• 제목/요약/키워드: horizontal stiffness

검색결과 386건 처리시간 0.021초

재사용율이 높은 시스템 동바리의 수직재와 수평재 연결부 회전강성 평가 (Evaluation of the Rotational Stiffness of Connections between Vertical and Horizontal Members for the Highly Reusable System Supports)

  • 박지선;송태협
    • 한국건설순환자원학회논문집
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    • 제11권4호
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    • pp.517-526
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    • 2023
  • 현장에서 재사용율이 높은 시스템 동바리를 대상으로 임의 설계와 과도한 가재새 보강을 지양하고자 성능평가를 근거로한 시스템 동바리의 수직재와 수평재의 연결부에 대한 연결 조건을 제시하고자 하였다. 이를 위하여 국내에 가설현장에 널리 사용되는 대표적인 연결재 유형인 디스크형과 포켓형을 대상을 하중방향(수직, 수평)과 가력방법(단조, 반복)에 대하여 회전강성을 평가하였다. 평가결과 현행 설계기준에서 연결재에 대하여 회전강성을 "0"으로 규정한 것과 달리 모든 시편에서 회전강성 값을 확인할 수 있었으며, 최대 회전강성은 디스크형 연결재를 사용하여 수직방향으로 반복 가력한 시편에서 회전강성값이 19.624 kNm/rad로 확인되었다.

The empirical corner stiffness for right-angle frames of rectangular and H-type cross-sections

  • Kwon, Young-Doo;Kwon, Soon-Bum;Gil, Hyuck-Moon;Cho, Hui-Jeong
    • Structural Engineering and Mechanics
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    • 제51권3호
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    • pp.471-485
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    • 2014
  • Until now, the finite corner stiffness of the right-angle frames used as horizontal girders in a bonnet, have not been considered during the design process to result in not a precise result. This paper presents a design equation set for right-angle frames used as horizontal girders in a bonnet assuming rigid corner stiffness. By comparing the center stresses of the right-angle frame according to the design equation set with the results of the finite element method, the master curves for the empirical corner stiffness can be determined as a function of slenderness ratio. A second design equation set for a right-angle frame assuming finite corner stiffness was derived and compared with the first equation set. The master curves for the corner stiffness and the second design equation set can be used to determine the design moments at the centers of the girder so that the bending stresses can be analyzed more precisely.

Three-dimensional numerical parametric study of deformation mechanisms of grouped piled raft foundation due to horizontal loading

  • Bo Wang;Houkun Cui;Yan Li;Ya Dai;Nan Zhang
    • Geomechanics and Engineering
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    • 제35권6호
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    • pp.617-626
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    • 2023
  • In this study, three-dimensional numerical parametric study was conducted to explore deformation mechanisms of grouped piled-raft-foundation due to lateral load in clays. Effects of load intensity, loading angle, soil stiffness, pile diameter, pile spacing and pile length on foundation deformations were explored. It is found that the smallest and largest movements of pile foundation are induced when the loading angles are 0° and 30°~60°, respectively. By increasing loading angle from 0° to 30°~60°, the resultant horizontal movements and settlements increase by up to 20.0% and 57.1%, respectively. Since connection beams can substantially increase integrity of four piled raft foundation, resultant horizontal movements, settlements and bending moments induced in the piled raft foundation decrease by up to 54.0%, 8.8% and 46.3%, respectively. By increasing soil stiffness five times, resultant horizontal movements and settlements of pile foundation decrease by up to 61.7% and 13.0%, respectively. It is indicated that effects of connection beam and soil stiffness on settlements of pile foundation are relatively small. When pile diameter is less than 1.4 m, deformations of piled raft foundation decrease substantially as a reduction in the pile diameter. Two dimensional groups are proposed to develop calculation charts of horizontal movements and settlements of pile foundation. The proposed calculation charts can directly estimate movements of piled raft foundation under arbitrary loading, ground and pile conditions.

수평하중을 받는 전단벽 아웃리거 시스템의 거동특성 평가 (Structural Behavior Characteristics Evaluation of Shear Wall Outrigger System Subject to Horizontal Loads)

  • 김호수;이한주;홍석일;임영도
    • 한국공간구조학회:학술대회논문집
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    • 한국공간구조학회 2006년도 춘계 학술발표회 논문집 제3권1호(통권3호)
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    • pp.110-117
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    • 2006
  • This study presents an effective stiffness-based optimal technique to consider floor rigid diaphragm action and a technique to evaluate the structural behavior characteristics and efficiency for tall shear wall outrigger system subject to horizontal loads. To this end, isoparametric plane stress element with rotational stiffness is used for shear wall element and stiffness gradient is calculated. Also, the approximation concept to solve effectively the large scaled problems, member grouping technique and resizing technique are considered. To verify the effectiveness and usefulness of this technique, the efficient evaluation method for three types of 50 story model with core and outrigger system is presented.

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정적 수평하중에 의한 경량벽체의 최대변형량 허용기준에 관한 연구 (Permissible Criteria of the Stiffness of Lightweight Wall by the Horizontal Static Load)

  • 송정현;김기준;최수경
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2014년도 춘계 학술논문 발표대회
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    • pp.204-205
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    • 2014
  • Among common test methods of assessing structure safety for existing lightweight walls, the criteria of the quality assessment of the horizontal static load resistance has been considered ambiguous. In the current study, therefore, an experiment was conducted to figure out the standardized assessment criteria of the lightweight wall's horizontal static load resistance. Based on the findings of the experiment with gypsum board and ALC block walls, an acceptable amount of each standard and the variables of the stud wall arising from the appropriate load (1000N) on the wall in a daily life were accounted for, arbitrarily setting the maximum deformation amount below 15mm.

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지중매설 연성관의 관강성 추정 (Pipe Stiffness Prediction of Buried Flexible Pipes)

  • 박준석;김선희;김응호
    • 상하수도학회지
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    • 제26권1호
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    • pp.13-20
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    • 2012
  • In this paper, we present the result of an investigation pertaining to the pipe stiffness of buried flexible pipes. Pipe stiffness (PS) formula for the parallel plate loading condition is derived based on the elasticity theory. Vertical and horizontal displacements are also derived. Vertical deflection is always larger than the horizontal deflection because some of energy due to overburden load is stored in the pipe but the difference is negligibly small. In the study, mechanical properties of the flexible pipes produced in the domestic manufacturer are tested and the results are reported in this paper. In addition, pipe stiffness is determined by the parallel plate loading tests and the finite element analysis. The difference between test and analysis is less than 14% although there are significant variations in the mechanical properties of the pipe material. Therefore, it was found that the finite element analysis can be used to predict the pipe stiffness instead of conducting parallel plate loading test.

철도교용 고무패드의 강성 추정기법 (The Estimated Stiffness of Rubber Pads for Railway Bridges)

  • 오세환;최은수;정희영
    • 한국강구조학회 논문집
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    • 제17권3호통권76호
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    • pp.307-316
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    • 2005
  • 본 연구에서는 철도교량에 교량받침으로 사용될 수 있는 4종류의 고무패드의 사용상의 특성을 분석하고, 강성과 감쇠비를 결정하기 위한 방법을 제시하였다. 고무패드의 강성을 결정하기 위해서는 정적 실험을 통한 직접적인 방법과 동적 실험을 통한 간접적인 방법이 가능하다. 본 연구에서 두 가지 방법에 의해서 고무패드의 강성을 평가하고 비교하였다. 고무패드의 감쇠비는 동적 실험에 의해서만 파악이 가능하며 폴리우레탄 고무의 경우 천연고무나 크로로프렌 고무와 유사한 감쇠비를 가지는 것으로 나타났다. 폴리우레탄 고무는 천연고무나 크로로프렌 고무에 비해 경도가 크기 때문에 작은 면적으로도 큰 하중을 견딜 수 있으며, 또한 같은 형상계수를 가지는 패드에서도 더 큰 강성을 보여 철도교의 교좌로서 활용성이 더 큰 것으로 판단되었다. 천연고무나 크로로프렌 고무 패드는 수직하중에 의한 수평 변형이 크게 발생하는데 비해, 폴리우레탄 고무패드는 수직하중에 의한 수평방향의 변형이 거의 발생하지 않기 때문에 보강재에 의한 보강이 필요하지 않다.

면진용 적층고무베어링의 기계적 역학특성 (Mechanical Characteristics of Laminated Rubber Bearings for Seismic Isolation)

  • 구경희;이재한;유봉
    • 한국지진공학회논문집
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    • 제1권2호
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    • pp.79-89
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    • 1997
  • 본 연구에서는 Haringx 이론에 근거하여 면진용 적층고무베어링의 기계적 역학특성을 살펴보고자 한다. 이를 위하여 제안된 수평강성 평가식을 검토하고 점성감쇠의 영향을 분석하기 위한 점탄성문제로의 확장을 통해 감쇠증폭을 역학특성을 평가하였다. 그리고 적층고무베어링에 대한 좌굴안정성평가를 수행하여 형상계수의 양향을 분석하였다. P-delta 효과를 고려한 적층고무베어링의 수평가성식을 면지구조물의 지진해석에 적용하여 동적잔단변형응답 해석결과를 실제 진동대를 이용한 실험결과와 비교하였다. 본 연구로부터 제안된 단순 수평강성 평가식은 설계수직하중내에서 적용가능하며 점탄성문제로 쉽게 확장이 가능하다. 좌굴안정식 평가로부터 적층고무베어링은 단일 고무판의 두께 증가비에 비하여 총 고무판두께 증가비가 좌굴하중감소에 크게 영향을 준다. 그리고 입력지진에 대한 면진구조물의 해석결과 적층고무베어링의 전단변형응답이 실제 실험결과와 매우 일치한 결과를 얻었다.

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면진장치 특성 변화에 따른 중간층 면진시스템의 지진응답 평가 (Seismic Response Evaluation of Mid-Story Isolation System According to the Change of Characteristics of the Seismic Isolation Device)

  • 김현수;김수근;강주원
    • 한국공간구조학회논문집
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    • 제18권1호
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    • pp.109-116
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    • 2018
  • As the number of high-rise buildings increases, a mid-story isolation system has been proposed for high-rise buildings. Due to structural problems, an appropriate isolation layer displacement is required for an isolation system. In this study, the mid-story isolation system was designed and the seismic response of the structure was investigated by varying the yield strength and the horizontal stiffness of the seismic isolation system. To do this, a model with an isolation layer at the bottom of $15^{th}$ floor of a 20-story building was used as an example structure. Kobe(1995) and Nihonkai-Chubu(1983) earthquake are used as earthquake excitations. The yield strength and the horizontal stiffness of the seismic isolation system were varied to determine the seismic displacement and the story drift ratio of the structure. Based on the analytical results, as the yield strength and horizontal stiffness increase, the displacement of the isolation layer decreases. The story drift ratio decreases and then increases. The displacement of the isolation layer and the story drift ratio are inversely proportional. Increasing the displacement of the isolation layer to reduce the story drift ratio can cause the structure to become unstable. Therefore, an engineer should choose the appropriate yield strength and horizontal stiffness in consideration of the safety and efficiency of the structure when a mid-story isolation system for a high-rise building is designed.

Lateral deformation capacity and stability of layer-bonded scrap tire rubber pad isolators under combined compressive and shear loading

  • Mishra, Huma Kanta;Igarashi, Akira
    • Structural Engineering and Mechanics
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    • 제48권4호
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    • pp.479-500
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    • 2013
  • This paper presents the experimental as well as analytical study conducted on layer-bonded scrap tire rubber pad (STRP) isolators to develop low-cost seismic isolators applicable to structures in developing countries. The STRP specimen samples were produced by stacking the STRP layers one on top of another with the application of adhesive. In unbonded application, the STRP bearings were placed between the substructure and superstructure without fastening between the contact surfaces which allows roll-off of the contact supports. The vertical compression and horizontal shear tests were conducted with varying axial loads. These results were used to compute the different mechanical properties of the STRP isolators including vertical stiffness, horizontal effective stiffness, average horizontal stiffness and effective damping ratios. The load-displacement relationships of STRP isolators obtained by experimental and finite element analysis results were found to be in close agreement. The tested STRP samples show energy dissipation capacity considerably greater than the natural rubber bearings. The layer-bonded STRP isolators serve positive incremental force resisting capacity up to the shear strain level of 150%.