• Title/Summary/Keyword: reinforcement concrete frames

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RCC frames with ferrocement and fiber reinforced concrete infill panels under reverse cyclic loading

  • Ganesan, N.;Indira, P.V.;Irshad, P.
    • Advances in concrete construction
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    • 제5권3호
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    • pp.257-270
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    • 2017
  • An experimental investigation was carried out to study the strength and behavior of reinforced cement concrete (RCC) frames with ferrocement and fiber reinforced concrete infill panel. Seven numbers of $1/4^{th}$ scaled down model of one bay-three storey frames were tested under reverse cyclic loading. Ferrocement infilled frames and fiber reinforced concrete infilled frames with varying volume fraction of reinforcement in infill panels viz; 0.20%, 0.30%, and 0.40% were tested and compared with the bare frame. The experimental results indicate that the strength, stiffness and energy dissipation capacity of infilled frames were considerably improved when compared with the bare frame. In the case of infilled frames with equal volume fraction of reinforcement in infill panels, the strength and stiffness of frames with fiber reinforced concrete infill panels were slightly higher than those with ferrocement infill panels. Increase in volume fraction of reinforcement in the infill panels exhibited only marginal improvement in the strength and behavior of the infilled frames.

중력하중으로 설계된 포스트텐션 플랫플레이트 골조의 내진성능 (Seismic Performance of Gravity-Load Designed Post-Tensioned Flat Plate Frames)

  • 박영미;유연호;한상환
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2010년도 춘계 학술대회 제22권1호
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    • pp.127-128
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    • 2010
  • 본 연구에서는 기둥을 관통하는 슬래브 하부 철근이 중력하중만으로 설계된 포스트텐션 플랫플레이트 골조의 내진성능에 미치는 영향을 평가하였다. PT 플랫플레이트 골조에서는 슬래브 하부 철근에 대해 ACI 318-08에서는 특별한 언급이 없기 때문에 흔히 생략하고 있다. 대상건물을 비선형 시간이력해석으로 평가한 결과, PT 플랫플레이트 골조의 내진성능은 기둥을 관통하는 슬래브 하부철근이 위치할 때 눈에 띄게 향상되었다.

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Incremental dynamic analyses of concrete buildings reinforced with shape memory alloy

  • Mirtaheri, Masoud;Amini, Mehrshad;Khorshidi, Hossein
    • Steel and Composite Structures
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    • 제23권1호
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    • pp.95-105
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    • 2017
  • The use of superelastic shape memory alloys (SMAs) as reinforcements in concrete structures is gradually gaining interest among researchers. Because of different mechanical properties of SMAs compared to the regular steel bars, the use of SMAs as reinforcement in the concrete may change the response of structures under seismic loads. In this study, the effect of SMAs as reinforcement in concrete structures is analytically investigated for 3-, 6- and 8-story reinforced concrete (RC) buildings. For each concrete building, three different reinforcement details are considered: (1) steel reinforcement (Steel) only, (2) SMA bar used in the plastic hinge region of the beams and steel bar in other regions (Steel-SMA), and (3), beams fully reinforced with SMA bar (SMA) and steel bar in other regions. For each case, columns are reinforced with steel bar. Incremental Dynamic Analyses (IDA) are performed using ten different ground motion records to determine the seismic performance of Steel, Steel-SMA and SMA RC buildings. Then fragility curves for each type of RC building by using IDA results for IO, LS and CP performance levels are calculated. Results obtained from the analyses indicate that 3-story frames have approximately the same spectral acceleration corresponding with failure of frames, but in the cases of 6 and 8-story frames, the spectral acceleration is higher in frames equipped with steel reinforcements. Furthermore, the probability of fragility in all frames increases by the building height for all performance levels. Finally, economic evaluation of the three systems are compared.

기존 기둥 실험결과 비교를 통한 기둥성능 평가 (Comparisons of Seismic Behaviors of Columns in Concrete Moment Frames)

  • 박성일;한상환;이리형
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2001년도 봄 학술발표회 논문집
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    • pp.571-576
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    • 2001
  • The objective of this study is to assess seismic damage potential and evaluate structural performance of columns in concrete moment frames. For this purpose the results of 3 former studies are compared. Experimental variables considered in these studies are lap-splice of longitudinal reinforcement, axial load level, longitudinal reinforcement ratio, etc. The columns in 1st story of the building are considered in these studies since the columns in 1st story shall resist largest axial force during an earthquake. Based on test results strength, ductility capacities as well as plastic hinge length are compared and discussed.

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Effect of introducing RC infill on seismic performance of damaged RC frames

  • Turk, Ahmet Murat;Ersoy, Ugur;Ozcebe, Guney
    • Structural Engineering and Mechanics
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    • 제23권5호
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    • pp.469-486
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    • 2006
  • The main objective of this study was to investigate the seismic behavior of damaged reinforced concrete frames rehabilitated by introducing cast in place reinforced concrete infills. Four bare and five infilled frames were constructed and tested. Each specimen consisted of two (twin) 1/3-scale, one-bay and two-story reinforced concrete frames. Test specimens were tested under reversed-cyclic lateral loading until considerable damage occurred. RC infills were then introduced to the damaged specimens. One bare specimen was infilled without being subjected to any damage. All infilled frames were then tested under reversed-cyclic lateral loading until failure. While some of the test frames were detailed properly according to the current Turkish seismic code, others were built with the common deficiencies observed in existing residential buildings. The variables investigated were the effects of the damage level and deficiencies in the bare frame on the seismic behavior of the infilled frame. The deficiencies in the frame were; low concrete strength, inadequate confinement at member ends, 90 degree hooks in column and beam ties and inadequate length of lapped splices in column longitudinal bars made above the floor levels. Test results revealed that both the lateral strength and lateral stiffness increased significantly with the introduction of reinforced concrete infills even when the frame had the deficiencies mentioned above. The deficiency which affected the behavior of infilled frames most adversely was the presence of lap splices in column longitudinal reinforcement.

보통과 중간 모멘트 골조 기둥의 내진거동 비교 (Seismic Behavior of Columns in Ordinary and Intermediate Moment Frames)

  • 한상환
    • 콘크리트학회논문집
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    • 제17권1호
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    • pp.51-58
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    • 2005
  • 모멘트골조는 건물 골조로 많이 사용되어 왔다. 현행 설계기준에서는 콘크리트모멘트 골조를 보통, 중간 특수 모멘트저항 콘크리트 골조 (OMRCF, IMRCF, SMRCF)로 분류하고 있다. 본 연구의 목적은 OMRCF와 IMRCF 기둥의 내진성능을 비교 평가하는 것이다. 이 목적을 위하여 3층 사무소 용도의 OMRCF와 IMRCF를 ACI 318 (2002)와 KCI (1999)을 따라 설계하였다. 이 연구에서 건물들은 모두 UBC (1997)에서 분류한 지진지역 1에 위치하는 것으로 가정하였다. 이 연구에서는 1층의 기둥을 고려하였는데 이는 1층이 지진 발생시 가장큰 횡력과 축력을 부담하기 때문이다. 8개의 2/3 축소모델 실험체를 제작하였다. 각 실험체는 각각 OMRCF 와 IMRCF 내부와 외부의 기둥 상부 하부를 모델링한 것이다. 유사정 적가력을 하였고 축력은 외부기둥실험체에는 변동축력을 내부기둥실험체에는 고정축력을 가력하였다. 본 연구결과에 따르면 겹침이음여부, 축력의크기, 기둥단부의 횡보강근은 기둥의 내진거동에 영향을 주는 것으로 나타났다. 하지만 이러한 변수들은 서로 관련되어 있는 것으로 나타났다.

하부철근 유무에 따른 PT 플랫 플레이트 골조의 내진성능 (Seismic Performance of Post Tensioned Flat Plate Frames according to Slab Bottom Reinforcement)

  • 박영미;황보진;유종혁;한상환
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2008년도 추계 학술발표회 제20권2호
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    • pp.233-236
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    • 2008
  • 본 연구는 슬래브의 하부철근이 포스트 텐션(PT) 플랫 플레이트 골조의 내진성능에 미치는 영향을 평가하였다. 이를 위하여 슬래브-기둥 접합부에 슬래브 하부철근이 있는 경우와 없는 경우의 3층, 9층 골조를 중력하중만 고려하여 설계하였다. 본 연구에서는 대상 건물을 비선형 정적 푸쉬 오버 해석하여 기둥을 관통하는 슬래브 하부철근 유무에 따른 전체 구조시스템 거동을 평가 하였다. 본 연구에서 사용한 접합부 모델은 뚫림 전단과 파괴메커니즘을 예측할 수 있도록 본 연구자들에 의하여 기존 연구에서 제안된 것이다. 본 연구결과에 따르면 기둥을 관통하는 슬래브 하부철근은 PT 플랫 플레이트 골조의 내진성능에 큰 영향을 미치는 것으로 나타났다. 특히 슬래브 하부 철근이 있는 PT 플랫 플레이트 골조는 슬래브 하부철근이 없는 골조에 비하여 최대 강도와 변형 능력이 크게 향상되었다.

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Experimental study and modeling of masonry-infilled concrete frames with and without CFRP jacketing

  • Huang, Chao-Hsun;Sung, Yu-Chi;Tsai, Chi-Hsin
    • Structural Engineering and Mechanics
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    • 제22권4호
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    • pp.449-467
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    • 2006
  • Most existing concrete structures in Taiwan are considered nonductile due to insufficient transverse reinforcement and poor detailing of frame elements. Such features are fairly typical for buildings constructed prior to 1997, at which time the local building code was revised based on ACI 318-95. Among these structures, many contain perimeter or partition walls made of concrete or clay brick for architectural purposes. These walls, though treated as non-structural components in common design practice, could affect the structural behavior of the buildings during an earthquake. To study the behavior of such structures under seismic load, experiments were conducted on concrete frames of various configurations to show the force-deformation relationships, damage patterns, and other characteristics of the frames. For further interest, similar units with columns jacketed by carbon-fiber-reinforced-polymer (CFRP) were also tested to illustrate the effectiveness of this technique in the retrofit of concrete frames.

Numerical study of progressive collapse in reinforced concrete frames with FRP under column removal

  • Esfandiari, J.;Latifi, M.K.
    • Advances in concrete construction
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    • 제8권3호
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    • pp.165-172
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    • 2019
  • Progressive collapse is one of the factors which if not predicted at the time of structure plan; its occurrence will lead to catastrophic damages. Through having a glance over important structures chronicles in the world, we will notice that the reason of their collapse is a minor damage in structure caused by an accident like a terrorist attack, smashing a vehicle, fire, gas explosion, construction flaws and its expanding. Progressive collapse includes expanding rudimentary rupture from one part to another which leads to total collapse of a structure or a major part it. This study examines the progressive collapse of a 5-story concrete building with three column eliminating scenarios, including the removal of the corner, side and middle columns with the ABAQUS software. Then the beams and the bottom of the concrete slab were reinforced by (reinforcement of carbon fiber reinforced polymer) FRP and then the structure was re-analyzed. The results of the analysis show that the reinforcement of carbon fiber reinforced polymer sheets is one of the effective ways to rehabilitate and reduce the progressive collapse in concrete structures.

철근콘크리트 기둥과 철골 보 합성구조 접합부 시스템 개발 (Development of Reinforced Concrete Column and Steel Beam Composite Joints)

  • 김도균;정하선;최완철
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2001년도 봄 학술발표회 논문집
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    • pp.691-698
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    • 2001
  • Recent trends in the construction of long span or tall building frames feature the increase use of composite members that steel and concrete is functioning together in what terms of mixed structural systems. One of such systems, RCS (reinforced concrete column and steel beam) system is introduced and closely examined focusing on bearing strength of the composite joint in this paper. The main objective of this study was to develope detail to increase bearing capacity while bearing failure is one of the two primary modes of failure in RCS system. The results show that specimens with the U-type bearing reinforcement detail developed in this study enhanced the bearing strength by 1.20-1.50. The U-type reinforcement is the effective details to increase joint bearing strength compared to others like vertical reinforcement welded to beam flanges.

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