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    Durability Assessment of 15- to 20-Year-Old GFRP Bars Extracted from Bridges in the US. I: Selected Bridges, Bar Extraction, and Concrete Assessment

    Source: Journal of Composites for Construction:;2021:;Volume ( 025 ):;issue: 002::page 04021007-1
    Author:
    Vanessa Benzecry
    ,
    Ali F. Al-Khafaji
    ,
    Rudy T. Haluza
    ,
    Charles E. Bakis
    ,
    John J. Myers
    ,
    Antonio Nanni
    DOI: 10.1061/(ASCE)CC.1943-5614.0001110
    Publisher: ASCE
    Abstract: Glass fiber–reinforced polymer (GFRP) bars have been used in concrete structures as an alternative to steel bars due to their noncorrosive behavior. However, due to the lack of full understanding of long-term performance, their use as internal reinforcement is still limited. To evaluate the durability of in-service GFRP bars under natural exposure, a collaborative project including four organizations investigated the conditions of GFRP bars and their surrounding concrete from bridges with 15–20 years of service. The aim of Part I of a two-paper series is to describe the bridge structures, methods of extraction, and the results of concrete testing, wheras Part II focuses on GFRP bar performance. The extracted bars were tested for physical, mechanical, and chemical properties, and the surrounding concrete was evaluated for chloride penetration, pH, and carbonation depth at the level of reinforcement. Results showed that carbonation and chloride may have reached the depth of the GFRP bars. This paper discusses the process of extraction of the bars, including the location and type of the selected bridge, and the concrete tests performed in terms of procedure, results, and observations.
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      Durability Assessment of 15- to 20-Year-Old GFRP Bars Extracted from Bridges in the US. I: Selected Bridges, Bar Extraction, and Concrete Assessment

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    http://yetl.yabesh.ir/yetl1/handle/yetl/4270836
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    contributor authorVanessa Benzecry
    contributor authorAli F. Al-Khafaji
    contributor authorRudy T. Haluza
    contributor authorCharles E. Bakis
    contributor authorJohn J. Myers
    contributor authorAntonio Nanni
    date accessioned2022-02-01T00:03:31Z
    date available2022-02-01T00:03:31Z
    date issued4/1/2021
    identifier other%28ASCE%29CC.1943-5614.0001110.pdf
    identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4270836
    description abstractGlass fiber–reinforced polymer (GFRP) bars have been used in concrete structures as an alternative to steel bars due to their noncorrosive behavior. However, due to the lack of full understanding of long-term performance, their use as internal reinforcement is still limited. To evaluate the durability of in-service GFRP bars under natural exposure, a collaborative project including four organizations investigated the conditions of GFRP bars and their surrounding concrete from bridges with 15–20 years of service. The aim of Part I of a two-paper series is to describe the bridge structures, methods of extraction, and the results of concrete testing, wheras Part II focuses on GFRP bar performance. The extracted bars were tested for physical, mechanical, and chemical properties, and the surrounding concrete was evaluated for chloride penetration, pH, and carbonation depth at the level of reinforcement. Results showed that carbonation and chloride may have reached the depth of the GFRP bars. This paper discusses the process of extraction of the bars, including the location and type of the selected bridge, and the concrete tests performed in terms of procedure, results, and observations.
    publisherASCE
    titleDurability Assessment of 15- to 20-Year-Old GFRP Bars Extracted from Bridges in the US. I: Selected Bridges, Bar Extraction, and Concrete Assessment
    typeJournal Paper
    journal volume25
    journal issue2
    journal titleJournal of Composites for Construction
    identifier doi10.1061/(ASCE)CC.1943-5614.0001110
    journal fristpage04021007-1
    journal lastpage04021007-9
    page9
    treeJournal of Composites for Construction:;2021:;Volume ( 025 ):;issue: 002
    contenttypeFulltext
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