• 제목/요약/키워드: Gusset plate

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목재 트러스 접합부의 toothed metal plate 접합과 plywood gusset plate 접합에 관한 연구 (Study on Metal Plate Connections and Plywood Gusset Plate Connections for Light-Frame Wood Truss Tension Joint)

  • 차재경
    • Journal of the Korean Wood Science and Technology
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    • 제20권1호
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    • pp.46-50
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    • 1992
  • 본 연구는 잣나무 간벌재를 이용한 plywood gusset plate 접합과 toothed metal plate 접합에 대하여 인장력을 가해 조사하였다. plywood gusset plate 접합에 있어서는 합판과 부재 사이를 상온 경화제(초산 비닐 수지)로 접착한 후 6d 못으로 접합한 형태와 단지 합판만을 사용한 형태의 plywood gusset plate 접합 사이의 기계적 특성 차이를 조사했다. toothed metal plate 접합은 plywood gusset plate 접합보다 인장력에서 좋은 behavior를 보였다. 또한 접착제를 가한 plywood gusset plate 접합은 접합제를 가하지 않은 형태보다 큰 하중 지지력을 보였다.

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Inelastic buckling and post-buckling behavior of gusset plate connections

  • Hadianfard, Mohammad Ali;Khakzad, Ali Reza
    • Steel and Composite Structures
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    • 제22권2호
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    • pp.411-427
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    • 2016
  • In this study, by using finite element non-linear static analysis and comparing it with experimental models, the buckling and post-buckling behavior of bracing gusset plates has been investigated. The effects of such parameters as dimension and thickness of the gusset plate and the influence of position of the bracing member on the behavior of gusset plate have been examined. The results of the analyses clearly suggest that capacity, buckling and post-buckling behaviors of gusset plates depend on the position of the bracing splice plate with respect to the free bending line as well as on the size and thickness of the gusset plate. Also, with respect to numerical analysis results, some practical graphs for the calculation of buckling capacity of gusset plate connections are presented. For steel structures, the proposed method is apparently more accurate than available code procedures.

Numerical study on force transfer mechanism in through gusset plates of SCBFs with HSS columns & beams

  • Ebrahimi, S.;Zahrai, S.M.;Mirghaderi, S.R.
    • Steel and Composite Structures
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    • 제31권6호
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    • pp.541-558
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    • 2019
  • In Special Concentrically Braced Frames (SCBFs), vertical and horizontal components of the brace force must be resisted by column and beam, respectively but normal force component existing at the gusset plate-to-column and beam interfaces, creates out-of-plane action making distortion in column and beam faces adjacent to the gusset plate. It is a main concern in Hollow Structural Section (HSS) columns and beams where their webs and gusset plate are not in the same plane. In this paper, a new gusset plate passing through the HSS columns and beams, named as through gusset plate, is proposed to study the force transfer mechanism in such gusset plates of SCBFs compared to the case with conventional gusset plates. For this purpose, twelve SCBFs with diagonal brace and HSS columns and twelve SCBFs with chevron brace and HSS columns and beams are considered. For each frame, two cases are considered, one with through gusset plates and the other with conventional ones. Based on numerical results, using through gusset plates prevents distortion and out-of-plane deformation at HSS column and beam faces adjacent to the gusset plate helping the entire column and beam cross-sections to resist respectively vertical and horizontal components of the brace force. Moreover, its application increases energy dissipation, lateral stiffness and strength around 28%, 40% and 32%, respectively, improving connection behavior and raising the resistance of the normal force components at the gusset plate-to-HSS column and beam interfaces to approximately 4 and 3.5 times, respectively. Finally, using such through gusset plates leads to better structural performance particularly for HSS columns and beams with larger width-to-thickness ratio elements.

Modeling nonlinear behavior of gusset plates in the truss based steel bridges

  • Deliktas, Babur;Mizamkhan, Akhaan
    • Structural Engineering and Mechanics
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    • 제51권5호
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    • pp.809-821
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    • 2014
  • The truss based steel bridge structures usually consists of gusset plates which lose their load carrying capacity and rigidity under the effect of repeated and dynamics loads. This paper is focused on modeling the nonlinear material behavior of the gusset plates of the Truss Based Bridges subjected to dynamics loads. The nonlinear behavior of material is characterized by a damage coupled elsto-plastic material models. A truss bridge finite element model is established in Abaqus with the details of the gusset plates and their connections. The nonlinear finite element analyses are performed to calculate stress and strain states in the gusset plates under different loading conditions. The study indicates that damage initiation occurred in the plastic deformation localized region of the gusset plates where all, diagonal, horizontal and vertical, truss member met and are critical for shear type of failure due tension and compression interaction. These findings are agreed with the analytical and experimental results obtained for the stress distribution of this kind gusset plate.

Behavior and design of stainless steel tubular member welded end connections

  • Kiymaz, Guven;Seckin, Edip
    • Steel and Composite Structures
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    • 제17권3호
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    • pp.253-269
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    • 2014
  • Among the various alternatives to make a steel tubular member connection, making a slotted and gusset plate welded connection is one of the most frequently preferred alternatives. This type of connection is essentially an end connection that is made by slotting the tube longitudinally, inserting the gusset plate and then placing longitudinal fillet welds at the tube-to-plate interface. In this paper an experimental study on the behaviour of such connections in stainless steel is presented. 24 specimens were tested under concentrically applied axial tensile forces for varying tube-to-gusset plate weld lengths. Both circular and box section members were considered in the test program. Load-deformation curves were obtained and comparisons were made in terms of strength and ductility. The results obtained from the study were then critically examined and compared with currently available design guidance for slotted gusset plate welded tubular end connections. It is noted that no specific rules exist in international specifications on structural stainless steel which cover the design of such connections. Therefore, the results of this study are compared with the existing design rules for carbon steel.

거셋플레이트 연결부가 가새골조의 내진 성능에 미치는 영향 (Influence of Gusset Plate Connection on Seismic Performance of Braced Frame)

  • 정아연;유정한
    • 한국공간구조학회논문집
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    • 제21권1호
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    • pp.87-94
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    • 2021
  • The purpose of this paper is to improve the inappropriate analysis results when the end of the brace on braced frame is applied as pinned connection in practice. The stiffness of the gusset plate connection on the braced frame has the amount of between pinned and rigid connection, and the analysis model that applies the stiffness of the connection must be used for accurate performance evaluation. In this study, the stiffness of the gusset plate designed by the balanced design procedure are quantified, and applied to the analysis model to simulate the gusset plate connection. The proposed model was verified through nonlinear static analysis (pushover analysis) of SAP2000. The effect of the connection on the seismic performance of the braced frame was analyzed by comparing the proposed model and pinned model. As a result, it was confirmed that the performance of the braced frame was evaluated conservatively in practice, and the ductility was overestimated. Therefore, it is important to consider the connection for accurate and economical performance evaluation.

역V형 가새 골조의 개선된 디자인 모델을 위한 해석적 연구 (Analytical Investigation for Improved Design Models of Chevron Braced Frames)

  • 유정한
    • 한국지진공학회논문집
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    • 제13권5호
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    • pp.73-78
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    • 2009
  • 가새 골조는 내진 시스템으로 자주 사용되고 역V형 가새 골조 역시 종종 사용된다. 최근 연구는 가새 골조의 지진 성능은 지진 변형 요구의 직접적 고려를 통한 가새 골조 거싯 플레이트 연결부의 설계와 선택된 성능 레벨에 거싯 플레이트의 항복을 허용함으로써 개선될 수 있다고 지적한다. 역V형 가새 골조의 지진 성능에 대한 거싯 플레이트와 골조 부재의 영향을 조사하고 개선된 디자인 모델을 개발하기 위해 유한요소 모델을 이용한 매개변수 연구를 수행했다. 골조 크기, 간극 거리, 거싯 플레이트 두께와 테이퍼 플레이트를 포함한 골조 디테일의 영향에 대해 조사했다. 그 결과 연결부의 적절한 디테일은 골조 성능의 개선에 크게 기여할 수 있다는 결론을 얻었다. 특히 거싯 플레이트 두께는 골조 성능에 커다란 영향을 미친다는 결론을 얻었다.

단부구속효과를 고려한 관통 가셋트 부착 강관부재의 좌굴내력 및 유효세장비 산정에 관한 연구 (A Study on the Buckling Strength and Effective Length of Tubular Member with Gusset Plate Considering End Restraints)

  • 김우범
    • 한국강구조학회 논문집
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    • 제15권2호
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    • pp.159-165
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    • 2003
  • 단부에 관통 가셋트판이 부착된 강관부재의 좌굴거동은 단부의 형상 및 상태에 따라 구속정도가 상이하게되며 단부요소는 세 장비에 따라 탄성 및 비탄성 거동 특성을 보임에 따라 이론적 좌굴내력을 도출하는 것은 사실상 불가능하다. 본 연구에서는 탄성좌굴의 이론적 접근을 바탕으로 세장비($\lambda$), 강성비($\beta$), 지지길이비(G), 강관크기, 부재의 초기변형 등을 고려하여 비탄성 유한요소 해석을 수행하여 각각의 영향요소가 좌굴하중에 미치는 영향을 살펴보았다. 또한 유한요소 모델링시 세장비($\lambda$), 강성비($\beta$), 지지길이비(G), 강관크기 등의 매개변수 분석을 통하여 강도식을 도출하였다.

A study on detailing gusset plate and bracing members in concentrically braced frame structures

  • Hassan, M.S.;Salawdeh, S.;Hunt, A.;Broderick, B.M.;Goggins, J.
    • Advances in Computational Design
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    • 제3권3호
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    • pp.233-267
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    • 2018
  • Conventional seismic design of concentrically braced frame (CBF) structures suggests that the gusset plate connecting a steel brace to beams and/or columns should be designed as non-dissipative in earthquakes, while the steel brace members should be designed as dissipative elements. These design intentions lead to thicker and larger gusset plates in design on one hand and a potentially under-rated contribution of gusset plates in design, on the other hand. In contrast, research has shown that compact and thinner gusset plates designed in accordance with the elliptical clearance method rather than the conventional standard linear clearance method can enhance system ductility and energy dissipation capacity in concentrically braced steel frames. In order to assess the two design methods, six cyclic push-over tests on full scale models of concentric braced steel frame structures were conducted. Furthermore, a 3D finite element (FE) shell model, incorporating state-of-the-art tools and techniques in numerical simulation, was developed that successfully replicates the response of gusset plate and bracing members under fully reversed cyclic axial loading. Direct measurements from strain gauges applied to the physical models were used primarily to validate FE models, while comparisons of hysteresis load-displacement loops from physical and numerical models were used to highlight the overall performance of the FE models. The study shows the two design methods attain structural response as per the design intentions; however, the elliptical clearance method has a superiority over the standard linear method as a fact of improving detailing of the gusset plates, enhancing resisting capacity and improving deformability of a CBF structure. Considerations were proposed for improvement of guidelines for detailing gusset plates and bracing members in CBF structures.

플레이트거더 용접구조상세의 피로거동에 관한 연구 (A Study on the Fatigue Behavior of the Welded Structural Details in Plate Girder)

  • 이명구;이승용
    • 한국안전학회지
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    • 제23권2호
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    • pp.14-20
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    • 2008
  • The objective of this study is to examine fatigue strength of the welded details. In order to attain the goal of this study, the bending fatigue tests was performed for four kinds of welded details used in steel bridges, such as in-plane gusset, out-of-plane gusset, cruciform, and cover plate. The effect of the length of welded attachment on fatigue strength was greater in out-of-plane gusset than in in-plane gusset. The fatigue strength of welded details with short attachment was superior to that with long attachment. Fatigue strength of welded details with transversely loaded welds was lower than that with longitudinally loaded welds, and those results were not satisfied with AASHTO specifications. For the fatigue strength of cover plate, cover plate with rectangular section was superior to that with tapered section. It was found that the fatigue crack initiates at the points of stress concentration which are the boundary between the base metal and the bead of weld in the part of the longitudinal edge of attachment, and propagates first along the boundary and along the perpendicular to the direction of the principle stress in the base metal of welded tip.