• 제목/요약/키워드: Steel Frame

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The Research and Application of Innovative High Efficient Construction Technologies in Super High Rise Steel Structure Building

  • Dai, Lixian;Liao, Biao
    • 국제초고층학회논문집
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    • 제3권3호
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    • pp.205-214
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    • 2014
  • The super high rise building construction is characterized by a large quantity of engineering works and structural components, high demanding of construction technology and complex cross operations. As the height of super high rise building increases, the construction difficulties increase, it is challenging the steel structural building construction technology. In this paper, the key technologies in the construction of Chinese modern super high rise steel structure building have been studied. The innovative tower crane supporting frame suspension disassembly technology has been developed to allow the crane supporting frame to turnover in the air without occupying materials stockyard. A new self-elevating platform technique which is capable of striding over structural barriers has been developed. This new technology allows the platform to be self-elevated along variable cross section column with a maximum 600 mm size change. A new automatic submerged arc welding technology has also been developed to ensure the process continuity and quality stability of welding job on the construction site.

비선형 해석을 이용한 강뼈대구조물의 자동화설계 (Automatic Design of Steel Frame Using Nonlinear Analysis)

  • 김창성;마상수;최세휴;김승억
    • 한국강구조학회 논문집
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    • 제14권2호
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    • pp.339-348
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    • 2002
  • 본 논문에서는 비선형 해석을 이용한 강뼈대 구조물의 자동화설계를 수행한다. 기하학적 비선형은 안정함수를 사용하여 고려한다. 보-기둥 부재에 대하여 전단변형 효과를 고려한다. 자동화 설계 기법으로는 직접 탐색법을 사용한다. LRFD의 상관방정식으로 각각의 부재의 상관 계수 값을 계산하여 가장 큰 상관 계수 값을 가지는 부재의 크기를 데이터베이스에서 단계별로 증가시킨다. 목적함수는 강뼈대 구조물의 중량을 사용하며, 계약조건식은 하중-저항능력, 처짐, 층간 수평변위 및 연성도를 고려한다. 2차원과 3차원 2층 강뼈대구조물에 대한 예제 해석을 수행한다.

역V형 철골 가새골조의 비탄성거동 및 내진성능향상 방안에 관한 연구 (Inelastic Behavior and Seismic Retrofit of Inverted V Braced Steel Frames)

  • 김남훈;이철호
    • 한국강구조학회 논문집
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    • 제15권5호통권66호
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    • pp.571-578
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    • 2003
  • 본 논문에서는 중심가새골조 가운데 가정 널리 사용되는 역V형 철골 가새골조의 내진거동을 탄소성 후좌굴해석에 의해 고찰하고, 압축가새의 좌굴이 최초로 발생한 층에 소성화가 집중되는 약층화 현상을 완화할 수 있는 효과적 내진보강 방안을 제시하고자 하였다. 즉 좌굴이 발생한 층에 집중되는 비탄성변형을 건물전체로 재분재하는 기능을 갖는 인장재(tie bar)를 삽입하여 내진성능을 효과적으로 개선할 수 있음을 입증하였다. 아울러 압축가새의 좌굴발생 순서를 감안하여 보강 인장재를 경제적으로 설계할 수 있는 실용적 설계방안을 제시하였다.

반강접 접합부를 갖는 강골조의 거동에 대한 해석적 연구 (An Analytical Study on the Behavior of Steel Frames with Semi-Rigidity of Beam-to-Column Connections)

  • 김종성
    • 한국강구조학회 논문집
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    • 제15권5호통권66호
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    • pp.551-559
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    • 2003
  • 강골조의 보-기둥 접합부에 대한 해석과 설계는 일반적으로 완전한 강접이나 마찰이 없는 완전한 핀접합으로 가정하는 것이 보통이다. 이러한 경우, 구조해석 및 설계과정을 단순화시키는 장점은 있으나, 실제 철골 접합부에서는 작용하중에 대하여 어느 정도의 모멘트 전달과 회전구속력을 갖는 반강접으로 해석해야 하므로 실제와는 다소 차이가 날 수 있다. 이에, 본 연구에서는 고정계수에 의한 기둥-보 접합부의 반강접성과 P-delta효과를 고려한 골조의 비선형 해석 프로그램을 작성하고, 수치해석을 통해 평면 강골조의 변형과 내력에 미치는 접합강성의 영향을 검토하였으며, 상용의 해석프로그램인 MIdas Gen과 비교하였다.

Damage assessment and performance-based seismic design of timber-steel hybrid shear wall systems

  • Li, Zheng;He, Minjuan;Li, Minghao;Lam, Frank
    • Earthquakes and Structures
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    • 제7권1호
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    • pp.101-117
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    • 2014
  • This paper presents a reliability-based analysis on seismic performance of timber-steel hybrid shear wall systems. Such system is composed of steel moment resisting frame and infill wood frame shear wall. The performance criteria of the hybrid system with respect to different seismic hazard levels were determined through a damage assessment process, and the effectiveness of the infill wood shear walls on improving the seismic performance of the hybrid systems was evaluated. Performance curves were obtained by considering different target non-exceedance probabilities, and design charts were further established as a function of seismic weight. Wall drift responses and shear forces in wood-steel bolted connections were used as performance criteria in establishing the performance curves to illustrate the proposed design procedure. It was found that the presence of the infill wood shear walls significantly reduced the non-performance probabilities of the hybrid wall systems. This study provides performance-based seismic evaluations on the timber-steel hybrid shear walls in support of future applications of such hybrid systems in multi-story buildings.

A new stability and sensitivity design and diagnosis approach

  • Sari, Ali;Korkmaz, Kasim A.
    • Steel and Composite Structures
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    • 제23권6호
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    • pp.683-690
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    • 2017
  • In the stability and sensitivity design and diagnosis approaches, there are various methodologies available. Bond graph modeling by lumping technique is one of the universal methodologies in methodical analysis used by many researchers in all over the world. The accuracy of the method is validated in different arenas. Bond graphs are a concise, pictorial representation of the energy storage, dissipation and exchange mechanisms of interacting dynamic systems, subsystems and components. This paper proposes a bond graph modeling for distributed parameter systems using lumping techniques. Therefore, a steel frame structure was modeled to analyze employing bond graph modeling of distributed system using lumping technique. In the analytical part, the effectiveness of bond graphs to model this system is demonstrated. The dynamic responses of the system were computed and compared with those computed from the finite element analysis. The calculated maximum deflection time histories were found to be comparable. The sensitivity and the stability of the steel frame structure was also studied in different aspects. Thus, the proposed methodology, with its simplicity, can be used for stability and sensitivity analyses as alternative to finite element method for steel structures. The major value brought in the practical design is the simplicity of the proposed method for steel structures.

Using friction dampers in retrofitting a steel structure with masonry infill panels

  • Zahrai, Seyed Mehdi;Moradi, Alireza;Moradi, Mohammadreza
    • Steel and Composite Structures
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    • 제19권2호
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    • pp.309-325
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    • 2015
  • A convenient procedure for seismic retrofit of existing buildings is to use passive control methods, like using friction dampers in steel frames with bracing systems. In this method, reduction of seismic demand and increase of ductility generally improve seismic performance of the structures. Some of its advantages are development of a stable rectangular hysteresis loop and independence on environmental conditions such as temperature and loading rate. In addition to friction dampers, masonry-infill panels improve the seismic resistance of steel structures by increasing lateral strength and stiffness and reducing story drifts. In this study, the effect of masonry-infill panels on seismic performance of a three-span four-story steel frame with Pall friction dampers is investigated. The results show that friction dampers in the steel frame increase the ductility and decrease the drift (to less than 1%). The infill panels fulfill their function during the imposed drift and increase structural strength. It can be concluded that infill panels together with friction dampers, reduced structural dynamic response. These infill panels dissipated input earthquake energy from 4% to 10%, depending on their thickness.

A new base shear equation for reliability-based design of steel frames

  • Hakki Deniz Gul;Kivanc Taskin
    • Earthquakes and Structures
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    • 제27권1호
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    • pp.31-39
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    • 2024
  • The reliability-based seismic design of steel frames is a complex process that incorporates seismic demand with a structural capacity to attain safe buildings aligned with specified constraints. This paper introduces an efficient base shear force formulation to support the reliability-based design process of steel frames. The introduced base shear force equation combines the seismic demand statistics with the reliability objective to calculate a fictitious base shear force for linear static analysis. By concentrating on the seismic demand and promising to meet a certain level of reliability, the equation converts the reliability-based seismic design problem to a deterministic one. Two code-compliant real-size steel moment frames are developed according to different reliability objectives to demonstrate the competency of the proposed formula. The nonlinear dynamic analysis method is used to assess the seismic reliability of the constructed frames, and the numerical results validate the credibility of the suggested formulation. The base shear force calculation method regarding seismic reliability is the main finding of this study. The ease of use makes this approach a potent tool for design professionals and stakeholders to make rapid risk-informed decisions regarding steel moment frame design.

다양한 하중 조건에서 DP980 판재의 불안정성 및 파단점 결정시 DIC Frame Rate의 영향 (Influence of DIC Frame Rate on Experimental Determination of Instability and Fracture Points for DP980 Sheets under Various Loading Conditions)

  • 노은솔;홍석무
    • 소성∙가공
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    • 제28권6호
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    • pp.368-374
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    • 2019
  • The past recent years have seen an increasing use of high-strength steel sheets in the automotive industry. However, the formability and damage prediction of these materials requires accurate acquisition of necking and fracture strains. Digital image correlation (DIC) is used to accurately capture the necking and fracture strains during testing. The fact that single time points of capturing vary with frame rate makes the need for an investigation necessary. For the high-strength steel DP980, the frame-rate dependences of the final necking and fracture strains values are analyzed here. To eliminate the influence of gauge length, the strains were measured locally by DIC. Results for three specimen shapes obtained with frame rates of 1 and 900 fps (frames per second) were considered and based on them, triaxiality failure diagrams (TFD) are established. It was observed that after diffuse necking, the deformation path departed from the initially linear one, and the stress triaxiality grew with ongoing deformation. It was further revealed that the frame rate-dependence of the necking strain was rather low (< 2%), whereas the fracture strain could be underestimated by up to 8% when the lower frame rate of 1 fps was used (compared with 900 fps). In this study, this issue is investigated while taking into consideration the three different triaxialities. These results demonstrate the importance of choosing an appropriate frame rate for the determination of necking and fracture strains in particular.

철골구조물 발파해체를 위한 H형강 절단방법에 대한 연구 (A Study of Cutting Method of H-Pile for Explosive Demolition of SRC Structure)

  • 민형동;이윤재;송영석;김효진
    • 화약ㆍ발파
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    • 제23권3호
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    • pp.83-89
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    • 2005
  • 철골구조물의 노후화에 따라 리모델링 및 해체시기가 도래함에 따라 시공성, 경제성, 안정성 및 환경성을 고려한 노후 철골구조물의 처리방안에 대한 방법들이 모색되고 있다. 현재 H형강의 절단은 산소절단에 의한 방법이 주로 사용되고 있으나, 순간적으로 구조물을 취약화를 시켜 건물을 붕괴시키는 발파해체공법은 아직까지 적용되고 있지 않다. 따라서 본 연구에서는 철골구조물의 발파해체에 필요한 성형폭약(shape charge)을 이용하여 H형강의 절단방법에 대한 요소시험을 실시하였다. 그 결과 사전 절단방법과 부재의 두께에 따른 단면$\cdot$양면 절단방법을 도출하였고, 성형폭약 고정장치에 따른 부착방법과 그 용이성을 확인하였다. 또한, 성형폭약을 이용하여 절단시 발생하는 소음을 저감하기 위하여 방호박스를 이용한 절단시험결과 약 8dB(A)의 저감효과가 나타났으나, 향후 도심지에서의 구조물 해체를 고려한다면 규제기준이하로 소음을 제어할 수 있는 방법에 대한 추가연구가 필요할 것으로 사료된다.