Titre : |
Viscoelastic mechanical model of asphalt concrete considering the influence of characteristic parameter of fiber content |
Type de document : |
texte imprimé |
Auteurs : |
Chunshui Huang, Auteur ; Danying Gao, Auteur ; Peibo You, Auteur |
Année de publication : |
2021 |
Article en page(s) : |
p. 283-290 |
Note générale : |
Bibliogr. |
Langues : |
Français (fre) |
Catégories : |
Composites à fibres -- Propriétés mécaniques Fibres polyesters Flexion (mécanique) Fluage Matériaux bitumineux Matériaux cimentaires Matériaux cimentaires -- Propriétés mécaniques Poutres Viscoélasticité
|
Index. décimale : |
677.4 Textiles artificiels |
Résumé : |
This paper carries out bending creep tests on polyester fiber-reinforced asphalt concrete beams, and investigates how the volume ratio and aspect ratio of the fibers influence the parameters of viscoelastic mechanical model and the viscoelastic performance of the asphalt concrete. The results show that: with the growing volume ratio and aspect ratio of the fibers, the midspan deflection and bottom flexural-tensile strain of asphalt concrete beams first dropped and then rose over time; the characteristic parameter of fiber content (FCCP) could reflect the overall effects of the volume ratio and aspect ratio of the fibers. On this basis, a viscoelastic mechanical model was established for the asphalt concrete in the light of the influence of FCCP. The test and theoretical results show that, in our tests, the optimal volume ratio of fibers, optimal aspect ratio of fibers, and optimal FCCP are 0.348, 324, and 1.128 for polyester fiber-reinforced asphalt concrete. |
Note de contenu : |
- Methodology
- Viscoelastic Deformation Features Influence of fiber volume ratio and fiber aspect ratio on viscoelastic model parameters and viscoelastic performance - Viscoelastic model and viscoelasticity analysis
- Tables : Relationship between parameters of formula (2, 3, 4 and 5) and fiber volume ratio and fiber aspect ratio |
DOI : |
https://doi.org/10.18280/rcma.310503 |
En ligne : |
https://www.iieta.org/download/file/fid/63497 |
Format de la ressource électronique : |
Pdf |
Permalink : |
https://e-campus.itech.fr/pmb/opac_css/index.php?lvl=notice_display&id=37686 |
in REVUE DES COMPOSITES ET DES MATERIAUX AVANCES > Vol. 31, N° 5 (10/2021) . - p. 283-290