• 제목/요약/키워드: collapse design

검색결과 698건 처리시간 0.023초

적층구성과 충돌에너지의 변화에 따른 CFRP 구조부재의 충격특성 (Impact Characteristics of CFRP Structural Member according to the Variation of Stacking Condition and Impact Energy)

  • 여인구;최주호;최영민;양용준;황우채;양인영
    • 한국생산제조학회지
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    • 제22권6호
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    • pp.976-981
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    • 2013
  • This aims to examine experimentally the absorption behavior and strength of circular CFRP members with different stacking configurations on exposure to a separate impact velocity. In addition, considered the dynamic characteristics. Circular and square CFRP members were prepared from 8-ply unidirectional prepreg sheets stacked at different angles ($0^{\circ}/90^{\circ}$ and $90^{\circ}/0^{\circ}$, where the $0^{\circ}$ direction coincides with the axis of the member) and interface numbers (2, 4, and 6). Based on the collapse characteristics of the circular CFRP members. In this study, for the circular members, the impact energies at crosshead speeds of 5.52 m/s, 5.14 m/s, and 4.57 m/s are 611.52 J, 529.2 J, and 419.44 J (at circular members), respectively. Likewise, for the square members, the impact energies at crosshead speeds of 2.16 m/s, 1.85 m/s, and 1.67 m/s are 372.4 J, 274.4 J, and 223.44 J (at square members).

철근콘크리트 축소모형의 발파해체실험을 위한 상사법칙 및 축소율 (Similitude Law and Scale Factor for Blasting Demolition Test on RC Scale Models)

  • 박훈;유지완;이희광;송정언;김승곤
    • 화약ㆍ발파
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    • 제25권1호
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    • pp.53-65
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    • 2007
  • 축소모형을 이용한 철근콘크리트 구조물 발파해체 시 구조물의 붕괴거동을 분석하기 위해서는 축소모형 부재에 대한 적절한 축소율 산정과 축소모형 부재를 구성하는 재료의 역학적 특성이 원형 철근콘크리트 부재와 상사되어야 한다. 본 연구에서 축소모형의 상사법칙은 밀도를 기준으로 산정하였고, 콘크리트 표준시방서와 콘크리트 구조설계기준에 의해 축소모형 철근콘크리트의 배합 및 배근을 기술하였다. 또한 축소모형 콘크리트의 축소율은 굵은골재 최대치수를 고려하여 부재 단면 길이를 1/5로 축소하였고, 축소모형 철근의 축소율은 공칭지름을 1/5로 축소하였다. 축소모형에 대한 역학적 실험결과로부터 제안된 상사법칙을 적용함으로써 축소모형 콘크리트의 평균압축강도 및 축소모형 철근의 평균항복강도가 상사관계를 가지는 것으로 나타났다.

A low damage and ductile rocking timber wall with passive energy dissipation devices

  • Loo, Wei Yuen;Quenneville, Pierre;Chouw, Nawawi
    • Earthquakes and Structures
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    • 제9권1호
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    • pp.127-143
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    • 2015
  • In conventional seismic design, structures are assumed to be fixed at the base. To reduce the impact of earthquake loading, while at the same time providing an economically feasible structure, minor damage is tolerated in the form of controlled plastic hinging at predefined locations in the structure. Uplift is traditionally not permitted because of concerns that it would lead to collapse. However, observations of damage to structures that have been through major earthquakes reveal that partial and temporary uplift of structures can be beneficial in many cases. Allowing a structure to move as a rigid body is in fact one way to limit activated seismic forces that could lead to severe inelastic deformations. To further reduce the induced seismic energy, slip-friction connectors could be installed to act both as hold-downs resisting overturning and as contributors to structural damping. This paper reviews recent research on the concept, with a focus on timber shear walls. A novel approach used to achieve the desired sliding threshold in the slip-friction connectors is described. The wall uplifts when this threshold is reached, thereby imparting ductility to the structure. To resist base shear an innovative shear key was developed. Recent research confirms that the proposed system of timber wall, shear key, and slip-friction connectors, are feasible as a ductile and low-damage structural solution. Additional numerical studies explore the interaction between vertical load and slip-friction connector strength, and how this influences both the energy dissipation and self-centring capabilities of the rocking structure.

2-arch 터널 정거장 굴착 시 평면변형률 조건에서 군말뚝의 이격거리에 따른 지반거동 분석 (Investigation of ground behaviour between plane-strain grouped pile and 2-arch tunnel station excavation)

  • 공석민;오동욱;안호연;이현구;이용주
    • 한국터널지하공간학회 논문집
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    • 제18권6호
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    • pp.535-544
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    • 2016
  • 도심지에서 지하철과 같은 터널의 증가에 따라 특수한 설계, 및 시공 방법이 제안되어 왔다. 터널 붕괴 사고는 막대한 인명, 재산 피해를 가져오기 때문에 터널 굴착 및 주변지반의 거동을 관측하고 분석하는 작업은 매우 중요하다. 하지만 매번 현장시험을 하기에는 경제적인 측면에서 비현실적이다. 따라서 현장시험의 단점을 보완하고, 보다 정밀한 결과를 도출하는 연구가 지속적으로 발표되어 왔다. 본 연구는 군말뚝과 터널 사이 이격거리에 따른 2-arch 정거장 굴착 시 주변 지반의 거동을 측정하였다. 실내모형시험을 위해 trapdoor장치를 고안하였으며, 터널굴착은 2-arch 터널의 체적손실(VL)을 증가시킴으로써 모사하였다. 또한, 근거리 사진계측 및 이미지프로세싱을 통해 지반의 거동을 관측하였으며, 수치해석을 통해 실내모형시험의 결과와 비교하였다.

Evaluation of torsional response of a long-span suspension bridge under railway traffic and typhoons based on SHM data

  • Xia, Yun-Xia;Ni, Yi-Qing;Zhang, Chi
    • Structural Monitoring and Maintenance
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    • 제1권4호
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    • pp.371-392
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    • 2014
  • Long-span cable-supported bridges are flexible structures vulnerable to unsymmetric loadings such as railway traffic and strong wind. The torsional dynamic response of long-span cable-supported bridges under running trains and/or strong winds may deform the railway track laid on the bridge deck and affect the running safety of trains and the comfort of passengers, and even lead the bridge to collapse. Therefore, it is eager to figure out the torsional dynamic response of long-span cable-supported bridges under running trains and/or strong winds. The Tsing Ma Bridge (TMB) in Hong Kong is a suspension bridge with a main span of 1,377 m, and is currently the world's longest suspension bridge carrying both road and rail traffic. Moreover, this bridge is located in one of the most active typhoon-prone regions in the world. A wind and structural health monitoring system (WASHMS) was installed on the TMB in 1997, and after 17 years of successful operation it is still working well as desired. Making use of one-year monitoring data acquired by the WASHMS, the torsional dynamic responses of the bridge deck under rail traffic and strong winds are analyzed. The monitoring results demonstrate that the differences of vertical displacement at the opposite edges and the corresponding rotations of the bridge deck are less than 60 mm and $0.1^{\circ}$ respectively under weak winds, and less than 300 mm and $0.6^{\circ}$ respectively under typhoons, implying that the torsional dynamic response of the bridge deck under rail traffic and wind loading is not significant due to the rational design.

교량의 시각적 선호도의 차이 - 한강의 교량을 대상으로 - (Difference in the Visual Preference of the Bridges - The Case of the Han River -)

  • 허준
    • 한국조경학회지
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    • 제30권2호
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    • pp.1-11
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    • 2002
  • The purpose of this study is to investigate landscape image and define elements of difference in visual preference of bridges on the Han River. To do this end, video was used as a media for the evaluation of the landscape image of 16 bridges on the Han River using a Semantic Differential scale. Data is collected by 50 students from Woosuk University, majoring landscape architecture. Final analysis utilized a total of 704 samples of data. Data is analyzed through descriptive statistics, and spatial image is analyzed by factor analysis algorithm Principle component analysis using Varimax method is applied far extraction and factor rotation. T-test is used to find the difference between the bridge type of preference with the data of factor score. Logistic regression is used to select the factors that influences the visual preference among the image factors. The results of this study can be summarized as follows; The image of whole bridges on the Han River is somewhat orderly, sequential and open. The degree of visual preference of unique bridge type is higher than normal but there are some differences in visual preference within the same type of structure. This suggests that the surrounding landscape is one of the important factor for visual preference. Factors covering the image of bridge are found to be 'aesthetic', 'structure','spatial factor', and 'shape'. Total variance is obtained as 60.4%. The aesthetic variables are the most important factor for visual preference and the structural factor presents no significant difference in visual preference between more preferred and less preferred bridges. Since the collapse of Songsu Bridge, we thought the structural factor is very important but the results of this study suggest that it is more important to consider the aesthetic and spatial factors of the bridge to increase the visual preference when planning and designing bridges. Simulations with more detailed data about surroundings should be utilized practical design.

Seismic response of masonry infilled RC frames: practice-oriented models and open issues

  • Lima, Carmine;De Stefano, Gaetano;Martinelli, Enzo
    • Earthquakes and Structures
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    • 제6권4호
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    • pp.409-436
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    • 2014
  • Although it is widely accepted that the interaction -between masonry infill and structural members significantly affects the seismic response of reinforced concrete (RC) frames, this interaction is generally neglected in current design-oriented seismic analyses of structures. Moreover, the role of masonry infill is expected to be even more relevant in the case of existing frames designed only for gravitational loads, as infill walls can significantly modify both lateral strength and stiffness. However, the additional contribution to both strength and stiffness is often coupled to a modification of the global collapse mechanisms possibly resulting in brittle failure modes, generally related to irregular distributions of masonry walls throughout the frame. As a matter of principle, accurate modelling of masonry infill should be at least carried out by adopting nonlinear 2D elements. However, several practice-oriented proposals are currently available for modelling masonry infill through equivalent (nonlinear) strut elements. The present paper firstly outlines some of the well-established models currently available in the scientific literature for modelling infill panels in seismic analyses of RC frames. Then, a parametric analysis is carried out in order to demonstrate the consequences of considering such models in nonlinear static and dynamic analyses of existing RC structures. Two bay-frames with two-, three- and four-storeys are considered for performing nonlinear analyses aimed at investigating some critical aspects of modelling masonry infill and their effects on the structural response. Particularly, sensitivity analyses about specific parameters involved in the definition of the equivalent strut models, such as the constitutive force-displacement law of the panel, are proposed.

Inter-story pounding between multistory reinforced concrete structures

  • Karayannis, Chris G.;Favvata, Maria J.
    • Structural Engineering and Mechanics
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    • 제20권5호
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    • pp.505-526
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    • 2005
  • The influence of the inter-story structural pounding on the seismic behaviour of adjacent multistory reinforced concrete structures with unequal total heights and different story heights is investigated. Although inter-story pounding is a common case in practice, it has not been studied before in the literature as far as the authors are aware. Fifty two pounding cases, each one for two different seismic excitations, are examined. From the results it can be deduced that: (i) The most important issue in the inter-story pounding is the local effect on the external column of the tall building that suffers the impact from the upper floor slab of the adjacent shorter structure. (ii) The ductility demands for this column are increased comparing with the ones without the pounding effect. In the cases that the two buildings are in contact these demands appear to be critical since they are higher than the available ductility values. In the cases that there is a small distance between the interacting buildings the ductility demands of this column are also higher than the ones of the same column without the pounding effect but they appear to be lower than the available ductility values. (iii) It has to be stressed that in all the examined cases the developed shear forces of this column exceeded the shear strength. Thus, it can be concluded that in inter-story pounding cases the column that suffers the impact is always in a critical condition due to shear action and, furthermore, in the cases that the two structures are in contact from the beginning this column appears to be critical due to high ductility demands as well. The consequences of the impact can be very severe for the integrity of the column and may be a primary cause for the initiation of the collapse of the structure. This means that special measures have to be taken in the design process first for the critically increased shear demands and secondly for the high ductility demands.

비좌굴 가새를 이용한 스태거드 트러스 시스템의 내진성능향상 (Seismic Improvement of Staggered Truss Systems using Buckling Restrained Braces)

  • 김진구;이준호
    • 한국지진공학회논문집
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    • 제10권2호
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    • pp.11-19
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    • 2006
  • 본 연구에서는 4층, 10층, 30층 스태거드 트러스 시스템 (STS)의 비탄성 정적해석에 의한 하중-변위 관계와 비탄성거동을 분석하고, 그 결과를 바탕으로 STS의 내진성능을 평가하였다. 또한 동일한 규모의 모멘트골조 및 가새골조의 거동과 비교함으로써 STS의 횡력 저항 능력을 파악하였다. 해석결과에 따르면, STS는 일반적으로 적용되는 구조시스템에 비하여 비교적 만족할 만한 내진성능을 보유하는 것으로 나타났다. 그러나 중층 이상의 STS에 있어서는 상대적으로 강성이 작은 비렌딜 패널 상.하현재에 소성변형이 발생한 후 인접한 수직 가새가 항복함으로써, 다른 층으로 소성변형이 전이되지 못하여 약층의 형성에 의한 취성적인 거동을 보인다. 그러므로 스태거드 트러스 시스템의 연성능력을 확보하기 위해서는 비렌딜 패널의 수직 가새를 보강하여 비렌딜 패널 상하현재에 발생한 소성변형을 다른 층의 비렌틸 패널로 유도하는 것이 필요하다.

돔형 공간 구조물의 Rise-span 비에 따른 불안정 거동 특성에 관한 연구 (A Study on the Unstable behavior According to rise-span ratio of dome type space frame)

  • 손수덕;김승덕;강문명
    • 한국공간정보시스템학회:학술대회논문집
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    • 한국공간정보시스템학회 2004년도 춘계 학술발표회 논문집 제1권1호(통권1호)
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    • pp.75-82
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    • 2004
  • Many researcher's efforts have made a significant advancement of space frame structure with various portion, and it becomes the most outsanding one of space structures. However, with the characteristics of thin and long term of spacing, the unstable behavior of space structure is shown by initial imperfection, erection procedure or joint, especially space frame structure represents more. This kind of unstable problem could not be set up clearly and there is a huge difference between theory and experiment. Moreover, the discrete structure such as space frame has more complex solution, this it is not easy to derive the formulation of design about space structure. In this space frame structure, the character of rise-span ratio or load mode is represented by the instability of space frame structure with initial imperfection, and snap-through or bifurcation might be the main phenomenon. Therefore, in this study, space frame structure which has a lot of aesthetic effect and profitable for large space covering single layer is dealt. And because that the unstable behavior due to variation of inner force resistance in the elastic range is very important collapse mechanism, I would like to investigate unstable character as a nonlinear behavior with a geometric nonlinear. In order to study the instability. I derive tangent stiffness matrix using finite element method and with displacement incremental method perform nonlinear analysis of unit space structure, star dome and 3-ring star dome considering rise-span $ratio(\mu}$ and load $ratio(R_L)$ for analyzing unstable phenomenon.

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