Property Characterization of Anti-Aging Additives and Modified Asphalt Based on Long-Term Aging Behavior

Author:

Liu Junlong12,Chu Lijing3ORCID,Zhao Tianyuan4,Zhu Yunchu5,Cang Zhi6,Chen Qian12ORCID,Yuan Junshen5

Affiliation:

1. School of Highway, Chang’an University, Xi’an 710064, China

2. Key Laboratory of Road Structure & Material of Transport Ministry, Chang’an University, Xi’an 710064, China

3. Guangzhou Urban Planning & Design Survey Research Institute, Guangzhou 510060, China

4. Guangdong Nanyue Transportation Investment & Construction Co. Ltd, Guangzhou 510000, China

5. School of Civil and Transportation Engineering, Guangdong University of Technology, Guangzhou 510006, China

6. Datongbei Expressway Management Co. Ltd, Shanxi Transportation Holding Group Co. Ltd, Taiyuan 030006, China

Abstract

In order to achieve the good application of hindered amine light stabilizer (HALS) in the long-term aging control of asphalt pavement material, Tinuvin770 and Tinuvin622 light stabilizers were selected as modifiers for asphalt. The microstructure and characteristics of hindered amine light stabilizers were characterized by FIB-SEM. The elemental composition and relative content of hindered amine light stabilizers were studied by means of EDS analysis. The functional group composition of hindered amine light stabilizers was analyzed based on Dynamic-FTIR. On this basis, light stabilizer modified asphalt was prepared, and the effect of hindered amine light stabilizer on the thermal rheological properties of asphalt binder during UV aging period was studied by dynamic shear rheology (DSR). The changing law of low temperature rheological properties of hindered amine light stabilizer modified asphalt was evaluated by low temperature bending beam rheological test (BBR). The results showed that the hindered amine light stabilizer could capture the free radicals formed during the photodegradation of asphalt when subjected to ultraviolet aging. Under the impact of ultraviolet aging, hindered amine light stabilizer could improve the high temperature performance of asphalt binder. Furthermore, HALS could achieve the improving effect on the low temperature rheological properties and long-term aging performance of asphalt pavement materials.

Funder

Fundamental Research Funds for the Central Universities

Publisher

Hindawi Limited

Subject

General Engineering,General Materials Science

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