Javascript must be enabled to continue!
NONLINEAR FINITE ELEMENT ANALYSIS OF INSULATED FRP STRENGTHENED REINFORCED CONCRETE COLUMNS SUBJECTED TO FIRE
View through CrossRef
In recent decades, Fiber Reinforced Polymers (FRP) have shown tremendous potential for retrofitting or repairing existing deficient or damaged concrete structural elements due to their superior properties such as high strength, corrosion resistance and ease of application. However, concern arises about the vulnerability of FRP material to combustion under fire condition, since they are usually applied to the exterior surface of structural members. Damage of the FRP strengthening layer due to high temperature is likely to decrease the load carrying capacity of the columns and threaten the safety of the structure. This paper presents numerical investigation of the behaviour of reinforced concrete (RC) columns strengthened with FRP sheets and insulated by a thermal resisting coating under service load and fire conditions. The finite element numerical modelling and nonlinear analysis are made using the nonlinear finite element analysis software ANSYS 12.1 [1]. The numerical model is verified for several FRP confined and insulated RC columns that have been experimentally tested under service load and standard fire tests in the published literature. The obtained numerical results are in good agreement with the experimental ones regarding the temperature distribution and axial deformation response. Consequently, the presented modelling gives an economic tool to investigate the behaviour of loaded FRP strengthened RC columns under high temperatures occurring in case of fire, if the modelling is verified against experimental works. Furthermore, the model can be used to design thermal protection layers for FRP strengthened RC columns to fulfill fire resistance requirements specified in building codes and standards.
Czech Technical University in Prague - Central Library
Title: NONLINEAR FINITE ELEMENT ANALYSIS OF INSULATED FRP STRENGTHENED REINFORCED CONCRETE COLUMNS SUBJECTED TO FIRE
Description:
In recent decades, Fiber Reinforced Polymers (FRP) have shown tremendous potential for retrofitting or repairing existing deficient or damaged concrete structural elements due to their superior properties such as high strength, corrosion resistance and ease of application.
However, concern arises about the vulnerability of FRP material to combustion under fire condition, since they are usually applied to the exterior surface of structural members.
Damage of the FRP strengthening layer due to high temperature is likely to decrease the load carrying capacity of the columns and threaten the safety of the structure.
This paper presents numerical investigation of the behaviour of reinforced concrete (RC) columns strengthened with FRP sheets and insulated by a thermal resisting coating under service load and fire conditions.
The finite element numerical modelling and nonlinear analysis are made using the nonlinear finite element analysis software ANSYS 12.
1 [1].
The numerical model is verified for several FRP confined and insulated RC columns that have been experimentally tested under service load and standard fire tests in the published literature.
The obtained numerical results are in good agreement with the experimental ones regarding the temperature distribution and axial deformation response.
Consequently, the presented modelling gives an economic tool to investigate the behaviour of loaded FRP strengthened RC columns under high temperatures occurring in case of fire, if the modelling is verified against experimental works.
Furthermore, the model can be used to design thermal protection layers for FRP strengthened RC columns to fulfill fire resistance requirements specified in building codes and standards.
Related Results
Study of hybrid FRP-FRCM superficial structural elements
Study of hybrid FRP-FRCM superficial structural elements
(English) The
most common composite materials for strengthening building structures are divided into two
dif ferent types based on the matrix’s composition, organics (polymers) o...
Analytical Review on Eccentric Axial Compression Behavior of Short and Slender Circular RC Columns Strengthened Using CFRP
Analytical Review on Eccentric Axial Compression Behavior of Short and Slender Circular RC Columns Strengthened Using CFRP
Although reinforced concrete (RC) columns subjected to combined axial compression and flexural loads (i.e., eccentric load) are the most common structural members used in practice,...
Torsional Response of FRP-Strengthened Reinforced Concrete Beams Using a Modified Fixed-Angle Softened Truss Model
Torsional Response of FRP-Strengthened Reinforced Concrete Beams Using a Modified Fixed-Angle Softened Truss Model
This study develops a mechanics-based fixed-angle softened-truss model (FA-STM) to predict the full nonlinear torque–twist response of reinforced concrete (RC) beams externally str...
Estudio experimental del comportamiento del hormigón confinado sometido a compresión
Estudio experimental del comportamiento del hormigón confinado sometido a compresión
La tesis presenta los resultados de un extenso estudio experimental de probetas cilíndricas de hormigón sometidas a confinamiento lateral cargadas axialmente. En el estudio se cons...
Strength analysis of concrete-encased cellular steel columns
Strength analysis of concrete-encased cellular steel columns
This research investigates the compression behavior of bare cellular steel columns and concrete-encased cellular steel (CECS) columns subjected to concentric and eccentric loadings...
Analytical and Numerical Models of Steel I-Section Beam-Columns Strengthened with Bonded Prestressed FRP Laminates
Analytical and Numerical Models of Steel I-Section Beam-Columns Strengthened with Bonded Prestressed FRP Laminates
Fibre Reinforced Polymer (FRP) laminate are currently used in strengthening steel structures having a significant favorable effect on the member capacity. Researches have been focu...
Dynamic response of FRP-UHPC hybrid bar reinforced concrete column against the lateral impact
Dynamic response of FRP-UHPC hybrid bar reinforced concrete column against the lateral impact
Due to the advantages of high strength-to-weight ratio and corrosion resistance, fibre-reinforced polymer (FRP) bars have been widely investigated to reinforce concrete members. Ho...
Prediction of flexural strength in FRP bar reinforced concrete beams through a machine learning approach
Prediction of flexural strength in FRP bar reinforced concrete beams through a machine learning approach
Purpose
The purpose of this study is to assess the incorporation of fiber reinforced polymer (FRP) bars in concrete as a reinforcement enhances the corrosion resistance in a concre...

