Energy absorption capacity of reinforced concrete beam-column connection with ductility classes low

Once the behaviour of reinforced concrete moment resisting frame structures is investigated, it is concluded that the performance of beam column connections is not satisfactory. In order to understand the complex mechanisms and satisfactory behaviour of beam column connections, lots of investigation...

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Main Authors: Azimi, Mohammadamin, Adnan, Azlan, Osman, Mohd. Hanim, Mohd. Sam, Abdul Rahman, Faridmehr, Iman, Hodjati, Reza
Format: Article
Published: Science and Education Publishing Co. Ltd 2014
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Online Access:http://eprints.utm.my/id/eprint/59720/
http://dx.doi.org/10.12691/ajcea-2-1-5
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spelling my.utm.597202022-04-07T03:24:09Z http://eprints.utm.my/id/eprint/59720/ Energy absorption capacity of reinforced concrete beam-column connection with ductility classes low Azimi, Mohammadamin Adnan, Azlan Osman, Mohd. Hanim Mohd. Sam, Abdul Rahman Faridmehr, Iman Hodjati, Reza TA Engineering (General). Civil engineering (General) Once the behaviour of reinforced concrete moment resisting frame structures is investigated, it is concluded that the performance of beam column connections is not satisfactory. In order to understand the complex mechanisms and satisfactory behaviour of beam column connections, lots of investigations have been done. The most critical zone in reinforced concrete moment resisting frames would be the beam column connection. The behaviour of beam column connection once it is subjected to large forces during earthquakes has a great impact on the response of the structure. The shear failure has a brittle nature which is not a desirable structural performance during earthquakes. Two new types of shear reinforcements design are introduced in this study for the purpose of reaching a higher performance and material capacity for the connection and hence, the structure. These two shear reinforcement designs working simultaneously with other reinforcement systems and concrete have a better performance compared to that of conventional methods. The first specimen is made according to conventional method of design as control specimens in conformance with Euro code EC2 & EC8. The second specimen introduces a continued shear resistance system against discontinued conventional shear resistance system (stirrups) which is called “Single Square Spring Shear Resistance System” (SSSSRS). The third specimen possesses two continued square spring systems twisting together and making a parallel system called “Double Square Spring Shear Resistance System” (DSSSRS). A comparison was made between the performances of the improved shear reinforcement systems of beam-column connections against the control specimens. It was concluded that a lower deflection along with higher energy absorption was achieved for “Single Square Spring Shear Resistance System” (SSSSRS) and “Double Square Spring Shear Resistance System” (DSSSRS) compared to control specimens Energy Absorption Capacity of Reinforced Concrete Beam-Column Connections, with Ductility Classes Low (PDF Download Available). Science and Education Publishing Co. Ltd 2014-01 Article PeerReviewed Azimi, Mohammadamin and Adnan, Azlan and Osman, Mohd. Hanim and Mohd. Sam, Abdul Rahman and Faridmehr, Iman and Hodjati, Reza (2014) Energy absorption capacity of reinforced concrete beam-column connection with ductility classes low. American Journal Of Civil Engineering And Architecture, 2 (1). pp. 42-52. ISSN 2328-398X http://dx.doi.org/10.12691/ajcea-2-1-5 DOI:10.12691/ajcea-2-1-5
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic TA Engineering (General). Civil engineering (General)
spellingShingle TA Engineering (General). Civil engineering (General)
Azimi, Mohammadamin
Adnan, Azlan
Osman, Mohd. Hanim
Mohd. Sam, Abdul Rahman
Faridmehr, Iman
Hodjati, Reza
Energy absorption capacity of reinforced concrete beam-column connection with ductility classes low
description Once the behaviour of reinforced concrete moment resisting frame structures is investigated, it is concluded that the performance of beam column connections is not satisfactory. In order to understand the complex mechanisms and satisfactory behaviour of beam column connections, lots of investigations have been done. The most critical zone in reinforced concrete moment resisting frames would be the beam column connection. The behaviour of beam column connection once it is subjected to large forces during earthquakes has a great impact on the response of the structure. The shear failure has a brittle nature which is not a desirable structural performance during earthquakes. Two new types of shear reinforcements design are introduced in this study for the purpose of reaching a higher performance and material capacity for the connection and hence, the structure. These two shear reinforcement designs working simultaneously with other reinforcement systems and concrete have a better performance compared to that of conventional methods. The first specimen is made according to conventional method of design as control specimens in conformance with Euro code EC2 & EC8. The second specimen introduces a continued shear resistance system against discontinued conventional shear resistance system (stirrups) which is called “Single Square Spring Shear Resistance System” (SSSSRS). The third specimen possesses two continued square spring systems twisting together and making a parallel system called “Double Square Spring Shear Resistance System” (DSSSRS). A comparison was made between the performances of the improved shear reinforcement systems of beam-column connections against the control specimens. It was concluded that a lower deflection along with higher energy absorption was achieved for “Single Square Spring Shear Resistance System” (SSSSRS) and “Double Square Spring Shear Resistance System” (DSSSRS) compared to control specimens Energy Absorption Capacity of Reinforced Concrete Beam-Column Connections, with Ductility Classes Low (PDF Download Available).
format Article
author Azimi, Mohammadamin
Adnan, Azlan
Osman, Mohd. Hanim
Mohd. Sam, Abdul Rahman
Faridmehr, Iman
Hodjati, Reza
author_facet Azimi, Mohammadamin
Adnan, Azlan
Osman, Mohd. Hanim
Mohd. Sam, Abdul Rahman
Faridmehr, Iman
Hodjati, Reza
author_sort Azimi, Mohammadamin
title Energy absorption capacity of reinforced concrete beam-column connection with ductility classes low
title_short Energy absorption capacity of reinforced concrete beam-column connection with ductility classes low
title_full Energy absorption capacity of reinforced concrete beam-column connection with ductility classes low
title_fullStr Energy absorption capacity of reinforced concrete beam-column connection with ductility classes low
title_full_unstemmed Energy absorption capacity of reinforced concrete beam-column connection with ductility classes low
title_sort energy absorption capacity of reinforced concrete beam-column connection with ductility classes low
publisher Science and Education Publishing Co. Ltd
publishDate 2014
url http://eprints.utm.my/id/eprint/59720/
http://dx.doi.org/10.12691/ajcea-2-1-5
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score 13.164666