• 제목/요약/키워드: seismic rectangular steel tube

검색결과 10건 처리시간 0.023초

강관구속 고강도 철근콘크리트 기둥의 내진성능 (Seismic Performance of High-Stringth RC Short Columns Confined in Rectangular Steel Tube)

  • 한병찬
    • 한국지진공학회:학술대회논문집
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    • 한국지진공학회 1997년도 춘계 학술발표회 논문집 Proceedings of EESK Conference-Fall 1997
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    • pp.182-190
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    • 1997
  • A new method to prevent reinforced concrete columns from brittle failure. The method is called transversely reinforcing method in which only the critical regions are confined in steel tube. The steel tubes can change the failure mode of the latter columns from the shear to the flexure. The steel tubes also increase the compressive strength, shear strength and deformation capacity of the infilled concrete. The following conclusions are reached on bases of the study on the seismic performance of the high-strength RC rectangualr short columns confined in steel tube with shear span tho depth ratio of 2.0 The brittle shear failure of high-strength reinforced concrete short columns with large amount of longitudinal bars, which cannot prevented by using the maximum amount of welded hoops, can be prevented by using the steel tube which confines all the maximum amount of welded hoops, can be prevented by using the steel tube which confines all the concrete inclusive of cover concrete. High-strength RC short columns confined in rectangular steel tube provided excellent enhancement of seismic performance but, found that plastic buckling of the steel tube in the hinge regions tended to occur when the columns were subjected to large cyclic lateral displacements. In order to prevent the plastic buckling when the columns lies on large on cyclic lateral displacements, the steel ribs were used for columns. Tests have established that the columns provide excellent enhancement of seismic performance of inadequately confined columns.

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내진 각형강관 기둥-H형강 보 접합상세의 구조성능평가 (Structural Performance Evaluation of Seismic Wide-flanged Beam-to-Rectangular Steel Tube Column Connection Details)

  • 장보라;심현주;김용익;정진안;오영석;김상섭;최병정;이은택
    • 한국강구조학회 논문집
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    • 제22권4호
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    • pp.305-312
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    • 2010
  • 본 연구의 목적은 모멘트 접합 골조에서 각형강관 기둥-H 형강 보 접합부의 내진성능평가이다. 각형강관은 H형강에 비해서 효율적이고 많은 장점이 있음에도 불구하고, 아직 접합 디테일의 부족과 경험 부족 등의 이유로 현장에서 적용이 제한적이다. 각형강관을 사용한 기존의 모멘트 접합부는 주로 관통형 다이아프램 형식을 사용하고 있는데 이는 시공과정이 복잡하여 현장에서의 적용을 어렵게 한다. 그러므로 이 연구에서는 각형강관 기둥을 절단하지 않는 접합상세에 대하여 구조성능 및 내진성능을 평가하고자 하였다. 엔드플레이트와 헌치를 이용한 용접접합의 접합상세에 대하여 내력 및 강성, 에너지흡수능력을 비교분석하였다.

중심압축력을 받는 내진 건축구조용 각형강관 CFT 부재의 구조성능평가 (Structural Performance Evaluation to Centrally Compressed CFT Columns Using Seismic Rectangular Steel Tube)

  • 심현주;최병정;이은택
    • 한국강구조학회 논문집
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    • 제24권4호
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    • pp.443-450
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    • 2012
  • 이 연구에서는 내진구조용 강재(SN)의 냉강롤성형된 각형강관을 사용한 CFT 부재의 중심축하중에 대한 구조성능을 평가한다. 일반적으로 냉간롤성형 및 냉간프레스형성으로 인하여 각형강관의 코너부와 평판부 모두 SN강재에 비해 재질변화가 발생하며, 항복강도와 인장강도 및 항복비의 상한치가 높아지는 경향을 나타낸다. 이러한 현상은 강관의 국부좌굴 이후의 비선형거동에 의해 영향을 주며, 이는 CFT 합성 부재와 같이 비선형해석모델에 대하여 영향을 미친다. 따라서 각형강관의 가공열화도를 평가하기 위하여 각형강관의 재료시험을 수행하였고, 세장비 및 판-폭두께비를 실험변수로 하여 일축 압축력을 받는 CFT부재의 구조성능을 평가하였다.

Seismic experiment and analysis of rectangular bottom strengthened steel-concrete composite columns

  • Hui, Cun;Zhu, Yanzhi;Cao, Wanlin;Wang, Yuanqing
    • Steel and Composite Structures
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    • 제20권3호
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    • pp.599-621
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    • 2016
  • In order to study the working mechanism of rectangular steel-concrete composite columns subjected to compression-bending load and further determine the seismic performance index, a bottom strengthened rectangular steel reinforced concrete (SRC) column with concealed steel plates and a bottom strengthened rectangular concrete filled steel tube (CFST) columns were proposed. Six column models with different configurations were tested under horizontal low cyclic loading. Based on the experiments, the load-bearing capacity, stiffness and degradation process, ductility, hysteretic energy dissipation capacity, and failure characteristics of the models were analyzed. The load-bearing capacity calculation formulas for a normal section and an oblique section of bottom strengthened rectangular steel-concrete composite columns were pesented and a finite element (FE) numerical simulation of the classical specimens was performed. The study shows that the load-bearing capacity, ductility, and seismic energy dissipation capacity of the bottom strengthened rectangular steel-concrete composite columns are significantly improved compared to the conventional rectangular steel-concrete composite columns and the results obtained from the calculation and the FE numerical simulation are in good agreement with those from the experiments. The rectangular steel-concrete composite column with bottom strengthened shows better seismic behavior and higher energy dissipation capacity under suitable constructional requirements and it can be applied to the structure design of high-rise buildings.

각형강관 기둥-H형강 보 신형상 내진접합부의 실험적 평가 (Experimental Evaluation of New Seismic Connections between Rectangular Steel Tube Column and H-shaped Beam)

  • 진주호;김두환;김현숙;신진원;박구연;이경구
    • 한국강구조학회 논문집
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    • 제30권2호
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    • pp.77-85
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    • 2018
  • 각형강관 기둥을 이용한 모멘트 접합부는 주로 관통형 다이어프램 형식으로 사용되고 있으나, 제작 및 시공과정이 복잡하여 적용하는데 어려움이 있다. 본 연구에서 제안하는 강구조물 시스템은 단위 유닛 모듈(각형강관 기둥, H형강 보, 원웨이 볼트)을 현장으로 반입하여 볼트조립만으로 완성되는 것이다. 따라서 이 연구에서는 내부보강판의 길이, 내부보강판의 형상을 변수로 설정하여 제안된 기둥-보 접합부의 내력 및 강성, 연성능력, 에너지 소산능력을 비교 분석하여 제시된 강구조물 시스템을 평가하였다.

원사이드 볼트를 이용한 내진 각형강관 기둥-H형강 보 접합부의 구조성능평가 (Performance Evaluation of Connection of Seismic Rectangular Steel Tube Column-H Beam Using One-side Bolts)

  • 심현주;장보라;정진안;이은택
    • 한국강구조학회 논문집
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    • 제22권4호
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    • pp.355-363
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    • 2010
  • 각형강관 기둥은 H형강에 비해서 구조효율성이 높고, 많은 장점이 있음에도 불구하고, 접합 디테일의 부족 및 경험 부족 등의 이유로 현장에서 적용이 제한적이다. 각형강관 기둥을 사용한 기존의 모멘트 접합부는 관통형 다이아프램, 내/외측 다이어프램 형식 등이 있으며 일반적으로 관통형 다이어프램을 사용하고 있다. 이는 시공과정이 복잡하여 현장에서의 적용을 어렵게 한다. 그러므로 이 연구에서는 원사이드 볼트를 적용하여 각형강관 기둥의 절단 및 용접을 하지 않는 접합상세에 대한 구조성능 및 내진성능을 평가하고자 하였다.

Efficiency of stiffening plates in fabricated concrete-filled tubes under monotonic compression

  • Albareda-Valls, Albert;Carreras, Jordi Maristany
    • Steel and Composite Structures
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    • 제18권4호
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    • pp.1023-1044
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    • 2015
  • Concrete-filled tubes (CFT), formed by an outer steel tube filled with plain or reinforced concrete inside, have been increasingly used these recent decades as columns or beam-columns, especially for tall buildings in seismic areas due to their excellent structural response. This improved behavior is derived from the effect of confinement provided by the tube, since the compressive strength of concrete increases when being subjected to hydrostatic pressure. In circular CFTs under compression, the whole tube is uniformly tensioned due to the radial expansion of concrete. Contrarily, in rectangular and square-shaped CFTs, the lateral flanges become subjected to in-plane bending derived from this volumetric expansion, and this fact implies a reduction of the confinement effect of the core. This study presents a numerical analysis of different configurations of CFT stub columns with inner stiffening plates, limited to the study of the influence of these plates on the compressive behavior without eccentricity. The final purpose is to evaluate the efficiency in terms of strength and ductility of introducing stiffeners into circular and square CFT sections under large deformation axial loading.

Study on the performance of concrete-filled steel tube beam-column joints of new types

  • Liu, Dianzhong;Li, Hongxian;Ren, Huan
    • Computers and Concrete
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    • 제26권6호
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    • pp.547-563
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    • 2020
  • In this paper, the influence of axial compression ratio on the mechanical properties of new type joints of side span of rectangular concrete-filled steel tubular column-H-type steel beam is studied. Two new types of side-span joints of rectangular concrete-filled steel tubular column-H-type steel beam are designed and quasi-static tests of five new type joints with 1:2 scale reduction ratios are performed. The axial compression ratio of joint JD1 is 0.3, 0.4 and 0.5, and the axial compression ratio of joint JD2 is 0.3 and 0.5. In the joint test, different axial forces were applied to the top of the column according to different axial compression ratios, and low-cyclic reciprocating load was applied on the beam. The stress and strain distribution, beam and column deformation, limit state, failure process, failure mechanism, stiffness degradation, ductile deformation and energy dissipation capacity of the joint were measured and analyzed. The results show that: with the increase of axial compression ratio, the ultimate bearing capacity of the joint decreases slightly, the plastic deformation decreases, and the stiffness and ductility decrease. According to the energy dissipation curve of the specimen, the equivalent damping coefficient also increases with the increase of axial compression ratio in a certain range, indicating that the increase of axial compression ratio can improve the seismic performance of the joint to a certain extent. The finite element method is used to simulate the joint test, and the test results are in good agreement with the simulation results.

Simulation of the damping effect of a high-rise CRST frame structure

  • Lu, Xilin;Zhang, Hongmei;Meng, Chunguang
    • Computers and Concrete
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    • 제9권4호
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    • pp.245-255
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    • 2012
  • The damping effect of a Concrete-filled Rectangular Steel Tube (CRST) frame structure is studied in this paper. Viscous dampers are employed to insure the function of the building especially subjected to earthquakes, for some of the main vertical elements of the building are not continuous. The shaking table test of a 1:15 scale model was conducted under different earthquake excitations to recognize the seismic behavior of this building. And the vibration damping effect was also investigated by the shaking table test and the simulation analysis. The nonlinear time-history analysis of the shaking table test model was carried out by the finite element analysis program CANNY. The simulation model was constructed in accordance with the tested one and was analyzed under the same loading condition and the simulation effect was then validated by the tested results. Further more, the simulation analysis of the prototype structure was carried out by the same procedure. Both the simulated and tested results indicate that there are no obvious weak stories on the damping equipped structure, and the dampers can provide the probability of an irregular CRST frame structure to meet the requirements of the design code on energy dissipation and deformation limitation.

Performance assessment of buckling restrained brace with tubular profile

  • Cao, Yan;Azar, Sadaf Mahmoudi;Shah, S.N.R.;Salih, Ahmed Fathi Mohamed;Thiagi, Tiana;Jermsittiparsert, Kittisak;Ho, Lanh Si
    • Advances in nano research
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    • 제8권4호
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    • pp.323-333
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    • 2020
  • In recent years, there has been an upsurge for the usage of buckling restrained braces (BRB) rather than ordinary braces, as they have evidently performed better. If the overall brace buckling is ignored, BRBs are proven to have higher energy absorption capacity and flexibility. This article aims to deliberate an economically efficient yet adequate type of all-steel BRB, comprised of the main components as in traditional ones, such as : (1) a steel core that holds all axial forces and (2) a steel restrainer tube that hinders buckling to occurr in the core; there is a more practical detailing in the BRB system due to the elimination of a filling mortar. An investigation has been conducted for the proposed rectangular-tube core BRB and it is hysteric behavioral results have been compared to previous researches conducted on a structure containing a similar plate core profile that has the same cross-sectional area in its core. A loss of strength is known to occur in the BRB when the limiting condition of local buckling is not satisfied, thus causing instability. This typically occurs when the thickness of the restrainer tube's wall is smaller than the cross-sectional area of the core plate or its width. In this study, a parametric investigation for BRBs with different formations has been performed to verify the effect of the design parameters such as different core section profiles, restraining member width to thickness ratio and relative cross-sectional area of the core to restrainer, on buckling load evaluation. The proposed BRB investigation results have also been presented and compared to past BRB researches with a plate profile as the core section, and the advantages and disadvantages of this configuration have been discussed, and it is concluded that BRBs with tubular core section exhibit a better seismic performance than the ones with a plate core profile.