A study on the effect of slenderness ratio on concrete filled steel column compressive strength / Oswald P Moloyos

The use of circular steel column sections coupled with concrete infill has been used on various building projects with great advantage such as high axial load capacity and favorable ductility performance. From a point of view, the circular steel columns can serves as formwork for the concrete infill...

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Main Author: P Moloyos, Oswald
Format: Student Project
Language:English
Published: Faculty of Civil Engineering 2006
Subjects:
Online Access:https://ir.uitm.edu.my/id/eprint/26363/1/PPb_OSWALD%20P%20MOCOYOS%20EC%20P%2006_5.pdf
https://ir.uitm.edu.my/id/eprint/26363/
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Institution: Universiti Teknologi Mara
Language: English
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spelling my.uitm.ir.263632024-02-05T00:25:22Z https://ir.uitm.edu.my/id/eprint/26363/ A study on the effect of slenderness ratio on concrete filled steel column compressive strength / Oswald P Moloyos P Moloyos, Oswald Structural engineering Reinforced concrete The use of circular steel column sections coupled with concrete infill has been used on various building projects with great advantage such as high axial load capacity and favorable ductility performance. From a point of view, the circular steel columns can serves as formwork for the concrete infill during construction, which makes concrete filled steel columns more economical than reinforced concrete columns. Compressive strength is one of the important properties of concrete. The strength in compression has a definite relationship with all the other properties of concrete. It means to say that, the other properties are improved with the improvement in the compressive strength. The purposes of this study are to check the slenderness ratio and the strength of the concrete filled steel column (CFSC). The concrete mix was prepared according to the British Standard 5328; 1981. For the steel hollow section the length was varied as 450mm, 600mm, 750mm and 900mm. The concrete characteristic strength that will be used is grade 50 (50N/mm2) with the elastic modulus 46.38GPa and the elastic modulus for the steel is 218GPa. The behavior of column concrete-filled circular hollow sections (CHS) subjected to axial load was investigated experimentally. A total of 12 specimens were studied. The quantity L/r is called the slenderness ratio of the column. It is clear, that the minimum value of the radius of gyration, r should be used in computing the slenderness ratio. It will also provide a more realistic view of the relation between the slenderness ratio of a column and the load that causes it to fail. Faculty of Civil Engineering 2006-11-15 Student Project NonPeerReviewed text en https://ir.uitm.edu.my/id/eprint/26363/1/PPb_OSWALD%20P%20MOCOYOS%20EC%20P%2006_5.pdf A study on the effect of slenderness ratio on concrete filled steel column compressive strength / Oswald P Moloyos. (2006) [Student Project] (Unpublished)
institution Universiti Teknologi Mara
building Tun Abdul Razak Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Mara
content_source UiTM Institutional Repository
url_provider http://ir.uitm.edu.my/
language English
topic Structural engineering
Reinforced concrete
spellingShingle Structural engineering
Reinforced concrete
P Moloyos, Oswald
A study on the effect of slenderness ratio on concrete filled steel column compressive strength / Oswald P Moloyos
description The use of circular steel column sections coupled with concrete infill has been used on various building projects with great advantage such as high axial load capacity and favorable ductility performance. From a point of view, the circular steel columns can serves as formwork for the concrete infill during construction, which makes concrete filled steel columns more economical than reinforced concrete columns. Compressive strength is one of the important properties of concrete. The strength in compression has a definite relationship with all the other properties of concrete. It means to say that, the other properties are improved with the improvement in the compressive strength. The purposes of this study are to check the slenderness ratio and the strength of the concrete filled steel column (CFSC). The concrete mix was prepared according to the British Standard 5328; 1981. For the steel hollow section the length was varied as 450mm, 600mm, 750mm and 900mm. The concrete characteristic strength that will be used is grade 50 (50N/mm2) with the elastic modulus 46.38GPa and the elastic modulus for the steel is 218GPa. The behavior of column concrete-filled circular hollow sections (CHS) subjected to axial load was investigated experimentally. A total of 12 specimens were studied. The quantity L/r is called the slenderness ratio of the column. It is clear, that the minimum value of the radius of gyration, r should be used in computing the slenderness ratio. It will also provide a more realistic view of the relation between the slenderness ratio of a column and the load that causes it to fail.
format Student Project
author P Moloyos, Oswald
author_facet P Moloyos, Oswald
author_sort P Moloyos, Oswald
title A study on the effect of slenderness ratio on concrete filled steel column compressive strength / Oswald P Moloyos
title_short A study on the effect of slenderness ratio on concrete filled steel column compressive strength / Oswald P Moloyos
title_full A study on the effect of slenderness ratio on concrete filled steel column compressive strength / Oswald P Moloyos
title_fullStr A study on the effect of slenderness ratio on concrete filled steel column compressive strength / Oswald P Moloyos
title_full_unstemmed A study on the effect of slenderness ratio on concrete filled steel column compressive strength / Oswald P Moloyos
title_sort study on the effect of slenderness ratio on concrete filled steel column compressive strength / oswald p moloyos
publisher Faculty of Civil Engineering
publishDate 2006
url https://ir.uitm.edu.my/id/eprint/26363/1/PPb_OSWALD%20P%20MOCOYOS%20EC%20P%2006_5.pdf
https://ir.uitm.edu.my/id/eprint/26363/
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