• 제목/요약/키워드: Vibration Characteristic of Beam

검색결과 93건 처리시간 0.026초

Characteristic equation solution of nonuniform soil deposit: An energy-based mode perturbation method

  • Pan, Danguang;Lu, Wenyan;Chen, Qingjun;Lu, Pan
    • Geomechanics and Engineering
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    • 제19권5호
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    • pp.463-472
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    • 2019
  • The mode perturbation method (MPM) is suitable and efficient for solving the eigenvalue problem of a nonuniform soil deposit whose property varies with depth. However, results of the MPM do not always converge to the exact solution, when the variation of soil deposit property is discontinuous. This discontinuity is typical because soil is usually made up of sedimentary layers of different geologic materials. Based on the energy integral of the variational principle, a new mode perturbation method, the energy-based mode perturbation method (EMPM), is proposed to address the convergence of the perturbation solution on the natural frequencies and the corresponding mode shapes and is able to find solution whether the soil properties are continuous or not. First, the variational principle is used to transform the variable coefficient differential equation into an equivalent energy integral equation. Then, the natural mode shapes of the uniform shear beam with same height and boundary conditions are used as Ritz function. The EMPM transforms the energy integral equation into a set of nonlinear algebraic equations which significantly simplifies the eigenvalue solution of the soil layer with variable properties. Finally, the accuracy and convergence of this new method are illustrated with two case study examples. Numerical results show that the EMPM is more accurate and convergent than the MPM. As for the mode shapes of the uniform shear beam included in the EMPM, the additional 8 modes of vibration are sufficient in engineering applications.

複合材 圓筒쉘의 動的 擧動 硏究 (Dynamic Behavior of Laminated Orthotropic Cylindrical Shells)

  • 김천욱;김치균
    • 대한기계학회논문집
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    • 제16권10호
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    • pp.1807-1815
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    • 1992
  • 본 연구에서는 적층 복합재 원통쉘의 동적특성을 검토한다. 복합재료 원통 쉘의 설계에서 주요 관심 대상인 직교이방성 변수가 진동특성과 어떤 관계를 갖는지 알아보기 위하여 직교이방성이론으로 한정시켜 해석하였다. 지배방정식은 면내관성 항을 고려한 Donnell 운동방정식을 사용하며, 진동수방정식은 Rayleigh-Ritz법을 이용 하여 유도하였다. 임의의 경계조건에 적용될 수 있도록 보특성함수를 사용하여 고유 진동수를 간단히 구하였다. 기존의 연구자들이 채용한 복합재료의 물성치들과 복합 재 원통쉘의 고유진동수사이에 어떤관계가 있는지 규명하도록 하였다.

비선형을 고려한 파랑중 선체 운동과 강도 응답에 관한 연구 (A Study on the Response of the Motions and Strength of Ships in Waves taking account of Non-linerities)

  • 김창렬;김진안;김사수;홍봉기;배동명
    • 대한조선학회지
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    • 제24권1호
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    • pp.51-66
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    • 1987
  • In this paper, the authors investigate theoretically the motion and longitudinal strength of ships among waves talking account of the effects of nonlinearities such as the hull shape, bottom emergence, and hydrodynamic impact. Incidentally the ship is treated as an elastic beam in heading wave condition regarding characteristics of slamming and whipping-according to the variation in the range of a quarter length of the ship forward and the increase of the elastic modes up to 4-th vibration mode were investigated by the present theory. Calculations are performed for 97m container ship and its validity is confirmed by a series of model tests. Conclusions obtained are as follows; 1) Acceleration and pressure estimated by the present theory are in good accordance with experiments. 2) The present non-linear theory may be applied for estimating longitudinal bending moment of ships in slamming and whipping conditions. 3) In investigation of the characteristic in response according to shape variation for parts under draft and vow-flare in the range of a quarter length of the ship forward, dynamic responses due to the former were much more conspicuous than those due to the later. 4) In the maximum bending moment, the considering case up to 2-the mode are larger, about $10{\sim}15%$, than that up to 4-th mode.

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Vibrational characteristic of FG porous conical shells using Donnell's shell theory

  • Yan, Kai;Zhang, Yao;Cai, Hao;Tahouneh, Vahid
    • Steel and Composite Structures
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    • 제35권2호
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    • pp.249-260
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    • 2020
  • The main purpose of this research work is to investigate the free vibration of conical shell structures reinforced by graphene platelets (GPLs) and the elastic properties of the nanocomposite are obtained by employing Halpin-Tsai micromechanics model. To this end, a shell model is developed based on Donnell's theory. To solve the problem, the analytical Galerkin method is employed together with beam mode shapes as weighting functions. Due to importance of boundary conditions upon mechanical behavior of nanostructures, the analysis is carried out for different boundary conditions. The effects of boundary conditions, semi vertex angle, porosity distribution and graphene platelets on the response of conical shell structures are explored. The correctness of the obtained results is checked via comparing with existing data in the literature and good agreement is eventuated. The effectiveness and the accuracy of the present approach have been demonstrated and it is shown that the Donnell's shell theory is efficient, robust and accurate in terms of nanocomposite problems.

SEA에 기초를 둔 손실계수를 이용한 결합계수의 평가 (Coupling loss factor evaluation using loss factor based on the SEA)

  • 안병하;황선웅;김영종
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 1997년도 추계학술대회 논문집
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    • pp.568-571
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    • 1997
  • The overall aim of this paper is to determine coupling loss factor using loss factor and structural loss factor. For this purpose, two kinds of loss factor were adopted. One is loss factor of each sub structure, another is structural loss factor based on the complex welded or assembled structure. Using these two parameters, it is possible to derive the coupling loss factor which represent characteristic condition of SEA theory. Coupling loss factor of conjunction in complex structure was expressed as power balance equation. The derived equation for a coupling loss factor has been simplified on the assumption of one directional power flow between two sub structures. Using these conditions, it is possible to find the coupling loss factor equation. The comparison between theory of power transmission on conjunction and above equation, show a good agreement in simple beam structure. To check the effectiveness of above equation, it was adopted rotary compressor. Rotary compressor has three main conjunctions between shell and internal vibration part. This equation was applied to find out the optimum welding point with respect to reduce the noise propagation. It shows the effective tool to evaluate the coupling loss factor in complex structure.

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축류에 놓인 환형 실린더 연료봉의 동적 안정성 기초해석 (Dynamic Stability Analysis of Annular Cylindrical Fuel Rod in Axial Flow)

  • 이강희;김형규;윤경호;이영호;김재용
    • 한국전산유체공학회:학술대회논문집
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    • 한국전산유체공학회 2008년도 춘계학술대회논문집
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    • pp.264-267
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    • 2008
  • Dual-cooled fuel with inner and outer flow channel was proposed for high burup, next generation nuclear fuel design. The annular cylinder of dual cooled fuel has higher structural strength compared to the conventional one, but also have concerns about flow induced vibration due to an additional flow of inner channel and the difference of flow velocity in between inner and outer channel. In this study, the dynamic stability of flexible, annular cylinder was evaluated according to the flow variation and compared to the that of the conventional PWR fuel rod. Centrifugal and Coriolis force by the additional flow in the inner channel were added in the dynamic equation of flexible beam in uniform, external, and axial flow. Complex eigenfrequency was calculated by the finite element method. Stability margin of annular cylinder compared to the solid cylinder and change of the dynamic characteristic are presented and discussed as a analysis results.

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Bimorph piezoelectric energy harvester structurally integrated on a trapezoidal plate

  • Avsar, Ahmet Levent;Sahin, Melin
    • Smart Structures and Systems
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    • 제18권2호
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    • pp.249-265
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    • 2016
  • A bimorph piezoelectric energy harvester is developed for harvesting energy under the vortex induced vibration and it is integrated to a host structure of a trapezoidal plate without changing its passive dynamic properties. It is aimed to select trapezoidal plate as similar to a vertical fin-like structure which could be a part of an air vehicle. The designed energy harvester consists of an aluminum beam and two identical multi fiber composite (MFC) piezoelectric patches. In order to understand the dynamic characteristic of the trapezoidal plate, finite element analysis is performed and it is validated through an experimental study. The bimorph piezoelectric energy harvester is then integrated to the trapezoidal plate at the most convenient location with minimal structural displacement. The finite element model is constructed for the new combined structure in ANSYS Workbench 14.0 and the analyses performed on this particular model are then validated via experimental techniques. Finally, the energy harvesting performance of the bimorph piezoelectric energy harvester attached to the trapezoidal plate is also investigated through wind tunnel tests under the air load and the obtained results indicate that the system is a viable one for harvesting reasonable amount of energy.

Design and Vibration Analysis of Tri-axis Linear Vibratory MEMS Gyroscope

  • Seok, Seyeong;Moon, Sanghee;Kim, Kanghyun;Kim, Suhyeon;Yang, Seongjin;Lim, Geunbae
    • 센서학회지
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    • 제26권4호
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    • pp.235-238
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    • 2017
  • In this study, the design of a tri-axis micromachined gyroscope is proposed and the vibration characteristic of the structure is analyzed. Tri-axis vibratory gyroscopes that utilize Coriolis effect are the most commonly used micromachined inertial sensors because of their advantages, such as low cost, small packaging size, and low power consumption. The proposed design is a single structure with four proof masses, which are coupled to their adjacent ones. The coupling springs of the proof masses orthogonally transfer the driving vibrational motion. The resonant frequencies of the gyroscope are analyzed by finite element method (FEM) simulation. The suspension beam spring design of proof masses limits the resonance frequencies of four modes, viz., drive mode, pitch, roll and yaw sensing mode in the range of 110 Hz near 21 kHz, 21173 Hz, 21239 Hz, 21244 Hz, and 21280 Hz, respectively. The unwanted modes are separated from the drive and sense modes by more than 700 Hz. Thereafter the drive and the sense mode vibrations are calculated and simulated to confirm the driving feasibility and estimate the sensitivity of the gyroscope. The cross-axis sensitivities caused by driving motion are 1.5 deg/s for both x- and y-axis, and 0.2 deg/s for z-axis.

$BaTiO_3$의 SPPCM 특성을 이용한 간섭계의 위상 잡음 제거 (Phase Noise Filtering in Interferometer Using the Characteristic of SPPCM of $BaTiO_3$)

  • 한정엽;김성완;김종윤;박세준;김철수;김수종
    • 대한전자공학회논문지SD
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    • 제38권2호
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    • pp.122-127
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    • 2001
  • 간섭계를 이용하는 작업에서 가장 중요한 요구사항은 간섭 필드의 안정성을 높게 유지하는 것이며 이는 안정된 간섭패턴을 이용한 측정에 있어서 정밀성을 확보해 준다. 그러나 진동과 같은 위상잡음에 의해 안정성을 유지하기 힘들다. 본 논문에서는 BaTiO₃의 SPPCM 특성을 이용하여 마흐젠더 간섭계와 같은 전통적인 간섭계 측정시 발생 가능한 위상잡음의 영향을 줄여 안정된 간섭 패턴 확보 방법을 제안하였다. 또한 BaTiO₃로 빛을 입사시킬 때 구형렌즈를 기울여 입사빔을 원형이 아닌 타원형으로 입사시켜 원형 입사의 경우에 비해 SPPCM의 응답시간과 반사율을 개선하였다. 그리고 실험을 통해 결과를 확인하였다.

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면내(面內) 모멘트를 받는 단순지지된 두 모서리와 자유경계인 나머지 두 모서리를 갖는 직사각형 판의 진동과 좌굴의 엄밀해 (Exact Solutions for Vibration and Buckling of Rectangular Plates Loaded at Two Simply-Supported Opposite Edges by In-Plane Moments, Free along the Other Two Edges)

  • 심현주;우하영;강재훈
    • 한국공간구조학회논문집
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    • 제6권4호
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    • pp.81-92
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    • 2006
  • 본 연구는 순수 면내모멘트를 발생시키는 선형적으로 변하는 수직응력을 받고 있는 단순지지된 마주보는 두 모서리와 자유경계를 가지는 직사각형 판의 자유진동과 좌굴의 엄밀해를 구하였다. 정현적으로 가정된 하중방향(x)으로의 변위함수는 단순지지 경계조건을 만족시키며, 평판을 지배하는 편미분 운동방정식 을 y 방향으로의 변계수를 갖는 상미분방정식으로 만든다. Frobenius법을 통하여, y방향으로의 멱급수를 가정하면 이 식을 엄밀하게 풀 수 있으며, 그 식의 합당한 계수를 구할 수 있다. 자유경계조건을 y=0과 b에 적용하면, 고유진동수와 임계좌굴모멘트를 구할 수 있는 4차의 특성행렬식이 만들어진다. 본 논문에서는 이 급수해의 수렴성이 면밀히 조사되었으며, 임계 좌굴모멘트의 수치결과와 모드형상이 주어진다. 상대적으로 정확도가 떨어지는 1차원적인 보 이론으로 구한 결과치와의 비교연구가 이루어진다. 또한 자유진동수와 모드형상 주어진다. 프와송비(v)의 변화에 따른 좌굴모멘트와 고유진동수의 변화가 도표로 주어진다.

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