Assessment of the Effect of Replacing Normal Aggregate by Porcelinite on the Behaviour of Layered Steel Fibrous Self-Compacting Reinforced Concrete Slabs under Uniform Load

In this research, an attempt has been made to study the effect of replacing all normal-weight aggregate “NWA” by lightweight aggregate “LWA” (having a volume equal to 60% of the volume of normal-weight aggregate) on the behaviour of layered steel fibrous self-compacting reinforced concrete slabs wit...

Full description

Bibliographic Details
Main Authors: Ahmed S. D. AL-Ridha, Ali A. Abbood, Ali F. Atshan
Format: Article
Language:English
Published: Hindawi Limited 2020-01-01
Series:Journal of Engineering
Online Access:http://dx.doi.org/10.1155/2020/3650363
id doaj-37b4d06f7c224828956d25f967d9a1e9
record_format Article
spelling doaj-37b4d06f7c224828956d25f967d9a1e92020-11-25T02:01:17ZengHindawi LimitedJournal of Engineering2314-49042314-49122020-01-01202010.1155/2020/36503633650363Assessment of the Effect of Replacing Normal Aggregate by Porcelinite on the Behaviour of Layered Steel Fibrous Self-Compacting Reinforced Concrete Slabs under Uniform LoadAhmed S. D. AL-Ridha0Ali A. Abbood1Ali F. Atshan2Department of Civil Engineering, Mustansiriyah University, Baghdad 10001, IraqDepartment of Civil Engineering, Mustansiriyah University, Baghdad 10001, IraqDepartment of Water Resources Engineering, Mustansiriyah University, Baghdad 10001, IraqIn this research, an attempt has been made to study the effect of replacing all normal-weight aggregate “NWA” by lightweight aggregate “LWA” (having a volume equal to 60% of the volume of normal-weight aggregate) on the behaviour of layered steel fibrous self-compacting reinforced concrete slabs with various volume fractions of steel fiber under uniform area load using fine sand technique. The experimental work consists of two groups “NWA” and “LWA,” each group consists of three slab specimens (having an aspect ratio equal to the golden ratio, i.e., 1.618), the thickness of each slab is divided into two equal layers, the top layer is free from steel fibers, while the steel fibers exist only in the bottom layer with three volume fractions (0%, 0.4%, and 0.8%). Ultimate uniform load of the slabs decreases with the increase in steel fiber content, while the percentage of decrease in the bulk density remains rather constant. It was also found that the ultimate uniform load of the slabs in each group is significantly improved with increasing steel fiber content, and the percentage of this improvement is higher in lightweight concrete “LWC” than in normal-weight concrete “NWC” Finally, it was noticed that when steel fiber increased, the flexural strength of slabs increased higher than shear strength; therefore, the mode of failure has been changed from bending to shear mode for slabs of both groups “NWC” and “LWC.”http://dx.doi.org/10.1155/2020/3650363
collection DOAJ
language English
format Article
sources DOAJ
author Ahmed S. D. AL-Ridha
Ali A. Abbood
Ali F. Atshan
spellingShingle Ahmed S. D. AL-Ridha
Ali A. Abbood
Ali F. Atshan
Assessment of the Effect of Replacing Normal Aggregate by Porcelinite on the Behaviour of Layered Steel Fibrous Self-Compacting Reinforced Concrete Slabs under Uniform Load
Journal of Engineering
author_facet Ahmed S. D. AL-Ridha
Ali A. Abbood
Ali F. Atshan
author_sort Ahmed S. D. AL-Ridha
title Assessment of the Effect of Replacing Normal Aggregate by Porcelinite on the Behaviour of Layered Steel Fibrous Self-Compacting Reinforced Concrete Slabs under Uniform Load
title_short Assessment of the Effect of Replacing Normal Aggregate by Porcelinite on the Behaviour of Layered Steel Fibrous Self-Compacting Reinforced Concrete Slabs under Uniform Load
title_full Assessment of the Effect of Replacing Normal Aggregate by Porcelinite on the Behaviour of Layered Steel Fibrous Self-Compacting Reinforced Concrete Slabs under Uniform Load
title_fullStr Assessment of the Effect of Replacing Normal Aggregate by Porcelinite on the Behaviour of Layered Steel Fibrous Self-Compacting Reinforced Concrete Slabs under Uniform Load
title_full_unstemmed Assessment of the Effect of Replacing Normal Aggregate by Porcelinite on the Behaviour of Layered Steel Fibrous Self-Compacting Reinforced Concrete Slabs under Uniform Load
title_sort assessment of the effect of replacing normal aggregate by porcelinite on the behaviour of layered steel fibrous self-compacting reinforced concrete slabs under uniform load
publisher Hindawi Limited
series Journal of Engineering
issn 2314-4904
2314-4912
publishDate 2020-01-01
description In this research, an attempt has been made to study the effect of replacing all normal-weight aggregate “NWA” by lightweight aggregate “LWA” (having a volume equal to 60% of the volume of normal-weight aggregate) on the behaviour of layered steel fibrous self-compacting reinforced concrete slabs with various volume fractions of steel fiber under uniform area load using fine sand technique. The experimental work consists of two groups “NWA” and “LWA,” each group consists of three slab specimens (having an aspect ratio equal to the golden ratio, i.e., 1.618), the thickness of each slab is divided into two equal layers, the top layer is free from steel fibers, while the steel fibers exist only in the bottom layer with three volume fractions (0%, 0.4%, and 0.8%). Ultimate uniform load of the slabs decreases with the increase in steel fiber content, while the percentage of decrease in the bulk density remains rather constant. It was also found that the ultimate uniform load of the slabs in each group is significantly improved with increasing steel fiber content, and the percentage of this improvement is higher in lightweight concrete “LWC” than in normal-weight concrete “NWC” Finally, it was noticed that when steel fiber increased, the flexural strength of slabs increased higher than shear strength; therefore, the mode of failure has been changed from bending to shear mode for slabs of both groups “NWC” and “LWC.”
url http://dx.doi.org/10.1155/2020/3650363
work_keys_str_mv AT ahmedsdalridha assessmentoftheeffectofreplacingnormalaggregatebyporceliniteonthebehaviouroflayeredsteelfibrousselfcompactingreinforcedconcreteslabsunderuniformload
AT aliaabbood assessmentoftheeffectofreplacingnormalaggregatebyporceliniteonthebehaviouroflayeredsteelfibrousselfcompactingreinforcedconcreteslabsunderuniformload
AT alifatshan assessmentoftheeffectofreplacingnormalaggregatebyporceliniteonthebehaviouroflayeredsteelfibrousselfcompactingreinforcedconcreteslabsunderuniformload
_version_ 1715598431493292032