Development of a multi-modal overlay tester for the evaluation of asphalt overlay cracking behaviors

Author:

Jabonero Christopher1,Park Jin-Whoy1,Ryu SungWoo2,Lin Wuguang3,Cho Yoon-ho1

Affiliation:

1. Department of Civil and Environmental Engineering, Chung-Ang University, 84 HeukSeok-Dong, DongJak-Gu, Seoul, South Korea.

2. Korea Expressway Corporation Research Institute, 208-96, Dongbu-daero 922 Beon-gil, Dongtan-myeon, Hwaseong-si, Gyeonggi-do, South Korea.

3. College of Transport and Communications, Shanghai Maritime University, 1550 Haigang Avenue, Shanghai, 201306, China.

Abstract

Reflection cracking is a critical issue in asphalt overlay pavement. Temperature variation and traffic loading are the main fracture modes acting on the material. In this paper, a multi-modal overlay tester is proposed for the evaluation of the reflection cracking resistance of an asphalt mixture, an approach that simulates three loading modes on asphalt specimens. A fine dense-grade hot mix asphalt is used as the test specimen and subjected to different loading conditions such as single Mode I, II, and III loading simulations and combined I+II and I+II+III loading simulations. Results show coefficients of variation (CVs) of 2.5%, 10.3%, and 7.4% for the Mode I, II, and III loading simulations, respectively. Furthermore, the β coefficient, with a CV of 7%, is used to represent the crack resistance of the asphalt mixture. Finally, the crack propagation occurs rapidly when subjected to tension and lateral displacement prior to repeated traffic loading simulations.

Publisher

Canadian Science Publishing

Subject

General Environmental Science,Civil and Structural Engineering

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