• 제목/요약/키워드: Nonlinear behavior of connection

검색결과 135건 처리시간 0.019초

아닐링법에 의한 지구물리자료의 역산 (Inversion of Geophysical Data via Simulated Annealing)

  • 김희준
    • 자원환경지질
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    • 제28권3호
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    • pp.305-309
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    • 1995
  • There is a deep and useful connection between thermodynamics (the behavior of systems with many degrees of freedom in thermal equilibrium at a finite temperature) and combinational or continuous optimization (finding the minimum of a given multiparameter function). At the heart of the method of simulated annealing is an analogy with the way that liquids freeze and crystallize, or metals cool and anneal. This paper provides a detailed description of simulated annealing. Although computationaly intensive, when it is carefully implemented, simulated annealing is found to give superior results to more traditional methods of nonlinear optimization.

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Nonlinear behavior of connections in RCS frames with bracing and steel plate shear wall

  • Ghods, Saeedeh;Kheyroddin, Ali;Nazeryan, Meissam;Mirtaheri, Seyed Masoud;Gholhaki, Majid
    • Steel and Composite Structures
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    • 제22권4호
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    • pp.915-935
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    • 2016
  • Steel systems composed of Reinforced Concrete column to Steel beam connection (RCS) have been raised as a structural system in the past few years. The optimized combination of steel-concrete structural elements has the advantages of both systems. Through beam and through column connections are two main categories in RCS systems. This study includes finite-element analyses of mentioned connection to investigate the seismic performance of RCS connections. The finite element model using ABAQUS software has been verified with experimental results of a through beam type connection tested in Taiwan in 2005. According to verified finite element model a parametric study has been carried out on five RCS frames with different types of lateral restraint system. The main objective of this study is to investigate the forming of plastic hinges, distribution of stresses, ductility and stiffness of these models. The results of current research showed good performance of composite systems including concrete column-steel beam in combination with steel shear wall and bracing system, are very desirable. The results show that the linear stiffness of models with X bracing and steel shear wall increase remarkably and their ultimate strength increase about three times rather than other RCS frames.

브래킷형 완전강접합 모듈러 시스템의 반복가력실험과 해석적 평가 (Cyclic Loading Test and an Analytical Evaluation of the Modular System with Bracket-typed Fully Restrained Moment Connections)

  • 박재성;강창훈;손수덕;이승재
    • 대한건축학회논문집:구조계
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    • 제34권3호
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    • pp.19-28
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    • 2018
  • Key factors that ensure competitiveness of modular unit include consistent high quality and connection condition that ensures high structural performance while minimizing the overall scale of the on-site process. However, it is difficult to evaluate the structural performance of the connection of modular unit, and its structural analysis and design method can be different depending on the connection to its development, which affects the seismic performance of its final design. In particular, securing the seismic performance is the key to designing modular systems of mid-to-high-rise structure. In this paper, therefore, the seismic performance of the modular system with bracket-typed fully restrained moment connections according to stiffness and the shapes of various connection members was evaluated through experimental and analytical methods. To verify the seismic performance, a cyclic loading test of the connection joint of the proposed modular system was conducted. As a result of this study, theoretical values and experimental results were compared with the initial stiffness, hysteresis behavior and maximum bending moment of the modular system. Also, the connection joint was modeled, using the commercial program ANSYS, which was then followed by finite element analysis of the system. According to the results of the experiment, the maximum resisting force of the proposed connection exceeded the theoretical parameters, which indicated that a rigid joint structural performance could be secured. These results almost satisfied the criteria for connection bending strength of special moment frame listed on KBC2016.

Modeling of composite MRFs with CFT columns and WF beams

  • Herrera, Ricardo A.;Muhummud, Teerawut;Ricles, James M.;Sause, Richard
    • Steel and Composite Structures
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    • 제43권3호
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    • pp.327-340
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    • 2022
  • A vast amount of experimental and analytical research has been conducted related to the seismic behavior and performance of concrete filled steel tubular (CFT) columns. This research has resulted in a wealth of information on the component behavior. However, analytical and experimental data for structural systems with CFT columns is limited, and the well-known behavior of steel or concrete structures is assumed valid for designing these systems. This paper presents the development of an analytical model for nonlinear analysis of composite moment resisting frame (CFT-MRF) systems with CFT columns and steel wide-flange (WF) beams under seismic loading. The model integrates component models for steel WF beams, CFT columns, connections between CFT columns and WF beams, and CFT panel zones. These component models account for nonlinear behavior due to steel yielding and local buckling in the beams and columns, concrete cracking and crushing in the columns, and yielding of panel zones and connections. Component tests were used to validate the component models. The model for a CFT-MRF considers second order geometric effects from the gravity load bearing system using a lean-on column. The experimental results from the testing of a four-story CFT-MRF test structure are used as a benchmark to validate the modeling procedure. An analytical model of the test structure was created using the modeling procedure and imposed-displacement analyses were used to reproduce the tests with the analytical model of the test structure. Good agreement was found at the global and local level. The model reproduced reasonably well the story shear-story drift response as well as the column, beam and connection moment-rotation response, but overpredicted the inelastic deformation of the panel zone.

상·하부 스플릿 T 접합부의 초기회전강성 예측모델 (Prediction Model for the Initial Rotational Stiffness of a Double Split T Connection)

  • 양재근;김윤;박재호
    • 한국강구조학회 논문집
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    • 제24권3호
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    • pp.279-287
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    • 2012
  • 상 하부 스플릿 T 접합부는 T-stub의 두께, 고력볼트 게이지 거리 등의 주요 변수 조합에 따라서 보통모멘트골조 혹은 특수모멘트골조에 적합한 접합부로 사용된다. 상 하부 스플릿 T 접합부가 안전한 구조거동을 발휘하기 위해서는 건축구조기준에서 규정한 층간변위각 및 접합부모멘트에 대한 요구사항을 만족하여야 한다. 이러한 요구사항 조건의 충족여부를 파악하기 위해서는 접합부의 회전강성 및 한계소성모멘트에 대한 예측이 필수적이다. 따라서 이 연구는 일차적으로 정적하중을 받는 상 하부 스플릿 T 접합부의 회전강성 예측을 위한 해석모델 제안을 위하여 진행하고자 한다. 이를 위하여 3차원 비선형 유한요소해석을 수행하였다. 제안한 해석모델의 적용 적합성은 기존의 해석모델 및 실험결과와 비교 검토하여 입증하였다.

Effects of pulse-like nature of forward directivity ground motions on the seismic behavior of steel moment frames

  • Mansouri, Iman;Shahbazi, Shahrokh;Hu, Jong Wan;Moghaddam, Salar Arian
    • Earthquakes and Structures
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    • 제17권1호
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    • pp.1-15
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    • 2019
  • In the structures with high level of ductility, the earthquake energy dissipation in structural components is an important factor that describes their seismic behavior. Since the connection details play a major role in the ductile behavior of structure, in this paper, the seismic response of 3-, 5- and 8-story steel special moment frames (SMFs) is investigated by considering the effects of panel zone modeling and the influence of forward-directivity near-field ground motions. To provide a reasonable comparison, selected records of both near and far-field are used in the nonlinear time-history analysis of models. The results of the comparison of the median maximum inter-story drift under excitation by near-field (NF) records and the far-field (FF) ground motions show that the inter-story drift demands can be obtained 3.47, 4.86 and 5.92 times in 3-, 5- and 8-story structures, respectively, undergoing near-field earthquakes.

가새 골조에서 거싯 플레이트 연결부의 강성 평가 (Evaluation of Gusset Plate Connection Stiffness in Braced Frames)

  • 유정한
    • 한국강구조학회 논문집
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    • 제21권2호
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    • pp.105-113
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    • 2009
  • 가새골조 성능을 개선하기 위해 연결부 (거싯 플레이트) 강도, 강성, 연성이 골조 디자인에 직접적으로 고려되어야 한다. 연결부의 강도는 지진력에 저항하도록 디자인 되어야하고 필요한 골조시스템의 연성을 확보하는데 기여해야한다. 그리고 연결부의 강성은 구조요소와 연결부의 동적 반응과 변위 요구에 영향을 준다. 이 논문에서 지난 실험 결과를 이용하여 거싯 플레이트 연결부에 대한 현 디자인 모델을 검토하고 평가한다. 현 디자인 모델은 연결부 디자인 가이드라인을 주기엔 적절하지 못하고 실제 거싯 플레이트의 응력과 변위 상태는 비선형이고 굉장히 복잡하다. 구조 디자이너들은 시스템과 연결부의 성능을 대략적으로 예측하기 위해 보와 기둥을 포함한 단순한 모델을 원한다. 이를 위해 단순화한 디자인 모델이 개발되고 평가된다. 이 모델은 비교적 정확하고 신뢰성 있는 연결부 강성 평가를 제공한다.

Visual Basic을 이용한 강뼈대 구조물의 비선형 해석 (Nonlinear Analysis of Steel Frames Using Visual Basic)

  • 윤영조;김선희;이종석
    • 한국전산구조공학회:학술대회논문집
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    • 한국전산구조공학회 1999년도 가을 학술발표회 논문집
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    • pp.403-410
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    • 1999
  • General1y, H-section is used for columns and beams in the middle and low steel building, But it has a strong and weak axis. Thus if H-section is used for columns, the structure needs reinforcement on the weak axis. Therefore recently, square holler section(S.H.S) is used for columns because it is able to coiler the vulnerability of H-section. Structural analysis is usually executed under the assumption that connections are either ideally pinned joint or fully rigid joint. Actually all connections are semi-rigid which possess a rotational stiffness. Therefore it can be designed economically as using the property of connections which has a rotational stiffness. This paper presents a prediction model curve which is fitted Kishi-Chen power Model about the behavior of connection between H-beam and S.H.S column. Non-linear analysis program was considered the non-linearity of semi-rigid connection and the geometrical non-linearity under the effect of axial force. It was programed by FORTRAN90 and Visual Basic.

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Behavior of simple precast high-strength concrete beams connected in the maximum bending moment zone using steel extended endplate connections

  • Magdy I. Salama;Jong Wan Hu;Ahmed Almaadawy;Ahmed Hamoda;Basem O. Rageh;Galal Elsamak
    • Steel and Composite Structures
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    • 제50권6호
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    • pp.627-641
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    • 2024
  • This paper presents an experimental and numerical study to investigate the behavior of the precast segmental concrete beams (PSCBs) utilizing high-strength concrete (HSC) connected in the zone of the maximum bending moment using steel extended endplate connections (EECs). The experimental study consisted of five beams as follows: The first beam was the control beam for comparison, which was an unconnected one-piece beam made of HSC. The other four other beams consisted of two identical pieces of precast concrete. An important point to be noted is that at the end of each piece, a steel plate was used with a thickness of 10 mm. Moreover, this steel plate was welded to the lower and upper reinforcing bars of the beam. Furthermore, the steel plate was made to connect the two pieces using the technique of EECs. Several variables were taken in these four beams, whether from the shape of the connection or enhancing the behavior of the connection using the post-tensioning technique. EECs without stiffeners were used for some of the tested beams. The behavior of these connections was improved using stiffeners and shear bolts. To get accurate results, a comparison was made between the behaviors of the five beams. Another important point to be noted is that Abaqus and SAP2000 programs were used to investigate the behavior of PSCBs and to ensure the accuracy of the modeling process which showed a good agreement with the experimental results. Additionally, the simplified modeling using SAP2000 was able to model the nonlinear behavior of PSCBs connected using steel EECs. It was found that the steel pre-tensioned bolted EECs, reinforced with steel stiffeners and shear anchors, could be used to connect the precast HSC segmental beams via the internal pre-stressing technique.

고장력 볼트 이음부의 3차원 유한요소 해석 (3D Finite Element Analysis of High Tension Bolted Joints)

  • 심재수;김춘호;김동조
    • 한국강구조학회 논문집
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    • 제16권4호통권71호
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    • pp.407-414
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    • 2004
  • 공용중인 교량은 시공시에 비해 이음부재 및 볼트에 각종 하중이 작용하는 상태이고, 시공중에 결함이 발생하였거나 시간이 지남에 따른 각종 결함이 발생되고 있다. 실험적인 연구에 의해 이러한 결함들이 있는 고장력볼트 이음부의 역학적 성질을 규명하기 위해서는 많은 재비용이 필요한 실정이므로 실험적으로 밝혀내기 어려운 결함이 있는 고장력볼트 이음부의 거동과 구조적 특성을 유한요소 해석을 통하여 규명하고 차후 실험에 의한 연구시 충분한 실험결과의 예측, 시험체의 설계 및 경제적인 실험적 연구의 수행을 위한 자료를 제공하는데 본 연구의 목적이 있다. 각종 결함이 발생하고 있는 교량을 대상으로 현장조사를 하여 결함의 발생위치 및 유형을 분석하고 가장 많이 발생하는 결함을 중심으로 표준모델에 결함을 주어 내부응력 분포 및 미끄러짐 거동에 대한 해석을 수행하였다. 정상체결된 고장력 볼트 이음부 및 볼트간격, 모재두께, 연단거리, 볼트 구멍 크기, 확공에 따른 결함을 가정하여 내부응력분포에 대한 구조해석을 수행하였다. 또한 고장력볼트 이음부의 미끄러짐 거동에 대해 해석하였는데 이 해석은 대변형을 고려한 기하학적 비선형, 접촉면의 비선형을 고려한 경계 비선형, 미끄러짐에 의해 항복강도를 초과하는 부분이 생길 수 있으므로 재료적 비선형 문제를 고려하여 해석하였다. 정상적으로 체결된 고장력볼트 이음부 및 볼트 축력의 감소에 따른 미끄러짐 해석을 수행하였다.