Development Of Supersulfated Self-Consolidating Concrete Incorporating High-Volume Of Industrial By-Products

An industrial by-product is one of the attractive alternatives to cement materials that can reduce the consumption of natural resources as well as encouraging recycling activity. One of the high-volume utilisations is by using it in supersulfated binder system. However, current limited knowledge fra...

Full description

Saved in:
Bibliographic Details
Main Author: Jasme, Nurshafarina
Format: Thesis
Language:English
Published: 2020
Subjects:
Online Access:http://eprints.usm.my/54993/1/NURSHAFARINA%20BINTI%20JASME%20-%20TESIS%20cut.pdf
Tags: Add Tag
No Tags, Be the first to tag this record!
id my-usm-ep.54993
record_format uketd_dc
spelling my-usm-ep.549932022-09-29T04:09:48Z Development Of Supersulfated Self-Consolidating Concrete Incorporating High-Volume Of Industrial By-Products 2020-07 Jasme, Nurshafarina TH1-9745 Building construction An industrial by-product is one of the attractive alternatives to cement materials that can reduce the consumption of natural resources as well as encouraging recycling activity. One of the high-volume utilisations is by using it in supersulfated binder system. However, current limited knowledge framework established about the properties of supersulfated binder need to be addressed. Thus, this research was aims to evaluate the properties of supersulfated self-consolidating concrete (SCC) containing combination of high-volume industrial by-products namely ground granulated blast furnace slag (GGBS), fly ash with small portion of gypsum and cement. Apart from that, the granite quarry waste (GQW) was used as fine aggregate, and electric arc furnace (EAF) slag and granite stone were used as the coarse aggregates in the development of SCC. The binder composition consists of 80% GGBS and 20% fly ash was recorded as optimum percentage to be used as primary binder phase in supersulfated binder. The combination was activated with the addition of 0-10% blended OPC-gypsum. The supersulfated SCC was cured under moist curing condition and tested up to 270 curing ages. The examination of fresh, engineering, drying shrinkage, durability and microstructure properties was later conducted to develop a comprehensive knowledge framework on the properties of the supersulfated SCC. All supersulfated SCC only required water to binder (w/b) ratio of 0.27-0.33 with a fixed 0.6% of the polycarboxylate superplasticiser (SP) to achieve the desired SCC fresh properties requirement. 2020-07 Thesis http://eprints.usm.my/54993/ http://eprints.usm.my/54993/1/NURSHAFARINA%20BINTI%20JASME%20-%20TESIS%20cut.pdf application/pdf en public phd doctoral Universiti Sains Malaysia Pusat Pengajian Perumahan, Banggunan & Perancangan
institution Universiti Sains Malaysia
collection USM Institutional Repository
language English
topic TH1-9745 Building construction
spellingShingle TH1-9745 Building construction
Jasme, Nurshafarina
Development Of Supersulfated Self-Consolidating Concrete Incorporating High-Volume Of Industrial By-Products
description An industrial by-product is one of the attractive alternatives to cement materials that can reduce the consumption of natural resources as well as encouraging recycling activity. One of the high-volume utilisations is by using it in supersulfated binder system. However, current limited knowledge framework established about the properties of supersulfated binder need to be addressed. Thus, this research was aims to evaluate the properties of supersulfated self-consolidating concrete (SCC) containing combination of high-volume industrial by-products namely ground granulated blast furnace slag (GGBS), fly ash with small portion of gypsum and cement. Apart from that, the granite quarry waste (GQW) was used as fine aggregate, and electric arc furnace (EAF) slag and granite stone were used as the coarse aggregates in the development of SCC. The binder composition consists of 80% GGBS and 20% fly ash was recorded as optimum percentage to be used as primary binder phase in supersulfated binder. The combination was activated with the addition of 0-10% blended OPC-gypsum. The supersulfated SCC was cured under moist curing condition and tested up to 270 curing ages. The examination of fresh, engineering, drying shrinkage, durability and microstructure properties was later conducted to develop a comprehensive knowledge framework on the properties of the supersulfated SCC. All supersulfated SCC only required water to binder (w/b) ratio of 0.27-0.33 with a fixed 0.6% of the polycarboxylate superplasticiser (SP) to achieve the desired SCC fresh properties requirement.
format Thesis
qualification_name Doctor of Philosophy (PhD.)
qualification_level Doctorate
author Jasme, Nurshafarina
author_facet Jasme, Nurshafarina
author_sort Jasme, Nurshafarina
title Development Of Supersulfated Self-Consolidating Concrete Incorporating High-Volume Of Industrial By-Products
title_short Development Of Supersulfated Self-Consolidating Concrete Incorporating High-Volume Of Industrial By-Products
title_full Development Of Supersulfated Self-Consolidating Concrete Incorporating High-Volume Of Industrial By-Products
title_fullStr Development Of Supersulfated Self-Consolidating Concrete Incorporating High-Volume Of Industrial By-Products
title_full_unstemmed Development Of Supersulfated Self-Consolidating Concrete Incorporating High-Volume Of Industrial By-Products
title_sort development of supersulfated self-consolidating concrete incorporating high-volume of industrial by-products
granting_institution Universiti Sains Malaysia
granting_department Pusat Pengajian Perumahan, Banggunan & Perancangan
publishDate 2020
url http://eprints.usm.my/54993/1/NURSHAFARINA%20BINTI%20JASME%20-%20TESIS%20cut.pdf
_version_ 1747822302482923520