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KOSTIHA, V. GIRGLE, F. JANUŠ, O. ŠVAŘÍČKOVÁ, I. ŠTĚPÁNEK, P.
Original Title
GFRP Reinforcement Behaviour under Multi-Axial Stress - Experimental Study
Type
conference paper
Language
English
Original Abstract
This paper is focused on the design of concrete structures reinforced with modern composite material – Fibre Reinforced Polymer (FRP) reinforcement. It presents actual results from the testing of FRP rods under a simultaneous tensile and shear loading. The results were experimentally obtained on specimens of Glass Fibre Reinforced Polymer (GFRP) reinforcement. The text also points out that the widely used fib Bulletin no. 40 technical report does not provide sufficiently reliable formulas and may overestimate the load-bearing capacity of the element. Therefore, the conclusions formulated are primarily concerned with their practical use in the design of this modern material.
Keywords
Fibre Reinforced Polymer (FRP) – internal reinforcement; combination of tensile and shear loading
Authors
KOSTIHA, V.; GIRGLE, F.; JANUŠ, O.; ŠVAŘÍČKOVÁ, I.; ŠTĚPÁNEK, P.
Released
11. 8. 2020
Publisher
Trans Tech Publications Ltd
Location
Switzerland
ISBN
978-3-0357-1668-9
Book
Solid State Phenomena: 26th Concrete Days 2019
1012-0394
Periodical
Solid State Phenomena
Year of study
309
State
Swiss Confederation
Pages from
80
Pages to
86
Pages count
7
URL
https://www.researchgate.net/publication/343590015_GFRP_Reinforcement_Behaviour_under_Multi-Axial_Stress_-_Experimental_Study
BibTex
@inproceedings{BUT167378, author="Vojtěch {Kostiha} and František {Girgle} and Ondřej {Januš} and Ivana {Švaříčková} and Petr {Štěpánek}", title="GFRP Reinforcement Behaviour under Multi-Axial Stress - Experimental Study", booktitle="Solid State Phenomena: 26th Concrete Days 2019", year="2020", journal="Solid State Phenomena", volume="309", pages="80--86", publisher="Trans Tech Publications Ltd", address="Switzerland", doi="10.4028/www.scientific.net/SSP.309.80", isbn="978-3-0357-1668-9", issn="1012-0394", url="https://www.researchgate.net/publication/343590015_GFRP_Reinforcement_Behaviour_under_Multi-Axial_Stress_-_Experimental_Study" }