Effects of nano-modified polymer cement-based materials on the bending behavior of repaired concrete beams

As the use time of concrete structures increases, defects such as concrete cracks, corrosion and exposure of steel bars gradually appear, resulting in additional repair of concrete structures to increase their durability and life. In this article, the effects of nano-modified polymer cement-based ma...

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Main Authors: Meng Tao, Lian Songsong, Yang Xiufen, Meng Ruitan
Format: Article
Language:English
Published: De Gruyter 2021-05-01
Series:Nanotechnology Reviews
Subjects:
Online Access:https://doi.org/10.1515/ntrev-2021-0024
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author Meng Tao
Lian Songsong
Yang Xiufen
Meng Ruitan
author_facet Meng Tao
Lian Songsong
Yang Xiufen
Meng Ruitan
author_sort Meng Tao
collection DOAJ
description As the use time of concrete structures increases, defects such as concrete cracks, corrosion and exposure of steel bars gradually appear, resulting in additional repair of concrete structures to increase their durability and life. In this article, the effects of nano-modified polymer cement-based materials as repair material on the bending behavior of repaired concrete beams were studied. Based on the moment, deflection, strain, surface quality and cracking development monitor of repaired concrete beams, the bending behavior of repaired beams with polymer, nano-modified polymer and fibers was compared and the failure mechanism of the beams was analyzed. The results showed that the nano-modified polymer cement-based materials are helpful in improving the performance of repaired beams, manifested by the increase in the ultimate bending moment and the significant improvement in the quality of the interface between repair and matrix concrete. Compared with polymer cement-based materials, nano-modified polymer cement-based materials result in a 27% increase in ultimate bending moment of the repaired beam and a 58% increase in cracking moment, while reducing the total number of cracks by 23% and the average width of cracks by 17% in the repaired beam. This article demonstrated the availability of nanomaterials for improving the loading behavior of structural components with polymer-modified cement-based materials.
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spelling doaj.art-137a3f298eb54bb7a9b5aaf44d4d26bc2022-12-21T21:33:06ZengDe GruyterNanotechnology Reviews2191-90972021-05-0110129230310.1515/ntrev-2021-0024Effects of nano-modified polymer cement-based materials on the bending behavior of repaired concrete beamsMeng Tao0Lian Songsong1Yang Xiufen2Meng Ruitan3College of Civil Engineering and Architecture, Zhejiang University, Hangzhou, ChinaCollege of Civil Engineering and Architecture, Zhejiang University, Hangzhou, ChinaCollege of Civil Engineering and Architecture, Zhejiang University, Hangzhou, ChinaCollege of Civil Engineering and Architecture, Zhejiang University, Hangzhou, ChinaAs the use time of concrete structures increases, defects such as concrete cracks, corrosion and exposure of steel bars gradually appear, resulting in additional repair of concrete structures to increase their durability and life. In this article, the effects of nano-modified polymer cement-based materials as repair material on the bending behavior of repaired concrete beams were studied. Based on the moment, deflection, strain, surface quality and cracking development monitor of repaired concrete beams, the bending behavior of repaired beams with polymer, nano-modified polymer and fibers was compared and the failure mechanism of the beams was analyzed. The results showed that the nano-modified polymer cement-based materials are helpful in improving the performance of repaired beams, manifested by the increase in the ultimate bending moment and the significant improvement in the quality of the interface between repair and matrix concrete. Compared with polymer cement-based materials, nano-modified polymer cement-based materials result in a 27% increase in ultimate bending moment of the repaired beam and a 58% increase in cracking moment, while reducing the total number of cracks by 23% and the average width of cracks by 17% in the repaired beam. This article demonstrated the availability of nanomaterials for improving the loading behavior of structural components with polymer-modified cement-based materials.https://doi.org/10.1515/ntrev-2021-0024nano-modified polymerrepaired concrete beambending behavior
spellingShingle Meng Tao
Lian Songsong
Yang Xiufen
Meng Ruitan
Effects of nano-modified polymer cement-based materials on the bending behavior of repaired concrete beams
Nanotechnology Reviews
nano-modified polymer
repaired concrete beam
bending behavior
title Effects of nano-modified polymer cement-based materials on the bending behavior of repaired concrete beams
title_full Effects of nano-modified polymer cement-based materials on the bending behavior of repaired concrete beams
title_fullStr Effects of nano-modified polymer cement-based materials on the bending behavior of repaired concrete beams
title_full_unstemmed Effects of nano-modified polymer cement-based materials on the bending behavior of repaired concrete beams
title_short Effects of nano-modified polymer cement-based materials on the bending behavior of repaired concrete beams
title_sort effects of nano modified polymer cement based materials on the bending behavior of repaired concrete beams
topic nano-modified polymer
repaired concrete beam
bending behavior
url https://doi.org/10.1515/ntrev-2021-0024
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AT liansongsong effectsofnanomodifiedpolymercementbasedmaterialsonthebendingbehaviorofrepairedconcretebeams
AT yangxiufen effectsofnanomodifiedpolymercementbasedmaterialsonthebendingbehaviorofrepairedconcretebeams
AT mengruitan effectsofnanomodifiedpolymercementbasedmaterialsonthebendingbehaviorofrepairedconcretebeams