

Transportation Science and Technology Plan Project of Hebei Provincial of China

Publisher

MDPI AG

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