Mechanical properties of pultruded GFRP profiles under seawater sea sand concrete environment coupled with UV radiation and moisture

•Mechanical properties of various GFRP pultruded profiles under SWSSC is investigated.•Effect of initial exposure to UV radiation and moisture before subjecting to SWSSC is studied.•Samples initially exposed to UV and moisture show higher reductions after exposure to SWSSC.•Profiles with interlamina...

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Veröffentlicht in:Construction & building materials 2020-10, Vol.258, p.120369, Article 120369
Hauptverfasser: Bazli, Milad, Zhao, Xiao-Ling, Jafari, Armin, Ashrafi, Hamed, Bai, Yu, Singh Raman, R.K., Khezrzadeh, Hamed
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Sprache:eng
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Zusammenfassung:•Mechanical properties of various GFRP pultruded profiles under SWSSC is investigated.•Effect of initial exposure to UV radiation and moisture before subjecting to SWSSC is studied.•Samples initially exposed to UV and moisture show higher reductions after exposure to SWSSC.•Profiles with interlaminar shear failure are more vulnerable than profiles with bending failure. In this research, the mechanical properties of various glass fibre reinforced polymer (GFRP) pultruded profiles exposed to seawater sea sand concrete (SWSSC) and its combination with UV radiation and water vapour condensation were studied. The effect of different conditions, duration of conditioning, and the profile cross-section configuration on the mechanical properties were investigated. Three-point bending, tension, and compression tests were carried out to obtain the mechanical properties, including flexural, tensile and compressive strengths and tensile elastic modulus. Furthermore, in order to scrutiny the mechanisms and extent of damage, scanning electron microscopy (SEM) was carried out on the test samples before and after the exposures. Finally, regression models were derived according to the experimental data to describe the mechanical properties of profiles after exposure to the aggressive environments used in this study. The maximum reductions of about 30%, 33% and 46% were observed in three-point bending, tensile and compressive tests, respectively amongst all samples when exposed for 90 days to simulated SWSSC. These reductions increased for the same sections to 52%, 47%, and 50% when the GFRP profiles were pre-exposed for 3000 h to UV radiation and moisture before exposing for 90 days to simulated SWSSC.
ISSN:0950-0618
1879-0526
DOI:10.1016/j.conbuildmat.2020.120369