Acceso abierto

The Flexural Capacity of Laminated Veneer Lumber Beams Strengthened with AFRP and GFRP Sheets


Cite

[1] Adam M., Luhring A., Popp M., Fecht S., Vallee T., Pre-applicable structural adhesives for timber engineering: Glued-in G-FRP rods, International Journal of Adhesion & Adhesives 67/2016, 121-127. http://dx.doi.org/10.1016/j.ijadhadh.2015.12.034 (access: 10.12.2018).10.1016/j.ijadhadh.2015.12.034Search in Google Scholar

[2] Brol J., Wzmacnianie zginanych belek z drewna klejonego taśmami GARP na etapie produkcji, Wiadomości konserwatorskie 26/2009, 345-353.Search in Google Scholar

[3] Brol J., Grygierek K., Wzmacnianie zginanych belek z drewna klejonego taśmami GARP nie dochodzącymi do podpór, 5th International Conference “New Trends on Statics and Dynamics of Buildings”, Bratislava Slovakia, 19–20 October 2006, 51-54.Search in Google Scholar

[4] Fiorelli J., Dias A.A., Analysis of the strength and stiffness of timber beams reinforced with carbon fiber and glass fiber, Materials Research 6 (2)/2003, 193-202.10.1590/S1516-14392003000200014Search in Google Scholar

[5] Gentile C., Svecova D., Saltzberg W., Rizklalla S.H., Flexural strengthening of timber beams using GFRP, Proceedings of Advanced Composite Materials in Bridges and Structures, August 2000, 637-644.Search in Google Scholar

[6] Guan Z.W., Rodd P.D., Pope D.J., Study of glulam beams pre-stressed with pultruded GRP, Computers and Structures 83/2005, 2476-2487.10.1016/j.compstruc.2005.03.021Search in Google Scholar

[7] Hallstrom S., Grenesttedt J.L., Failure analysis of laminated timber beams reinforced with glass fibre composites, Wood Science and Technology 31/1997, 17-34.10.1007/s002260050011Search in Google Scholar

[8] Kossakowski P., Influence of anisotropy on the energy release rate G(i) for highly orthotropic materials, Journal of Theoretical and Applied Mechanics 45/2007, 739-752.Search in Google Scholar

[9] Kossakowski P., Load-bearing capacity of wooden beams reinforced with composite sheets, Structure & Environment 3 (4)/2011, 14-22.Search in Google Scholar

[10] Madhoushi M., Ansell M.P., Experimental study of static and fatigue strengths of pultruded GFRP rods bonded into LVL and glulam, International Journal of Adhesion & Adhesives 24/2004, 319-325.10.1016/j.ijadhadh.2003.07.004Search in Google Scholar

[11] Morales-Conde M.J., Rodríguez-Liñán C., Rubio-de Hita P., Bending and shear reinforcements for timber beams using GFRP plates, Construction and Building Materials 96/2015, 461-472.10.1016/j.conbuildmat.2015.07.079Search in Google Scholar

[12] PN-EN 408+A1:2012 Timber structures. Structural timber and glued laminated timber. Determination of some physical and mechanical properties.Search in Google Scholar

[13] PN-EN 14374:2005 Timber structures. Structural laminated veneer lumber. Requirements.Search in Google Scholar

[14] Raftery G.M., Harte A.M., Repair of glulam beams using GFRP rods, WIT Transactions on The Built Environment 109/2009, 417-427.10.2495/STR090371Search in Google Scholar

[15] Sedivka P., Bomba J., Bohm M., Zeidler A., Determination of strength characteristics of construction timber strengthened with carbon and glass fibre composite using a destructive method, BioResources 10(3)/2015, 4674-4685.10.15376/biores.10.3.4674-4685Search in Google Scholar

[16] Sena-Cruz J., Branco J., Jorge, M., Barros J. A.O., Silva C., Cunha V.M.C.F., Bond behavior between glulam and GFRP’s by pullout tests, Composites Part B: Engineering 43(3)/2012, 1045-1055.10.1016/j.compositesb.2011.10.022Search in Google Scholar

[17] Steico, https://www.steico.com/index.php?id=73&L=3 (access: 10.12.2018).Search in Google Scholar

[18] Technical data sheet S&P A-sheet, http://www.sp-reinforcement.pl/pl-PL/produkty/maty/sp-sheet (access: 10.12.2018).Search in Google Scholar

[19] Technical data sheet S&P G-Sheet E/AR 90/10, http://www.sp-reinforcement.pl/pl-PL/produkty/maty/sp-g-sheet-e-9010-sp-g-sheet-ar-9010-typ-b (access: 10.12.2018).Search in Google Scholar

[20] Technical data sheet S&P Resin 55 HP, http://www.sp-reinforcement.pl/pl-PL/produkty/zywica-epoksydowa/sp-resin-55-hp (access: 10.12.2018).Search in Google Scholar

[21] Theakston F.H., A feasibility study for strengthening timber beams with fibre glass, Canadian Agricultural Engineering January 1965, 17–19.Search in Google Scholar

[22] Thorhallsson E.R., Hinriksson G.I., Snæbjorns J.T., Strength and stiffness of glulam beams reinforced with glass and basalt fibres, Composites Part B 2016, 1-8.10.1016/j.compositesb.2016.09.074Search in Google Scholar

[23] Yusof A., Saleh A.L., Flexural strengthening of timber beams using glass fibre reinforced polymer, Electronic Journal of Structural Engineering 10/2010, 48-56.Search in Google Scholar