A Comparative Study for Creep and Recovery Behavior Characterization of Modified Bitumens Using the MSCR Test

Author:

Zeng Guodong12,Zhang Jianjing3,Huang Hongming14,Xiao Xin3,Yan Chuanqi56

Affiliation:

1. Foshan Road and Bridge Supervision Station Co., Ltd., Foshan 528041, China

2. Foshan Transportation Science and Technology Co., Ltd., Foshan 528041, China

3. School of Transportation, Civil Engineering and Architecture, Foshan University, Foshan 528225, China

4. School of Traffic and Transportation Engineering, Changsha University of Science & Technology, Changsha 410004, China

5. Highway Engineering Key Laboratory of Sichuan Province, Chengdu 610031, China

6. School of Civil Engineering, Southwest Jiaotong University, Chengdu 610031, China

Abstract

In recent decades, the application of modified bitumens has experienced tremendous growth. However, due to the varying modification mechanism of different modifiers, the creep and recovery properties of modified bitumen have not been comprehensively understood. This study aims to evaluate the creep and recovery properties of several representative modified bitumens using the multi-stress creep recovery (MSCR) test. The MSCR test can highlight the unique delayed elasticity of modified bitumen and it uses a high stress level, which is more comparable to the field. In particular, this test also aims to identify the effects of different aging conditions. To do so, a total of 15 bitumens, including 7 elastomeric-modified bitumens, 5 non-elastomeric-modified bitumens, and 3 plain bitumens, were prepared and examined. Furthermore, 10 different aging conditions were considered. The results suggest that the generation mechanism of elasticity varies for different modified bitumens. There are two types of elasticities, which are energy elasticity and entropy elasticity, and their differences need more attention in the road bitumen material community. Aging changes the percentages of contributions from energy elasticity and entropy elasticity to the bitumen’s overall recovery performance. The increase in “bad” energy elasticity may compensate for part of the “good” entropy elasticity loss, but overall, the bitumen’s recovery rate is decreasing and the ratio of energy elasticity is increasing, which might hinder the bitumen’s road performance.

Funder

National key R&D program of China

Hong Kong scholars program

National Natural Science Foundation of China

Sichuan Youth Science and Technology Innovation Research Team

Publisher

MDPI AG

Subject

Materials Chemistry,Surfaces, Coatings and Films,Surfaces and Interfaces

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