Microstructural aspects in steel fiber reinforced acrylic emulsion polymer modified concrete

Scanning electron microscope observations of polymer-free and polymer-modified cements have shown that the polymer particles are partitioned between the inside of hydrates and the surface of anhydrous cement grains. For optimum dosage of acrylic emulsion polymer with 2.5%, the C-S-H gel in this stru...

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Main Authors: Hazimmah Dayang, Ayob Afizah, Sie Yee Lau, Chee Cung Wong
Format: Article
Language:English
Published: EDP Sciences 2018-01-01
Series:E3S Web of Conferences
Online Access:https://doi.org/10.1051/e3sconf/20183401017
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spelling doaj-2985aaf930424c7b970b27609596909c2021-02-02T07:58:49ZengEDP SciencesE3S Web of Conferences2267-12422018-01-01340101710.1051/e3sconf/20183401017e3sconf_cenviron2018_01017Microstructural aspects in steel fiber reinforced acrylic emulsion polymer modified concreteHazimmah DayangAyob AfizahSie Yee LauChee Cung WongScanning electron microscope observations of polymer-free and polymer-modified cements have shown that the polymer particles are partitioned between the inside of hydrates and the surface of anhydrous cement grains. For optimum dosage of acrylic emulsion polymer with 2.5%, the C-S-H gel in this structure is finer and more acicular. Some polymer adheres or deposit on the surface of the C-S-H gel. The presence of acrylic emulsion polymer confines the ionic diffusion so that the Ca(OH)2 crystallized locally to form fine crystals. The void in the structures seems to be smaller but no polymer films appears to be bridging the walls of pores although many polymer bonds or C-S-H spread into the pore spaces. In addition to porosity reduction, acrylic emulsion polymer modified the hydration products in the steel fiber –matrix ITZ. The hydration product C-S-H appeared as a needle like shape. The needle-shaped C-S-H increases and gradually formed the gel, with needles growing into the pore space. The phenomenon is more obvious as curing age increased.https://doi.org/10.1051/e3sconf/20183401017
collection DOAJ
language English
format Article
sources DOAJ
author Hazimmah Dayang
Ayob Afizah
Sie Yee Lau
Chee Cung Wong
spellingShingle Hazimmah Dayang
Ayob Afizah
Sie Yee Lau
Chee Cung Wong
Microstructural aspects in steel fiber reinforced acrylic emulsion polymer modified concrete
E3S Web of Conferences
author_facet Hazimmah Dayang
Ayob Afizah
Sie Yee Lau
Chee Cung Wong
author_sort Hazimmah Dayang
title Microstructural aspects in steel fiber reinforced acrylic emulsion polymer modified concrete
title_short Microstructural aspects in steel fiber reinforced acrylic emulsion polymer modified concrete
title_full Microstructural aspects in steel fiber reinforced acrylic emulsion polymer modified concrete
title_fullStr Microstructural aspects in steel fiber reinforced acrylic emulsion polymer modified concrete
title_full_unstemmed Microstructural aspects in steel fiber reinforced acrylic emulsion polymer modified concrete
title_sort microstructural aspects in steel fiber reinforced acrylic emulsion polymer modified concrete
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2018-01-01
description Scanning electron microscope observations of polymer-free and polymer-modified cements have shown that the polymer particles are partitioned between the inside of hydrates and the surface of anhydrous cement grains. For optimum dosage of acrylic emulsion polymer with 2.5%, the C-S-H gel in this structure is finer and more acicular. Some polymer adheres or deposit on the surface of the C-S-H gel. The presence of acrylic emulsion polymer confines the ionic diffusion so that the Ca(OH)2 crystallized locally to form fine crystals. The void in the structures seems to be smaller but no polymer films appears to be bridging the walls of pores although many polymer bonds or C-S-H spread into the pore spaces. In addition to porosity reduction, acrylic emulsion polymer modified the hydration products in the steel fiber –matrix ITZ. The hydration product C-S-H appeared as a needle like shape. The needle-shaped C-S-H increases and gradually formed the gel, with needles growing into the pore space. The phenomenon is more obvious as curing age increased.
url https://doi.org/10.1051/e3sconf/20183401017
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AT ayobafizah microstructuralaspectsinsteelfiberreinforcedacrylicemulsionpolymermodifiedconcrete
AT sieyeelau microstructuralaspectsinsteelfiberreinforcedacrylicemulsionpolymermodifiedconcrete
AT cheecungwong microstructuralaspectsinsteelfiberreinforcedacrylicemulsionpolymermodifiedconcrete
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