Properties and durability of metakaolin blended cements: mortar and concrete

This article explores the effect of metakaolin, a pozzolan, on concrete performance. Compressive and splitting tensile strength were found for specimens cured for up to 360 and 90 days, respectively. Changes were recorded in the compressive strength of specimens exposed to salt (chloride and sulfate...

Full description

Bibliographic Details
Main Authors: Rafik Abbas, Salah A. Abo-El-Enein, El-Sayed Ezzat
Format: Article
Language:English
Published: Consejo Superior de Investigaciones Científicas 2010-12-01
Series:Materiales de Construccion
Subjects:
Online Access:http://materconstrucc.revistas.csic.es/index.php/materconstrucc/article/view/606
id doaj-7ff64caa1f29444883a0cb61d887b0b3
record_format Article
spelling doaj-7ff64caa1f29444883a0cb61d887b0b32021-05-05T07:36:29ZengConsejo Superior de Investigaciones CientíficasMateriales de Construccion0465-27461988-32262010-12-0160300334910.3989/mc.2010.50609587Properties and durability of metakaolin blended cements: mortar and concreteRafik Abbas0Salah A. Abo-El-Enein1El-Sayed Ezzat2Alexandria UniversityEin Shams UniversitySuez Cement CompanyThis article explores the effect of metakaolin, a pozzolan, on concrete performance. Compressive and splitting tensile strength were found for specimens cured for up to 360 and 90 days, respectively. Changes were recorded in the compressive strength of specimens exposed to salt (chloride and sulfatechloride solutions), and chloride penetration and binding capacity were measured. The findings were compared to the results for concrete prepared with ordinary Portland (OPC) and moderate heat of hydration (Type II) cement. MK was found to have a very positive effect on 28-day concrete strength, due to microstructure improvement of the hydrated cement. Replacing cement with metakaolin effectively raised concrete resistance to chloride attack. Concrete containing metakaolin proved to be substantially more durable in sulfate-chloride environment.http://materconstrucc.revistas.csic.es/index.php/materconstrucc/article/view/606blended cementmetakaolinsulfate-chloride attackchloride penetration
collection DOAJ
language English
format Article
sources DOAJ
author Rafik Abbas
Salah A. Abo-El-Enein
El-Sayed Ezzat
spellingShingle Rafik Abbas
Salah A. Abo-El-Enein
El-Sayed Ezzat
Properties and durability of metakaolin blended cements: mortar and concrete
Materiales de Construccion
blended cement
metakaolin
sulfate-chloride attack
chloride penetration
author_facet Rafik Abbas
Salah A. Abo-El-Enein
El-Sayed Ezzat
author_sort Rafik Abbas
title Properties and durability of metakaolin blended cements: mortar and concrete
title_short Properties and durability of metakaolin blended cements: mortar and concrete
title_full Properties and durability of metakaolin blended cements: mortar and concrete
title_fullStr Properties and durability of metakaolin blended cements: mortar and concrete
title_full_unstemmed Properties and durability of metakaolin blended cements: mortar and concrete
title_sort properties and durability of metakaolin blended cements: mortar and concrete
publisher Consejo Superior de Investigaciones Científicas
series Materiales de Construccion
issn 0465-2746
1988-3226
publishDate 2010-12-01
description This article explores the effect of metakaolin, a pozzolan, on concrete performance. Compressive and splitting tensile strength were found for specimens cured for up to 360 and 90 days, respectively. Changes were recorded in the compressive strength of specimens exposed to salt (chloride and sulfatechloride solutions), and chloride penetration and binding capacity were measured. The findings were compared to the results for concrete prepared with ordinary Portland (OPC) and moderate heat of hydration (Type II) cement. MK was found to have a very positive effect on 28-day concrete strength, due to microstructure improvement of the hydrated cement. Replacing cement with metakaolin effectively raised concrete resistance to chloride attack. Concrete containing metakaolin proved to be substantially more durable in sulfate-chloride environment.
topic blended cement
metakaolin
sulfate-chloride attack
chloride penetration
url http://materconstrucc.revistas.csic.es/index.php/materconstrucc/article/view/606
work_keys_str_mv AT rafikabbas propertiesanddurabilityofmetakaolinblendedcementsmortarandconcrete
AT salahaaboelenein propertiesanddurabilityofmetakaolinblendedcementsmortarandconcrete
AT elsayedezzat propertiesanddurabilityofmetakaolinblendedcementsmortarandconcrete
_version_ 1721468519870103552