Shrinkage of high performance lightweight concrete exposed to hot-dry weather conditions

The main aim of this investigation is to study the combined effect of hot-dry weather conditions on the plastic and drying shrinkage of high performance lightweight aggregate concrete (HPLWAC) specimens, along with the other properties including, workability, setting time compressive and splitting s...

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Main Authors: Ahmed Hisham, Khalil Wasan, Jumaa Nada H.
Format: Article
Language:English
Published: EDP Sciences 2018-01-01
Series:MATEC Web of Conferences
Online Access:https://doi.org/10.1051/matecconf/201816202004
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spelling doaj-f69d0c6067134c50872b692d629d2fdd2021-02-02T04:13:02ZengEDP SciencesMATEC Web of Conferences2261-236X2018-01-011620200410.1051/matecconf/201816202004matecconf_bcee32018_02004Shrinkage of high performance lightweight concrete exposed to hot-dry weather conditionsAhmed HishamKhalil WasanJumaa Nada H.The main aim of this investigation is to study the combined effect of hot-dry weather conditions on the plastic and drying shrinkage of high performance lightweight aggregate concrete (HPLWAC) specimens, along with the other properties including, workability, setting time compressive and splitting strength. The experimental program including the use of fixed mix proportions and was carried out in a typical Iraqi summer day (under actual conditions) of different times during the day. The results indicate that the use of lightweight aggregate play a main role in decreasing the effect of hot dry weather on plastic shrinkage, as well as the plastic shrinkage strain of HPLWC specimens cast at 12:00 pm. less than that of normal weight aggregate concrete specimens by about 36.7%. While drying shrinkage of HPLWC specimens at initial ages up to 7 days was low and it increases with a higher rate at later ages.https://doi.org/10.1051/matecconf/201816202004
collection DOAJ
language English
format Article
sources DOAJ
author Ahmed Hisham
Khalil Wasan
Jumaa Nada H.
spellingShingle Ahmed Hisham
Khalil Wasan
Jumaa Nada H.
Shrinkage of high performance lightweight concrete exposed to hot-dry weather conditions
MATEC Web of Conferences
author_facet Ahmed Hisham
Khalil Wasan
Jumaa Nada H.
author_sort Ahmed Hisham
title Shrinkage of high performance lightweight concrete exposed to hot-dry weather conditions
title_short Shrinkage of high performance lightweight concrete exposed to hot-dry weather conditions
title_full Shrinkage of high performance lightweight concrete exposed to hot-dry weather conditions
title_fullStr Shrinkage of high performance lightweight concrete exposed to hot-dry weather conditions
title_full_unstemmed Shrinkage of high performance lightweight concrete exposed to hot-dry weather conditions
title_sort shrinkage of high performance lightweight concrete exposed to hot-dry weather conditions
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2018-01-01
description The main aim of this investigation is to study the combined effect of hot-dry weather conditions on the plastic and drying shrinkage of high performance lightweight aggregate concrete (HPLWAC) specimens, along with the other properties including, workability, setting time compressive and splitting strength. The experimental program including the use of fixed mix proportions and was carried out in a typical Iraqi summer day (under actual conditions) of different times during the day. The results indicate that the use of lightweight aggregate play a main role in decreasing the effect of hot dry weather on plastic shrinkage, as well as the plastic shrinkage strain of HPLWC specimens cast at 12:00 pm. less than that of normal weight aggregate concrete specimens by about 36.7%. While drying shrinkage of HPLWC specimens at initial ages up to 7 days was low and it increases with a higher rate at later ages.
url https://doi.org/10.1051/matecconf/201816202004
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AT khalilwasan shrinkageofhighperformancelightweightconcreteexposedtohotdryweatherconditions
AT jumaanadah shrinkageofhighperformancelightweightconcreteexposedtohotdryweatherconditions
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