The effect of length to thickness ratio to the compressive strength of axially loaded PVC-steel skinned hollow concrete filled columns / Ummi Amirah Dewan @ Abdul Rahman

Double skinned hollow concrete filled tube (DSHCFT) column is one of the composite column type where this concept has evolved from the use of concrete filled tubular members. In this study, the main objective is to determine the compression strength of DSHCFT columns with varies length to thickness...

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Main Author: Dewan@Abdul Rahman, Ummi Amirah
Format: Student Project
Language:English
Published: 2018
Subjects:
Online Access:https://ir.uitm.edu.my/id/eprint/104938/1/104938.pdf
https://ir.uitm.edu.my/id/eprint/104938/
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spelling my.uitm.ir.1049382024-10-21T01:03:09Z https://ir.uitm.edu.my/id/eprint/104938/ The effect of length to thickness ratio to the compressive strength of axially loaded PVC-steel skinned hollow concrete filled columns / Ummi Amirah Dewan @ Abdul Rahman Dewan@Abdul Rahman, Ummi Amirah Concrete Strength and testing Double skinned hollow concrete filled tube (DSHCFT) column is one of the composite column type where this concept has evolved from the use of concrete filled tubular members. In this study, the main objective is to determine the compression strength of DSHCFT columns with varies length to thickness ratio (L/t) subjected to axial loading and evaluation of influence of length-to-thickness (L/t) ratio of steel tubes to the compressive strength and deflection of DSHCFT columns. There are 3 main activities involved namely material preparation, preliminary testing and DSHCFT column testing. Each length of column used are 300mm, 325 mm and 375 mm with diameter of outer mild steel skin and inner PVC skin are 162.50mm and 75 mm respectively. It was observed that the experimental ultimate compressive load, Nexp is higher than theoretical ultimate compressive load, Ntheo as per BS5400 where the difference is in range of 1% - 8%. Lower L/t ratio results in increase of ultimate compressive load and failure mechanism observed were crushing and buckling. DSHCFT shows a very good potential to be utilized as a column system especially for column structure with low load bearing capacity such as utilities poles, lamp posts and signboards. 2018-01 Student Project NonPeerReviewed text en https://ir.uitm.edu.my/id/eprint/104938/1/104938.pdf The effect of length to thickness ratio to the compressive strength of axially loaded PVC-steel skinned hollow concrete filled columns / Ummi Amirah Dewan @ Abdul Rahman. (2018) [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 Concrete
Strength and testing
spellingShingle Concrete
Strength and testing
Dewan@Abdul Rahman, Ummi Amirah
The effect of length to thickness ratio to the compressive strength of axially loaded PVC-steel skinned hollow concrete filled columns / Ummi Amirah Dewan @ Abdul Rahman
description Double skinned hollow concrete filled tube (DSHCFT) column is one of the composite column type where this concept has evolved from the use of concrete filled tubular members. In this study, the main objective is to determine the compression strength of DSHCFT columns with varies length to thickness ratio (L/t) subjected to axial loading and evaluation of influence of length-to-thickness (L/t) ratio of steel tubes to the compressive strength and deflection of DSHCFT columns. There are 3 main activities involved namely material preparation, preliminary testing and DSHCFT column testing. Each length of column used are 300mm, 325 mm and 375 mm with diameter of outer mild steel skin and inner PVC skin are 162.50mm and 75 mm respectively. It was observed that the experimental ultimate compressive load, Nexp is higher than theoretical ultimate compressive load, Ntheo as per BS5400 where the difference is in range of 1% - 8%. Lower L/t ratio results in increase of ultimate compressive load and failure mechanism observed were crushing and buckling. DSHCFT shows a very good potential to be utilized as a column system especially for column structure with low load bearing capacity such as utilities poles, lamp posts and signboards.
format Student Project
author Dewan@Abdul Rahman, Ummi Amirah
author_facet Dewan@Abdul Rahman, Ummi Amirah
author_sort Dewan@Abdul Rahman, Ummi Amirah
title The effect of length to thickness ratio to the compressive strength of axially loaded PVC-steel skinned hollow concrete filled columns / Ummi Amirah Dewan @ Abdul Rahman
title_short The effect of length to thickness ratio to the compressive strength of axially loaded PVC-steel skinned hollow concrete filled columns / Ummi Amirah Dewan @ Abdul Rahman
title_full The effect of length to thickness ratio to the compressive strength of axially loaded PVC-steel skinned hollow concrete filled columns / Ummi Amirah Dewan @ Abdul Rahman
title_fullStr The effect of length to thickness ratio to the compressive strength of axially loaded PVC-steel skinned hollow concrete filled columns / Ummi Amirah Dewan @ Abdul Rahman
title_full_unstemmed The effect of length to thickness ratio to the compressive strength of axially loaded PVC-steel skinned hollow concrete filled columns / Ummi Amirah Dewan @ Abdul Rahman
title_sort effect of length to thickness ratio to the compressive strength of axially loaded pvc-steel skinned hollow concrete filled columns / ummi amirah dewan @ abdul rahman
publishDate 2018
url https://ir.uitm.edu.my/id/eprint/104938/1/104938.pdf
https://ir.uitm.edu.my/id/eprint/104938/
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