EventsThe Eighteenth International Conference of Experimental Mechanics
Published
This submission belongs to the session ICEM. ICEM 2018 of the event The Eighteenth International Conference of Experimental Mechanics
Published date
12 Jul, 2018
Citation
Rodrigo Mourão, Azer Maazoun, Filipe Teixeira-Dias, John Vantomme, David Lecompte, Load-displacement assessment of one-way reinforced concrete (RC) slabs externally strengthened using CFRP strips under blast loads, in Proceedings of The Eighteenth International Conference of Experimental Mechanics, Brussels, 1 July–5 July 2018, MDPI: Basel, Switzerland, doi: 10.3390/ICEM18-05435
Share
Email
Facebook
Twitter
LinkedIn

Load-displacement assessment of one-way reinforced concrete (RC) slabs externally strengthened using CFRP strips under blast loads

image
John Vantomme 1
David Lecompte 1
1. Royal Military Academy
2. University of Edinburgh
Abstract

Dynamic behaviour of Reinforced Concrete (RC) structures can be assessed using a Single-Degree-of-Freedom (SDOF) approach. Such a method is highly dependent on the resistance curve of the structure which is generally represented by a bilinear elasto-perfectly-plastic approximation. This approximation might lead to erroneous results when it refers to the use of externally bonded Fibre Reinforced composites for flexural capacity upgrade of Reinforced Concrete (RC), mainly when the concrete-to-FRP interface failure is to be included. One-way slabs are experimentally and numerically investigated in this study in a 3-point flexural configuration. Assessment on the load-displacement behaviour of a reference specimen and its retrofitted counterpart is performed. Special attention is given to the behaviour of the structure after the concrete-to-FRP failure. Comparison is made between experimental, numerical and analytical results and a good agreement is obtained. A complementary analytical study based on the SDOF method is conducted to understand the influence of several resistance curves on the overall displacement of the same structure when subjected to different pressure-impulse combinations.

Keywords
Blast loading
Reinforced Concrete
Fibre Reinforced Polymers
Externally Bonded Reinforcement
Flexural capacity
Load-Displacement
Single-Degree-of-Freedom
173-Hypersonic free flight investigation on rudder reflection of aircraft
447 Design and Testing of various Ceiling Elements made of Carbon Reinforced Concrete