• 제목/요약/키워드: stub-column

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Feasibility study for blind-bolted connections to concrete-filled circular steel tubular columns

  • Goldsworthy, H.M.;Gardner, A.P.
    • Structural Engineering and Mechanics
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    • 제24권4호
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    • pp.463-478
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    • 2006
  • The design of structural frameworks for buildings is constantly evolving and is dependent on regional issues such as loading and constructability. One of the most promising recent developments for low to medium rise construction in terms of efficiency of construction, robustness and aesthetic appearance utilises concrete-filled steel tubular sections as the columns in a moment-resisting frame. These are coupled to rigid or semi-rigid connections to composite steel-concrete beams. This paper includes the results of a pilot experimental programme leading towards the development of economical, reliable connections that are easily constructed for this type of frame. The connections must provide the requisite strength, stiffness and ductility to suit gravity loading conditions as well as gravity combined with the governing lateral wind or earthquake loading. The aim is to develop connections that are stiffer, less expensive and easier to construct than those in current use. A proposed fabricated T-stub connection is to be used to connect the beam flanges and the column. These T-stubs are connected to the column using "blind bolts" with extensions, allowing installation from the outside of the tube. In general, the use of the extensions results in a dramatic increase in the strength and stiffness of the T-stub to column connection in tension, since the load is shared between membrane action in the tube wall and the anchorage of the bolts through the extensions into the concrete.

고강도 H형강 부재의 좌굴내력과 설계식에의 적용에 관한 연구 (The Bucking Strength and the Application of design of Design Formula of High Strength H-Shaped Section Steel Members)

  • 김진경;김희동;이명재
    • 한국강구조학회 논문집
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    • 제13권2호
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    • pp.123-131
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    • 2001
  • 본 연구의 목적은 고강도 H형강 기둥재(beam-column)의 폭두께비에 관한 기준을 조사하고 좌굴내력을 평가하여, 강구조 한계상태설계기준과 허용응력설계기준(안)과 비교함으로써, 고강도강을 사용한 기둥부재 설계시 적용된 기준식의 타당성을 검토하기 위한 것이다. 실험에 사용된 고강도강은 SM520TMC, SM570Q 등을 사용하였고, 강재의 기계적 성질과 단주의 응력-변형도 관계를 파악하기 위하여 인장시험 및 단주압축시험을 실시하였다. 또한 고강도강 기둥재의 좌굴내력을 산정하기 위하여 수치해석을 수행하였다. 수치해석에 사용된 축력-모멘트-곡률 관계는 단주압축실험에서 구해진 응력-변형도 관계를 사용하였다

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각형 강관의 축방향 압축강도에 관한 연구 (Axial Compressive Strength of Rectangular Hollow Section Members)

  • 조재병;임정순;한충성
    • 한국강구조학회 논문집
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    • 제10권2호통권35호
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    • pp.153-160
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    • 1998
  • 각형 강관(${\boxe}-75{\times}75{\times}3.2,\;{\boxe}-100{\times}100{\times}4.2,\;{\boxe}-125{\times}125{\times}6.0$) 기둥의 단면 치수와 초기 변형을 측정하였다. 인장시험, 단주 압축강도 실험, 그리고 세장비 $46{\sim}84$ 사이의 기둥에 대한 압축강도 실험을 수행하였다. 유한요소법에 의한 기둥의 압축 강도를 산출하였다. 단면의 공칭 치수에 대한 측정값의 오차는 무시할 정도이며, 초기변형은 각 단면별로 세장비 100에 해당하는 기둥길이에 대해 초과 확률 2.5% 값이 각각 1/490, 1/1121, 1/1395로 나타났다. 인장시험 결과 강재의 항복강도는 최소 규정 강도보다 30% 이상 높다. 기둥 실험 결과 얻은 각형 강관 기둥의 압축강도는 단주 압축강도를 강재의 항복강도로 간주하고 비교하면 유한요소 해석 결과나 AISC, Eurocode의 강도 곡선과 거의 같거나 약간 높은 값이나, 강재의 최소 규정강도를 기준으로 비교하면 실험 결과가 훨씬 높은 강도를 보이는 것으로 나타났다.

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Experimental study on axial compressive behavior of welded built-up CFT stub columns made by cold-formed sections with different welding lines

  • Naghipour, Morteza;Yousofizinsaz, Ghazaleh;Shariati, Mahdi
    • Steel and Composite Structures
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    • 제34권3호
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    • pp.347-359
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    • 2020
  • The objective of this study is to experimentally scrutinize the axial performance of built-up concrete filled steel tube (CFT) columns composed of steel plates. In this case, the main parameters cross section types, compressive strength of filled concrete, and the effect of welding lines. Welded built-up steel box columns are fabricated by connecting two pieces of cold-formed U-shaped or four pieces of L-shaped thin steel plates with continuous penetration groove welding line located at mid-depth of stub column section. Furthermore, traditional square steel box sections with no welding lines are investigated for the comparison of axial behavior between the generic and build-up cross sections. Accordingly, 20 stub columns with thickness and height of 2 and 300 mm have been manufactured. As a result, welding lines in built-up specimens act as stiffeners because have higher strength and thickness in comparison to the plates. Subsequently, by increasing the welding lines, the load bearing capacity of stub columns has been increased in comparison to the traditional series. Furthermore, for specimens with the same confinement steel tubes and concrete core, increment of B/t ratio has reduced the ductility and axial strength.

Compressive behaviour of circular steel tube-confined concrete stub columns with active and passive confinement

  • Nematzadeh, Mahdi;Hajirasouliha, Iman;Haghinejad, Akbar;Naghipour, Morteza
    • Steel and Composite Structures
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    • 제24권3호
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    • pp.323-337
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    • 2017
  • This paper presents the results of a comprehensive experimental investigation on the compressive behaviour of steel tube-confined concrete (STCC) stub columns with active and passive confinement. To create active confinement in STCC columns, an innovative technique is used in which steel tube is laterally pre-tensioned while the concrete core is simultaneously pre-compressed by applying pressure on fresh concrete. A total of 135 STCC specimens with active and passive confinement are tested under axial compression load and their compressive strength, ultimate strain capacity, axial and lateral stress-strain curves and failure mode are evaluated. The test variables include concrete compressive strength, outer diameter to wall thickness ratio of steel tube and prestressing level. It is shown that applying active confinement on STCC specimens can considerably improve their mechanical properties. However, applying higher prestressing levels and keeping the applied pressure for a long time do not considerably affect the mechanical properties of actively confined specimens. Based on the results of this study, new empirical equations are proposed to estimate the axial strength and ultimate strain capacity of STCC stub columns with active and passive confinement.

Analytical study of concrete-filled steel tubular stub columns with double inner steel tubes

  • Pouria Ayough;Yu-Hang Wang;Zainah Ibrahim
    • Steel and Composite Structures
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    • 제47권5호
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    • pp.645-661
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    • 2023
  • Concrete-filled steel tubular columns with double inner steel tubes (CFST-DIST) are a novel type of composite members developed from conventional concrete-filled steel tubular (CFST) columns. This paper investigates the structural performance of circular CFST-DIST stub columns using nonlinear finite element (FE) analysis. A numerical model was developed and verified against existing experimental test results. The validated model was then used to compare circular CFST-DIST stub columns' behavior with their concrete-filled double skin steel tubular (CFDST) and CFST counterparts. A parametric study was performed to ascertain the effects of geometric and material properties on the axial performance of CFST-DISTs. The FE results and the available test data were used to assess the accuracy of the European and American design regulations in predicting the axial compressive capacity of circular CFST-DIST stub columns. Finally, a new design model was recommended for estimating the compressive capacity of CFST-DISTs. Results clarified that circular CFST-DIST columns had the advantages of their CFST counterparts but with better ductility and strength-to-weight ratio. Besides, the investigated design codes led to conservative predictions of the compressive capacity of circular CFST-DIST columns.

CFT 합성골조의 내진성능을 위한 스마트 반강접합의 이력거동 (Hysteresis Behavior of Partially Restrained Smart Connections for the Seismic Performance of Composite Frame)

  • 김주우
    • 한국강구조학회 논문집
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    • 제27권1호
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    • pp.99-108
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    • 2015
  • 상하부 스플릿 T 접합부를 이용한 스마트 CFT 기둥-보 접합부는 긴결재의 직경과 체결력, 스플릿 T 형강의 기하학적 형상, 재료적 물성 특성 등의 변화에 의하여 상이한 거동특성을 나타낸다. 본 논문은 반복하중을 받는 상 하부 스플릿 T 접합부의 구조적 거동에 대해 체계적으로 수행된 3차원 비선형 유한요소 해석으로부터 얻은 결과를 제시하고 있다. 이러한 상 하부 스플릿 T 접합부는 CFT 합성골조의 변위복원 및 충분한 에너지 소산 능력을 확보하기 위하여 초탄성 성질을 갖는 형상기억합금(SMA)과 강으로 제작된 봉과 T-stub가 적용된다. 부가적인 다양한 구조적 거동은 T-stub의 두께 및 게이지 거리로 상 하부 스플릿 T 접합부의 파라미터에 대한 영향을 설명하고 있다.

관통형 고력볼트를 사용한 엔드플레이트형식 콘크리트 충전 각형강관 기둥.H형강 보 접합부의 거동에 관한 실험적 연구 (II) (Experimental study on the Behavior CFT Column to H-Beam Endplate Connections with Penetrated High Strength Bolts (II))

  • 김재건;문태섭
    • 한국강구조학회 논문집
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    • 제11권2호통권39호
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    • pp.109-116
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    • 1999
  • 본 논문은 관통형 고력볼트를 사용한 엔드플레이트형식 콘크리트 충전 각형 강관 기둥 H형강 보 접합부에 대한 단조가력하에서의 실험적 연구이다. 본 실험의 목적은 전회(前回)에서는 파악되지 않았던 엔드플레이트의 두께와 볼트의 배열에 대한 영향을 정확하게 평가하는데 있다. 실험의 주요변수는 엔드플레이트의 두께(12mm, 16mm)와 볼트의 배열 (EP1, EP2, EP3)이다. 변수에 따른 실험결과를 비교, 분석하였다. 1)실험체는 Bjorhovde와 EC3의 분류법에 의해 분류하였다. 2)T-stub모델에 근거한 접합부의 최대 모멘트 예측식에 의해 계산된 이론치$(_tM_u)$는 실험치$(_eM_u)$에 잘 대응하였다.

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Experimental investigation on the seismic performance of cored moment resisting stub columns

  • Hsiao, Po-Chien;Lin, Kun-Sian
    • Steel and Composite Structures
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    • 제39권4호
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    • pp.353-366
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    • 2021
  • Cored moment resisting stub column (CMSC) was previously developed by the features of adopting a core segment which remains mostly elastic and reduced column section (RCS) details around the ends to from a stable hysteretic behavior with large post-yield stiffness and considerable ductility. Several full-scale CMSC components with various length proportions of the RCSs with respect to overall lengths have been experimentally investigated through both far-field and near-fault cyclic loadings followed by fatigue tests. Test results verified that the proposed CMSC provided very ductile hysteretic responses with no strength degradation even beyond the occurrence of the local buckling at the side-segments. The effect of RCS lengths on the seismic performance of the CMSC was verified to relate with the levels of the deformation concentration at the member ends, the local buckling behavior and overall ductility. Estimation equations were established to notionally calculate the first-yield and ultimate strengths of the CMSC and validated by the measured responses. A numerical model of the CMSC was developed to accurately capture the hysteretic performance of the specimens, and was adopted to clarify the effect of the surrounding frame and to perform a parametric study to develop the estimation of the elastic stiffness.

Stiffness model for "column face in bending" component in tensile zone of bolted joints to SHS/RHS column

  • Ye, Dongchen;Ke, Ke;Chen, Yiyi
    • Steel and Composite Structures
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    • 제38권6호
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    • pp.637-656
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    • 2021
  • The component-based method is widely used to analyze the initial stiffness of joint in steel structures. In this study, an analytical component model for determining the column face stiffness of square or rectangular hollow section (SHS/RHS) subjected to tension was established, focusing on endplate connections. Equations for calculating the stiffness of the SHS/RHS column face in bending were derived through regression analysis using numerical results obtained from a finite element model database. Because the presence of bolt holes decreased the bending stiffness of the column face, this effect was calculated using a novel plate-spring-based model through numerical analysis. The developed component model was first applied to predict the bending stiffness of the SHS column face determined through tests. Furthermore, this model was incorporated into the component-based method with other effective components, e.g., bolts under tension, to determine the tensile stiffness of the T-stub connections, which connects the SHS column, and the initial rotational stiffness of the joints. A comparison between the model predictions, test data, and numerical results confirms that the proposed model shows satisfactory accuracy in evaluating the bending stiffness of SHS column faces.