Structural Strength and Behaviour of Cylindrical Steel Sheet Roofing

The roof does not only protect the building and its occupants from the effects of weather, but it is also an architectural feature that gives the building a desired appearance. Profiled steel sheet zincalume is normally used in roof as covering materials, without any attention paid to its struchi...

全面介绍

书目详细资料
主要作者: Islam, S. M. Zahurul
格式: Thesis
语言:英语
英语
出版: 2005
主题:
在线阅读:http://psasir.upm.edu.my/id/eprint/5979/1/FK_2005_5.pdf
_version_ 1846214186458152960
author Islam, S. M. Zahurul
author_facet Islam, S. M. Zahurul
author_sort Islam, S. M. Zahurul
description The roof does not only protect the building and its occupants from the effects of weather, but it is also an architectural feature that gives the building a desired appearance. Profiled steel sheet zincalume is normally used in roof as covering materials, without any attention paid to its struchiral capability as a self-supporting medium. A self-supporting roofing element is a new; where profiled sheeting roof could run continuous lengths of roof spans without internal support. This roofing system saves material and construction cost by avoiding internal support. The aim of this research work is to study the possibility of using profiled steel sheet as self-supporting roofing elements for affordable housing. An analytical investigation using the finite element method was carried out on the structural strength and behavior of different types of self-supporting roofing elements. Five laboratory tests using 3 m spans, 0.42 mm thickness and different crown heights of 1.5, 1.0, 0.50, 0.25 and 0.125 m specimens were conducted for assessing the structural strength and behavior of roofing elements. Analytical study was camed out on the effect of shape, size, materials and support condition on the structural behaviour of the selected roofing element. The analytical investigation was extended for longer spans to explore the feasibility of using of profiled steel sheet as a self supporting roofing system in housing construction. In the analytical work, finite element models were generated and analyzed by using LUSAS software. The analytical study for the roofing elements showed that parabolic profiled roofing element with crown height 116 of span length was more efficient than others as a self-supporting element. The proposed self-supporting roofing element satisfied geometrical, buckling and material stability. Deflection was found to be the limiting criteria in design for self-supporting roofing element using profiled steel sheet. The presence of corrugation in the steel roofing element resulted in a significant improvement on the roofs structural performance compared to flat sheet element. Good agreement was found between the results from finite element analysis and those obtained experimentally. The FEM models predicted with a reasonable degree of accuracy the structural behavior of different types of roofing elements. It was observed that a parabolic shape roofing element with an optimum crown height could be used as a self- supporting roofing element for about 4 m and 8 m span lengths using 0.42 mm and 1.25 mm thick profiled steel sheet. On the basis of this investigation, parabolic self-supporting roofing elements using profiled steel sheet with optimum crown height could be used in housing construction.
format Thesis
id oai:psasir.upm.edu.my:5979
institution Universiti Putra Malaysia
language English
English
publishDate 2005
record_format eprints
spelling oai:psasir.upm.edu.my:59792023-01-03T06:54:13Z http://psasir.upm.edu.my/id/eprint/5979/ Structural Strength and Behaviour of Cylindrical Steel Sheet Roofing Islam, S. M. Zahurul The roof does not only protect the building and its occupants from the effects of weather, but it is also an architectural feature that gives the building a desired appearance. Profiled steel sheet zincalume is normally used in roof as covering materials, without any attention paid to its struchiral capability as a self-supporting medium. A self-supporting roofing element is a new; where profiled sheeting roof could run continuous lengths of roof spans without internal support. This roofing system saves material and construction cost by avoiding internal support. The aim of this research work is to study the possibility of using profiled steel sheet as self-supporting roofing elements for affordable housing. An analytical investigation using the finite element method was carried out on the structural strength and behavior of different types of self-supporting roofing elements. Five laboratory tests using 3 m spans, 0.42 mm thickness and different crown heights of 1.5, 1.0, 0.50, 0.25 and 0.125 m specimens were conducted for assessing the structural strength and behavior of roofing elements. Analytical study was camed out on the effect of shape, size, materials and support condition on the structural behaviour of the selected roofing element. The analytical investigation was extended for longer spans to explore the feasibility of using of profiled steel sheet as a self supporting roofing system in housing construction. In the analytical work, finite element models were generated and analyzed by using LUSAS software. The analytical study for the roofing elements showed that parabolic profiled roofing element with crown height 116 of span length was more efficient than others as a self-supporting element. The proposed self-supporting roofing element satisfied geometrical, buckling and material stability. Deflection was found to be the limiting criteria in design for self-supporting roofing element using profiled steel sheet. The presence of corrugation in the steel roofing element resulted in a significant improvement on the roofs structural performance compared to flat sheet element. Good agreement was found between the results from finite element analysis and those obtained experimentally. The FEM models predicted with a reasonable degree of accuracy the structural behavior of different types of roofing elements. It was observed that a parabolic shape roofing element with an optimum crown height could be used as a self- supporting roofing element for about 4 m and 8 m span lengths using 0.42 mm and 1.25 mm thick profiled steel sheet. On the basis of this investigation, parabolic self-supporting roofing elements using profiled steel sheet with optimum crown height could be used in housing construction. 2005-12 Thesis NonPeerReviewed text en http://psasir.upm.edu.my/id/eprint/5979/1/FK_2005_5.pdf Islam, S. M. Zahurul (2005) Structural Strength and Behaviour of Cylindrical Steel Sheet Roofing. Masters thesis, Universiti Putra Malaysia. Roofing, Iron and steel - Case studies English
spellingShingle Roofing, Iron and steel - Case studies
Islam, S. M. Zahurul
Structural Strength and Behaviour of Cylindrical Steel Sheet Roofing
title Structural Strength and Behaviour of Cylindrical Steel Sheet Roofing
title_full Structural Strength and Behaviour of Cylindrical Steel Sheet Roofing
title_fullStr Structural Strength and Behaviour of Cylindrical Steel Sheet Roofing
title_full_unstemmed Structural Strength and Behaviour of Cylindrical Steel Sheet Roofing
title_short Structural Strength and Behaviour of Cylindrical Steel Sheet Roofing
title_sort structural strength and behaviour of cylindrical steel sheet roofing
topic Roofing, Iron and steel - Case studies
url http://psasir.upm.edu.my/id/eprint/5979/1/FK_2005_5.pdf
url-record http://psasir.upm.edu.my/id/eprint/5979/
work_keys_str_mv AT islamsmzahurul structuralstrengthandbehaviourofcylindricalsteelsheetroofing