Global assessment of concrete specimens subjected to freeze-thaw damage

Freeze-thaw damage is one of the main deleterious processes of concrete in cold climates. This study intends to detect the ongoing freeze-thaw (FT) deterioration in concrete specimens through the use of the global assessment combining the results of the mechanical and microscopic evaluation, pressur...

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Published inCement & concrete composites Vol. 133; p. 104716
Main Authors Zahedi, Andisheh, Komar, Andrew, Sanchez, Leandro F.M., Boyd, Andrew J.
Format Journal Article
LanguageEnglish
Published Elsevier Ltd 01.10.2022
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Abstract Freeze-thaw damage is one of the main deleterious processes of concrete in cold climates. This study intends to detect the ongoing freeze-thaw (FT) deterioration in concrete specimens through the use of the global assessment combining the results of the mechanical and microscopic evaluation, pressure tension (PT) and compressive strength test as well as the Damage Rating Index (DRI), respectively. Concrete specimens displaying two w/c ratios (i.e., 0.65 and 0.45) were cast and subjected to FT cycles (i.e., 1, 5, 10, 20 and 30) and later the mechanical and microscopic assessments were conducted. Results show that PT and DRI are effective and reliable techniques to evaluate the condition of FT-affected concrete displaying various microstructures, since the PT test captures the damage at a very early stage of FT deterioration and DRI could identify important distress features at various stages of FT-affected concrete. Ultimately, the diagnostic nature of the PT test has been validated through the use of DRI.
AbstractList Freeze-thaw damage is one of the main deleterious processes of concrete in cold climates. This study intends to detect the ongoing freeze-thaw (FT) deterioration in concrete specimens through the use of the global assessment combining the results of the mechanical and microscopic evaluation, pressure tension (PT) and compressive strength test as well as the Damage Rating Index (DRI), respectively. Concrete specimens displaying two w/c ratios (i.e., 0.65 and 0.45) were cast and subjected to FT cycles (i.e., 1, 5, 10, 20 and 30) and later the mechanical and microscopic assessments were conducted. Results show that PT and DRI are effective and reliable techniques to evaluate the condition of FT-affected concrete displaying various microstructures, since the PT test captures the damage at a very early stage of FT deterioration and DRI could identify important distress features at various stages of FT-affected concrete. Ultimately, the diagnostic nature of the PT test has been validated through the use of DRI.
ArticleNumber 104716
Author Komar, Andrew
Boyd, Andrew J.
Sanchez, Leandro F.M.
Zahedi, Andisheh
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  surname: Zahedi
  fullname: Zahedi, Andisheh
  email: azahe049@uottawa.ca, azahedir@uottawa.ca
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  givenname: Leandro F.M.
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  givenname: Andrew J.
  surname: Boyd
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  email: andrew.boyd@mcgill.ca
  organization: Department of Civil Engineering and Applied Mechanics, McGill University, Montréal, QC H3A 2K6, Canada
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Keywords FT cycles
Pressure tension (PT)
w/c ratio
Damage rating index (DRI)
Freeze-thaw
Global assessment
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Snippet Freeze-thaw damage is one of the main deleterious processes of concrete in cold climates. This study intends to detect the ongoing freeze-thaw (FT)...
SourceID crossref
elsevier
SourceType Aggregation Database
Publisher
StartPage 104716
SubjectTerms Damage rating index (DRI)
Freeze-thaw
FT cycles
Global assessment
Pressure tension (PT)
w/c ratio
Title Global assessment of concrete specimens subjected to freeze-thaw damage
URI https://dx.doi.org/10.1016/j.cemconcomp.2022.104716
Volume 133
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