• 제목/요약/키워드: Shear-controlled action

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보의 변형능력에 미치는 전단과 부착응력의 영향 (Influence of Shear and Bond on Deformation Capacity of RC Beams)

  • 홍성걸
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2006년도 춘계학술발표회 논문집(I)
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    • pp.366-369
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    • 2006
  • Deformability of RC members in shear is controlled by governing failure modes and material strength. Shear strength of members in D-regions has been explained by a direct load path (direct strut or arch action) and indirect load path (fan action or truss action). Indirect load path including truss action and fan action rely on bond along tension ties. Generally, superposition of two actions results in total shear strength when shear failure modes control. The ultimate deformation depends on controlling failure modes and thereby, their force transfer patterns. Proposed models are capable of explaining of limited deformability of RC members in D-regions.

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휨-전단 파괴의 한정 연성도 모형 (Deformability models for flexural-shear failure of limited ductility)

  • 홍성걸
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2006년도 추계 학술발표회 논문집
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    • pp.261-264
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    • 2006
  • Deformability of RC members in shear after flexural yielding is limited and controlled by governing failure modes and material strength. Shear strength of members in D-regions has been explained by a direct load path (direct strut or arch action) and indirect load path (fan action or truss action). Indirect load path including truss action and fan action rely on bond along tension ties. Generally, superposition of two actions results in total shear strength when shear failure modes control. The ultimate deformation depends on controlling failure modes and thereby, their force transfer patterns. Proposed models are capable of explaining of limited deformability of RC members in D-regions.

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기둥 파괴모드에 따른 학교 건물 철골 가새 보강의 효율성 (The Efficiency of Steel Brace Strengthening of School Buildings according to the Failure Mode of Columns)

  • 이희섭;김태완
    • 한국지진공학회논문집
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    • 제27권2호
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    • pp.101-109
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    • 2023
  • Steel brace strengthening is the most popular seismic rehabilitation method for school buildings. This is because the design can be conducted by using relatively easy nonlinear pushover analysis and standard modeling in codes. An issue with steel brace strengthening is that the reinforced building should behave elastically to satisfy performance objectives. For this, the size of steel braces should be highly increased, which results in excessive strengthening cost by force concentration on existing members and foundations due to the considerable stiffness and strength of the steel braces. The main reason may be the brittle failure mode of columns, so this study investigated the relationship between the efficiency of steel brace strengthening and column failure modes. The result showed that the efficiency is highly dependent on the shear capacity ratio of columns and structural analysis methods. School buildings reinforced by steel braces do not need to behave elastically when the shear capacity ratio is low, and pushover analysis is used, which means reducing steel material is possible.

중층 종합병원 건물의 내진성능평가 (Seismic Performance Evaluation of a Mid-rise General Hospital Building)

  • 김태완;추유림;김승래
    • 한국지진공학회논문집
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    • 제21권5호
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    • pp.245-254
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    • 2017
  • The building which are essential for disaster recovery is classified as a special seismic use group. Especially, achievement of seismic performance is very important for the hospital, so the hospital should be able to maintain its function during and right after an earthquake without significant damage on both structural and non-structural elements. Therefore, this study aimed at checking the seismic performance of a hospital building, but which was limited to structural elements. For the goal, a plan with a configuration of general hospitals in Korea was selected and designed by two different seismic-force-resisting systems. In analytical modeling, the shear behavior of the wall was represented by three inelastic properties as well as elastic. Nonlinear dynamic analyses were conducted to evaluate the performance of structural members. The result showed that the performance of shear walls in the hospital buildings was not satisfied regardless of the seismic-force-resisting systems, while the demands on the beams and columns did not exceed the capacities. This is the result of only considering the shear of the wall as the force-controlled action. When the shear of the wall was modeled as inelastic, the walls were yielded in shear, and as the result, the demands for frames were increased. However, the increase did not exceed the capacities of the frames members. Consequently, since the performance of walls is significant to determine the seismic performance of a hospital building, it will be essential to establish a definite method of modeling shear behavior of walls and judging their performance.

Seismic response of active or semi active control for irregular buildings based on eigenvalues modification

  • Pnevmatikos, Nikos G.;Hatzigeorgiou, George D.
    • Earthquakes and Structures
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    • 제6권6호
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    • pp.647-664
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    • 2014
  • A reduction of the response of irregular structures subjected to earthquake excitation by control devices equipped by suitable control algorithm is proposed in this paper. The control algorithm, which is used, is the pole placement one. A requirement of successful application of pole placement algorithm is a definition-selection of suitable poles (eigen-values) of controlled irregular structures. Based on these poles, the required action is calculated and applied to the irregular structure by means of control devices. The selection of poles of controlled irregular structure, is a critical issue for the success of the algorithm. The calculation of suitable poles of controlled irregular structure is proposed herein by the following procedure: a fictitious symmetrical structure is considered from the irregular structure, adding vertical elements, such as columns or shear walls, at any location where is necessary. Then, the eigen-values of symmetrical structure are calculated, and are forced to be the poles of irregular controlled structure. Based on these poles and additional damping, the new poles of the controlled irregular structure are calculated. By pole placement algorithm, the feedback matrix is obtained. Using this feedback matrix, control forces are calculated at any time during the earthquake, and are applied to the irregular structure by the control devices. This procedure results in making the controlled irregular structure to behave like a symmetrical one. This control strategy can be applied to one storey or to multi-storey irregular buildings. Furthermore, the numerical results were shown that with small amount of control force, a sufficient reduction of the response of irregular buildings is achieved.

철근 기계적 정착장치의 설계 고려사항과 인발특성 (Design Considerations and Pull-Out Behavior of Mechanical Anchor of Reinforcement)

  • 천성철;김대영
    • 콘크리트학회논문집
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    • 제13권6호
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    • pp.593-601
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    • 2001
  • 철근콘크리트구조에서 철근의 인장력이 발휘되기 위해서는 적절한 정착길이 또는 갈고리가 필요하다. 그런데, 접합부와 같이 배근이 집중되는 곳이나 대구경 고강도철근이 필요한 경우 정착을 위한 정착길이나 갈고리의 제작 및 배근작업이 어려우며 콘크리트의 충진성도 저하될 수 있다. 또한 갈고리부분의 과도한 응력집중으로 국부적인 지압파괴나 slip이 발생될 우려도 있다. 이러한 문제점을 해결할 수 있는 방안으로 정착판을 철근 단부에 부착한 기계적 정착공법이 제안되고 있다. 본 연구는 기계적 정착공법의 기초가 되는 정착장치의 요구성능과 정착설계법을 고찰하고 인발실험를 통해 정착장치의 앵커기능을 확인하고자 한다 인발실험 결과, 본 연구에서 설계된 정착장치는 앵커로써의 기능을 적절히 발휘하여 기존 CCD 이론식과 매우 근접한 내력을 발휘하였다 철근항복내력 이상의 정착내력을 지니는 경우, 항복하중까지 콘크리트에 아무런 손상이 발생되지 않았으며, 정착판 후미에서 콘크리트와의 상대변위는 0.2mm이하로 콘크리트에 손상을 유발시키지 않을 것으로 판단되었다. 따라서, 본 연구의 설계과정으로 제작된 기계적 정착장치를 통해 콘크리트에 유해한 손상 없이 필요한 정착내력을 확보할 수 있다. 그러나, 철근간 간격이 좁아 파괴면이 중첩되는 경우에는 정착내력이 크게 저하되어, 순수한 콘크리트 내력만으로 기계적 정착설계가 이루어지는 경우 상당한 매립깊이가 요구된다. 따라서, 실제 구조물의 정착설계를 위해서는 인접부재와의 골조거동(frame action)에 따른 구속효과와 전단보강근의 영향을 고려할 필요가 있다. 이에 대한 추가적인 연구가 필요하다.