• 제목/요약/키워드: Stiffness Distribution Ratio

검색결과 143건 처리시간 0.029초

공동현상 모델에 따른 침수형 평면 저널베어링의 동특성 및 회전 안정성에 대한 연구 (Dynamic Characteristics and Instability of Submerged Plain Journal Bearings in accordance with the Cavitation Model)

  • 최문호
    • Tribology and Lubricants
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    • 제39권4호
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    • pp.139-147
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    • 2023
  • Cavitation phenomena observed during the operation of a submerged plain journal bearing (PJB) can affect bearing performance parameters such as dynamic coefficients, whirl frequency ratio, and critical mass. This study presents numerical solutions of the Reynolds equation for steadily and dynamically loaded submerged PJBs with half-Sommerfeld (HS), Reynolds, and Jakobsson-Floberg-Olsson (JFO) cavitation models when the supply pressure is larger or equal to the cavitation pressure. The loads at various eccentricity ratios are identical; however, the attitude angle is approximately 6% smaller when the eccentricity ratio is between 0.2 and 0.7 and the JFO model is used, compared to that when the Reynolds model is used. Dynamic coefficients obtained with the HS and Reynolds model show good agreement with each other, except for kxz, which is sensitive to changes in the force normal to the rotor weight, and is attributed to the difference in the attitude angle obtained with each cavitation model. Stiffness coefficients are determined using the pressure distribution in the film, and therefore, when the JFO model is used, the direct stiffness coefficients are affected and show opposite signs for most eccentricity ratios. The mass-conservative JFO model can predict at least a 30% smaller critical mass compared to that using the HS and Reynolds models. Thus, the instability analysis results can change based on the cavitation model used in a submerged PJB. The results of this research indicate that the JFO model should be used when designing a rotor system supported by submerged PJBs.

골조 안정성 평가를 위한 직접해석법의 적용 방법에 따른 영향 (The Influence of the Application Methods of Direct Analysis Method for the Evaluation of Frame Stability)

  • 김희동
    • 한국강구조학회 논문집
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    • 제22권4호
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    • pp.293-303
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    • 2010
  • 본 연구는 강구조 설계기준(KBC 2009)에서 골조 안정성 평가를 위해 제시한 하중증폭계수를 적용한 직접해석법의 적용 방법에 따른 영향을 해석적 방법을 통해 평가하는데 목적이 있다. 이를 위해 KBC 2009에서 제안하고 있는 가상수평하중 적용 방법, 휨강성 감소 방법, B2 계수 산정 방법 등을 각각 적용한 직접해석을 3층 1스팬 및 5층 3스팬 비가새 강구조 골조에 대해 실시하고, 그 해석 결과를 2차 비탄성 해석 결과와 비교하여 각 적용 방법의 영향을 평가하였다. 직접해석법 적용 방법 이외에 외적 요인의 영향을 고찰하기 위해 골조의 규모, 기둥의 축력비, 축력의 층별분포 등도 변수로 추가하였다. 연구 결과 소요압축강도는 직접해석법 적용 방법에 따른 차이가 크지 않은 것으로 나타났으며, 소요휨강도는 가상수평하중 누계 및 추가 적용, 층강성 개념 B2 계수를 직접해석법에 적용시 적절한 결과를 나타내었다.

긴장력 횡분배를 이용한 강합성형교 외부 후 긴장 보강 (External Post-tensioning Strengthening of Composite Girder Bridge Using Lateral Distribution of Post-tensioning Force)

  • 박영훈;박용걸
    • 대한토목학회논문집
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    • 제29권6A호
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    • pp.587-596
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    • 2009
  • 본 연구는 외부 후 긴장력 횡분배 거동을 연구하고 일부 거더 외부 후 긴장만 으로 공용중인 강합성형교 보강 가능성을 평가하기 위한 연구이다. 실험 및 해석적 연구로부터 부분 거더 긴장만으로도 강합성형교 보강이 가능한 것으로 나타났으며, 브레이싱에 의하여 긴장력 횡분배 거동이 개선되는 것으로 평가되었다. 강성비, 거더 간격, 경간장의 영향을 받는 긴장력 횡분배 거동은 교량 형태 및 긴장되는 거더 위치에 의해 변화하는 것으로 분석되었으며, 외부 후 긴장력 횡분배 거동을 예측하는 제안식을 도출하여 합리성을 평가 하였다.

고성능 철근으로 보강된 2방향 콘크리트 슬래브의 펀칭전단거동 (Punching Shear Behavior of High-Performance Steel Reinforced Two-Way Concrete Slabs)

  • 양준모;이주하;신현오;국경훈;윤영수
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2010년도 춘계 학술대회 제22권1호
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    • pp.75-76
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    • 2010
  • 고성능 철근으로 휨 보강된 이방향 슬래브를 제작하고 펀칭 전단실험을 실시하였다. 휨철근의 항복강도, 휨 철근비 및 기둥 인접부 휨철근의 집중배근을 변수로 하여 실험하였고, 펀칭 전단강도, 균열후 강성, 변형률 분포, 균열제어 효과 등을 비교, 분석하였다.

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Behavior of concrete-filled double skin steel tube beam-columns

  • Hassan, Maha M.;Mahmoud, Ahmed A.;Serror, Mohammed H.
    • Steel and Composite Structures
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    • 제22권5호
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    • pp.1141-1162
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    • 2016
  • Concrete-filled double skin steel tube (CFDST) beam-columns are widely used in industrial plants, subways, high-rise buildings and arch bridges. The CFDST columns have the same advantages as traditional CFT members. Moreover, they have lighter weight, higher bending stiffness, better cyclic performance, and have higher fire resistance capacities than their CFT counterparts. The scope of this study is to develop finite element models that can predict accepted capacities of double skin concrete-filled tube columns under the combined effect of axial and bending actions. The analysis results were studied to determine the distribution of stresses among the different components and the effect of the concrete core on the outer and inner steel tube. The developed models are first verified against the available experimental data. Accordingly, an extensive parametric study was performed considering different key factors including load eccentricity, slenderness ratio, concrete compressive strength, and steel tube yield strength. The results of the performed parametric study are intended to supplement the experimental research and examine the accuracy of the available design formulas.

자동차용 차동 베벨기어의 최적 예비성형체 설계 (The Optimal Preform Design for Automotive Differential Bevel Gear)

  • 김병민;김동환;정구섭
    • 한국자동차공학회논문집
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    • 제12권1호
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    • pp.184-189
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    • 2004
  • In this paper, the warm forging process sequence has been determined to manufacture the warm forged product for the precision bevel gear used as the differential gear unit of a commercial automobile. The preform shape of bevel gear influences the dimensional accuracy and stiffness of final product. The aspect ratio and chamfer length are considered as design parameters to achieve adequate metal distribution in the finish forging operation. Then the optimal conditions of design parameters have been selected by artificial neural network (ANN). Finally, to verify the optimal preform shape, the experiments of the warm forging of the bevel gear have been executed. The proposed method can give more systematic and economically feasible means for designing the preform shape in metal forming process.

Seismic response of substandard RC frame buildings in consideration of staircases

  • Karaaslan, Ayberk;Avsar, Ozgur
    • Earthquakes and Structures
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    • 제17권3호
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    • pp.283-295
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    • 2019
  • During the seismic performance assessment of existing buildings, staircases are generally not taken into account as structural members but as dead load. Staircases, as secondary structural members, not only serve for connecting successive floors but also provide considerable amount of strength and stiffness to the building which can modify its seismic behaviour considerably. In this parametric study, the influence of staircases on the seismic response of substandard RC frame buildings which differ in number of storey and span, presence of staircase and its position has been examined. Modal Analyses and bi-directional Non-Linear Time History Analyses (NLTHA) were conducted to compare several engineering demand parameters (EDPs) such as inter-storey drift ratio (ISDR), floor accelerations, modal properties, member shear forces and plastic hinge distribution. Additionally, short column effect, variation in shear forces of columns that are attached to the staircase slab, failure and deformation in staircase models have also been investigated. As the staircase was considered in the analytical model, a different damage pattern can be developed especially in the structural components close to staircase.

강판 형상비 및 판폭두께비에 따른 강판전단벽의 변형모드 및 이력특성 (Hysteretic Characteristics and Deformation Modes of Steel Plate Shear Walls According to Aspect Ratios and Width-to-Thickness Ratios)

  • 신동현
    • 한국공간구조학회논문집
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    • 제24권1호
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    • pp.37-45
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    • 2024
  • Steel plate shear walls (SPSWs) have been recognized as an effective seismic-force resisting systems due to their excellent strength and stiffness characteristics. The infill steel plate in a SPSW is constrained by a boundary frame consisting of vertical and horizontal structural members. The main purpose of this study was to investigate deformation modes and hysteretic characteristics of steel plate shear walls (SPSWs) to consider the effects of their aspect ratios and width-to-thicness ratios. The finite element model (FEM) was establish in order to simulate cyclic responses of SPSWs which have the two-side clamped boundary condition and made of conventional steel grade. The stress distribution obtained from the FEA results demonstrated that the principal stresses on steel plate with large thickness-to-width ratio were more uniformly distributed along its horizontal cross section due to the formation of multiple struts.

원자력 발전소에서 쓰나미 방지용 댐퍼에 대한 구조해석 (A Structural Analysis of Tsunami-proof Damper in Nuclear Power Plant)

  • 진도훈
    • 한국산업융합학회 논문집
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    • 제23권4_2호
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    • pp.603-609
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    • 2020
  • The purpose of this study is to research dampers, which are applied mainly to buildings adjacent to the coast, such as nuclear facilities, and used for ventilation and can safely protect lives and equipment in emergency situations. Comparing the equivalent stress for three models with hinge reinforcement and support reinforcement based on the early design model for Damper, in the Base model, the highest stress occurred in the part of hinge, especially in the centrally mounted hinge, and after reinforced the hinge, it was occurred in the rear support. For models reinforced hinges and supports, it is considered that reinforcement for stiffness will be required in the future as it entered within the range of allowable stress. For the safety factor distribution, the minimum safety ratio was sufficiently secured at least 1 and was high at the edge of the Damper frame and the Blade. As the hinge was reinforced, the safety factor distribution of Blade was increased, and it was verified that the safety factor was secured through the support reinforcement.

Optimization of Sky-Bridge location at coupled high-rise buildings considering seismic vulnerability functions

  • Arada, Ahmad Housam;Ozturk, Baki;Kassem, Moustafa Moufid;Nazri, Fadzli Mohamed;Tan, Chee Ghuan
    • Structural Engineering and Mechanics
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    • 제82권3호
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    • pp.385-400
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    • 2022
  • Sky-bridges between adjacent buildings can enhance lateral stiffness and limit the impact of lateral forces. This study analysed the structural capabilities and dynamic performances of sky-bridge-coupled buildings under various sets of ground motions. Finite Element (FE) analyses were carried out with the link being iteratively repositioned along the full height of the structures. Incremental dynamic analysis (IDA) and probabilistic damage distribution were also applied. The results indicated that the establishment of sky-bridges caused a slight change in the natural frequency and mode shapes. The sky-bridge system was shown to be efficient in controlling displacement and Inter-Storey Drift Ratio (%ISDR) and reducing the probability of damage in the higher floors. The most efficient location of the sky-bridge, for improving its rigidity, was found to be at 88% of the building height. Finally, the effects of two types of materials (steel and concrete) and end conditions (hinged and fixed) were studied. The outcomes showed that coupled buildings with a sky-bridge made of steel with hinged connection could withstand ground motions longer than those made of concrete with fixed connection.