Basalt fibre continuous reinforcement composite pavement reinforcement design based on finite element model
e
15 dic 2021
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Pubblicato online: 15 dic 2021
Pagine: 581 - 590
Ricevuto: 16 giu 2021
Accettato: 24 set 2021
DOI: https://doi.org/10.2478/amns.2021.1.00080
Parole chiave
© 2021 Yuhu Luo et al., published by Sciendo
This work is licensed under the Creative Commons Attribution 4.0 International License.
The thrust of basalt fibre (BFRP) tendons will result in narrower transverse crack spacing, decreased load transfer capacity of transverse cracks and voids at the bottom of the slab, which will lead to thrust failure. The thesis uses the finite element analysis method to analyse the material characteristics of BFRP tendons. At the same time, the article determines the critical load position corresponding to the tensile stress of concrete and BFRP tendons, and analyses the influence of voids, crack spacing and other factors on the load stress of concrete and BFRP tendons. The study results found that continuously reinforced concrete and asphalt overlay composite design can reduce cracks.