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Pregled bibliografske jedinice broj: 1244433

Experimental Comparison of the Bearing Capacity of GFRP Beams and 50% Recycled GFRP Beams


Jurić, Aleksandar; Štefić, Tihomir
Experimental Comparison of the Bearing Capacity of GFRP Beams and 50% Recycled GFRP Beams // Civil Engineering Journal, 8 (2022), 12; 3902-3911 doi:10.28991/ CEJ - 20 2 2 - 08 - 1 2 - 01 7 (međunarodna recenzija, članak, znanstveni)


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Naslov
Experimental Comparison of the Bearing Capacity of GFRP Beams and 50% Recycled GFRP Beams

Autori
Jurić, Aleksandar ; Štefić, Tihomir

Izvornik
Civil Engineering Journal (2676-6957) 8 (2022), 12; 3902-3911

Vrsta, podvrsta i kategorija rada
Radovi u časopisima, članak, znanstveni

Ključne riječi
Load - bearing Elements ; Glass Fiber Reinforced Polymer ; Recycling ; Dimensionless Diagrams

Sažetak
This manuscript investigates the possibility of using recycled glass fiber-reinforced polymer for the production of load-bearing elements in construction. Due to the increasing use of GFRP in the world, an increasing amount of waste is generated. The main objective of this research is to expand the use of composite materials in construction and, in particular, to examine the possibilities of original and recycled GFRP. Firstly, the basic characteristics of two different but very similar materials were determined using standard testing samples. Subsequently, experimental beam models were tested as a four-point bending beam model. The beam models used in this experiment were made of two types of materials, glass fiber reinforced polymer (GFRP) and recycled glass fiber-reinforced polymer (RGFRP). The experiments were conducted until the failure of the beam models. The test results are presented in the form of a force/displacement diagram, and the confirmation of the experimental results is shown by means of a numerical model of the beam. Both materials exhibited a very good strength-to-weight ratio, rendering them a suitable choice of material for load-bearing beam elements. Finally, the justification for recycling and the comparison of original and recycled material are presented in a dimensionless diagram. The comparison of these two materials provides some good insights for future research into GFRP beams.

Izvorni jezik
Engleski

Znanstvena područja
Građevinarstvo



POVEZANOST RADA


Profili:

Avatar Url Tihomir Štefić (autor)

Avatar Url Aleksandar Jurić (autor)

Citiraj ovu publikaciju:

Jurić, Aleksandar; Štefić, Tihomir
Experimental Comparison of the Bearing Capacity of GFRP Beams and 50% Recycled GFRP Beams // Civil Engineering Journal, 8 (2022), 12; 3902-3911 doi:10.28991/ CEJ - 20 2 2 - 08 - 1 2 - 01 7 (međunarodna recenzija, članak, znanstveni)
Jurić, A. & Štefić, T. (2022) Experimental Comparison of the Bearing Capacity of GFRP Beams and 50% Recycled GFRP Beams. Civil Engineering Journal, 8 (12), 3902-3911 doi:10.28991/ CEJ - 20 2 2 - 08 - 1 2 - 01 7.
@article{article, author = {Juri\'{c}, Aleksandar and \v{S}tefi\'{c}, Tihomir}, year = {2022}, pages = {3902-3911}, DOI = {10.28991/ CEJ - 20 2 2 - 08 - 1 2 - 01 7}, keywords = {Load - bearing Elements, Glass Fiber Reinforced Polymer, Recycling, Dimensionless Diagrams}, journal = {Civil Engineering Journal}, doi = {10.28991/ CEJ - 20 2 2 - 08 - 1 2 - 01 7}, volume = {8}, number = {12}, issn = {2676-6957}, title = {Experimental Comparison of the Bearing Capacity of GFRP Beams and 50\% Recycled GFRP Beams}, keyword = {Load - bearing Elements, Glass Fiber Reinforced Polymer, Recycling, Dimensionless Diagrams} }
@article{article, author = {Juri\'{c}, Aleksandar and \v{S}tefi\'{c}, Tihomir}, year = {2022}, pages = {3902-3911}, DOI = {10.28991/ CEJ - 20 2 2 - 08 - 1 2 - 01 7}, keywords = {Load - bearing Elements, Glass Fiber Reinforced Polymer, Recycling, Dimensionless Diagrams}, journal = {Civil Engineering Journal}, doi = {10.28991/ CEJ - 20 2 2 - 08 - 1 2 - 01 7}, volume = {8}, number = {12}, issn = {2676-6957}, title = {Experimental Comparison of the Bearing Capacity of GFRP Beams and 50\% Recycled GFRP Beams}, keyword = {Load - bearing Elements, Glass Fiber Reinforced Polymer, Recycling, Dimensionless Diagrams} }

Časopis indeksira:


  • Web of Science Core Collection (WoSCC)
    • Emerging Sources Citation Index (ESCI)
  • Scopus


Uključenost u ostale bibliografske baze podataka::


  • Scopus
  • Web of Science Group
  • Elsevier
  • Emerging Sources Citation Index


Citati:





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