• 제목/요약/키워드: Lateral confinement reinforcement

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외측 횡보강재로 구속된 철근콘크리트 기둥의 내진성능 (Seismic Performance of RC Columns Confined by Outside Lateral Reinforcement)

  • 이도형;오장균;유완동;최은수
    • 대한토목학회논문집
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    • 제32권3A호
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    • pp.189-196
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    • 2012
  • 본 연구에서는 철근콘크리트 기둥의 심부구속 철근 이외에 추가적인 외측 횡 보강재료를 보강한 실험체에 대해 반복주기가력 실험을 수행하였다. 이 목적을 위해 스테인레스 강과 GFRP를 사용하여 외측 횡보강재료를 제작하였고, 실험의 주요 변수로 외측 횡보강재의 종류, 두께 및 보강간격을 선택하였다. 실험결과, 외측 횡보강된 실험체는 무보강 실험체에 비해 연성능력 및 에너지 소산능력의 향상을 확인하였고, 본 연구를 통하여 제안된 외측 횡보강재를 사용한 횡구속 방법은 철근콘크리트 기둥부재의 내진보강에 유용하게 사용할 수 있을 것으로 판단된다.

압축력비와 수직철근비에 따른 RC T형 벽체의 구조성능 평가에 관한 해석적 연구 (Evaluation of Structural Performance of RC T-shaped Walls with Different ratios of axial load and vertical reinforcement)

  • 하상수;최창식;이리형
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2003년도 봄 학술발표회 논문집
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    • pp.403-408
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    • 2003
  • The objective of this study is to understand the variables affected the confinement for the transverse reinforcement of the reinforced concrete structural walls with the T-shaped cross section subjected to cyclic lateral loads. The structural performance of T-shaped walls was advanced by the transverse reinforcement which restrained the concrete subjected to compressive stress. If the arrangement of transverse reinforcement was not suitable for the confinement, T-shaped walls happened the brittle failure by web crushing or bucking of vertical reinforcement at the compression zone. It is necessary to confine transverse reinforcement in order to prevent the these failure. But the location of neutral axis and the magnitude of ultimate strain vary according to the section shape, a ratio of axial load, a ratio of wall cross sectional area to the floor-plan area, an aspect ratio and the reinforcement ratio. Therefore, the objective of this research is to grasp the location of neutral axis and the range which needs for the confinement of transverse reinforcement through the results of the sectional analysis which varies the ratio of axial load and the ratio of vertical reinforcement.

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띠근에 의한 고강도 콘크리트 기둥부재의 강도 및 연성효과에 관한 연구 (A Study on the Strength and Ductility Effect of High-Strength Concrete Columns Confined by Tied Hoops)

  • 박훈규;송재호;한상묵;장일열
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 1998년도 가을 학술발표대회 논문집(III)
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    • pp.609-614
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    • 1998
  • Lateral pressure by tied reinforcement greatly enhances the maximum strength and ductility of columns under concentric loading. The lateral confinement effects will be improves ductility of high-strength concrete. The major purpose of this paper is to study on the improvements of maximum strength and strain at the point of tied high-strength concrete columns subject to axial loads. For this purpose, this study collected the other analytical results and the experimental data that has been performed by a lot of worldwide researchers and also analyzed it statistically. As the result, the theoretical equation for predict maximum strength and strain at the point was proposed. It is based on calculation of lateral confinement pressure generate from tensile that develop in transverse reinforcement.

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심부구속철근의 응력-변형률 거동 및 에너지 성능에 관한 실험적 연구 (A Experimental Study for Stress-Strain Behavior and Energy Capacity of Confinement Steel)

  • 이재훈;고성현;황정길;손현아
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2006년도 추계 학술발표회 논문집
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    • pp.77-80
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    • 2006
  • Longitudinal reinforcements of the plastic hinge region were behaved tensile deformation and compressional deformation by direction of lateral loading. However Confinement steels were behaved only tensile deformation by lateral loading. Transverse steels were laid the state of tension in the lateral loading of time, and they were laid state that stress is zero when it was removed lateral load. Nine specimens were tested under cyclic stresses(tension and zero). The purpose of this research is to investigate the strain behavior and capacity of energy for confinement steel. The selected test variables are $L/d_b(L/d_b=6)$, size of reinforcement and specified yielding strength(300, 400, 500 MPa).

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단면현상에 따른 벽식구조 전단벽의 구조성능 평가 (Structural Performance of Shearwall with Sectional Shape in Wall-type Apartment Buildings)

  • 한상환;오영훈;오창학;이리형
    • 콘크리트학회논문집
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    • 제12권4호
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    • pp.3-14
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    • 2000
  • Structural performance of the walls subjected to lateral load reversals depends on various parameters such as loading history, sectional shape, reinforcement, lateral confinement, aspect ratio, axial compression, etc. Thus, the performance of the shearwall for wall-type apartment should be evaluated properly considering above parameters. This study investigates the effect of sectional shape on the structural performance of the wall. Sectional shape of the specimen is rectangular, barbell and T. Based on this experimental results, all specimens behaved as ductile fashion and failed by concrete crushing of the compression zone. Deformation index of those specimens evaluated better than 3 of ductility ratio, and 1.5% of deformability specified by seismic provision. Moreover, the performance of the rectangular shaped specimen, whose compression zone was confined with U-bar and cross tie, was as good as the barbell shaped specimen. Therefore, if we considered construction practice such as workmanship and detailing, shearwall with rectangular section may be more economical lateral load resisting system.

용접된 띠철근으로 보강한 철근콘크리트 기둥의 강도와 연성 (Strength and Ductility of R/C Columns with Welded Reinforcement Grids)

  • 최창식
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 1997년도 봄 학술발표회 논문집
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    • pp.492-499
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    • 1997
  • Experimental research was conducted to investigate structural performance of concrete columns confined with welded reinforcement grids were tested under simulated seismic loading. The columns were subjected to constant axial compression accompanied by incrementally increasing lateral deformation reversals. The results indicate thar welded reinforcement grid can be used effectively as confinement reinforcement provided that the steel used, have sufficient ductility and the welding process employed does not alter the strength and elongation characteristics of steel. The grids improved the structural performance of columns, which developed lateral drift ratios in excess of 3% with the spacing and volumetric ratio of transverse reinforcement similar to those required by the ACI 318-95 Building Code.

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Transverse reinforcement for confinement at plastic hinge of circular composite hollow RC columns

  • Won, Deok Hee;Han, Taek Hee;Kim, Seungjun;Park, Woo-Sun;Kang, Young Jong
    • Computers and Concrete
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    • 제17권3호
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    • pp.387-406
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    • 2016
  • Confined transverse reinforcement was arranged in a plastic hinge region to resist the lateral load that increased the lateral confinement effect in the bridge substructure. Columns increased the seismic performance through securing stiffness and ductility. The calculation method of transverse reinforcements at plastic hinges is reported in the AASHTO-LRFD specification. This specification was only proposed for solid reinforced concrete (RC) columns. Therefore, if this specification is applied for another column as composite column besides the solid RC column, the column cannot be properly evaluated. The application of this specification is particularly limited for composite hollow RC columns. The composite hollow RC column consists of transverse, longitudinal reinforcements, cover concrete, core concrete, and an inner tube inserted in the hollow face. It increases the ductility, strength, and stiffness in composite hollow RC columns. This paper proposes a modified equation for economics and rational design through investigation of displacement ductility when applying the existing specifications at the composite hollow RC column. Moreover, a parametric study was performed to evaluate the detailed behavior. Using these results, a calculation method of economic transverse reinforcements is proposed.

횡철근에 의해 횡구속된 콘크리트의 응력-변형률 특성 (Characteristics of Stress-strain Relationship of Concrete Confined by Lateral Reinforcement)

  • 정혁창;김익현
    • 한국지진공학회논문집
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    • 제13권3호
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    • pp.67-80
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    • 2009
  • 내진설계의 기본적인 개념은 지진 시 요구되는 연성도 이상의 변형성능을 확보하는 것이다. 기둥의 경우 소성힌지 영역에 적절한 횡철근을 배근함으로써 이를 실현할 수 있다. 가장 경제적인 설계를 위해서는 횡구속 콘크리트의 응력-변형률 특성에 기초하여 횡철근량을 산정하는 것이다. 우리나라(도로교 설계기준)에서는 목표연성도를 단일화하여 동일한 횡철근을 제공하고 있으나 일본에서는 횡구속된 콘크리트의 응력-변형률 곡선식을 제공함으로써 경제적으로 소요 횡철근량을 산정하고 있다. 이러한 재료레벨(응력-변형도)의 특성을 사용하면 설계는 어려워지지만 보다 경제적인 설계가 가능하며 이는 성능에 기반한 내진설계의 경향과도 부합된다. 이 연구에서는 현행 도로교설계기준의 갈고리상세에 부합되는 횡철근을 배치한 부재에 대해 횡철근량을 변수로 하여 응력-변형률 실험을 수행하였다. 응력-변형률 특성을 정량적으로 평가할 수 있는 인자를 도입하여 실험결과와 기존의 콘크리트 모델식을 비교 분석하였다.

후프띠철근과 보강띠철근으로 횡구속된 정사각단면 콘크리트의 응력-변형률 특성 (Characteristics of the Stress-strain Relationship of Square Sectional Concrete Confined by Hoop Reinforcement with Cross-ties)

  • 정혁창;차수원;김익현
    • 한국지진공학회논문집
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    • 제14권3호
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    • pp.39-48
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    • 2010
  • RC교량의 내진성능은 교각에 충분한 연성도를 제공함으로써 확보할 수 있다. 이러한 연성도는 교각의 소성힌지 영역에 적절한 횡방향철근을 배근함으로써 실현할 수 있다. 횡방향철근에 의한 횡구속력은 유효구속력으로 결정되므로 단면형상과 횡방향철근량이 지배적인 요소가 된다. 동일한 횡방향철근량을 제공하더라도 설치간격, 배치형태, 갈고리 상세 등의 차이에 의해 유효구속력에 차이가 있게 된다. 후프띠철근에 의해 횡구속력을 발휘하는 원형단면과는 달리 사각 또는 중공사각단면에서는 유효구속력을 증가시키기 위해 보강띠철근이 함께 사용된다. 이러한 보강띠철근을 어떻게 고려하느냐에 따라 횡구속된 콘크리트의 응력-변형률 관계는 달라지게 된다. 본 연구에서는 실험을 통해 후프띠철근과 함께 보강띠철근을 갖는 정사각단면 콘크리트의 응력-변형률 관계를 파악하였으며 기존의 평가식과 비교를 통해 역학적 특성을 분석하였다.

편심하증을 받는 고강도 철근콘크리트 기둥의 역학적 특성 (Mechanical Characteristics of Eccentrically Loaded High Strength Reinforced Concrete Columns)

  • 김인식;최봉섭;권영웅
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2000년도 봄 학술발표회 논문집
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    • pp.399-404
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    • 2000
  • This paper are the mechanical characteristics of eccentrically loaded normal strength and high strength reinforced concrete columns based on the test results. The columns are $120\times120$mmat the mid-section and are haunched at the ends to apply the eccentric loading and prevent premature failure. Variables are concrete strengths(361, 672, 974 kgf/$\textrm{cm}^2$), $\textrm{cm}^2$longitudinal reinforcement ratios (1.98, 3.54, 1 5.53%), spacing of lateral reinforcement (30, 60, 120mm), and eccentricities (24, 40mm). As a results, the main conclusions obtained from the comparison and analysis for the strength tendency, deformation and ductility of high strength reinforced concrete columns with variables are as follows; As the concrete compressive strength concrete and lateral reinforcement increases, the ductility index of high strength reinforced concrete columns decrease, but it increase with the increase of eccentricity and longitudinal reinforcement ratio. The confinement ratio must be greater than 20 percent in order for the level of ductility between high strength reinforced concrete columns and normal strength reinforced concrete columns to be almost equal.

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