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Compressive behavior of FRP-tube-confined concrete...
Journal article

Compressive behavior of FRP-tube-confined concrete short columns using recycled FRP materials from wind turbine blades: Experimental investigation and analytical modelling

Abstract

A major challenge in today's concrete construction is to lower its carbon footprint to the least possible level. This study provides insights on a new low-CO2 alternative concrete whereby glass fiber-reinforced polymer (GFRP) materials from waste wind-turbine blades (WWTB)—termed as WWTB-GFRP—was utilized as: (ⅰ) replacement of Portland cement at 0%, 10%, 20%, and as (ⅱ) lightweight aggregate replacement for natural aggregates at 0%, 50%, and …

Authors

Baturkin D; Hisseine OA; Masmoudi R; Tagnit-Hamou A; Metiche S; Massicotte L

Journal

Clean Technologies and Recycling, Vol. 2, No. 3, pp. 136–164

Publisher

American Institute of Mathematical Sciences (AIMS)

Publication Date

2022

DOI

10.3934/ctr.2022008

ISSN

2770-4580