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Research on the linear viscoelastic rheological properties of rejuvenated asphalt mastic based on the discrete element method

Authors :
Mei Lin
Yu Lei
Ping Li
Jun Shuai
Zhaoli Wang
Source :
Archives of Civil Engineering, Vol vol. 69, Iss No 2, Pp 399-416 (2023)
Publication Year :
2023
Publisher :
Polish Academy of Sciences, 2023.

Abstract

The rheological property of asphalt is an important factor affecting the pavement performance of asphalt binder, and the fundamental reason for the change of asphalt rheological property is the strong evolution of asphalt material meso structure. However, the internal mechanism of rejuvenated asphalt mastic system is complex and its rules are difficult to grasp. Aiming to study the relationship between meso mechanical parameters and rheological parameters of rejuvenated asphalt mastic, the meso structure model of rejuvenated asphalt mastic was established and improved based on the discrete element method. Moreover, the meso parameters of the model were obtained by the objective function method, and then the influences of various factorswere studied to construct the mathematical constitutive model of rheological parameter modulus and meso mechanical parameters. Combing with the reliability of the improved Burgers model was verified based on the rheological test results of rejuvenated asphalt mastic. In addition, the virtual test of dynamic shear rheological dynamic frequency scanning was carried out on the asphalt mastic sample by particle flow software. By adjusting the mesomechanical parameters, the simulation results (complex shear modulus and phase angle)were consistent with the test results. This study clarified the relationship between mesomechanics and macro performance, and this model could be used to obtain the complex shear modulus of rejuvenated asphalt mastic under different types, filler-asphalt ratio and external force environments by adjusting particle flow, wall boundary and other conditions, which can greatly save the workload for the later research and provide a theoretical basis for production experiments.

Details

Language :
English
ISSN :
12302945 and 23003103
Volume :
. 69
Issue :
2
Database :
Directory of Open Access Journals
Journal :
Archives of Civil Engineering
Publication Type :
Academic Journal
Accession number :
edsdoj.84f0d1159a7c466c86ccf23d5907d4b4
Document Type :
article
Full Text :
https://doi.org/10.24425/ace.2023.145275