• 제목/요약/키워드: structural rotation

검색결과 539건 처리시간 0.025초

로그 모델을 사용한 반강접 철골 골조의 탄성 해석 (Elastic Analysis of Steel Frame with Semi-rigid Connections using the Log Model)

  • 이상섭;문태섭
    • 한국강구조학회 논문집
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    • 제12권5호통권48호
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    • pp.527-535
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    • 2000
  • 철골 구조물의 접합부는 전통적으로 강접 혹은 단순 접합으로 이상화하여 설계되어 졌으나 많은 연구를 통해 이러한 모델링이 불합리할 수 있음이 밝혀져 왔다. 골조의 정확한 해석을 위해 부재의 2차효과($P-{\delta}$효과) 및 구조물 전체의 2차효과($P-{\Delta}$효과)의 고려가 필수적이고, 무엇보다도 접합부의 고유한 강성을 부여하는 것이 중요하다. 즉 실험을 통해 얻은 접합부의 모멘트-회전각을 골조 해석시 있는 그대로 반영할 수 있어야 한다. 이러기 위해 모멘트-회전각을 표현할 수 있는 단일 수식의 개발이 필요하며 지금까지 다양한 수식이 개발되어 보고되고 있다. 본 논문은 기하학적효과 및 접합부 강성을 고려할 수 있도록 이론을 통해 유도한 접합부의 강성행렬에 모멘트-회전각 관계를 표현하는 수정지수 함수 모델, 멱함수 모델 그리고 제안한 로그함수 모델을 사용하여 골조 해석을 실시하고, 그 결과를 통해 유도된 강성행렬의 적용가능성을 알아보고, 제안한 로그함수의 유효성을 밝히고자 한다.

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모멘트골조의 내진설계를 위한 부재 소성변형 요구량 예측 (Prediction of Member Plastic Rotation Demands for Earthquake Design of Moment Frames)

  • 엄태성;박홍근
    • 한국지진공학회논문집
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    • 제13권5호
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    • pp.51-60
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    • 2009
  • 안전한 내진설계를 위해서는 각 부재에 요구되는 소성변형 요구량을 정확히 예측하여야 한다. 본 연구에서는 등가정적내진설계에 쉽게 활용할 수 있도록, 복잡한 비선형해석 없이 탄성해석을 사용하여 모멘트골조 부재의 소성변형을 평가하는 방법을 개발하였다. 각 부재의 소성변형은 부재 강성과 탄성해석 결과로부터 직접 결정되는 층간변위비 요구량 및 모멘트 재분배 등의 설계 변수로부터 결정된다. 제안된 방법을 8층 2경간의 모멘트골조에 적용하고, 비선형해석을 통하여 제안된 방법의 정확성을 검증하였다. 검증결과, 제안된 방법은 비선형거동에 의한 층간변위비 요구량과 각 부재의 소성변형 요구량을 정확히 평가하였다. 제안된 방법은 부재연성설계와 같은 신축건물의 내진설계에 활용할 수 있을 뿐만 아니라 기존건물의 내진성능평가에도 활용될 수 있을 것으로 기대된다.

3차원 입체 영상 진단용 초음파 프로브의 설계 및 제작 (Design and Fabrication of a 3-dimensional Diagnostic Ultrasonic Probe)

  • 은홍;이수성;노용래
    • 한국음향학회지
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    • 제21권8호
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    • pp.766-771
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    • 2002
  • 본 연구에서는 128개의 능동소자로 구성된 컨벡스 (convex)형 초음파 탐촉자를 이용한 3차원 초음파 영상 진단용 초음파 섹터 프로브를 개발하였다 탐촉자는 중심주파수 4.5 ㎒, 대역폭 66%로 제작되었으며, 구동부는 감속 기어를 장착한 스텝모터와 이에 연결된 평기어를 이용해 탐촉자의 축을 회전시킴으로써 3차원 영상구현을 위한 연속적인 2차원 영상을 획득할 수 있게 고안하였다. 음향커버는 고분자 재료를 사용하여 탐촉자의 회전반경과 동일하게 설계 및 제작하였다. 제작된 섹터 프로브의 각도 제어성 및 구조적 안정성을 실험적 3차원 영상 획득을 통해 확인하였다.

Implications of yield penetration on confinement requirements of r.c. wall elements

  • Tastani, Souzana P.;Pantazopoulou, Stavroula J.
    • Earthquakes and Structures
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    • 제9권4호
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    • pp.831-849
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    • 2015
  • Seismic-design procedures for walls require that the confinement in the critical (plastic hinge) regions should extend over a length in the compression zone of the cross section at the wall base where concrete strains in the Ultimate Limit State (ULS) exceed the limit of 0.0035. In a performance-based framework, confinement is linked to required curvature ductility so that the drift demand at the performance point of the structure for the design earthquake may be met. However, performance of flexural walls in the recent earthquakes in Chile (2010) and Christchurch (2011) indicates that the actual compression strains in the critical regions of many structural walls were higher than estimated, being responsible for several of the reported failures by toe crushing. In this study, the method of estimating the confined region and magnitude of compression strain demands in slender walls are revisited. The objective is to account for a newly identified kinematic interaction between the normal strains that arise in the compression zone, and the lumped rotations that occur at the other end of the wall base due to penetration of bar tension yielding into the supporting anchorage. Design charts estimating the amount of yield penetration in terms of the resulting lumped rotation at the wall base are used to quantify the increased demands for compression strain in the critical section. The estimated strain increase may exceed by more than 30% the base value estimated from the existing design expressions, which explains the frequently reported occurrence of toe crushing even in well confined slender walls under high drift demands. Example cases are included in the presentation to illustrate the behavioral parametric trends and implications in seismic design of walls.

Hinge rotation of a morphing rib using FBG strain sensors

  • Ciminello, Monica;Ameduri, Salvatore;Concilio, Antonio;Flauto, Domenico;Mennella, Fabio
    • Smart Structures and Systems
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    • 제15권6호
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    • pp.1393-1410
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    • 2015
  • An original sensor system based on Fiber Bragg Gratings (FBG) for the strain monitoring of an adaptive wing element is presented in this paper. One of the main aims of the SARISTU project is in fact to measure the shape of a deformable wing for performance optimization. In detail, an Adaptive Trailing Edge (ATE) is monitored chord- and span-wise in order to estimate the deviation between the actual and the desired shape and, then, to allow attaining a prediction of the real aerodynamic behavior with respect to the expected one. The integration of a sensor system is not trivial: it has to fit inside the available room and to comply with the primary issue of the FBG protection. Moreover, dealing with morphing structures, large deformations are expected and a certain modulation is necessary to keep the measured strain inside the permissible measure range. In what follows, the mathematical model of an original FBG-based structural sensor system is presented, designed to evaluate the chord-wise strain of an Adaptive Trailing Edge device. Numerical and experimental results are compared, using a proof-of-concept setup. Further investigations aimed at improving the sensor capabilities, were finally addressed. The elasticity of the sensor structure was exploited to enlarge both the measurement and the linearity range. An optimisation process was then implemented to find out an optimal thickness distribution of the sensor system in order to alleviate the strain level within the referred component.

판폭두께비가 큰 변단면 휨부재의 구조성능에 관한 실험적 연구 (Experimental Study on Structural Behavior of Tapered Member with Non-compact Flange and Web)

  • 정경수;전배호;박만우;도병호
    • 한국강구조학회 논문집
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    • 제23권3호
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    • pp.357-365
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    • 2011
  • 저층 장스팬 철골프레임에는 강재절감을 위해 휨모멘트 저항을 극대화 한 판폭두께비가 큰 변단면 부재를 이용한 PEB시스템을 사용하고 있다. 과다한 외력에 의해 PEB시스템의 붕괴에 대한 안정성을 파악하기 위해서는 변단면 부재의 좌굴거동에 관한 실험 및 해석적 예측은 중요하다. 이에 본 연구에서는 변단면의 판폭(춤)두께비(d/t)와 변단면비를 주요 변수로 한 변단면 부재에 대한 실대형 실험을 행하였다. 현행 설계기준, 수정된 Yoda 모델을 이용한 소성힌지해석 및 유한요소해석으로 예측한 초기강성, 내력 및 모멘트-회전각관계에 대해서 실험결과와 비교하였다.

Numerical investigation seismic performance of rigid skewed beam-to-column connection with reduced beam section

  • Zareia, Ali;Vaghefi, Mohammad;Fiouz, Ali R.
    • Structural Engineering and Mechanics
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    • 제57권3호
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    • pp.507-528
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    • 2016
  • Reduced beam section (RBS) moment resisting connections are among the most economical and practical rigid steel connections developed in the aftermath of the 1994 Northridge and the 1995 Kobe earthquakes. Although the performance of RBS connection has been widely studied, this connection has not been subject to in the skewed conditions. In this study, the seismic performance of dogbone connection was investigated at different angles. The Commercial ABAQUS software was used to simulate the samples. The numerical results are first compared with experimental results to verify the accuracy. Nonlinear static analysis with von Mises yield criterion materials and the finite elements method were used to analyze the behavior of the samples The selected Hardening Strain of materials at cyclic loading and monotonic loading were kinematics and isotropic respectively The results show that in addition to reverse twisting of columns, change in beam angle relative to the central axis of the column has little impact on hysteresis response of samples. Any increase in the angle, leads to increased non-elastic resistance. As for Weak panel zone, with increase of the angle between the beam and the column, the initial submission will take place at a later time and at a larger rotation angle in the panel zone and this represents reduced amount of perpendicular force exerted on the column flange. In balanced and strong panel zones, with increase in the angle between the beam and the central axis of the column, the reduced beam section (RBS), reaches the failure limit faster and at a lower rotation angle. In connection of skewed beam, balanced panel zone, due to its good performance in disposition of plasticity process away from connection points and high energy absorption, is the best choice for panel zone. The ratio of maximum moment developed on the column was found to be within 0.84 to 1 plastic anchor point, which shows prevention of brittle fracture in connections.

신체질량지수, 하지관절의 모멘트, 지면반발력이 무릎외반슬에 미치는 영향 (The Effect of Genu Valgum on the Body Mass Index, Moment of Lower Limb Joints, Ground Reaction Force)

  • 이용선
    • 한국운동역학회지
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    • 제25권3호
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    • pp.257-263
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    • 2015
  • Objective : The purpose of this study was to investigate the effect of genu valgum on the body mass index, movement of lower limb joints, and ground reaction force. Methods : Gait patterns of 30 college students with genu valgum were analyzed and the static Q angle of the femur was measured for selecting genu valgum of the subjects. To analyze the kinetic changes during walking, the six-camera Vicon MX motion analysis system was used. The subjects were asked to walk 12 meters using the more comfortable walking method for walking. After they walked 12 meters more than 10 times, their most natural walking patterns were chosen three times and analyzed. Results : As a result of measuring a relationship between genu valgum and Q-angle, as the Q-angle increases, it showed a genu valgum also increased. Body Mass Index showed a significant difference between the groups was higher in the genu valgum group.(p<.001). The analysis result showed that genu valgum had a significant effect on the internal rotation moment in the hip joint(p<.05). Also, genu valgum had a significant effect on the internal rotation moment of the knee joint(p<.05). The comparative analysis of the Medial-Lateral ground reaction force in the genu valgum group showed a tendency to increase the medial ground reaction force(p<.05). The vertical ground reaction forces of the middle of the stance phase(Fz0) showed a significant increase in genu valgum group(p<.05), in particular the results showed a decrease in the early stance phase(p<.001). Conclusion : In conclusion, the change in body mass is considered to be made by proactive regular exercise for improvement of the genu valgum. In addition, the prevention of the deformation caused by secondary of the genu valgum in this study may be used as an indicator of the position alignment rehabilitation for structural and functional improvements. Applying a therapeutic exercise program for the next lap will require changes in posture alignment.

개량 T-stub 반강접합부의 기초적 연구 (The Basic Study of Semi-Rigid Connections with Reformed T-stubs)

  • 유봉현;이명재;김원기
    • 한국강구조학회 논문집
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    • 제9권4호통권33호
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    • pp.479-487
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    • 1997
  • 강구조 건축물의 접합에서 강접합, 단순접합 이외에 반강접합의 이용이 고려될 수 있다. 반강접합의 장점으로서는 시공의 용이성과 부재의 효율적인 모멘트 분배가 가능하다는 점이다. 본 연구는 기존의 T-stub를 더 많은 회전능력이 생기도록 한 개량 T-stub를 접합요소로 선정하여 중층정도의 건축물에의 적용 가능성을 확인하기 위한 연구의 기초적 단계이다. 연구방법으로서는 개량 T-stub의 역학적 거동을 조사하기 위한 개량 T-stub요소의 인장 및 압축 실험과 개량 T-stub를 이용한 기둥-보 접합부의 단순재하실험이 실시되었다. 실험결과로부터 개량 T-stub의 정성적인 거동을 파악하였고, 개량 T-stub를 이용하면 반강접합으로서의 가능성도 확인하였다.

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System seismic performance of haunch repaired steel MRFs : dual panel zone modeling and a case study

  • Lee, Cheol-Ho
    • Structural Engineering and Mechanics
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    • 제6권2호
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    • pp.125-141
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    • 1998
  • Recent test results of steel moment connections repaired with a haunch on the bottom side of the beam have been shown to be a very promising solution to enhancing the seismic performance of steel moment-resisting frames. Yet, little is known about the effects of using such a repair scheme on the global seismic response of structures. When haunches are incorporated in a steel moment frame, the response prediction is complicated by the presence of "dual" panel zones. To investigate the effects of a repair on seismic performance, a case study was conducted for a 13-story steel frame damaged during the 1994 Northridge earthquake. It was assumed that only those locations with reported damage would be repaired with haunches. A new analytical modeling technique for the dual panel zone developed by the author was incorporated in the analysis. Modeling the dual panel zone was among the most significant consideration in the analyses. Both the inelastic static and dynamic analyses did not indicate detrimental side effects resulting from the repair. As a result of the increased strength in dual panel zones, yielding in these locations were eliminated and larger plastic rotation demand occurred in the beams next to the shallow end of the haunches. Nevertheless, the beam plastic rotation demand produced by the Sylmar record of 1994 Northridge earthquake was still limited to 0.017 radians. The repair resulted in a minor increase in earthquake energy input. In the original structure, the panel zones should dissipate about 80% (for the Oxnard record) and 70% (for the Sylmar record) of the absorbed energy, assuming no brittle failure of moment connections. After repair, the energy dissipated in the panel zones and beams were about equal.