• 제목/요약/키워드: In-plane Vibration

검색결과 653건 처리시간 0.027초

ESPI를 이용한 광학식 정밀 계측 기술 (Optical technique of precision measurement using Electronic Speckle Pattern Interferometry)

  • 은재정;정영환;최평석;박해수
    • 융합신호처리학회논문지
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    • 제4권4호
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    • pp.40-46
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    • 2003
  • 본 연구에서는 광학식 계측 기술인 ESPI에서 면외변위인 물체의 진동에 대한 분석을 수행하였다. 진동하는 물체는 고유한 노달 라인을 가지게 된다. 따라서 이를 분석함으로써 진동하는 물체에 대한 정보를 얻을 수 있다. 측정 물체로 스피커와 외팔보 평판을 사용하였으며, 이를 시간 평균 ESPI로 정성적으로 분석하였다. 본 연구의 실험 결과로 스피커에서는 진동 주파수 550Hz와 진폭 570mV에서 저차 모드 간섭무늬가 나타났으며, 진동 주파수 950Hz와 진폭 570mV에서 고차 모드 간섭무늬가 나타났다. 이러한 ESPI는 측정에 레이저를 이용하기 때문에 비파괴, 비접촉 검사이며, 높은 분해능을 가진다. 또한 레이저가 조사되는 영역이 측정 영역이 되므로 측정 물체의 크기에 제한되지 않는다.

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진동저감 대책을 통한 절취면 보호 (Rock Surface Protection According to Decrease of Blasting Vibration)

  • 홍성민;송하림;강추원;장호민
    • 화약ㆍ발파
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    • 제30권2호
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    • pp.21-28
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    • 2012
  • 사면 절취 및 도심지 터파기 등 인공적으로 사면을 형성하는 경우 경제적이고 효율적인 공법으로 화약을 이용한 발파공법이 많이 사용되고 있다. 절취면 보호를 위해 대상 암반에 손상을 주지 않고 암반이 가지고 있는 자연적인 강도를 그대로 유지할 수 있도록 발파하는 것이 중요하며 사회적으로 문제 시 되는 발파공해를 고려하여 발파진동을 저감할 수 있는 공법이 필요하다. 본 연구에서는 평활한 절취면 형성을 위하여 도폭선에 폭약을 등간격으로 배치하고 장약의 방법과 전색의 방법을 달리하여 발파를 진행하였다. 4가지 패턴을 사용하여 총 60공에서 20회 발파를 실시하였으며 발파원으로부터 15~120m 거리에서 발파진동소음측정기를 사용하여 진동속도를 측정하여 310개의 데이터를 획득하였다. 측정된 진동속도 데이터를 분석하여 발파진동을 저감하고 효율적이고 경제적으로 절취면을 보호할 수 있는 방법을 연구해 보았다.

영향계수의 전달을 이용한 탄성 지지된 티모센코 호의 자유진동 해석 (Free Vibration Analysis of Timoshenko Arcs with Elastic Supports Using Transfer of Influence Coefficient)

  • 최명수;여동준
    • 동력기계공학회지
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    • 제21권2호
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    • pp.70-76
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    • 2017
  • When Timoshenko arcs considering the shear deformation and rotatory inertia have elastic supports, the authors analyze in-plane free vibration of them by the transfer influence coefficient method. This method finds the natural frequencies of them using the transfer of influence coefficient after obtaining the transfer matrix of arc element from numerical integration of the differential equations governing the vibration of arc. In this study, two computer programs were made by the transfer influence coefficient method and the transfer matrix method for analyzing free vibration of Timoshenko arcs. From numerical results of four computational models, we confirmed that the transfer influence coefficient method is a reliable method when analyzing the free vibration of Timoshenko arcs. In particular, the transfer influence coefficient method is a effective method when analyzing the free vibration of arcs with rigid supports.

ESPI에 의한 인장하중 하에서의 복합재 적층판의 진동 거동에 관한 연구 (A Study on the Vibration Behavior of Composite Laminate under Tensile Loading by ESPI)

  • 양승필;김경석;정현철;장호섭;김종수
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2000년도 추계학술대회논문집A
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    • pp.516-521
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    • 2000
  • Most of studies, using ESPI method, have handled tension, thermal and vibration analysis, and is limited to isotropic materials. However, tension and vibration simultaneously are loaded in real structure. Also, almost study using ESPI method is locally limited to the analysis on the isotropic materials and a few studies on the anisotropic materials have reported. Existing methods, such as the accelerometer method and FEA method, to analyze vibration have some disadvantages. Using the accelerometer method that is generally used to analyze vibration phenomena, it is impossible to analyze vibration on the oscillating body and one can observe no vibration mode shape during experiment. In case of the FEA method, it is difficult to define boundary conditions correctly if the shape of a body tested is complex, and one can just obtain vibration mode shapes on the peak amplitude in each modes. In this study, plane plate of stainless steel(STS304), isotropic material, that is used as structural steel is analyzed about vibration characteristics under tension. Also, in the study of stainless steel, the characteristics of composite material(AS4/PEEK) used as high strength structural material in aircraft is evaluated about vibration under tension, and studies the effect of tension on vibration.

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면내하중을 받는 복합적층판에 대한 충격하중 및 음향 해석 (Impact Force and Acoustic Analysis on Composite Plates with In-plane Loading)

  • 김성준;황인희;홍창호
    • 한국소음진동공학회논문집
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    • 제22권2호
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    • pp.179-186
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    • 2012
  • The potential hazards resulting from a low-velocity impact(bird-strike, tool drop, runway debris, etc.) on aircraft structures, such as engine nacelle or leading edges has been a long-term concern to the aircraft industry. Certification authorities require that exposed aircraft components must be tested to prove their capability to withstand low-velocity impact without suffering critical damage. In most of the past research studies unloaded specimens have been used for impact tests, however, in reality it is much more likely that a composite structure is exposed to a certain stress state when it is being impacted, which can have a significant effect on the impact performance. And the radiated impact sound induced by impact is analyzed for the damage detection evaluation. In this study, an investigation was undertaken to evaluate the effect in-plane loading on the impact force and sound of composite laminates numerically.

자동차 라디에이터 팬의 진동특성 및 발란싱에 대한 연구 (Vehicle radiator, Fan-shroud unbalance vibration characteristics and its balancing method)

  • 김인웅;최현;박영필
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2013년도 춘계학술대회 논문집
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    • pp.256-260
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    • 2013
  • The fan-shroud plays the important role in cooling down the engine heat by the forced convection. As the fan-shroud is made by injection molding, the unbalance of the fan blades is inevitable, and its low frequency characteristics makes it easy to excite the resonances of the environmental structures. So controlling its vibration, specially the dominant vibration source of unbalance vibration, is one of key factor to improve the sound and vibration quality of the modern vehicles. This paper introduces the plane balancing method, the most appropriate way of controlling the fan-shroud by generating the acceleration orbit measured from 2 accelerometers, and proves its balancing effect by the experiment.

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층간응력의 효과를 고려한 단일방향 900복합재 적층보의 진동감쇠 해석 (Vibraion Damping Analysis in $90^0$ Laminated Beam Considering the Effect of Interlaminar Stess)

  • 임종휘
    • 대한기계학회논문집A
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    • 제24권5호
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    • pp.1261-1270
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    • 2000
  • This paper is concerned with the development of a general model for predicting material damping in laminates based on the strain energy method. In this model, the effect of interlaminar stress on damping is taken into accounts along with those of in-plane extension/compression and in-plane shear. The model was verified by carrying out the damping measurements on $90^0$ unidirectional composite beams varying length and thickness. The analytical predictions were favorably compared with the experimental data. The transverse shear($$\sigma$_{yz}$) appears to have a considerable influence on the damping behaviors in $90^0$ unidirectional polymer composites. However, the other interlaminar stresses($$\sigma$_{xz}$, $$\sigma$_z$) were shown to have little impact on vibration damping in $90^0$ laminated composite beam.

기하학적 비선형성을 고려한 유체를 수송하는 반원관의 면내운동에 대한 진동 해석 (Vibration Analysis for the In-plane Motions of a Semi-Circular Pipe Conveying Fluid Considering the Geometric Nonlinearity)

  • 정진태;정두한
    • 대한기계학회논문집A
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    • 제28권12호
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    • pp.2012-2018
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    • 2004
  • The vibration of a semi-circular pipe conveying fluid is studied when the pipe is clamped at both ends. To consider the geometric nonlinearity, this study adopts the Lagrange strain theory for large deformation and the extensible dynamics based on the Euler-Bernoulli beam theory for slenderness assumption. By using the Hamilton principle, the non-linear partial differential equations are derived for the in-plane motions of the pipe, considering the fluid inertia forces as a kind of non-conservative forces. The linear and non-linear terms in the governing equations are compared with those in the previous study, and some significant differences are discussed. To investigate the dynamic characteristics of the system, the discretized equations of motion are derived from the Galerkin method. The natural frequencies varying with the flow velocity are computed from the two cases, which one is the linear problem and the other is the linearized problem in the neighborhood of the equilibrium position. Finally, the time responses at various flow velocities are directly computed by using the generalized-$\alpha$ method. From these results, we should consider the geometric nonlinearity to analyze dynamics of a semi-circular pipe conveying fluid more precisely.

Vibration of multilayered functionally graded deep beams under thermal load

  • Bashiri, Abdullateef H.;Akbas, Seref D.;Abdelrahman, Alaa A.;Assie, Amr;Eltaher, Mohamed A.;Mohamed, Elshahat F.
    • Geomechanics and Engineering
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    • 제24권6호
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    • pp.545-557
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    • 2021
  • Since the functionally graded materials (FGMs) are used extensively as thermal barriers in many of applications. Therefore, the current article focuses on studying and presenting dynamic responses of multilayer functionally graded (FG) deep beams placed in a thermal environment that is not addressed elsewhere. The material properties of each layer are proposed to be temperature-dependent and vary continuously through the height direction based on the Power-Law function. The deep layered beam is exposed to harmonic sinusoidal load and temperature rising. In the modelling of the multilayered FG deep beam, the two-dimensional (2D) plane stress continuum model is used. Equations of motion of deep composite beam with the associated boundary conditions are presented. In the frame of finite element method (FEM), the 2D twelve-node plane element is exploited to discretize the space domain through the length-thickness plane of the beam. In the solution of the dynamic problem, Newmark average acceleration method is used to solve the time domain incrementally. The developed procedure is verified and compared, and an excellent agreement is observed. In numerical examples, effects of graduation parameter, geometrical dimension and stacking sequence of layers on the time response of deep multilayer FG beams are investigated with temperature effects.

수치해석을 통한 진동감쇠식 맞춤형 암반의 감쇠비 산정 (Estimation of Attenuation Relationship Compatible with Damping Ratio of Rock Mass from Numerical Simulation)

  • 김낙영;류재하;안재광;박두희;손무락;황영철
    • 한국지반공학회논문집
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    • 제31권4호
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    • pp.45-55
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    • 2015
  • 발파에 대한 주변 구조물이나 사면의 안정성은 경험적 진동감쇠식 또는 발파진동 동적 수치해석을 통하여 평가한다. 동적해석을 수행하기 위해서는 발파하중과 지반 감쇠비의 산정이 필요하다. 발파하중에 대해서는 다양한 경험적 방법이 제시되었지만 암반의 감쇠비에 대한 연구는 제한적이며 해석 시 이를 무시하거나 명확한 근거 없이 가정하여 해석에 적용하고 있다. 암반의 감쇠비는 절리의 영향을 크게 받으므로 이를 고려해서 산정해야 한다. 또한, 평면파로 가정할 수 있는 지진파와는 다르게 발파 시에는 구면파가 생성되며 이를 2차원 해석에서 모사하는 경우에는 이의 기하학적 확산을 고려하기 위하여 감쇠비를 조정해야 한다. 본 연구에서는 위의 두 가지 영향이 고려된 2차원 평면변형률 연속체 해석에 적용 가능한 암반의 등가감쇠비를 제안하였다. 이를 위하여 다양한 강성의 암반에 대한 2차원 동적해석을 수행하여 암반의 감쇠비에 따른 진동전파 특성을 분석하였으며 해석결과를 기반으로 진동감쇠식-전단파속도-등가감쇠비와의 상관관계를 규명하였다. 제시된 상관관계는 경험적 진동감쇠식에 상응하는 감쇠비를 산정한 최초의 시도로 중요한 의미가 있으며 동시에 실무에도 쉽게 적용될 수 있는 유용한 방법이다.