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        검색결과 12

        1.
        2023.11 KCI 등재 구독 인증기관 무료, 개인회원 유료
        Existing reinforced concrete buildings with seismically deficient details have premature failure under earthquake loads. The fiber-reinforced polymer column jacket enhances the lateral resisting capacities with additional confining pressures. This paper aims to quantify the retrofit effect varying the confinement and stiffness-related parameters under three earthquake scenarios and establish the retrofit strategy. The retrofit effects were estimated by comparing energy demands between non-retrofitted and retrofitted conditions. The retrofit design parameters are determined considering seismic hazard levels to maximize the retrofit effects. The critical parameters of the retrofit system were determined by the confinement-related parameters at moderate and high seismic levels and the stiffness-related parameters at low seismic levels.
        4,000원
        2.
        2023.06 KCI 등재 구독 인증기관 무료, 개인회원 유료
        Existing reinforced concrete (RC) frame buildings have seismic vulnerabilities because of seismically deficient details. In particular, since cumulative damage caused by successive earthquakes causes serious damage, repair/retrofit rehabilitation studies for successive earthquakes are needed. This study investigates the repair effect of fiber-reinforced polymer jacketing system for the seismically-vulnerable building structures under successive earthquakes. The repair modeling method developed and validated from the previous study was implemented to the building models. Additionally, the main parameters of the FRP jacketing system were selected as the number of FRP layers associated with the confinement effects and the installation location. To define the repair effects of the FRP jacketing system with the main parameters, this study conducted nonlinear time-history analyses for the building structural models with the various repairing scenarios. Based on this investigation, the repair effects of the damaged building structures were significantly affected by the damage levels induced from the mainshocks regardless of the retrofit scenarios.
        4,300원
        3.
        2022.06 KCI 등재 구독 인증기관 무료, 개인회원 유료
        The collapse of reinforced concrete (RC) frame buildings is mainly caused by the failure of columns. To prevent brittle failure of RC column, numerous studies have been conducted on the seismic performance of strengthened RC columns. Concrete jacketing method, which is one of the retrofitting method of RC members, can enhance strength and stiffness of original RC column with enlarged section and provide uniformly distributed lateral load capacity throughout the structure. The experimental studies have been conducted by many researchers to analyze seismic performance of seismic strengthened RC column. However, structures which have plan and vertical irregularities shows torsional behavior, and therefore it causes large deformation on RC column when subjected to seismic load. Thus, test results from concentric cyclic loading can be overestimated comparing to eccentric cyclic test results, In this paper, two kinds of eccentric loading pattern was suggested to analyze structural performance of RC columns, which are strengthened by concrete jacketing method with new details in jacketed section. Based on the results, it is concluded that specimens strengthened with new concrete jacketing method increased 830% of maximum load, 150% of maximum displacement and changed the failure modes of non-strengthened RC columns.
        4,000원
        4.
        2022.03 KCI 등재 구독 인증기관 무료, 개인회원 유료
        In the case of columns in buildings with soft story, the concentration of stress due to the difference in stiffness can damage the columns. The irregularity of buildings including soft story requires retrofit because combined load of compression, bending, shear, and torsion acts on the structure. Concrete jacketing is advantageous in securing the strength and stiffness of existing members. However, the brittleness of concrete make it difficult to secure ductility to resist the large deformation, and the complicated construction process for integrity between the existing member and extended section reduces the constructability. In this study, two types of Steel Grid Reinforcement (SGR), which are Steel Wire Mesh (SWM) for integrity and Steel Fiber Non-Shrinkage Mortar (SFNM) for crack resistance are proposed. One reinforced concrete (RC) column with non-seismic details and two columns retrofitted with each different types of proposed method were manufactured. Seismic performance was analyzed for cyclic loading test in which a combined load of compression, bending, shear, and torsion was applied. As a result of the experiment, specimens retrofitted with proposed concrete jacketing method showed 862% of maximum load, 188% of maximum displacement and 1,324% of stiffness compared to non-retrofitted specimen.
        4,000원
        5.
        2021.06 KCI 등재 구독 인증기관 무료, 개인회원 유료
        This study develops finite element models for seismically-deficient reinforced concrete building frame retrofitted using fiber-reinforced polymer jacketing system and validates the finite element models with full-scale dynamic test for as-built and retrofitted conditions. The bond-slip effects measured from a past experimental study were modeled using one-dimensional slide line model, and the bond-slip models were implemented to the finite element models. The finite element model can predict story displacement and inter-story drift ratio with slight simulation variation compared to the measured responses from the full-scale dynamic tests.
        4,000원
        6.
        2019.09 KCI 등재 구독 인증기관 무료, 개인회원 유료
        In this study, the out-of-plane seismic resistance of lightly-reinforced existing walls strengthened with thick RC jacket was investigated. The thick RC jacket with a thickness of 500 mm was placed at one side of the thin existing wall with a thickness of 150 mm. At the interface between the wall and RC jacket, a tee-shaped steel section with a number of anchor bolts and dowel bars was used as the shear connector. To investigate the connection performance and strengthening effects, the cyclic loading tests of four jacketed wall specimens were performed. The tests showed that the flexural strength of the jacketed walls under out-of-plane loading was significantly increased. During the initial behavior, the tee shear connector transferred forces successfully at the interface without slip. However, as the cracking, spalling, and crushing of the concrete increased in the exiting walls, the connection performance at the interface was significantly degraded and, consequently, the strength of the jacketed walls was significantly decreased. The flexural strength of the jacketed walls with tee shear connector was estimated considering the full and partial composite actions of the tee shear connector.
        4,000원
        7.
        2018.07 KCI 등재 구독 인증기관 무료, 개인회원 유료
        Existing reinforced concrete building structures have seismic vulnerabilities under successive earthquakes (or mainshock-aftershock sequences) due to their inadequate column detailing, which leads to shear failure in the columns. To improve the shear capacity and ductility of the shear-critical columns, a fiber-reinforced polymer jacketing system has been widely used for seismic retrofit and repair. This study proposed a numerical modeling technique for damaged reinforced concrete columns repaired using the fiber-reinforced polymer jacketing system and validated the numerical responses with past experimental results. The column model well captured the experimental results in terms of lateral forces, stiffness, energy dissipation and failure modes. The proposed column modeling method enables to predict post-repair effects on structures initially damaged by mainshock.
        4,000원
        8.
        2018.07 KCI 등재 구독 인증기관 무료, 개인회원 유료
        Existing reinforced concrete building structures have seismic vulnerabilities due to their seismically-deficient details resulting in non-ductile behavior. The seismic vulnerabilities can be mitigated by retrofitting the buildings using a fiber-reinforced polymer column jacketing system, which can provide additional confining pressures to existing columns to improve their lateral resisting capacities. This study presents dynamic responses of a full-scale non-ductile reinforced concrete frame retrofitted using a fiber-reinforced polymer column jacketing system. A series of forced-vibration testing was performed to measure the dynamic responses (e.g. natural frequencies, story drifts and column/beam rotations). Additionally, the dynamic responses of the retrofitted frame were compared to those of the non-retrofitted frame to investigate effectiveness of the retrofit system. The experimental results demonstrate that the retrofit system installed on the first story columns contributed to reducing story drifts and column rotations. Additionally, the retrofit scheme helped mitigate damage concentration on the first story columns as compared to the non-retrofitted frame.
        4,000원
        9.
        2003.10 KCI 등재 구독 인증기관 무료, 개인회원 유료
        본 연구의 궁극적인 목표는 콘크리트 교량의 교각을 Steel Jacket으로 보강한 효과를 정량적으로 산정함으로써, 지진 발생시 도로/교통 시스템의 역할을 평가할 수 있는 자료를 제공하는 데에 있다. Steel Jacket으로 보강 시, 교각의 연성능력이 어느 정도 증가되는지, 또 그로 인해 교량의 취약 상태가 어느 정도 개선되는지를 취약도 곡선을 통하여 나타내었다. 본 연구에서 해석적으로 구한 취약도 곡선이, 과거 지진 발생시 수집된 손상 자료를 이용하여 작성된 보강이 안된 교량의 취약도 곡선을 보정하는데 사용하였다. 그 보정은 Steel Jacket 보강 전과 후의 취약도 곡선상의 중간 값들을 비교해 그 증가분 만큼을 반영하는 방식으로 수행되었다.
        4,000원
        10.
        2019.04 서비스 종료(열람 제한)
        This research presents effectiveness of fiber-reinforced polymer column jacketing system for a non-ductile reinforced concrete building frame constructed before the 1970s. To investigate the retrofit effects, a series of full-scale dynamic tests for the retrofitted test frame was conducted, and the dynamic responses were compared to those of the non-retrofitted test frame. The effectiveness of the retrofit system was investigated in terms of response reductions, damage mechanisms and drift concentration factors.
        11.
        2016.10 서비스 종료(열람 제한)
        In this study, the retrofit effect of fiber reinforced plastics (FRP) jacketing by optimal algorithm for the existing reinforced concrete (RC) moment frame is investigated. FRP based retrofits are applied to both columns and beams in RC frame, simultaneously. The amounts of FRP reinforcements according to the retrofit positions are independently determined by the genetic algorithm based optimal method The amounts of FRP reinforcements and the collapse probability are considered by using the objective functions.
        12.
        2010.11 KCI 등재 서비스 종료(열람 제한)
        1970년대에 콘크리트를 기반으로 지어진 많은 구조물과 빌딩은 안전성과 사용성을 고려하여 무수히 많은 연구를 현재까지 진행해 왔으나, 설계강도 보다 낮은 최대강도를 보이고 있다. 현재 노후화된 콘크리트 구조물들에 대한 다양한 보수․보강 공법이 개발되어 적용되고 있지만 기존 연구들은 구조물의 특성에 대해서는 고려하지 않고, 단지 기존 부재와 보수 재료의 부착에 관한 연구와 기존 부재를 효과적으로 보강하기 위한 새로운 방법을 개발하는 연구는 미흡한 실정이다. 따라서 본 연구는 보수․보강 재료를 이용한 효율적인 강도증진 방법에 대한 연구, 보강 재료와 기존 부재 사이의 거동에 대해 부족했던 연구를 보완 하고자 한다. 또한 고강도 콘크리트는 높은 압축강도를 발현하기 때문에 부재의 단면을 축소시킬 뿐만 아니라 구조물의 자중 또한 감소시킬 수 있으므로 거대한 구조물 건설에 사용되고 있다. 고강도 콘크리트의 사용이 점차 증가하는 추세이지만 고강도 콘크리트를 이용한 구조물의 보수․보강에 대한 방법 연구 역시 미진한 실정이다. 따라서 본 연구에서는 효과적인 고강도 콘크리트 기둥에 대한 보수․보강 방법을 개발하고자 한다. 본 연구에서는 사각단명 형상을 가진 기둥을 팔각단면으로 형상 변형을 통해 CFS로 보수․보강하여 단면 형상이 변함에 따른 효과를 파악하고, CFS로 보강된 고강도 콘크리트(HSC) 기둥의 강도 증대 효과와 파괴 거동에 대해 파악하고자 한다.