Pore Structure and Pore Solution in Alkali Activated Fly Ash Geopolymer Concrete and Its Effect on ASR of Aggregates with Wide Silicate Contents
Alkali silica reaction (ASR) is detrimental to concrete. It is a time-dependent phenomenon, which can lead to strength loss, cracking, volume expansion, and premature failure of concrete structures. In essence, it is a particular chemical reaction involving alkali hydroxides and reactive form of sil...
Main Author: | |
---|---|
Format: | Others |
Published: |
North Dakota State University
2021
|
Subjects: | |
Online Access: | https://hdl.handle.net/10365/31687 |
id |
ndltd-ndsu.edu-oai-library.ndsu.edu-10365-31687 |
---|---|
record_format |
oai_dc |
spelling |
ndltd-ndsu.edu-oai-library.ndsu.edu-10365-316872021-09-28T17:11:31Z Pore Structure and Pore Solution in Alkali Activated Fly Ash Geopolymer Concrete and Its Effect on ASR of Aggregates with Wide Silicate Contents Paudel, Shree Raj concrete expansion fly ash geopolymer microstructure porosity Alkali silica reaction (ASR) is detrimental to concrete. It is a time-dependent phenomenon, which can lead to strength loss, cracking, volume expansion, and premature failure of concrete structures. In essence, it is a particular chemical reaction involving alkali hydroxides and reactive form of silica present within the concrete mix. Geopolymer is a type of alkaline activated binder synthesized through polycondensation reaction of geopolymeric precursor and alkali polysilicates. In this thesis, three types of reactive aggregates with different chemical compositions were used. Systematic laboratory experiments and microstructural analysis were carried out for the geopolymer concrete and the OPC concrete made with the same aggregates. The result suggests that the extent of ASR reaction due to the presence of three reactive aggregates in geopolymer concrete is substantially lower than that in OPC based concrete, which is explained by the pore solution change and verified through their microstructural variations and FTIR images. 2021-01-08T22:12:59Z 2021-01-08T22:12:59Z 2019 text/thesis https://hdl.handle.net/10365/31687 NDSU policy 190.6.2 https://www.ndsu.edu/fileadmin/policy/190.pdf application/pdf North Dakota State University |
collection |
NDLTD |
format |
Others
|
sources |
NDLTD |
topic |
concrete expansion fly ash geopolymer microstructure porosity |
spellingShingle |
concrete expansion fly ash geopolymer microstructure porosity Paudel, Shree Raj Pore Structure and Pore Solution in Alkali Activated Fly Ash Geopolymer Concrete and Its Effect on ASR of Aggregates with Wide Silicate Contents |
description |
Alkali silica reaction (ASR) is detrimental to concrete. It is a time-dependent phenomenon, which can lead to strength loss, cracking, volume expansion, and premature failure of concrete structures. In essence, it is a particular chemical reaction involving alkali hydroxides and reactive form of silica present within the concrete mix. Geopolymer is a type of alkaline activated binder synthesized through polycondensation reaction of geopolymeric precursor and alkali polysilicates. In this thesis, three types of reactive aggregates with different chemical compositions were used. Systematic laboratory experiments and microstructural analysis were carried out for the geopolymer concrete and the OPC concrete made with the same aggregates. The result suggests that the extent of ASR reaction due to the presence of three reactive aggregates in geopolymer concrete is substantially lower than that in OPC based concrete, which is explained by the pore solution change and verified through their microstructural variations and FTIR images. |
author |
Paudel, Shree Raj |
author_facet |
Paudel, Shree Raj |
author_sort |
Paudel, Shree Raj |
title |
Pore Structure and Pore Solution in Alkali Activated Fly Ash Geopolymer Concrete and Its Effect on ASR of Aggregates with Wide Silicate Contents |
title_short |
Pore Structure and Pore Solution in Alkali Activated Fly Ash Geopolymer Concrete and Its Effect on ASR of Aggregates with Wide Silicate Contents |
title_full |
Pore Structure and Pore Solution in Alkali Activated Fly Ash Geopolymer Concrete and Its Effect on ASR of Aggregates with Wide Silicate Contents |
title_fullStr |
Pore Structure and Pore Solution in Alkali Activated Fly Ash Geopolymer Concrete and Its Effect on ASR of Aggregates with Wide Silicate Contents |
title_full_unstemmed |
Pore Structure and Pore Solution in Alkali Activated Fly Ash Geopolymer Concrete and Its Effect on ASR of Aggregates with Wide Silicate Contents |
title_sort |
pore structure and pore solution in alkali activated fly ash geopolymer concrete and its effect on asr of aggregates with wide silicate contents |
publisher |
North Dakota State University |
publishDate |
2021 |
url |
https://hdl.handle.net/10365/31687 |
work_keys_str_mv |
AT paudelshreeraj porestructureandporesolutioninalkaliactivatedflyashgeopolymerconcreteanditseffectonasrofaggregateswithwidesilicatecontents |
_version_ |
1719485779664699392 |