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장동일,황윤국,김정호,조태준,Chang, Dong Il,Hwang, Yoon Kook,Kim, Jung Ho,Cho, Tae Jun 한국강구조학회 1997 韓國鋼構造學會 論文集 Vol.9 No.4
기존 프리플렉스 합성형 교량의 당면한 문제점은 하부 플랜지의 콘크리트 인장균열발생을 여하히 제어할 수 있느냐 하는 점이다. 본 논문에서는 이와 같은 문제점을 해결하기 위해 하부 플랜지 콘크리트부에 정적량의 PC강재를 도입하여 콘크리트에 압축력을 추가로 도입하므로써 프리플렉스 합성형이 전단면 압축(Full Prestressing)상태로 거동하도록 하는데 목표를 두고 검토하였다. 또한 이 과정에서 기존의 프리플렉스 합성형의 장점을 저해하지 않는 형고 및 단면의 유지 또는 개선과 경제성을 잃지 않도록 하였다. 여기서 개발한 새로운 개념의 합성형을 리프리스트레스트 프리플렉스 합성형(Represtressed Preflexional Composite Beam : 이하 RPF 합성형)이라 하고 해석, 설계, 시공의 전과정에 걸처서 작성된 유한요소해석프로그램(D.A.R.P.)을 이용하여 그 출력을 실물모형실험을 통해 비교, 검증하므로써 기존 프리플렉스 합성형의 문제점을 개선하면서도 경제성을 지는 거동특성을 확인할 수 있었다. The conventional preflex beams are designed by the method of paritial prestressing and allow the tensile stresses at the lower concrete of beams. As a consequence, most of preflex beams experience the tensile cracks under the service loads. This study was conducted to develop the most effective preflex beams, which do not allow tensile stress under the service load, by introducing additional prestressing called 'represtressing' at the lower concrete of beams. The objective of the study was accomplished by developing a computer analysis and design program and conducting experiments. Using the developed computer program, standard sections of the represtressed preflex beams were determined by computer modeling. In the experiment, two actual size of represtressed beams were tested under the imitated service loads. The results of test have shown that the performance of the represtressed preflex beams is generally excellent. A remarkable improvement was made in the design of preflex composite beams. Since the represtressed preflex beams(RPF) do not experience the tensile cracks under the service loads, the use of this beam for the bridge structures will lead to easy bridge maintenance and management. Furthermore, due to the low beam depth, high clearance and economical design can be realized in the bridge design using RPF.
최영민 ( Choi Young Min ),황윤국 ( Hwang Yoon Kook ),권태규 ( Kwon Tae Gyu ),나영현 ( Nah Young Hyun ) 한국구조물진단유지관리공학회 2003 한국구조물진단유지관리공학회 학술발표대회 논문집 Vol.7 No.2
The bridge columns with lap-splice reinforcements in earthquake suffered a brittle bond-slip failure due to deterioration of the lap-spliced longitudinal reinforcements. In this case, such a damaged bridge pier can be repaired using FRP wrapping. The damaged column using FRP wrapping showed better improvement than existing one in seismic performance due to FRP’s confinement effect. This paper presents the experimental study of damaged circular bridge pier repaired with FRP wrapping for poor lap-splice details.
최영민(Choi Young Min),황윤국(Hwang Yoon Kook),권태규(Kwon Tae Gyu),나영현(Nah Young Hyun) 한국구조물진단유지관리학회 2003 한국구조물진단학회 학술발표회논문집 Vol.- No.-
The bridge columns with lap-splice reinforcements in earthquake suffered a brittle bond-slip failure due to deterioration of the lap-spliced longitudinal reinforcements. In this case, such a damaged bridge pier can be repaired using FRP wrapping. The damaged column using FRP wrapping showed better improvement than existing one in seismic performance due to FRP's confinement effect. This paper presents the experimental study of damaged circular bridge pier repaired with FRP wrapping for poor lap-splice details.
염광수(Youm Kwang Soo),권태규(Kwon Tae Gyu),이영호(Lee Young Ho),황윤국(Hwang Yoon Kook) 대한토목학회 2006 대한토목학회논문집 A Vol.26 No.2A
GFRP를 이용하여 종방향 철근의 겹침이음이 존재하는 원형RC 교각의 내진보강 성능을 파악하기 위해 5개의 실물규모 실험체를 제직하여 실험하였다. 대상교각은 1979년에 완공된 후 현재 공용중인 비내진 원형 RC교각으로 겹침이음된 종방향 철근의 부착파괴에 의한 급작스런 파괴가 예상된다. GFRP 래핑(Wrapping)으로 보강된 교각들의 내진성능은 매우 향상되었다. 하지만, 예상한 휨파괴는 발생하지 않았고, 종방향 철근은 항복하지 않았다. 보강된 교각의 파괴양상은 겹침이음된 종방향 철근의 지연된 부착파괴로 판단된다. 제안된 GFRP 보강설계법을 실험적으로 검증하였다. This paper presents experimental studies on investigating the seismic retrofit performance of reinforced concrete circular columns with poor lap-splice details using GFRP wrapping. Five full-scale model columns have been tested. The prototype structure is an existing circular reinforced concrete bridge piers designed following the pre-seismic codes and constructed in South Korea in 1979. The as-built column will be expected to suffer brittle failure due to the bond failure of lap-spliced longitudinal reinforcement. The retrofitted columns using GFRP wrapping showed significant improvement of seismic performance. However, the predicted flexural failure mode was not achieved and the longitudinal bars were not yielded. Failure modes of the retrofitted columns are considered to be the gradually delayed bond slip in lap-spliced longitudinal reinforcement. Suggested retrofit design methods using GFRP were validated experimentally.