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FATIGUE RESISTANCE OF ASPHALT CONCRETE PAVEMENTS. PECULIARITY AND ASSESSMENTS OF POTENTIALS
Author(s) -
Zhongyu Li,
Tingguo Liu,
Jicun Shi,
Uladzimir Veranko,
Vitali Zankavich
Publication year - 2017
Publication title -
the baltic journal of road and bridge engineering
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.259
H-Index - 21
eISSN - 1822-4288
pISSN - 1822-427X
DOI - 10.3846/bjrbe.2017.34
Subject(s) - durability , asphalt , viscoplasticity , asphalt concrete , materials science , structural engineering , geotechnical engineering , forensic engineering , composite material , geology , engineering , finite element method , constitutive equation
This article presents the results of research of processes of deformation and destruction of asphalt concrete pavements under cyclic loads. As the ground for such approach to estimation of the asphalt concrete properties served the proof that regardless of the composition and structure of asphalt concrete with an equal amount of elastic (viscoplastic) bonds possess the same relaxation ability. This situation is a significant feature of the behaviour of asphalt concrete, which opens the way for the development of certain approaches to the analysis of their properties, evaluation of reliability and durability. The promising methodology for the comparative assessment of fatigue and cyclic durability of asphalt concrete by exploring the complex set of elastic and viscoplastic bonds in their structure depending on the temperature, magnitude, and modes of action of the loads is proposed in the presented work. In the future, the establishment of patterns of behaviour of asphalt concretes with the same set of elastic bonds is allows to optimize compositions based on the principles of temperature-structural analogy that is relevant in studying fatigue and cyclic durability as well as low-temperature crack resistance and shear stability.

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