Glulam beams reinforced with FRP strips and their application in architecture
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This paper emphasizes the advantage of using carbon polymers while producing and strengthening glulam beams. Due to advanced
research carried out in this field, the first application of carbon polymers based products was implemented in Western countries.
Structural elements containing carbon polymers, or being reinforced by them, show higher resistance and durability properties, as well
as the ability to be produced in various shapes. These features can find best application in architecture so the architects’ imagination
in design could be realized. Many attractive buildings were constructed over the last decade, each of them showing exceptional
safety, resistance to atmospheric influences, durability and cost-efficiency. Beside application of carbon polymers in the construction
of new buildings, they are even more important in the field of historic heritage restoration. The original research carried out on ten
samples in the laboratory is presented in the second part of the pap...er. Position of the reinforcement on the samples was chosen as it
would be done in practical retrofit cases. Deformations of the samples exposed to pure bending were measured, so their behaviour in
the elastic range could be analysed based on the results. Measured results were compared to those calculated by using FEM model,
developed with software package AxisVM. Based on performed analysis, the conclusion was made that by strengthening timber glulam
beams with FRP strips, the simple and efficient static load bearing capacity upgrade is gained.
Кључне речи:
FRP strips / Glulam strengthening / Architectural structures / Testing samples / FEM modelИзвор:
Spatium, 2014, 32, 1-6Издавач:
- Institute of Architecture, Urban & Spatial Planning of Serbia
Институција/група
Arhitektonski fakultetTY - JOUR AU - Solarov, Radivoj AU - Glišić, Milan PY - 2014 UR - https://raf.arh.bg.ac.rs/handle/123456789/1087 AB - This paper emphasizes the advantage of using carbon polymers while producing and strengthening glulam beams. Due to advanced research carried out in this field, the first application of carbon polymers based products was implemented in Western countries. Structural elements containing carbon polymers, or being reinforced by them, show higher resistance and durability properties, as well as the ability to be produced in various shapes. These features can find best application in architecture so the architects’ imagination in design could be realized. Many attractive buildings were constructed over the last decade, each of them showing exceptional safety, resistance to atmospheric influences, durability and cost-efficiency. Beside application of carbon polymers in the construction of new buildings, they are even more important in the field of historic heritage restoration. The original research carried out on ten samples in the laboratory is presented in the second part of the paper. Position of the reinforcement on the samples was chosen as it would be done in practical retrofit cases. Deformations of the samples exposed to pure bending were measured, so their behaviour in the elastic range could be analysed based on the results. Measured results were compared to those calculated by using FEM model, developed with software package AxisVM. Based on performed analysis, the conclusion was made that by strengthening timber glulam beams with FRP strips, the simple and efficient static load bearing capacity upgrade is gained. PB - Institute of Architecture, Urban & Spatial Planning of Serbia T2 - Spatium T1 - Glulam beams reinforced with FRP strips and their application in architecture IS - 32 SP - 1 EP - 6 DO - 10.2298/SPAT1432001S ER -
@article{ author = "Solarov, Radivoj and Glišić, Milan", year = "2014", abstract = "This paper emphasizes the advantage of using carbon polymers while producing and strengthening glulam beams. Due to advanced research carried out in this field, the first application of carbon polymers based products was implemented in Western countries. Structural elements containing carbon polymers, or being reinforced by them, show higher resistance and durability properties, as well as the ability to be produced in various shapes. These features can find best application in architecture so the architects’ imagination in design could be realized. Many attractive buildings were constructed over the last decade, each of them showing exceptional safety, resistance to atmospheric influences, durability and cost-efficiency. Beside application of carbon polymers in the construction of new buildings, they are even more important in the field of historic heritage restoration. The original research carried out on ten samples in the laboratory is presented in the second part of the paper. Position of the reinforcement on the samples was chosen as it would be done in practical retrofit cases. Deformations of the samples exposed to pure bending were measured, so their behaviour in the elastic range could be analysed based on the results. Measured results were compared to those calculated by using FEM model, developed with software package AxisVM. Based on performed analysis, the conclusion was made that by strengthening timber glulam beams with FRP strips, the simple and efficient static load bearing capacity upgrade is gained.", publisher = "Institute of Architecture, Urban & Spatial Planning of Serbia", journal = "Spatium", title = "Glulam beams reinforced with FRP strips and their application in architecture", number = "32", pages = "1-6", doi = "10.2298/SPAT1432001S" }
Solarov, R.,& Glišić, M.. (2014). Glulam beams reinforced with FRP strips and their application in architecture. in Spatium Institute of Architecture, Urban & Spatial Planning of Serbia.(32), 1-6. https://doi.org/10.2298/SPAT1432001S
Solarov R, Glišić M. Glulam beams reinforced with FRP strips and their application in architecture. in Spatium. 2014;(32):1-6. doi:10.2298/SPAT1432001S .
Solarov, Radivoj, Glišić, Milan, "Glulam beams reinforced with FRP strips and their application in architecture" in Spatium, no. 32 (2014):1-6, https://doi.org/10.2298/SPAT1432001S . .