Ductile–Brittle Transition Temperature of Epoxy Asphalt Concrete of Steel Bridge Deck Pavement Based on Impact Toughness

Author:

Zhang Shunxian12ORCID,Nie Wen34ORCID,Sha Aimin1ORCID,Li Weixiong34,Jiang Wei1

Affiliation:

1. Chang’an University, South 2nd Ring, Beilin District, Xi’an 710054, China

2. Poly Changda Engineering Co. Ltd., Guangzhou Avenue, Tianhe District, Guangzhou 510641, China

3. School of Civil Engineering and Transportation, South China University of Technology, Wushan Road, Tianhe District, Guangzhou 510641, China

4. Guangzhou Xiaoning Roadway Engineering Technology Research Institute Co. Ltd., Wushan Road, Tianhe District, Guangzhou 510641, China

Abstract

To solve the common low-temperature cracking problem of epoxy asphalt concrete pavement on the steel bridge deck, based on the principle of fracture mechanics and energy method, this paper puts forward the impact toughness as the evaluation index of crack resistance of epoxy asphalt concrete and verifies the feasibility of this index through theoretical analysis and experiment. At the same time, based on the study of impact toughness, the ductile–brittle transition temperature of epoxy asphalt concrete was explored, and the working state of epoxy asphalt concrete at different temperatures was mastered. The results show that the impact toughness is closely related to the J integral, which can better evaluate the crack resistance of epoxy asphalt mixture. The Boltzmann function can accurately reflect the relationship between impact toughness and temperature and can determine the ductile–brittle transition temperature and transition interval of epoxy asphalt concrete. Impact toughness and ductile–brittle transition temperature can be used as the evaluation index of crack resistance of epoxy asphalt concrete, which provides a new design idea for the study of crack resistance of epoxy asphalt concrete and the scope of engineering application.

Funder

National Basic Research Program of China

Publisher

Hindawi Limited

Subject

General Engineering,General Materials Science

Reference36 articles.

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