Bond performance degradation behavior of FRP laminate-to-concrete interface under combined effects of freeze-thaw cycling and sustained loading
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TU375.2

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    Abstract:

    To study interfacial behavior of concrete structures strengthened with fiber reinforced polymer(FRP)subjected to the freeze-thaw cycling, this study presents experimental investigations on the degradation behavior of FRP laminate-to-concrete interfacial bond performance under combined effects of freeze-thaw cycling and sustained loading with double-lap shear tests. After being exposed up to 200 freeze-thaw cycles, the specimens were tested to failure monotonously. Digital image correlation method was employed to capture the full-field displacement of the specimen during loading. Interfacial bond stress-slip relationship was determined based on the analysis of full-field data. Test parameters included the freeze-thaw cycles, sustained loading and concrete types. Test results show that the freeze-thaw cycling leads to significant decreases in all interfacial parameters. The bond stress-slip relationship is also degenerated with freeze-thaw cycles seriously. When considering the sustained loading, additional interfacial degradations were observed after freeze-thaw cycling. Apparent changes of interfacial failure modes were also observed during tests.

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陈雨唐,缪凡璠,唐晨,等.冻融循环与持续荷载共同作用下FRP片材-混凝土界面黏结性能的退化行为[J].河海大学学报(自然科学版),2019,47(5):468-476.(CHEN Yutang, MIAO Fanfan, TANG Chen, et al. Bond performance degradation behavior of FRP laminate-to-concrete interface under combined effects of freeze-thaw cycling and sustained loading[J]. Journal of Hohai University (Natural Sciences),2019,47(5):468-476.(in Chinese))

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  • Online: September 25,2019
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