• 제목/요약/키워드: elastic damper

검색결과 99건 처리시간 0.021초

완충시스템을 장착한 고충격 발생기구의 동특성 해석 및 실험 (Dynamic Analysis and Experiments of High Impulsive Force Device with Isolation System)

  • 박문선;강태호;변영섭;송준범;구태완;강범수
    • 한국정밀공학회지
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    • 제25권10호
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    • pp.107-114
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    • 2008
  • The aim of this study is to obtain the useful design guideline for high impulsive force device with an isolation system by the analytic approach of dynamics characteristics. In this study, the high impulsive force system was modeled and analyzed in view of multi-body dynamics, and verified the modeling and analysis result by the experiment of the high impulsive force device. Additionally, the dynamic analysis was performed for the isolation system with the selected coefficients of elastic spring and damper selected. Experimental result for the high impulsive force device with the isolation system was compared and analyzed. From the result, it was confirmed that the design guideline for the isolation system of the high impulsive force device was useful.

Nonlinear Tuned Mass Damper for self-excited oscillations

  • Gattulli, Vincenzo;Di Fabio, Franco;Luongo, Angelo
    • Wind and Structures
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    • 제7권4호
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    • pp.251-264
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    • 2004
  • The effects of a class of nonlinear Tuned Mass Dampers on the aeroelastic behavior of SDOF systems are investigated. Unlike classical linear TMDs, nonlinear constitutive laws of the internal damping acting between the primary oscillator and the TMD are considered, while the elastic properties are keept linear. The perturbative Multiple Scale Method is applied to derive a set of bifurcation equations in the amplitude and phase and a parametric analysis is performed to describe the postcritical scenario of the system. Both cubic- and van der Pol-type dampings are considered and the dependence of the limit-cycle amplitudes on the system parameters is studied. These new results, compared with the previously obtained bifurcation scenario of a SDOF aeroelastic oscillator equipped with a linear TMD, show a detrimental effect on the maximum limit-cycle amplitude reduction of the nonlinear TMD. However, the analyses evidence that in the parameter region away from the perfect tuning condition the nonlinear connection can be used to tune the system with an enhancement of the limit-cycle amplitude reduction.

유체-구조 상호작용을 적용한 튜브다발의 유체탄성불안정성 과도적 전산해석 (Multi-Physics Simulations of Fluidelastic Instability for Tube Bundles in Cross-Flow)

  • 이민형;김용찬
    • 대한기계학회논문집B
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    • 제28권2호
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    • pp.174-180
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    • 2004
  • Failure of tube bundles due to excessive flow-induced vibrations continues to affect the performance of nuclear power plant Early experimental studies concentrated on rigid structures and later investigators dealt with elastic structures because of their importance in many engineering fields. On the other hand, much less numerical work has been carried out, because of the numerical complexity associated with the problem. Conventional approaches usually decoupled the flow solution from the structural problem. The present numerical study proposes the methodology in analyzing the fluidelastic instability occurring in tube bundles by coupling the Computational fluid Dynamics (C%) with the tube equation of motions. The motion of the structures is modeled by a spring-damper-mass system that allows transnational motion in two directions (a two-degree-of-freedom system). The fluid motion and the cylinder response are solved in an iterative way, so that the interaction between the fluid and the structure can be accounted for property. The aim of the present work is to predict the fluidelstic instability of tube bundles and the associated phenomena, such as the response of the cylinder, the unsteady lift and drag on the cylinder, the vortex shedding frequency.

고강도강 내진성능 향상부재를 적용한 건물 성능 비교 (Examination of Seismic Performance for Structure with Seismic Members made by High Strength Steel)

  • 김문정;하태욱;조석희
    • 한국강구조학회 논문집
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    • 제27권3호
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    • pp.281-288
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    • 2015
  • 댐퍼를 비롯한 대부분의 내진성능 향상 부재는 골조를 구성하는 주요구조부재가 소성상태에 진입한 다음 나타나는 층 강성 저하에 대한 대처가 없어 대지진 시 건물의 층 파괴를 방지하지 못할 가능성이 높다. 이에 본 논문은 건물의 주요부재가 탄성항복한 뒤에도 건물의 층 강성을 일정기간 유지시킬 수 있는 고강도강 내진성능 향상부재를 제안한다. 본 논문에서는 다음과 같은 사실을 알 수 있다. (1) 골조의 소성화 항복 후 저감된 수평내력을 보강하는 탄성 부재를 제안방식으로 설계 시 기존 면적을 방해하지 않는 작은 단면으로 최대 층간변형각 0.02rad 까지 내력 저감 보강 가능 (2) 제안 내진성능 향상부재의 최저 적용으로도 설계 레벨을 상회하는 거대 지진에서 과다변형집중방지에 상당한 효과를 발휘하는 것을 확인.

Finite element analysis of vehicle-bridge interaction by an iterative method

  • Jo, Ji-Seong;Jung, Hyung-Jo;Kim, Hongjin
    • Structural Engineering and Mechanics
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    • 제30권2호
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    • pp.165-176
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    • 2008
  • In this paper, a new iterative method for solving vehicle-bridge interaction problems is proposed. Iterative methods have advantages over the non-iterative methods in that it is not necessary to update the system matrix for a given wheel location, and the method can be applied for a new type of car or bridge with few or no modifications. In the proposed method, the necessity of system matrices update is eliminated using the equivalent interaction force acting on the bridge, which is obtained iteratively. Ballast stiffness is included in the interaction forces and the geometric compatibility at the contact points are used as convergence criteria. The bridge is considered as an elastic Bernoulli-Euler beam with surface irregularity and ballast stiffness. The moving vehicle is modeled as a multi-axle mass-spring-damper system having many degrees of freedom depending on the number of axles. The pitching effect, which is the interaction effect between the rear and front wheels when a vehicle begins to enter or leave the bridge, is also considered in the formulation including extended ground boundaries having surface irregularity and ballast stiffness. The applicability of the proposed method is illustrated in the numerical studies.

Landing Stability Simulation of a 1/6 Lunar Module with Aluminum Honeycomb Dampers

  • Pham, Van Lai;Zhao, Jun;Goo, Nam Seo;Lim, Jae Hyuk;Hwang, Do-Soon;Park, Jung Sun
    • International Journal of Aeronautical and Space Sciences
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    • 제14권4호
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    • pp.356-368
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    • 2013
  • The Korea Aerospace Research Institute plans to launch a lunar module by 2025, and so is carrying out a preliminary study. Landing stability on the lunar surface is a key design factor of a lunar module. In this paper, a 1/6 scale model of a lunar module is investigated, for its landing stability on non-level surfaces. The lunar module has four tripod legs, with aluminum honeycomb shock absorbers in each leg strut. ADAMS$^{TM}$, the most widely used multi-body dynamics and motion analysis software, is used to simulate the module's lunar landing. Three types of dampers in the struts (rigid, viscous, and aluminum honeycomb dampers), and two types of lunar surfaces (rigid and elastic) are considered. The Sforce function is adopted, to model the aluminum honeycomb dampers. Details on the modeling and analysis of the landing stability of the 1/6 scale lunar module and the simulation results are provided in this paper.

해양심층수 취수관 부설을 위한 수치해석적 및 실험적 연구 (Numerical and Experimental studies on pipeline laying for Deep Ocean Water)

  • 정동효;김현주;김진하;박한일
    • 한국해양공학회:학술대회논문집
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    • 한국해양공학회 2004년도 학술대회지
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    • pp.29-34
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    • 2004
  • Numerical and experimental studies on pipeline laying for intake Deep Ocean Water are carried out. In the numerical study, an implicit finite difference algorithm is employed for three-dimensional pipe equations. Fluid non-linearity and bending stiffness are considered and solved by Newton-Raphson iteration. Seabed is modeled as elastic foundation with linear spring and damper. Top tension and general configuration of pipeline at a depth are predicted. It is found that control for tension to prevent being large curvature of pipeline is needed on th steep seabed and, it should be considered 23.5 ton of tension at a top of pipe on the process of pipeline laying at 400m of water depth The largest top tension of pipe on condition of the beam sea during pipe laying is shown from the experiment. The results of this study can be contributed to the design of pipeline laying for upwelling deep ocean water.

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Comparison of different cylindrical shell theories for stability of nanocomposite piezoelectric separators containing rotating fluid considering structural damping

  • Pour, H. Rahimi;Arani, A. Ghorbanpour;Sheikhzadeh, G.A.
    • Steel and Composite Structures
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    • 제23권6호
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    • pp.691-714
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    • 2017
  • Rotating fluid induced vibration and instability of embedded piezoelectric nano-composite separators subjected to magnetic and electric fields is the main contribution of present work. The separator is modeled with cylindrical shell element and the structural damping effects are considered by Kelvin-Voigt model. Single-walled carbon nanotubes (SWCNTs) are used as reinforcement and effective material properties are obtained by mixture rule. The perturbation velocity potential in conjunction with the linearized Bernoulli formula is used for describing the rotating fluid motion. The orthotropic surrounding elastic medium is considered by spring, damper and shear constants. The governing equations are derived on the bases of classical shell theory (CST), first order shear deformation theory (FSDT) and sinusoidal shear deformation theory (SSDT). The nonlinear frequency and critical angular fluid velocity are calculated by differential quadrature method (DQM). The detailed parametric study is conducted, focusing on the combined effects of the external voltage, magnetic field, visco-Pasternak foundation, structural damping and volume percent of SWCNTs on the stability of structure. The numerical results are validated with other published works as well as comparing results obtained by three theories. Numerical results indicate that with increasing volume fraction of SWCNTs, the frequency and critical angular fluid velocity are increased.

유체-구조 연계해석을 통한 소형민수헬기(LCH) 공력 및 구조하중 해석 (Airloads and Structural Loads Analysis of LCH Rotor Using a Loose CFD/CSD Coupling)

  • 이다운;김기로;이관중;정성남
    • 한국항공우주학회지
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    • 제47권7호
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    • pp.489-498
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    • 2019
  • 본 연구에서는 국내 개발 중인 소형 민수 헬리콥터(LCH)에 대해 유체-구조 연계 기법을 이용하여 로터 공력 및 구조 하중에 대한 고정밀 공탄성 해석을 수행하였다. LCH 로터는 일반적인 힌지형 로터와 달리 탄성체 베어링과 블레이드 상호 연계형 댐퍼 시스템을 탑재하였으며, 이에 대한 구조동역학 해석을 위해 CAMRAD-II 모델을 구축하였다. 주 운용조건인 전진비 0.28 순항조건에서 단일 로터 모델과 로터-동체 모델에 대한 유체-구조 연계해석을 수행하여 동체 모델링의 효과를 분석하였다. 동체 모델링이 로터의 하중 및 블레이드-와류 간섭에 미치는 영향은 제한적이지만, 루트에서 발생한 와류가 동체 효과에 의해 꼬리 로터에 무시할 수 없는 영향을 줄 수 있음을 수치적으로 확인하였다. 양력선 이론 기반의 구조동역학 해석 결과는 유체-구조 연계해석 결과와 대체로 부합하는 결과를 보였으나, 비정상 유동 예측 모델의 한계로 인해 공력 하중, 탄성 변위에 대한 peak-to-peak 크기를 낮게 예측하고 구조 진동 하중에서 주요한 위상 차이를 나타냈다.

고댐핑 요크 구조 적용 대형 태양전지판의 수동형 제진에 관한 연구 (A Study on the Passive Vibration Control of Large Scale Solar Array with High Damping Yoke Structure)

  • 박재현;박연혁;박성우;강수진;오현웅
    • 항공우주시스템공학회지
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    • 제16권5호
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    • pp.1-7
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    • 2022
  • 최근 인공위성 임무 고도화에 따라 고성능의 전장품이 탑재되어 시스템 소요전력이 증가되고 있다. 이에 따라 충분한 전력확보를 위하여 태양전지판 크기 또한 점차 증가하고 있다. 태양전지판의 크기 증가 및 중량화는 위성체 자세 기동 시 발생하는 진동과의 커플링 등에 의해 태양전지판 탄성 진동의 크기 증가를 유발한다. 상기 진동은 힌지 및 요크를 통해 위성체에 전달되어 지향성능이 요구되는 고정밀 관측위성의 지향성능과 직결되어 고해상도 영상 획득 임무 성능을 저하시킨다. 종래에는 태양전지판의 탄성 진동을 저감시키고자 고강도 설계에 집중 또는 별도의 보강재 및 댐퍼 시스템을 적용하였다. 그러나, 이는 부피 및 무게를 증가시키며 시스템 복잡성이 증가하는 한계점이 존재한다. 본 연구에서는 상기 한계점을 극복하고자 초탄성 형상기억합금(SMA: Shape Memory Alloy) 양면에 점탄성 테이프로 박막층을 적층함으로써 댐핑 특성을 극대화하였으며, 별도 시스템 적용없이 작은 부피 및 무게로 진동을 저감하여 시스템 경량화에 기여할 수 있는 설계기법을 제안하였다. 제안한 초탄성 SMA 적층형 태양전지판 요크를 태양전지판 더미에 적용시켜 자유감쇠시험 및 온도시험을 통해 설계 유효성을 입증하였다.