• 제목/요약/키워드: shear lag

검색결과 111건 처리시간 0.026초

연결이음 접합된 섬유금속적층판의 하중전달 거동 연구 (Load Transfer Behaviors of the Splice-Jointed Fiber Metal Laminates)

  • 노희석;최원종;하민수;최흥섭
    • 대한기계학회논문집A
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    • 제29권2호
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    • pp.220-227
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    • 2005
  • In this study, stress-displacement analytic solutions are obtained by a shear lag modeling method constructed for the spliced joint area with a splicing gap in the fiber metal laminate (FML). This gap can be empty or be filled with an adhesive material of elastic modulus $E_a$. Two splicing types are considered for spliced shear models, one for spliced in the center metal layer, the other for spliced in the outer metal layer. It is shown that from the viewpoint of the load transfer efficiency and the avoidability of disbond generation due to the shear and axial stresses at the interface between metal layer and composite layer of the gap-front in the spliced area, the center spliced type (k=2) is much preferable to the outer spliced type (k=1).

Locating a weakened interface in a laminated elastic plate

  • Zhu, J.;Yang, J.S.;Chen, W.Q.
    • Structural Engineering and Mechanics
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    • 제41권6호
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    • pp.751-758
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    • 2012
  • We study thickness-shear (TSh) free vibrations of an unbounded, laminated elastic plate with three layers of different materials. One of the two interfaces is slightly weakened as described by the shear-lag model that allows the displacement to be discontinuous across the interface. A frequency equation is obtained from the linear theory of elasticity. A perturbation solution of the frequency equation is obtained from which the frequency shifts of TSh modes due to the weakened interface can be calculated. It is shown that the frequency shifts of TSh modes of different orders are different, and they satisfy different conditions when different interfaces are weakened. These conditions are obtained which can potentially be used as criteria for determining specifically which interface is weakened.

홀드다운을 적용한 경골목조 벽체의 전단성능 (Racking Property of Light-framed Shear Wall with Hold-down Connector)

  • 이인찬;박천영;이전제
    • Journal of the Korean Wood Science and Technology
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    • 제36권4호
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    • pp.26-36
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    • 2008
  • 건축구조 설계기준이 개정됨에 따라서 목조건축물의 제한 기준이 완화되어 경골 목조건축의 다층 시공이 가능하게 되었다. 건축물의 규모 증가는 건물에 작용하는 하중을 증가시키므로 증가된 작용하중에 맞추어 하중저항성능을 향상시켜 설계하고 시공해야 한다. 기존에는 경골 목조건축의 전단성능을 향상시키기 위하여 벽량을 보강하는 방법을 적용하였으나 본 연구에서는 홀드다운 접합철물을 사용하는 방법을 적용하였다. 홀드다운은 아직까지 국내에서 보편적이지 않은 접합철물이므로 홀드다운의 국내 적용 적합성을 평가하기 위하여 본 연구를 수행하였다. 홀드다운을 적용한 경골 목조 전단벽에 대하여 정적하중 시험을 통한 전단성능 평가 결과 홀드다운 적용 후에 전단벽의 초기강성, 항복하중 및 기준하중이 향상됨을 확인하였으며, 전단성능 향상에 따라 수평 변위와 전단변형의 증가율이 감소하는 것이 확인되었다. 홀드다운과 스터드의 접합방법에 따른 전단성능의 차이는 크지 않은 것으로 확인하였고, 홀드다운 제품 설계강도가 증가할수록 전단벽의 전단성능도 증가하는 경향이 나타났으나 그 차이가 제품 설계강도 차이에 비하여 크지 않은 것으로 판단되었다. 홀드다운을 설치하는 스터드의 규격에 따라서 89 mm 스터드를 사용한 경우와 38 mm 스터드를 두 겹으로 사용한 경우에 비슷한 성능을 나타내므로 38 mm 부재에 홀드다운을 설치할 경우는 스터드의 두께 보강을 통한 성능 향상이 필요하다고 판단하였다.

Experimental and numerical study on large-curvature curved composite box girder under hogging moment

  • Zhu, Li;Wang, Jia J.;Zhao, Guan Y.;Huo, Xue J.;Li, Xuan
    • Steel and Composite Structures
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    • 제37권2호
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    • pp.117-136
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    • 2020
  • Curved steel-concrete composite box girder has been widely adopted in urban overpasses and ramp bridges. In order to investigate its mechanical behavior under complicated and combined bending, shear and torsion load, two large-curvature composite box girders with interior angles of 25° and 45° were tested under static hogging moment. Based on the strain and deflection measurement on critical cross-sections during the static loading test, the failure mode, cracking behavior, load-displacement relationship, and strain distribution in the steel plate and rebar were investigated in detail. The test result showed the large-curvature composite box girders exhibited notable shear lag in the concrete slab and steel girder. Also, the constraint torsion and distortion effect caused the stress measured at the inner side of the composite beam to be notably higher than that of the outer side. The strain distribution in the steel web was approximately linear; therefore, the assumption that the plane section remains plane was approximately validated based on strain measurement at steel web. Furthermore, the full-process non-linear elaborate finite element (FE) models of the two specimens were developed based on commercial FE software MSC.MARC. The modeling scheme and constitutive model were illustrated in detail. Based on the comparison between the FE model and test results, the FE model effectively simulated the failure mode, the load-displacement curve, and the strain development of longitudinal rebar and steel girder with sufficient accuracy. The comparison between the FE model and the test result validated the accuracy of the developed FE model.

Investigation on Ultimate Strength of STS304L Stainless Steel Welded Connection with Base Metal Fracture Using Finite Element Analysis

  • Lee, HooChang;Kim, TaeSoo;Hwang, BoKyung;Cho, TaeJun
    • 국제강구조저널
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    • 제18권4호
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    • pp.1139-1152
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    • 2018
  • Many studies on the application of stainless steels as structural materials in buildings and infra-structures have been performed thanks to superior characteristics of corrosion resistance, fire resistance and aesthetic appeal. Experimental investigation to estimate the ultimate strength and fracture mode of the fillet-welded connections of cold-formed austenitic stainless steel (STS304L) with better intergranular corrosion resistance than that of austenitic stainless steel, STS304 commonly used has carried out by authors. Specimens were fabricated to fail by base metal fracture not weld metal fracture with main variables of weld lengths according to loading direction. All specimens showed a block shear fracture mode. In this paper, finite element analysis model was developed to predict the ultimate behaviors of welded connection and its validity was verified through the comparison with test results. Since the block shear behavior of welded connection due to stress triaxiality and shear-lag effects is different from that of bolted connection, stress and strain distributions in the critical path of tensile and shear fracture section were investigated. Test and analysis strengths were compared with those by current design specifications such as AISC, EC3 and existing researcher's proposed equations. In addition, through parametric analysis with extended variables, the conditions of end distance and longitudinal weld length for block shear fracture and tensile fracture were suggested.

Finite element analysis for the seismic performance of steel frame-tube structures with replaceable shear links

  • Lian, Ming;Zhang, Hao;Cheng, Qianqian;Su, Mingzhou
    • Steel and Composite Structures
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    • 제30권4호
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    • pp.365-382
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    • 2019
  • In steel frame-tube structures (SFTSs) the application of flexural beam is not suitable for the beam with span-to-depth ratio lower than five because the plastic hinges at beam-ends can not be developed properly. This can lead to lower ductility and energy dissipation capacity of the SFTS. To address this problem, a replaceable shear link, acting as a ductile fuse at the mid length of deep beams, is proposed. SFTS with replaceable shear links (SFTS-RSLs) dissipate seismic energy through shear deformation of the link. In order to evaluate this proposal, buildings were designed to compare the seismic performance of SFTS-RSLs and SFTSs. Several sub-structures were selected from the design buildings and finite element models (FEMs) were established to study their hysteretic behavior. Static pushover and dynamic analyses were undertaken in comparing seismic performance of the FEMs for each building. The results indicated that the SFTS-RSL and SFTS had similar initial lateral stiffness. Compared with SFTS, SFTS-RSL had lower yield strength and maximum strength, but higher ductility and energy dissipation capacity. During earthquakes, SFTS-RSL had lower interstory drift, maximum base shear force and story shear force compared with the SFTS. Placing a shear link at the beam mid-span did not increase shear lag effects for the structure. The SFTS-RSL concentrates plasticity on the shear link. Other structural components remain elastic during seismic loading. It is expected that the SFTS-RSL will be a reliable dual resistant system. It offers the benefit of being able to repair the structure by replacing damaged shear links after earthquakes.

섬유금속적층판 연결접합 부위의 하중전달 거동 연구 (Load Transfer Behaviors near the Spliced Joint of the Fiber Metal Laminates)

  • 최흥섭;노희석;장용훈
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2003년도 추계학술대회
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    • pp.1388-1393
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    • 2003
  • In this study, analytic stress-displacement solutions are obtained by using a shear lag modeling constructed for the spliced joint area with a splicing gap filled with adhesive material of elastic modulus $E_{a}$ in the fiber metal laminate (FML) which is known to have excellent fatigue, corrosion and fire-flame resistant characteristics while with relatively low densities compared to the conventional aluminum alloys for lightweight structures.

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연속 보 해석 기법에 의한 내부튜브를 가진 골조 튜브 구조물의 해석 (Continuum Beam Analogy for Analysis of Framed Tube Structures with Multiple Internal Tubes)

  • 이강건
    • 한국전산구조공학회:학술대회논문집
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    • 한국전산구조공학회 2000년도 봄 학술발표회논문집
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    • pp.215-221
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    • 2000
  • A simple numerical modeling technique is proposed for the analysis of framed tube structures with multiple internal tubes. The structures are analysed using a continuum approach in which each tube is individually modelled by a tube beam that accounts for the flexural and shear deformations, as well as the shear lag effects. By simplifying assumptions regarding the form of strain distributions in external and internal tubes, the structural behaviours is reduced to the solution of a single second order linear differential equation. The numerical analysis uses the variational approach on the basis of the minimum potential energy priniciple. Three framed-tube sructures with single, two and three internal tubes are analysed to verify the applicability and reliability of the proposed method.

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Steel-concrete composite bridge analysis using generalised beam theory

  • Goncalves, Rodrigo;Camotim, Dinar
    • Steel and Composite Structures
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    • 제10권3호
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    • pp.223-243
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    • 2010
  • This paper reports recent developments concerning the application of Generalised Beam Theory (GBT) to the structural analysis of steel-concrete composite bridges. The potential of GBT-based semi-analytical or finite element-based analyses in this field is illustrated/demonstrated by showing that both accurate and computationally efficient solutions may be achieved for a wide range of structural problems, namely those associated with the bridge (i) linear (first-order) static, (ii) vibration and (iii) lateral-torsional-distortional buckling behaviours. Several illustrative examples are presented, which concern bridges with two distinct cross-sections: (i) twin box girder and (ii) twin I-girder. Allowance is also made for the presence of discrete box diaphragms and both shear lag and shear connection flexibility effects.

니토 및 오염물질 이동의 수치모의에 미치는 퇴적층의 압밀과 유동화의 중요성에 관하여 (On the Importance of Consolidation and Fluidization in Numerical Modelling of Muds and Pollutants Transports)

  • Jae Youll Jin;Ki Dai Yum;Jin Soon Park
    • 한국해안해양공학회지
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    • 제9권1호
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    • pp.43-55
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    • 1997
  • 니토층의 압밀과 침식 및 파랑에 의한 유동화에 대한 이론과 실험결과를 개략적으로 고찰하였으며, 영광 해역의 기존자료를 재분석하여 주기적 및 비수기적 압밀과 유동화를 겪는 해저 니토층의 전단강도 연직분포의 시간변화 이력의 중요성에 관하여 정성적의로 논하였다. 기존의 실내설험 결과 및 영광 해역의 현장자료에 따르면, 저면의 압밀과 유동화를 고려하지 않고 니토 혹은 오염물질을 수치모의할 경우 ,유체역학적 작용력과 수주내 농도증가 사이에 시간차이를 유발할 수 있다. 이러한 시간차이는, 특히 파랑에너지가 비교적 큰 대조차 환경에서 저면으로부터 기인하는 고농도 물질의 이동방향 측면, 즉 물질수지 측면에서 심각한 오차를 발생시킬 수 있다

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