A study on bending capacity of wall-slab structural system by using single layer and double layer of rebar for residential project / Hooi Min Yee and Siti Isma Hani Ismail

Using Industrialised Building Systems (IBS) will address issues such as quality, materials wastage, delays, dirty and hazardous worksites. Wall-slab structural system is in the form of rigidly connected wall slab member.Moment transfer of joint is an important aspect for proper structurally functi...

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Main Authors: Hooi, Min Yee, Ismail, Siti Isma Hani
Format: Conference or Workshop Item
Language:English
Published: 2012
Subjects:
Online Access:http://ir.uitm.edu.my/id/eprint/40324/1/40324.pdf
http://ir.uitm.edu.my/id/eprint/40324/
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spelling my.uitm.ir.403242021-01-11T04:37:12Z http://ir.uitm.edu.my/id/eprint/40324/ A study on bending capacity of wall-slab structural system by using single layer and double layer of rebar for residential project / Hooi Min Yee and Siti Isma Hani Ismail Hooi, Min Yee Ismail, Siti Isma Hani Reinforced concrete Malaysia Using Industrialised Building Systems (IBS) will address issues such as quality, materials wastage, delays, dirty and hazardous worksites. Wall-slab structural system is in the form of rigidly connected wall slab member.Moment transfer of joint is an important aspect for proper structurally functioning of wall-slab system. The objective of this study is to investigate the effect of reinforcement details in the wall on bending capacity for support stiffness in wallslab. A total of six wall specimens were tested. Three of these specimens consisted single layer of rebar while another three specimen consisted of double layer of rebar. The size of the wall-slab’s specimens is 1000mm in length, 1080mm in width, 1000mm in height and 80mm in thickness. The predicted bending capacity at failure is from 5.36k6m to 7.12k6m, depending on actual concrete cover. The bending capacity at failure for single layered of rebar in wall for specimen 1, 2 and 3 were found to be 3.59k6m, 3.81k6m and 3.15k6m, respectively. The bending capacity at failure for double layered of rebar in wall for specimen 1, 2 and 3 were 5.50k6m, 6.31k6m and 7.00k6m, respectively. Based on the results, specimens consisted of double layered of rebar in wall are found to provide higher bending capacity to the joint of wall-slab structural system compared with single layered of rebar in wall. 2012 Conference or Workshop Item PeerReviewed text en http://ir.uitm.edu.my/id/eprint/40324/1/40324.pdf Hooi, Min Yee and Ismail, Siti Isma Hani (2012) A study on bending capacity of wall-slab structural system by using single layer and double layer of rebar for residential project / Hooi Min Yee and Siti Isma Hani Ismail. In: 1st International Conference on Innovation and Technology for Sustainable Built Environment 2012 (ICITSBE 2012), 16-17 April 2012, Universiti Teknologi MARA Cawangan Perak.
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 Reinforced concrete
Malaysia
spellingShingle Reinforced concrete
Malaysia
Hooi, Min Yee
Ismail, Siti Isma Hani
A study on bending capacity of wall-slab structural system by using single layer and double layer of rebar for residential project / Hooi Min Yee and Siti Isma Hani Ismail
description Using Industrialised Building Systems (IBS) will address issues such as quality, materials wastage, delays, dirty and hazardous worksites. Wall-slab structural system is in the form of rigidly connected wall slab member.Moment transfer of joint is an important aspect for proper structurally functioning of wall-slab system. The objective of this study is to investigate the effect of reinforcement details in the wall on bending capacity for support stiffness in wallslab. A total of six wall specimens were tested. Three of these specimens consisted single layer of rebar while another three specimen consisted of double layer of rebar. The size of the wall-slab’s specimens is 1000mm in length, 1080mm in width, 1000mm in height and 80mm in thickness. The predicted bending capacity at failure is from 5.36k6m to 7.12k6m, depending on actual concrete cover. The bending capacity at failure for single layered of rebar in wall for specimen 1, 2 and 3 were found to be 3.59k6m, 3.81k6m and 3.15k6m, respectively. The bending capacity at failure for double layered of rebar in wall for specimen 1, 2 and 3 were 5.50k6m, 6.31k6m and 7.00k6m, respectively. Based on the results, specimens consisted of double layered of rebar in wall are found to provide higher bending capacity to the joint of wall-slab structural system compared with single layered of rebar in wall.
format Conference or Workshop Item
author Hooi, Min Yee
Ismail, Siti Isma Hani
author_facet Hooi, Min Yee
Ismail, Siti Isma Hani
author_sort Hooi, Min Yee
title A study on bending capacity of wall-slab structural system by using single layer and double layer of rebar for residential project / Hooi Min Yee and Siti Isma Hani Ismail
title_short A study on bending capacity of wall-slab structural system by using single layer and double layer of rebar for residential project / Hooi Min Yee and Siti Isma Hani Ismail
title_full A study on bending capacity of wall-slab structural system by using single layer and double layer of rebar for residential project / Hooi Min Yee and Siti Isma Hani Ismail
title_fullStr A study on bending capacity of wall-slab structural system by using single layer and double layer of rebar for residential project / Hooi Min Yee and Siti Isma Hani Ismail
title_full_unstemmed A study on bending capacity of wall-slab structural system by using single layer and double layer of rebar for residential project / Hooi Min Yee and Siti Isma Hani Ismail
title_sort study on bending capacity of wall-slab structural system by using single layer and double layer of rebar for residential project / hooi min yee and siti isma hani ismail
publishDate 2012
url http://ir.uitm.edu.my/id/eprint/40324/1/40324.pdf
http://ir.uitm.edu.my/id/eprint/40324/
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