• 제목/요약/키워드: Required buckling capacity

검색결과 24건 처리시간 0.022초

새로운 형태의 리브를 갖는 보강판의 좌굴거동 (Buckling Behavior of Plates Stiffened with the New Type Ribs)

  • 주석범;이필남
    • 한국강구조학회 논문집
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    • 제30권1호
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    • pp.59-66
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    • 2018
  • 본 연구에서는 새로운 형태의 리브(${\Box}$형)를 갖는 보강판의 좌굴거동에 대한 매개변수 해석을 수행하였다. ${\Box}$형 리브의 제원에 따른 좌굴능력의 변화가 일정한 양상을 나타냄에 따라 특정 좌굴하중을 갖는 ${\Box}$형 리브 단면을 구하는 시스템을 제안할 수 있었으며, 이 시스템을 실교량의 강바닥판에 적용하였을 때 기존 폐단면 리브보다 더 경제적인 ${\Box}$형 리브 단면을 많이 얻을 수 있었다. 따라서 본 연구에서 제안한 ${\Box}$형 리브 시스템을 이용하면, 소요 좌굴 능력을 가지면서도 보다 경제적인 강바닥판 설계를 할 수 있을 것으로 판단된다.

굴착순서에 따른 Top Down 선기둥 지지력 산정 (Load Carrying Capacity of Top Down Prefounded Columns on Different Excavation Schedule)

  • 임홍철;황희선
    • 한국건축시공학회지
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    • 제6권4호
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    • pp.45-52
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    • 2006
  • Top Down method is more widely used in downtown construction, recently. As underground construction constitutes a significant portion of the total construction cost and time in Top Down construction, it is important to develop a construction method to reduce the time required in underground works. The purpose of this study is to analyze load carrying capacity of Top Down prefounded columns on different excavation schedule. When several floors are excavated, the valid buckling length of prefounded column is increased and allowable buckling stress is decreased. The result shows that all columns are safe in buckling down to B3 story whether 2 or 3 stories are excavated. However, several columns are not safe from B4 story when 2 or 3 stories are excavated straightly. With these results, a process can be designed that the first three stories in the basement are excavated, and then excavate B4 story after placing concrete on B1 and B2 floor.

축방향 압축력을 받는 원통형 박막소재의 좌굴후 탄소성 대변형에 관한 실험 및 해석 연구 (Experimental and Numerical Study on the Elastic-Plastic, Large Deflection, Post-Buckling Behavior of Axially Compressed Circular Cylindrical Tubes)

  • 권세문;윤희도
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2001년도 춘계학술대회논문집A
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    • pp.969-974
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    • 2001
  • Circular cylindrical tubes are widely used in structures such as vehicles and aircraft structures, where light weight and high compressive/bending/torsional load carrying capacity are required. When axially compressed, relatively thick circular cylindrical tubes deform in a so-called ring mode. Each ring develops and completely collapses one by one until the entire length of the tube collapses. During the collapse process the tube absorbs a large amount of energy. Like honey-comb structures, circular cylindrical tubes are light weighted, are capable of high axial compressive load, and absorb a large amount of energy before being completely collapsed. In this report, the subject of axial plastic buckling of circular cylindrical tubes was reviewed first. Then, the axial collapse process of the tubes in a so-called ring mode was studied both experimentally and numerically. In the experiment, steel tubes were axially compressed slowly until they were completely collapsed. Fixed boundary condition was provided. Numerical study involves axisymmetric, elastic-plastic, large deflection, self-contact mechanisms. The measured and calculated results were presented and compared with each other. The purpose of the study was to evaluate the load carrying capacity and the energy absorbing capacity of the tube.

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기존선 급곡선부의 장대화 방안에 대한 연구 (A study on constructing CWR for railroad under operation)

  • 양신추;노혁천;김은;이종득
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2001년도 춘계학술대회 논문집
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    • pp.303-310
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    • 2001
  • The railroad under operation has very sharp curves and the state of ballast is somewhat deteriorated due to the traffic loads, which put some constraints in converting the conventional rails into CWR. In making CWR, the determination whether the ballast has sufficient capacity for resisting buckling must be made, quantitatively and qualitatively, and schemes to guarantee the required lateral resistance of ballast should be proposed. In this study, using the in-situ investigated data, the probability of buckling of CWR is given for several installation temperatures for CWR. The effect of tamping, DTS, and sleeper spacing are taken into account. The buckling probability is given as a function of curvature and installation temperature of CWR and works used to increase the ballast resistance capacity after tamping, i.e., DTS and reduction of sleeper sparing.

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수직보강재가 원형강기둥의 이력거동에 미치는 영향에 대한 해석적 연구 (An Analytical Study on Influence of Longitudinal Stiffeners on Seismic Performance of Circular Steel Columns)

  • 장갑철;장경호
    • 한국공간구조학회논문집
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    • 제7권1호
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    • pp.63-70
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    • 2007
  • 최근 복잡해진 도심지의 토지 이용률을 높이기 위하여 원형 강교각이 건설이 요구되고 있다. 원형강교각의 경우 줄어든 단면으로 좌굴 내하력이 감소하며 이에 대한 방안으로 수직 보강재의 적용을 고려할 수 있다. 그러나 수직보강재를 적용한 원형 강교각의 좌굴 내하력의 증가의 효과에 대해서는 아직 명히 파악되지 않았다. 본 연구에서는 먼저 탄소성 유한요소해석 통하여 보강재를 적용하지 않은 무보강 원형 강교각과 수직보강재가 보강된 원형 강교각에 대해서 좌굴내하력을 검토하였다. 그리고, 형상비(R/t)에 따른 좌굴내하력의 변화를 기존의 실험식과 비교하여 그 효과를 검토하였다. 그리고 원형강교각의 수직 보강재를 적용하여 폭과 두께에 따른 좌굴 내하력을 비교 검토하였다. 그리고 수직 보강재를 적용한 원형 강교각에 대한 내진성능을 검토하였다.

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F. E.-assisted design of the eaves bracket of a cold-formed steel portal frame

  • Lim, J.B.P.;Nethercot, D.A.
    • Steel and Composite Structures
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    • 제2권6호
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    • pp.411-428
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    • 2002
  • Non-linear large-displacement elasto-plastic finite element analyses are used to propose design recommendations for the eaves bracket of a cold-formed steel portal frame. Owing to the thinness of the sheet steel used for the brackets, such a structural design problem is not trivial as the brackets need to be designed against failure through buckling; without availability of the finite element method, expensive laboratory testing would therefore be required. In this paper, the finite element method is firstly used to predict the plastic moment capacity of the eaves bracket. Parametric studies are then used to propose design recommendations for the eaves bracket against two potential buckling modes of failure: (1) buckling of the stiffened free-edge into one-half sine wave, (2) local plate buckling of the exposed triangular bracket area.The results of full-scale laboratory tests on selected geometries of eaves bracket demonstrate that the proposed design recommendations are conservative. The use of the finite element method in this way exploits modern computational techniques for an otherwise difficult structural design problem.

Out-of-plane buckling and bracing requirement in double-angle trusses

  • Chen, Shaofan;Su, Mingzhou
    • Steel and Composite Structures
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    • 제3권4호
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    • pp.261-275
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    • 2003
  • Truss members built-up with double angles back-to-back have monosymmetric cross-section and twisting always accompanies flexion upon the onset of buckling about the axis of symmetry. Approximate formulae for calculating the buckling capacity are presented in this paper for routine design purpose. For a member susceptible only to flexural buckling, its optimal cross-section should consist of slender plate elements so as to get larger radius of gyration. But, occurrence of twisting changes the situation owing to the weakness of thin plates in resisting torsion. Criteria for limiting the leg slenderness are discussed herein. Truss web members in compression are usually considered as hinged at both ends for out-of-plane buckling. In case one (or both) end of member is not supported laterally by bracing member, its adjoining members have to provide an elastic support of adequate stiffness in order not to underdesign the member. The stiffness provided by either compression or tension chords in different cases is analyzed, and the effect of initial crookedness of compression chord is taken into account. Formulae are presented to compute the required stiffness of chord member and to determine the effective length factor for inadequately constrained compressive diagonals.

Optimized stiffener detailing for shear links in eccentrically braced frames

  • Ozkilic, Yasin O.
    • Steel and Composite Structures
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    • 제39권1호
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    • pp.35-50
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    • 2021
  • Eccentrically braced frames (EBFs) are utilized as a lateral resisting system in high seismic zones. Links are the primary source of energy dissipation and they are exposed to high deformation, which may lead to buckling. Web stiffeners were introduced to prevent buckling of shear link. AISC 341 provides the required vertical stiffeners for a shear link. In this study, different stiffener configurations were examined. The main objective is to improve the behavior of short links using different stiffener configurations. Pursuant to this goal, a comprehensive numerical study is conducted using ABAQUS. Shear links with different stiffener configurations were subjected to cyclic loading using loading protocol mandated by AISC 341. The results are compared in terms of energy dissipation and shear capacities and rupture index. The proposed stiffener configurations were further verified with different link length ratios, I-shapes and thickness of stiffener. Based on the results, the stiffener configuration with two vertical and two diagonal stiffeners perpendicular to each other is recommended. The proposed stiffener configuration can increase the shear capacity, energy dissipation capacity and the ratio of energy/weight up to 27%, 38% and 30%, respectively. Detailing of the proposed stiffener configuration is presented.

Lateral-torsional buckling resistance of composite steel beams with corrugated webs

  • Shaheen, Yousry B.I.;Mahmoud, Ashraf M.
    • Structural Engineering and Mechanics
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    • 제81권6호
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    • pp.751-767
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    • 2022
  • In the hogging bending moment area, continuous composite beams are subjected to the ultimate limit state of lateral-torsional buckling (LTB), which depends on web stiffness as well as concrete slab and shear connection stiffnesses. The design of the LTB and the determination of the elastic critical moment are produced approximately, using the European Standard EN 1994-1-1:2004, for continuous composite steel beams, but is applicable only for those with a plane web steel profile. Also, and from the previous researches, the elastic critical moment of the continuous composite beams with corrugated sinusoidal web steel profiles was determined. In this paper, a finite element analysis (FEA) model was developed using the ANSYS 16 software, to determine the elastic critical moments of continuous composite steel beams with various corrugated web profiles, such as trapezoidal, zigzag, and rectangular profiles, which were evaluated against numerical data of the sinusoidal one from the literature. Ultimately, the failure load of a composite steel beam with various web profiles was predicted by studying 46 models, based on FEA modeling, and a procedure for predicting the elastic critical moment of composite beams with various web steel profiles was proposed. When compared to sinusoidal web profiles, the trapezoidal, zigzag, and rectangular web profiles required an average increase in load capacity and stiffness of 7%, 17.5%, and 28%, respectively, according to the finite element analysis. Also, the rectangular web steel profile has a greater stiffness and load capacity. In contrast, the sinusoidal web has lower values for these characteristics.

국부좌굴을 고려한 고강도 조립 H형강 부재의 휨성능 실험 (Flexural Test of H-Shape Members Fabricated of High-Strength Steel with Considering Local Buckling)

  • 이철호;한규홍;박창희;김진호;이승은;하태휴
    • 한국강구조학회 논문집
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    • 제23권4호
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    • pp.417-428
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    • 2011
  • 강구조 설계는 재료의 비탄성 변형능력을 활용하는 정도에 따라 탄성설계법, 소성설계법, 내진설계법으로 대별할 수 있다. 현재 국내외 강구조 설계기준에서는 항복강도 450MPa를 초과하는 고강도강재에 대해서는 비탄성 변형능력에 대한 우려와 국부좌굴 및 횡좌굴 거동에 대한 실험자료의 부족으로 소성설계의 적용을 금하고 있다. 본 연구에서는 일반강재를 대상으로 개발된 현행 강구조설계기준의 플랜지 판폭두께비 제한식을 최근에 개발된 고강도강재인 HSB800에도 그대로 확대 적용할 수 있는지 여부를 확인하고 고강도강 휨부재의 국부좌굴 및 비탄성거동을 파악하기 위한 실물대실험을 수행하였다. HSB800 및 SM490A(비교강종) 강재로 조립된 H형강 휨부재를 각각 5개씩 총 10개의 실험체를 제작하고 실험하여 비교분석하였다. 모든 SM490A 비교실험체는 설계기준 상의 판폭두께비에 따른 요구강도와 연성능력을 충분히 발휘하였다. HSB800 실험체 역시 강도 발현의 측면에서는 매우 만족스런 성능을 발휘하였다. 즉, 비콤팩트 및 세장판 요소 플랜지를 지닌 실험체에서도 소성모멘트를 충분히 상회하거나 이에 육박하는 강도가 발현되었다. 이는 현행 판폭두께비 제한규정을 HSB800 고강도강에 그대로 적용해도 강성과 강도 확보를 목표로 하는 모든 탄성설계에 충분히 보수적으로 적용할 수 있음을 의미한다. 그러나 SM490 실험체와는 달리 HSB800 실험체 5개 가운데 3개가 가력점 스티프너와 접합된 하부플랜지에서 조기 인장파단이 발생하여 소성설계에 요구되는 회전능력 R=3에는 미달하였다. HSB800 실험체에서 관측된 파단원인을 규명하고 고강도강재에 보다 적합한 판폭두께비의 정립을 위한 추가실험과 해석적 연구가 필요할 것으로 판단된다.