A study on the effects of cold-joints on reinforced fly ash concrete mixed with seawater under varying curing conditions

The basis of the research was to simulate the corrosion behavior of reinforced concrete in structures using rectangular reinforced concrete specimen with reference to fly ash ratios and curing techniques since buildings experience varying conditions. The materials used include: ordinary portland cem...

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Main Authors: Adre, Francis Louise B., Angeles, Kirstie Mae B., Monedero, Raymond Ariel C., Usal, Janelle Mae G.
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Language:English
Published: Animo Repository 2016
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Online Access:https://animorepository.dlsu.edu.ph/etd_bachelors/9916
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Institution: De La Salle University
Language: English
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spelling oai:animorepository.dlsu.edu.ph:etd_bachelors-105612021-08-20T06:30:24Z A study on the effects of cold-joints on reinforced fly ash concrete mixed with seawater under varying curing conditions Adre, Francis Louise B. Angeles, Kirstie Mae B. Monedero, Raymond Ariel C. Usal, Janelle Mae G. The basis of the research was to simulate the corrosion behavior of reinforced concrete in structures using rectangular reinforced concrete specimen with reference to fly ash ratios and curing techniques since buildings experience varying conditions. The materials used include: ordinary portland cement, fly ash, freshwater, seawater, reinforcing bars, fine and coarse aggregates and concrete specimen molds. Cylindrical specimens with no reinforcing bars were first casted for compressive testing and were tested at 7th and 28th day. Rectangular prism specimens with reinforcing steel and cold-joints were then casted and cured using seawater and freshwater water immersion and coastal environment exposure. These were then tested for corrosion using sero-resistance ammeter for a period of 8 weeks. From the results, good corrosion resistance was exhibited in specimens with fly ash replacement ratios of 20%, 30%, and 50% as opposed to using pure cement as a binder. Results also showed a higher corrosion rate for a design of 0% fly ash, mixed with seawater and cured in freshwater compared to other mix designs due to the enclosed chloride contents. Results of this study may be used as future reference on corrosion rate which the findings may be useful in determining the appropriate mix design for structures that require corrosion resistance in different environmental conditions. 2016-01-01T08:00:00Z text https://animorepository.dlsu.edu.ph/etd_bachelors/9916 Bachelor's Theses English Animo Repository Reinforced concrete--Corrosion
institution De La Salle University
building De La Salle University Library
continent Asia
country Philippines
Philippines
content_provider De La Salle University Library
collection DLSU Institutional Repository
language English
topic Reinforced concrete--Corrosion
spellingShingle Reinforced concrete--Corrosion
Adre, Francis Louise B.
Angeles, Kirstie Mae B.
Monedero, Raymond Ariel C.
Usal, Janelle Mae G.
A study on the effects of cold-joints on reinforced fly ash concrete mixed with seawater under varying curing conditions
description The basis of the research was to simulate the corrosion behavior of reinforced concrete in structures using rectangular reinforced concrete specimen with reference to fly ash ratios and curing techniques since buildings experience varying conditions. The materials used include: ordinary portland cement, fly ash, freshwater, seawater, reinforcing bars, fine and coarse aggregates and concrete specimen molds. Cylindrical specimens with no reinforcing bars were first casted for compressive testing and were tested at 7th and 28th day. Rectangular prism specimens with reinforcing steel and cold-joints were then casted and cured using seawater and freshwater water immersion and coastal environment exposure. These were then tested for corrosion using sero-resistance ammeter for a period of 8 weeks. From the results, good corrosion resistance was exhibited in specimens with fly ash replacement ratios of 20%, 30%, and 50% as opposed to using pure cement as a binder. Results also showed a higher corrosion rate for a design of 0% fly ash, mixed with seawater and cured in freshwater compared to other mix designs due to the enclosed chloride contents. Results of this study may be used as future reference on corrosion rate which the findings may be useful in determining the appropriate mix design for structures that require corrosion resistance in different environmental conditions.
format text
author Adre, Francis Louise B.
Angeles, Kirstie Mae B.
Monedero, Raymond Ariel C.
Usal, Janelle Mae G.
author_facet Adre, Francis Louise B.
Angeles, Kirstie Mae B.
Monedero, Raymond Ariel C.
Usal, Janelle Mae G.
author_sort Adre, Francis Louise B.
title A study on the effects of cold-joints on reinforced fly ash concrete mixed with seawater under varying curing conditions
title_short A study on the effects of cold-joints on reinforced fly ash concrete mixed with seawater under varying curing conditions
title_full A study on the effects of cold-joints on reinforced fly ash concrete mixed with seawater under varying curing conditions
title_fullStr A study on the effects of cold-joints on reinforced fly ash concrete mixed with seawater under varying curing conditions
title_full_unstemmed A study on the effects of cold-joints on reinforced fly ash concrete mixed with seawater under varying curing conditions
title_sort study on the effects of cold-joints on reinforced fly ash concrete mixed with seawater under varying curing conditions
publisher Animo Repository
publishDate 2016
url https://animorepository.dlsu.edu.ph/etd_bachelors/9916
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