Accès libre

Experimental Studies on Glued Laminated Timber Beams Reinforced With Polymer Fibers

, , , ,  et   
13 déc. 2024
À propos de cet article

Citez
Télécharger la couverture

Khaled Saad, András Lengyel. (2022). Strengthening Timber Structural Members with CFRP and GFRP: A State-of-the-Art Review. Polymers 14(12):2381, https://doi.org/10.3390/polym14122381; Search in Google Scholar

F. Shi, L. Wang, H. Du, M. Zhao, H. Li, F. Wang and S. Wang, (2022). Axial Compression Behavior of FRP Confined Laminated Timber Columns under Cyclic Loadings. Buildings, vol. 12, pp.1841. Search in Google Scholar

Marija Todorovic, Ivan Glisovic, Bosko Stevanovic. (2019). Experimental Investigation of cracked end-notched glulam beams repaired with GFRP bars. Wood research. Vol. 64(6) 1077-1086. Search in Google Scholar

P. de la Rosa Garcia, A. Escamilla, M. Garcia, (2013). Bending reinforcement of timber beams with composite carbon fiber and basalt fiber materials, Composites, part B 55, pp. 528-536. Search in Google Scholar

Jose-Antonio Balmori, Luis-Alfonso Basterra, Luis Acuña. (2020). Internal GFRP Reinforcement of Low-Grade Maritime Pine Duo Timber Beams. Materials, 13, 571; doi:10.3390/ma13030571. Search in Google Scholar

J.A. Balmori, J.M. Branco and L.A. Basterra. (2021). Behaviour of the adhesive bond between low-grade wood and GFRP reinforcements using epoxy resin. Construction and Building Materials Vol. 271 Search in Google Scholar

Kay-Uwe Schober, Annette M. Harte, Robert Kliger, Robert Jockwer, Qingfeng Xu, Jian-Fei Chen. (2015). FRP reinforcement of timber structures. Construction and Building Materials Vol. 97: 106-118, https://doi.org/10.1016/j.conbuildmat.2015.06.020 . Search in Google Scholar

J.A. Balmori, L.A. Basterra, L. Acuña. (2020). Internal GFRP Reinforcement of Low-Grade Maritime Pine Duo Timber Beams. Materials 13(3): 571, doi:10.3390/ma13030571 Search in Google Scholar

BSEN (2003) SR EN 408:2003. Timber structures - Structural timber and glued laminated timber. Determination of some physical and mechanical properties. Ro. Search in Google Scholar

NP005 (2003): Normativ pentru proiectarea construcţiilor din lemn. Ro Search in Google Scholar

SREN (2004) Eurocode 5. Design of timber structures Part 1-1. General Common rules and rules for buildings. Ro Search in Google Scholar

Peixing Wei, Brad Jianhe Wang, Hao Li, Libin Wang, Si Peng, Long Zhang. (2019). A comparative study of compression behaviour of cross-laminated timber and glued-laminated timber column. Construction and Building Materials Vol. 222 86-95, https://doi.org/10.1016/j.conbuildmat.2019.06.139 Search in Google Scholar

Agnieszka Wdowiak, Janusz Brol. (2019). Effectiveness of Reinforcing Bent Non-Uniform Pre-Stressed Glulam Beams with Basalt Fibre Reinforced Polymers Rods. Materials, 12, 3141. doi:10.3390/ma12193141. Search in Google Scholar

K.Schober, A. Harte, R. Klinger, Q. Xu and J. Chen. (2015). FRP reinforcement of timber structures, Construction and Building Materials, vol. 97, pp. 106-118. Search in Google Scholar

J. Brady, A. Harte, (2009). Flexural Reinforcement of Glue-Laminated Timber Beams using Prestressed FRP plates in ResearchGate. Search in Google Scholar

A. Kotaem. Modelling the behaviour of timber elements strengthened with FRP, master thesis. Search in Google Scholar

M. Todorovic, B. Stevanovic, I. Glisovic (2017). Strengthening of timber beams using FRP bars. Building Materials and Structures, vol. 1, pp. 47-64. Search in Google Scholar

Langue:
Anglais
Périodicité:
4 fois par an
Sujets de la revue:
Ingénierie, Présentations et aperçus, Ingénierie, autres