Precast lightweight foamed concrete sandwich panel (PLFP) tested under axial load: preliminary results

A study is carried out to develop a Precast Lightweight Foamed Concrete Sandwich Panel, PLFP, as a new and affordable building system. Experimental investigation to study the behaviour of the panel under axial load is undertaken. The panel consists of two lightweight foamed concrete wythes and a pol...

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Main Authors: Omar, Wahid, Mohamad, Noridah, Abdullah, Redzuan
Format: Book Section
Published: Elsevier 2011
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Online Access:http://eprints.utm.my/id/eprint/29316/
http://dx.doi.org/10.4028/www.scientific.net/AMR.250-253.1153
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spelling my.utm.293162017-02-04T08:40:13Z http://eprints.utm.my/id/eprint/29316/ Precast lightweight foamed concrete sandwich panel (PLFP) tested under axial load: preliminary results Omar, Wahid Mohamad, Noridah Abdullah, Redzuan TA Engineering (General). Civil engineering (General) A study is carried out to develop a Precast Lightweight Foamed Concrete Sandwich Panel, PLFP, as a new and affordable building system. Experimental investigation to study the behaviour of the panel under axial load is undertaken. The panel consists of two lightweight foamed concrete wythes and a polystyrene insulation layer in between the wythes. The concrete panels are reinforced with 9mm diameter high tensile steel bars. The rebars are tied to each other through the insulation layer by shear connectors which are made of 6mm mild steel bars bent to 45º angle. Total number of four specimens was tested with one specimen; PA1 was cast without capping at both ends. It was used as a pilot test. The other three specimens are capped with normal concrete at both ends to avoid end crushing during axial loading. Axial load test was conducted and the results are presented here, which include the ultimate load capacity, crack pattern and failure mode, strain distribution and load-deflection curve of the panels. The experimental ultimate strength achieved recorded lesser percentage difference with the formulae by Pillai and Parthasarathy when compared to formulae in BS8110. It is also observed that the strength of the panels are affected by the compressive strength of the foamed concrete forming the wythes, the presence of concrete capping at panel’s ends and the slenderness ratio, H/t. Specimens with capping at both ends recorded higher ultimate loads with no premature crushing. Failure of panels with slenderness ratio, H/t < 18 were by premature buckling near the supports whereas for panels with higher H/t ratio, slight bending was observed in the middle zone. The results also indicate that a certain degree of compositeness is achieved between the wythes. Elsevier 2011 Book Section PeerReviewed Omar, Wahid and Mohamad, Noridah and Abdullah, Redzuan (2011) Precast lightweight foamed concrete sandwich panel (PLFP) tested under axial load: preliminary results. In: Advanced Materials Research. Elsevier, Haikou, pp. 1153-1162. ISBN 978-303785127-2 http://dx.doi.org/10.4028/www.scientific.net/AMR.250-253.1153 10.4028/www.scientific.net/AMR.250-253.1153
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)
Omar, Wahid
Mohamad, Noridah
Abdullah, Redzuan
Precast lightweight foamed concrete sandwich panel (PLFP) tested under axial load: preliminary results
description A study is carried out to develop a Precast Lightweight Foamed Concrete Sandwich Panel, PLFP, as a new and affordable building system. Experimental investigation to study the behaviour of the panel under axial load is undertaken. The panel consists of two lightweight foamed concrete wythes and a polystyrene insulation layer in between the wythes. The concrete panels are reinforced with 9mm diameter high tensile steel bars. The rebars are tied to each other through the insulation layer by shear connectors which are made of 6mm mild steel bars bent to 45º angle. Total number of four specimens was tested with one specimen; PA1 was cast without capping at both ends. It was used as a pilot test. The other three specimens are capped with normal concrete at both ends to avoid end crushing during axial loading. Axial load test was conducted and the results are presented here, which include the ultimate load capacity, crack pattern and failure mode, strain distribution and load-deflection curve of the panels. The experimental ultimate strength achieved recorded lesser percentage difference with the formulae by Pillai and Parthasarathy when compared to formulae in BS8110. It is also observed that the strength of the panels are affected by the compressive strength of the foamed concrete forming the wythes, the presence of concrete capping at panel’s ends and the slenderness ratio, H/t. Specimens with capping at both ends recorded higher ultimate loads with no premature crushing. Failure of panels with slenderness ratio, H/t < 18 were by premature buckling near the supports whereas for panels with higher H/t ratio, slight bending was observed in the middle zone. The results also indicate that a certain degree of compositeness is achieved between the wythes.
format Book Section
author Omar, Wahid
Mohamad, Noridah
Abdullah, Redzuan
author_facet Omar, Wahid
Mohamad, Noridah
Abdullah, Redzuan
author_sort Omar, Wahid
title Precast lightweight foamed concrete sandwich panel (PLFP) tested under axial load: preliminary results
title_short Precast lightweight foamed concrete sandwich panel (PLFP) tested under axial load: preliminary results
title_full Precast lightweight foamed concrete sandwich panel (PLFP) tested under axial load: preliminary results
title_fullStr Precast lightweight foamed concrete sandwich panel (PLFP) tested under axial load: preliminary results
title_full_unstemmed Precast lightweight foamed concrete sandwich panel (PLFP) tested under axial load: preliminary results
title_sort precast lightweight foamed concrete sandwich panel (plfp) tested under axial load: preliminary results
publisher Elsevier
publishDate 2011
url http://eprints.utm.my/id/eprint/29316/
http://dx.doi.org/10.4028/www.scientific.net/AMR.250-253.1153
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