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CFRP 플레이트 적용 스터럽 부분절단형 표면매립공법으로 보강된 철근콘크리트 보의 휨 거동에 대한 실험적 평가Experimental Verification of Flexural Response for Strengthened R/C Beams by Stirrup partial-Cutting Near Surface Mounted Using CFRP plate

Other Titles
Experimental Verification of Flexural Response for Strengthened R/C Beams by Stirrup partial-Cutting Near Surface Mounted Using CFRP plate
Authors
오홍섭심종성주민관이기홍
Issue Date
2008
Publisher
한국콘크리트학회
Keywords
스터럽 부분절단형 SCNSM 공법; CFRP 플레이트; 비부착; 보강길이; stirrup partial-cutting NSM (SCNSM); CFRP plate; debonding problem; strengthening length
Citation
콘크리트학회 논문집, v.20, no.6, pp 671 - 679
Pages
9
Indexed
KCI
Journal Title
콘크리트학회 논문집
Volume
20
Number
6
Start Page
671
End Page
679
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/27563
ISSN
1229-5515
2234-2842
Abstract
The near surface mounted (NSM) FRP strengthening method has been conventionally applied for strengthening the deteriorated concrete structures. The NSM strengthening method, however, has been issued with the problem of limitation of the cutting depth which is usually considered as concrete cover depth. This may be related with degradation of bonding performance in long-term service state. To improve the debonding problem, in this study, the Stirrup partial-Cutting NSM (SCNSM) strengthening method using CFRP plate was newly developed. SCNSM strengthening method can be effectively applied to the deteriorated concrete structure without any troubles of insufficient cutting depth. To experimentally verify the structural behavior, the flexural test of the concrete beam by using the SCNSM strengthening method was conducted with the test variable as the strengthening length (32%, 48%, 70%, 80%, 96% of span length). In the result of the test, the NSM and SCNSM strengthened specimen showed similar structural behavior with load-deflection, mode of failure. Additionally, there was no apparent structural degradation by the stirrup partial-cutting. Consequently, it was evaluated that the SCNSM strengthening method can be useful for seriously damaged concrete structures that is hard to apply the conventional NSM strengthening method for increasing the structural capacity.
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건설환경공과대학 (건설시스템공학과)
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