Investigating the Physical Characteristics of Non-Structural Lightweight Aggregate Blocks of Built with Region Materials

Given the importance of light construction in terms of better performance of structure, in case of earthquake, reduction of life and financial casualties, as well as shortage of studies in this field, the present research studied building non-structural lightweight blocks using lightweight aggregate...

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Main Authors: Marziye Sadat Moayeri, Hamid Reza Ashrafi, Peyman Beiranvand
Format: Article
Language:English
Published: MDPI AG 2016-12-01
Series:Buildings
Subjects:
Online Access:http://www.mdpi.com/2075-5309/7/1/2
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spelling doaj-f000795872a9485b82c78fd7597378f82020-11-25T01:57:40ZengMDPI AGBuildings2075-53092016-12-0171210.3390/buildings7010002buildings7010002Investigating the Physical Characteristics of Non-Structural Lightweight Aggregate Blocks of Built with Region MaterialsMarziye Sadat Moayeri0Hamid Reza Ashrafi1Peyman Beiranvand2Civil Engineering Faculty, Borujerd Branch, Islamic Azad University, Borujerd 6915136111, IranCivil Engineering Faculty, Razi University of Kermanshah, Kermanshah 6714967346, IranCivil Engineering Faculty, Razi University of Kermanshah, Kermanshah 6714967346, IranGiven the importance of light construction in terms of better performance of structure, in case of earthquake, reduction of life and financial casualties, as well as shortage of studies in this field, the present research studied building non-structural lightweight blocks using lightweight aggregates of Scoria, Pumice and Leca. On the other hand, density, compressive strength, and water absorption volume of these blocks have been investigated in this research in order to replace traditional materials with them. The experiments’ results show that, due to hardness and strong texture, high mechanical resistance of their lightweight aggregate Scoria blocks have higher compressive strength and density but lower water absorption volume compared to Pumice and Leca lightweight aggregate blocks. Despite desirable compressive strength and lower density compared to the other two blocks, pumice blocks have higher water absorption volume, and they do not meet standards. This makes them less interesting. Among these Leca blocks with density of 1151.94 (kg/m3) below 2000 kg/m3 of Iran density standard of 7782 (28-day compressive strength of 2.57 MPa), higher than 2.5 MPa of Iran compressive strength standard of 7782 (and water absorption volume of 282.92 kg/m3) and below 288 kg/m3 of Iran water absorption volume standard of 7782 (as a non-load-bearing lightweight block), has been recognized desirable.http://www.mdpi.com/2075-5309/7/1/2non-load-bearing lightweight blockslightweight aggregatesdensitycompressive strengthwater absorption volume
collection DOAJ
language English
format Article
sources DOAJ
author Marziye Sadat Moayeri
Hamid Reza Ashrafi
Peyman Beiranvand
spellingShingle Marziye Sadat Moayeri
Hamid Reza Ashrafi
Peyman Beiranvand
Investigating the Physical Characteristics of Non-Structural Lightweight Aggregate Blocks of Built with Region Materials
Buildings
non-load-bearing lightweight blocks
lightweight aggregates
density
compressive strength
water absorption volume
author_facet Marziye Sadat Moayeri
Hamid Reza Ashrafi
Peyman Beiranvand
author_sort Marziye Sadat Moayeri
title Investigating the Physical Characteristics of Non-Structural Lightweight Aggregate Blocks of Built with Region Materials
title_short Investigating the Physical Characteristics of Non-Structural Lightweight Aggregate Blocks of Built with Region Materials
title_full Investigating the Physical Characteristics of Non-Structural Lightweight Aggregate Blocks of Built with Region Materials
title_fullStr Investigating the Physical Characteristics of Non-Structural Lightweight Aggregate Blocks of Built with Region Materials
title_full_unstemmed Investigating the Physical Characteristics of Non-Structural Lightweight Aggregate Blocks of Built with Region Materials
title_sort investigating the physical characteristics of non-structural lightweight aggregate blocks of built with region materials
publisher MDPI AG
series Buildings
issn 2075-5309
publishDate 2016-12-01
description Given the importance of light construction in terms of better performance of structure, in case of earthquake, reduction of life and financial casualties, as well as shortage of studies in this field, the present research studied building non-structural lightweight blocks using lightweight aggregates of Scoria, Pumice and Leca. On the other hand, density, compressive strength, and water absorption volume of these blocks have been investigated in this research in order to replace traditional materials with them. The experiments’ results show that, due to hardness and strong texture, high mechanical resistance of their lightweight aggregate Scoria blocks have higher compressive strength and density but lower water absorption volume compared to Pumice and Leca lightweight aggregate blocks. Despite desirable compressive strength and lower density compared to the other two blocks, pumice blocks have higher water absorption volume, and they do not meet standards. This makes them less interesting. Among these Leca blocks with density of 1151.94 (kg/m3) below 2000 kg/m3 of Iran density standard of 7782 (28-day compressive strength of 2.57 MPa), higher than 2.5 MPa of Iran compressive strength standard of 7782 (and water absorption volume of 282.92 kg/m3) and below 288 kg/m3 of Iran water absorption volume standard of 7782 (as a non-load-bearing lightweight block), has been recognized desirable.
topic non-load-bearing lightweight blocks
lightweight aggregates
density
compressive strength
water absorption volume
url http://www.mdpi.com/2075-5309/7/1/2
work_keys_str_mv AT marziyesadatmoayeri investigatingthephysicalcharacteristicsofnonstructurallightweightaggregateblocksofbuiltwithregionmaterials
AT hamidrezaashrafi investigatingthephysicalcharacteristicsofnonstructurallightweightaggregateblocksofbuiltwithregionmaterials
AT peymanbeiranvand investigatingthephysicalcharacteristicsofnonstructurallightweightaggregateblocksofbuiltwithregionmaterials
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