• 제목/요약/키워드: Metallic yield damper

검색결과 8건 처리시간 0.023초

Shaking table test and numerical analysis of a combined energy dissipation system with metallic yield dampers and oil dampers

  • Zhou, Qiang;Lu, Xilin
    • Structural Engineering and Mechanics
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    • 제17권2호
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    • pp.187-201
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    • 2004
  • A shaking table test on a three-story one-bay steel frame model with metallic yield dampers and their parallel connection with oil dampers is carried out to study the dynamic characteristics and seismic performance of the energy dissipation system. It is found from the test that the combined energy dissipation system has favorable reducing vibration effects on structural displacement, and the structural peak acceleration can not evidently be reduced under small intensity seismic excitations, but in most cases the vibration reduction effect is very good under large intensity seismic excitations. Test results also show that stiffness of the energy dissipation devices should match their damping. Dynamic analysis method and mechanics models of these two dampers are proposed. In the analysis method, the force-displacement relationship of the metallic yield damper is represented by an elastic perfectly plastic model, and the behavior of the oil damper is simulated by a velocity and displacement relative model in which the contributions of the oil damper to the damping force and stiffness of the system are considered. Validity of the analytical model and the method is verified through comparison between the results of the shaking table test and numerical analysis.

슬릿형상에 따른 강재댐퍼의 이력거동 (Hysteretic Behaviors of Metallic Dampers with the Various Slit Shape)

  • 이현호;김세일
    • 한국구조물진단유지관리공학회 논문집
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    • 제15권5호
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    • pp.199-208
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    • 2011
  • 본 연구의 목적은 강재댐퍼 면내에 형성되는 슬릿 형상이 댐퍼의 강도 및 변형 능력에 미치는 영향을 평가하는데 있다. 이를 위하여 댐퍼 스트럿의 높이 및 각도에 대한 실험체 12개를 만들어 전단실험을 수행하였다. 분석결과, 댐퍼의 초기강성, 항복강도 및 항복 후 2차강성의 크기를 고려할 때 스트럿 높이가 200mm이고, 스트럿 각도 $60^{\circ}$인 S형 강재댐퍼의 내진성능이 가장 우수한 것으로 평가되었다. 또한 기존내력식을 이용한 댐퍼의 항복강도 비교결과, 내력식의 결과보다 실험 결과값이 크게 나와 댐퍼의 항복강도는 스트럿높이, 스트럿각도 등의 크기정도에 지배 받는 것으로 나타났다.

V형 강재댐퍼의 이력특성 평가 (Evaluation on Hysteretic Behaviors of V Shaped Metallic Dampers)

  • 이현호;김세일
    • 한국구조물진단유지관리공학회 논문집
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    • 제15권1호
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    • pp.254-262
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    • 2011
  • 본 연구의 목적은 슬릿형 강재댐퍼보다 에너지 소산능력 등이 우수할 것으로 예상되는 V형 강재 댐퍼 개발에 있다. 이를 위하여 댐퍼 스트럿의 높이 및 각도에 대한 실험체 9개를 만들어 전단실험을 수행하였다. 실험결과, 스트럿 높이가 270mm이고, 스트럿 각도 $60^{\circ}$인 경우의 V형 강재댐퍼가 가장 우수한 내진성능 보유한 것으로 평가되었다. 또한 기존내력식을 이용한 댐퍼의 항복강도를 비교한 결과, 기존 실험결과를 분석한 범위 내에서 V형 댐퍼의 실험결과가 높게 평가되는 것으로 나타났다.

건축구조물의 내진성능 향상을 위한 강재댐퍼 형상 및 이력 거동 (Metallic Damper Shape and Cyclic Behavior for the Seismic Capacity Improvement of Building Structures)

  • 이현호;김세일
    • 한국구조물진단유지관리공학회 논문집
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    • 제14권3호
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    • pp.123-130
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    • 2010
  • 본 논문에서는 기존 건축물의 내진성능을 향상시키기 위해 시공성과 설치 비용적인 측면에서 상대적으로 우수한 강재댐퍼를 대상으로 기존 개발된 장치와 새로 개발된 형상의 장치에 대한 평가를 해석적으로 수행하였다. 해석결과는 강도 및 에너지 소산능력으로 평가하였으며, 제안된 내력 산정식의 적용을 아울러 평가하였다. 연구대상 댐퍼의 스트럿 형상은 V형, S형이며, 댐퍼의 스트럿 높이와 각도를 주요 변수로 한 후 ABAQUS를 이용하여 유한요소 해석하였다. 해석은 최대변위를 50mm로 하고 점진적인 이력변위곡선을 적용하여 수행하였다. 항복강도, 최대강도, 에너지 소산능력 평가결과, V형 및 S형 모두 우수한 성능을 보유한 것으로 평가되었으며, 또한 스트럿 각도 $60^{\circ}$ 및 높이 140, 200 mm의 성능이 안정적인 것으로 평가되었다. 전체적으로는 S형의 응답이 V형보다 안정적인 것으로 평가되어, S형 강재댐퍼의 적용성이 V형보다 유리한 것으로 평가되었다.

A new metallic energy dissipation system for steel frame based on negative Poisson's ratio structures

  • Milad Masoodi;Ahmad Ganjali;Hamidreza Irani;Aboozar Mirzakhani
    • Structural Engineering and Mechanics
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    • 제89권1호
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    • pp.93-102
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    • 2024
  • Using negative Poisson's ratio materials, an innovative metallic-yielding damper is introduced for the first time in this study. Through the use of ABAQUS commercial software, a nonlinear finite element analysis is conducted to determine the performance of the proposed system. Mild steel plates with elliptical holes are used for these types of dampers, which dissipate energy through an inelastic deformation of the constitutive material. To assess the capability of the proposed damper, nonlinear quasi-static finite element analyses have been conducted on the damper with a variety of geometric parameters. According to the results, the proposed system is ductile and has a high capacity to dissipate energy. The proposed auxetic damper has a specific energy absorption of 910.8 J/kg and a ductility of 33.6. Therefore, this damper can dissipate a large amount of earthquake input energy without buckling by increasing the buckling load of the brace with its ductile behavior. In addition, it was found that by incorporating auxetic dampers in the steel frame, the frame was made harder, stronger, and ductile and its energy absorption increased by 300%.

A methodology for design of metallic dampers in retrofit of earthquake-damaged frame

  • Zhang, Chao;Zhou, Yun;Weng, Da G.;Lu, De H.;Wu, Cong X.
    • Structural Engineering and Mechanics
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    • 제56권4호
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    • pp.569-588
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    • 2015
  • A comprehensive methodology is proposed for design of metallic dampers in seismic retrofit of earthquake-damaged frame structures. It is assumed that the metallic dampers remain elastic and only provide stiffness during frequent earthquake (i.e., earthquake with a 63% probability of exceedance in 50-year service period), while in precautionary earthquake (i.e., earthquake with a 10% probability of exceedance in 50-year service period), the metallic dampers yield before the main frame and dissipate most of the seismic energy to either prevent or minimize structural damages. Therefore by converting multi-story frame to an equivalent single-degree-of-freedom system, the added stiffness provided by metallic dampers is designed to control elastic story drifts within code-based demand under frequent earthquake, and the added damping with the combination of added stiffness influences is obtained to control structural stress within performance-based target under precautionary earthquake. With the equivalent added damping ratio, the expected damping forces provided by metallic dampers can be calculated to carry out the configuration and design of metallic dampers along with supporting braces. Based on a detailed example for retrofit of an earthquake-damaged reinforced concrete frame by using metallic dampers, the proposed design procedure is demonstrated to be simple and practical, which can not only meet current China's design codes but also be used in retrofit design of earthquake-damaged frame with metallic damper for reaching desirable performance objective.

A ductile steel damper-brace for low-damage framed structures

  • Javidan, Mohammad Mahdi;Kim, Jinkoo
    • Steel and Composite Structures
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    • 제44권3호
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    • pp.325-337
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    • 2022
  • In this research, an earthquake-resistant structural system consisting of a pin-connected steel frame and a bracing with metallic fuses is proposed. Contrary to the conventional braced frames, the main structural elements are deemed to remain elastic under earthquakes and the seismic energy is efficiently dissipated by the damper-braces with an amplification mechanism. The superiority of the proposed damping system lies in easy manufacture, high yield capacity and energy dissipation, and an effortless replacement of damaged fuses after earthquake events. Furthermore, the stiffness and the yield capacity are almost decoupled in the proposed damper-brace which makes it highly versatile for performance-based seismic design compared to most other dampers. A special attention is paid to derive the theoretical formulation for nonlinear behavior of the proposed damper-brace, which is verified using analytical results. Next, a direct displacement-based design procedure is provided for the proposed system and an example structure is designed and analyzed thoroughly to check its seismic performance. The results show that the proposed system designed with the provided procedure satisfies the given performance objective and can be used for developing highly efficient low-damage structures.

이력형 감쇠장치를 이용한 내진보강 예비설계절차 (A Preliminary Design Procedure for Seismic Retrofit Using Hysteretic Dampers)

  • 정국기;유은종
    • 한국지진공학회논문집
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    • 제26권2호
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    • pp.59-69
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    • 2022
  • The use of dampers is being considered a means to improve the seismic performance of buildings. It may take considerable time and effort to find an optimal design solution since repeated three-dimensional nonlinear time history analyses are required. Therefore, a preliminary design procedure for seismic retrofit using hysteretic dampers was proposed in this study. In the proposed procedure, the amount of retrofit (required number of dampers) is estimated from the capacity curve of the building before retrofit and allowable story drift of the building. In combining the capacity curves of the building and the dampers, the deformation demand for the dampers can be easily checked against their deformation capacity. The equations to transform the device displacement to roof displacement for the combination of capacity curves are developed. The proposed procedure was applied to the seismic retrofit design of sample buildings. The study found that the estimated capacity curve was very close to the actual capacity curve obtained from the pushover analysis, which can determine an appropriate configuration to meet the required seismic performance.