Computational and Simulation Analysis of Pull-Out Fiber Reinforced Concrete

The computational and simulation analysis of pull-out fiber reinforced concrete was investigated. The finite element analysis was used to make this modeling and analysis on this reinforced system and three parts (concrete matrix, the placed fiber reinforcement polymers (FRP), and resin layer) were s...

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Main Authors: Xia Zhao, Xiong-Jun He, Sheng Yan, Nguyen Phan Anh
Format: Article
Language:English
Published: Wiley 2014-01-01
Series:Advances in Materials Science and Engineering
Online Access:http://dx.doi.org/10.1155/2014/576052
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author Xia Zhao
Xiong-Jun He
Sheng Yan
Nguyen Phan Anh
author_facet Xia Zhao
Xiong-Jun He
Sheng Yan
Nguyen Phan Anh
author_sort Xia Zhao
collection DOAJ
description The computational and simulation analysis of pull-out fiber reinforced concrete was investigated. The finite element analysis was used to make this modeling and analysis on this reinforced system and three parts (concrete matrix, the placed fiber reinforcement polymers (FRP), and resin layer) were studied. A constant load was directly applied on the free end of placed FRP and the deformation, von Mises stress, displacement, and strain of these three analyzed parts were obtained. Meanwhile, the specimen system of bonding strength and strain was calculated by the method of ABAQUS. The results showed that, with the constant load, the von Mises stress, deformation, and strain appeared in these three parts, and the maximum values in both FRP and resin layer were shown at the free end side, which provides an accurate description of the rupture mode.
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publishDate 2014-01-01
publisher Wiley
record_format Article
series Advances in Materials Science and Engineering
spelling doaj-art-a0531ecd1c1b4bf5b455e301bcdd0c582025-08-20T02:20:52ZengWileyAdvances in Materials Science and Engineering1687-84341687-84422014-01-01201410.1155/2014/576052576052Computational and Simulation Analysis of Pull-Out Fiber Reinforced ConcreteXia Zhao0Xiong-Jun He1Sheng Yan2Nguyen Phan Anh3School of Transportation, Wuhan University of Technology, Wuhan 430070, ChinaSchool of Transportation, Wuhan University of Technology, Wuhan 430070, ChinaSchool of Transportation, Wuhan University of Technology, Wuhan 430070, ChinaSchool of Transportation, Wuhan University of Technology, Wuhan 430070, ChinaThe computational and simulation analysis of pull-out fiber reinforced concrete was investigated. The finite element analysis was used to make this modeling and analysis on this reinforced system and three parts (concrete matrix, the placed fiber reinforcement polymers (FRP), and resin layer) were studied. A constant load was directly applied on the free end of placed FRP and the deformation, von Mises stress, displacement, and strain of these three analyzed parts were obtained. Meanwhile, the specimen system of bonding strength and strain was calculated by the method of ABAQUS. The results showed that, with the constant load, the von Mises stress, deformation, and strain appeared in these three parts, and the maximum values in both FRP and resin layer were shown at the free end side, which provides an accurate description of the rupture mode.http://dx.doi.org/10.1155/2014/576052
spellingShingle Xia Zhao
Xiong-Jun He
Sheng Yan
Nguyen Phan Anh
Computational and Simulation Analysis of Pull-Out Fiber Reinforced Concrete
Advances in Materials Science and Engineering
title Computational and Simulation Analysis of Pull-Out Fiber Reinforced Concrete
title_full Computational and Simulation Analysis of Pull-Out Fiber Reinforced Concrete
title_fullStr Computational and Simulation Analysis of Pull-Out Fiber Reinforced Concrete
title_full_unstemmed Computational and Simulation Analysis of Pull-Out Fiber Reinforced Concrete
title_short Computational and Simulation Analysis of Pull-Out Fiber Reinforced Concrete
title_sort computational and simulation analysis of pull out fiber reinforced concrete
url http://dx.doi.org/10.1155/2014/576052
work_keys_str_mv AT xiazhao computationalandsimulationanalysisofpulloutfiberreinforcedconcrete
AT xiongjunhe computationalandsimulationanalysisofpulloutfiberreinforcedconcrete
AT shengyan computationalandsimulationanalysisofpulloutfiberreinforcedconcrete
AT nguyenphananh computationalandsimulationanalysisofpulloutfiberreinforcedconcrete