Effect of corrosion on flexural bond strength
<p class="PaperAbstract">Corrosion is one of the main causes affecting durability of structures. Corrosion effects on structures cannot be ignored and replaced. To understand the performance of structures there is a need to study the rate at which different corrosion levels occur. He...
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International Association of Physical Chemists (IAPC)
2014-09-01
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doaj-f2f7a44b13b7437885a8d1131d06d7262020-11-24T21:46:02ZengInternational Association of Physical Chemists (IAPC)Journal of Electrochemical Science and Engineering1847-92862014-09-014312313410.5599/jese.2014.005261Effect of corrosion on flexural bond strengthAkshatha Shetty0Katta Venkataramana1K. S Babu Narayan2Department of Civil Engineering, NITK Surathkal-575025Department of Civil Engineering, NITK Surathkal-575025Department of Civil Engineering, NITK Surathkal-575025<p class="PaperAbstract">Corrosion is one of the main causes affecting durability of structures. Corrosion effects on structures cannot be ignored and replaced. To understand the performance of structures there is a need to study the rate at which different corrosion levels occur. Hence the present investigation has been taken up to study the behaviour of NBS (National Bureau of Standard) beam specimens made up of Ordinary Portland Cement (OPC) and Portland Pozzolona Cement (PPC) concrete matrix were subjected to accelerated corrosion for different corrosion levels of 2.5 % to 10 % at 2.5 % interval. Results are compared with those for control beam specimen. It is observed that bond stress value decreases with the increase in corrosion levels. Also corrosion leads to the decline of load carrying capacity.</p>http://www.pub.iapchem.org/ojs/index.php/JESE/article/view/89OPC concretePPC concreteCorrosion levelNBS beamStrainCorrosion current density |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Akshatha Shetty Katta Venkataramana K. S Babu Narayan |
spellingShingle |
Akshatha Shetty Katta Venkataramana K. S Babu Narayan Effect of corrosion on flexural bond strength Journal of Electrochemical Science and Engineering OPC concrete PPC concrete Corrosion level NBS beam Strain Corrosion current density |
author_facet |
Akshatha Shetty Katta Venkataramana K. S Babu Narayan |
author_sort |
Akshatha Shetty |
title |
Effect of corrosion on flexural bond strength |
title_short |
Effect of corrosion on flexural bond strength |
title_full |
Effect of corrosion on flexural bond strength |
title_fullStr |
Effect of corrosion on flexural bond strength |
title_full_unstemmed |
Effect of corrosion on flexural bond strength |
title_sort |
effect of corrosion on flexural bond strength |
publisher |
International Association of Physical Chemists (IAPC) |
series |
Journal of Electrochemical Science and Engineering |
issn |
1847-9286 |
publishDate |
2014-09-01 |
description |
<p class="PaperAbstract">Corrosion is one of the main causes affecting durability of structures. Corrosion effects on structures cannot be ignored and replaced. To understand the performance of structures there is a need to study the rate at which different corrosion levels occur. Hence the present investigation has been taken up to study the behaviour of NBS (National Bureau of Standard) beam specimens made up of Ordinary Portland Cement (OPC) and Portland Pozzolona Cement (PPC) concrete matrix were subjected to accelerated corrosion for different corrosion levels of 2.5 % to 10 % at 2.5 % interval. Results are compared with those for control beam specimen. It is observed that bond stress value decreases with the increase in corrosion levels. Also corrosion leads to the decline of load carrying capacity.</p> |
topic |
OPC concrete PPC concrete Corrosion level NBS beam Strain Corrosion current density |
url |
http://www.pub.iapchem.org/ojs/index.php/JESE/article/view/89 |
work_keys_str_mv |
AT akshathashetty effectofcorrosiononflexuralbondstrength AT kattavenkataramana effectofcorrosiononflexuralbondstrength AT ksbabunarayan effectofcorrosiononflexuralbondstrength |
_version_ |
1725902468806606848 |