Effect of sulfur aggregates on mechanical resistance and durability for SFRHPC with the addition of slag
The transformation of sulfides present in the aggregate to sulfates causes internal sulfate attack (ISA) by formation of secondary ettringite in the hardened concrete. This pathological ettringite crystallizes, the generated pressure is greater than the tensile strength of the concrete. It generate...
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2014-04-01
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doaj-57ef04b770374b75b2276608d30905df2021-02-02T01:01:48ZengEDP SciencesMATEC Web of Conferences2261-236X2014-04-01110300510.1051/matecconf/20141103005matecconf_cmss2013_03005Effect of sulfur aggregates on mechanical resistance and durability for SFRHPC with the addition of slagBoutiba Aldjia0Chaid Rabah1Moulez Laurent2Jauberthie Raoul3Dpt. Architecture, Faculté du Génie de la Construction, Université de Tizi OuzouUnité de recherche : Matériaux - Procédés et Environnement, Université de BoumerdèsLaboratoire de Génie Civil et Génie Mécanique (LGCGM), INSA-Rennes, Université Européenne de BretagneLaboratoire de Génie Civil et Génie Mécanique (LGCGM), INSA-Rennes, Université Européenne de Bretagne The transformation of sulfides present in the aggregate to sulfates causes internal sulfate attack (ISA) by formation of secondary ettringite in the hardened concrete. This pathological ettringite crystallizes, the generated pressure is greater than the tensile strength of the concrete. It generates internal swelling and causes disorders that can severely damage the structures. Favors to their structural and economic performance, high performance concrete steel fiber (SFRHPC) are increasingly used in construction. Increase productivity and reduce construction time on site. They provide substantial weight savings, therefore it is possible to build with less formwork, less concrete to set up and fewer reinforcement than ordinary concrete. The purpose of this study is to determine the effect of sulfur present in the hornfels crushed aggregates, on the mechanical strength, durability, and the microstructure of SFRHPC with the addition of blast furnace slag. In ordinary concrete, the pyrite aggregates cause cracking by expansion when they are in wet land. In high performance concretes this phenomenon is greatly reduced or absent. This is the result of a very low porosity, reduced flow of moisture that cannot propagate to aggregate. And sulfide is stable and cannot be transformed into aggressive sulfate. http://dx.doi.org/10.1051/matecconf/20141103005 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Boutiba Aldjia Chaid Rabah Moulez Laurent Jauberthie Raoul |
spellingShingle |
Boutiba Aldjia Chaid Rabah Moulez Laurent Jauberthie Raoul Effect of sulfur aggregates on mechanical resistance and durability for SFRHPC with the addition of slag MATEC Web of Conferences |
author_facet |
Boutiba Aldjia Chaid Rabah Moulez Laurent Jauberthie Raoul |
author_sort |
Boutiba Aldjia |
title |
Effect of sulfur aggregates on mechanical resistance and durability for SFRHPC with the addition of slag |
title_short |
Effect of sulfur aggregates on mechanical resistance and durability for SFRHPC with the addition of slag |
title_full |
Effect of sulfur aggregates on mechanical resistance and durability for SFRHPC with the addition of slag |
title_fullStr |
Effect of sulfur aggregates on mechanical resistance and durability for SFRHPC with the addition of slag |
title_full_unstemmed |
Effect of sulfur aggregates on mechanical resistance and durability for SFRHPC with the addition of slag |
title_sort |
effect of sulfur aggregates on mechanical resistance and durability for sfrhpc with the addition of slag |
publisher |
EDP Sciences |
series |
MATEC Web of Conferences |
issn |
2261-236X |
publishDate |
2014-04-01 |
description |
The transformation of sulfides present in the aggregate to sulfates causes internal sulfate attack (ISA) by formation of secondary ettringite in the hardened concrete. This pathological ettringite crystallizes, the generated pressure is greater than the tensile strength of the concrete. It generates internal swelling and causes disorders that can severely damage the structures. Favors to their structural and economic performance, high performance concrete steel fiber (SFRHPC) are increasingly used in construction. Increase productivity and reduce construction time on site. They provide substantial weight savings, therefore it is possible to build with less formwork, less concrete to set up and fewer reinforcement than ordinary concrete. The purpose of this study is to determine the effect of sulfur present in the hornfels crushed aggregates, on the mechanical strength, durability, and the microstructure of SFRHPC with the addition of blast furnace slag. In ordinary concrete, the pyrite aggregates cause cracking by expansion when they are in wet land. In high performance concretes this phenomenon is greatly reduced or absent. This is the result of a very low porosity, reduced flow of moisture that cannot propagate to aggregate. And sulfide is stable and cannot be transformed into aggressive sulfate.
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url |
http://dx.doi.org/10.1051/matecconf/20141103005 |
work_keys_str_mv |
AT boutibaaldjia effectofsulfuraggregatesonmechanicalresistanceanddurabilityforsfrhpcwiththeadditionofslag AT chaidrabah effectofsulfuraggregatesonmechanicalresistanceanddurabilityforsfrhpcwiththeadditionofslag AT moulezlaurent effectofsulfuraggregatesonmechanicalresistanceanddurabilityforsfrhpcwiththeadditionofslag AT jauberthieraoul effectofsulfuraggregatesonmechanicalresistanceanddurabilityforsfrhpcwiththeadditionofslag |
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