• 제목/요약/키워드: Material Damping

검색결과 582건 처리시간 0.027초

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.

진동응답을 최소화하는 비구속형 제진보의 제진 부위 최적설계 (Optimal Treatment of Unconstrained Visco-elastic Damping Layer on Beam to Minimize Vibration Responses)

  • 이두호
    • 한국소음진동공학회논문집
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    • 제15권7호
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    • pp.829-835
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    • 2005
  • An optimization formulation of unconstrained damping treatment on beam is proposed to minimize vibration responses using a numerical search method. The fractional derivative model is combined with RUK's equivalent stiffness approach in order to represent nonlinearity of complex modulus of damping materials with frequency and temperature. Vibration responses are calculated by using the modal superposition principle, and of which design sensitivity formula with respect to damping layout is derived analytically. Plugging the sensitivity formula into optimization software, we can determine optimally damping treatment region that gives minimum forced response under a given boundary condition. A numerical example shows that the proposed method is very effective in suppressing nitration responses by means of unconstrained damping layer treatment.

비구속형 점탄성 제진층을 갖는 보의 제진층 길이 최적화 (Length Optimization for Unconstrained Visco-elastic Damping Layer of Beams)

  • 이두호;황우석
    • 한국소음진동공학회논문집
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    • 제13권12호
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    • pp.938-946
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    • 2003
  • Length of an unconstrained viscoelastic damping layer on beams is determined to maximizeloss factor using a numerical search method. The fractional derivative model can describe damping characteristics of viscoelastic damping materials accurately, and is used to represent nonlinearity of complex modulus with frequencies and temperatures. Equivalent flexural rigidity of the unconstrained beam is obtained using Ross, Ungar, Kelvin[RUK] equation. The loss factors of partially covered unconstrained beam are calculated by a modal strain energy method. Optimal lengths of the unconstrained viscoelastic damping layer of beams are identified with ambient temperatures and thickness ratios of beam and damping layer by using a finite-difference-based steepest descent method.

전기적-기계적 수동감쇠기를 이용한 빔의 진동제어 (Vibration Control of Beams Using Mechanical-Electrical Hybrid Passive Damping System)

  • 안상준;박현철;박철휴
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2003년도 춘계학술대회논문집
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    • pp.362-367
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    • 2003
  • A new mechanical-electrical hybrid passive dam ping treatment is proposed to improve the performance of structural vibration control. The proposed hybrid passive damping system consists of a constrained layer damping treatment and a shunt circuit. In a passive mechanical constrained layer damping, a viscoelastic material damping layer is used to control the structural vibration modes in high frequency range. The passive electrical damping is designed for targeting the vibration amplitude in the low frequency range. The governing equations of motion are derived through the Hamilton's principle. The obtained mathematical model is validated experimentally. The presented theoretical and experimental techniques provide invaluable tools for controlling the multiple modes of a vibrating structure over a wide frequency band.

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제진재가 삽입된 바닥 구조의 진동특성 (Vibration Characteristics of the Floor Structures inserted with Damping Materials)

  • 정영;유승엽;전진용;박준홍
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2005년도 추계학술대회논문집
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    • pp.377-380
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    • 2005
  • Damping materials encompass a broad range of materials, including, but not limits to, pressure sensitive adhesives, epoxies, rubbers, foams, thermoplastics, enamels and mastics. Their common characteristic is that their modulus is represented by a complex quantity, possessing both a stored and dissipative energy component. Loss factor of damping material analyzed more than 2 times than rubber to 1.5 $\sim$ 2.3, could know that Damping layer has excellent attenuation performance in side of vibration reduction. Measurements of vibration using accelerometers by adhesion of Damping layer, square Plate by Separation of Damping layer is less binding of Damping layer, analyzed low loss factor and Natural Frequency by free Vibration of Square Plate.

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분포 내부 감쇠 모형에 따른 회전체 계 동특성 비교 연구 (A Comparison of Dynamics of Rotor Systems for Different Internal Damping Models)

  • 박종혁;전봉석;강중옥;홍성욱
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2001년도 추계학술대회논문집 II
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    • pp.838-843
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    • 2001
  • Internal damping plays an important role in some rotor dynamic systems with the use of various materials for shafts, for example, composite material. However, although the effects of internal damping have been investigated for a couple of decades, there are several different internal damping models in use, none of which are accepted as the most reliable model. The purpose of this paper is to compare the results of dynamic analysis of rotor systems with several different internal damping models. The exact dynamic element method is used to formulate and analyze the problem. The simulation results provided in this paper may be useful for the dynamic analysis of high rotor systems subject to significant internal damping.

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수동 구속감쇠층을 갖는 복합적층보의 진동특성 (Vibration Characteristics of Laminated Composite Beams with Passive Constrained Layer Damping)

  • 강영규
    • 한국소음진동공학회논문집
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    • 제12권12호
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    • pp.964-969
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    • 2002
  • The flexural vibration of laminated composite beams with passive constrained layer damping has been investigated to design structure with maximum possible damping capacity. The equations of motion are derived for flexural vibrations of symmetrical, multi-layer laminated beams. The damping ratio and modal damping of the first bending mode are calculated by means of Iterative complex eigensolution method. This paper addresses a design strategy of laminated composite under flexural vibrations.

Stress-related energy dissipation and damping model of concrete considering moisture content

  • Liu, Baodong;Zhang, Pengyuan;Lyu, Wenjuan
    • Advances in concrete construction
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    • 제13권6호
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    • pp.423-431
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    • 2022
  • Although the influence of moisture content on the mechanical properties of concrete has been studied for a long time, research related to its influence on the damping and energy dissipation property of concrete structure is still very limited. In this paper, the relationship between damping property and moisture content of concrete using cyclic uniaxial compression is firstly presented, and the mechanism of the influence of moisture content on concrete damping and energy dissipation capacity is analyzed. Based on the experimental research, moisture-related damping and energy dissipation model is proposed. Results show that the dissipated energy of concrete and loss factor increase as the moisture content increasing. The energy dissipation coefficient reflecting the influence of stress level of concrete under cyclic load, decreases first and then increases as the moisture content increasing. The mechanism of moisture-related energy dissipation behavior can be divided into the reactive force of water, the development of the internal micro cracks and the pore water pressure. Finally, the proposed moisture-related damping and energy dissipation model are verified.

Modelling and FEA-simulation of the anisotropic damping of thermoplastic composites

  • Klaerner, Matthias;Wuehrl, Mario;Kroll, Lothar;Marburg, Steffen
    • Advances in aircraft and spacecraft science
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    • 제3권3호
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    • pp.331-349
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    • 2016
  • Stiff and light fibre reinforced composites as used in air- and space-craft applications tend to high sound emission. Therefore, the damping properties are essential for the entire structural and acoustic engineering. Viscous damping is an established and reasonably linear model of the dissipation behaviour. Commonly, it is assumed to be isotropic and constant over all modes. For anisotropic materials it depends on the fibre orientation as well as the elastic and thermal material properties. To portray the orthogonal anisotropic behaviour, a model for unidirectional fibre reinforced plastics (frp) has been developed based on the classical laminate theory by ADAMS and BACON starting in 1973. Their approach includes three damping coefficients - for longitudinal damping in fibre direction, damping transversal to the fibres and shear based dissipation. The damping of a laminate is then accumulated layer wise including the anisotropic stiffness. So far, the model has been applied mainly to thermoset matrix materials. In this study, an experimental parameter estimation for different thermoplastic frp with angle ply and cross ply layups was carried out by measuring free vibrations of cantilever beams. The results show potential and limits of the ADAMS/BACON damping criterion. In addition, a possibility of modelling the anisotropic damping is shown. The implementation in standard FEA software is used to study the influence of boundary conditions on the damping properties and numerically estimate the radiated sound power of thin-walled frp parts.

전기차 인너벨트 웨더스트립용 EPDM/PP Thermoplastic Vulcanizates 재료설계인자에 따른 점탄성과 글라스 마찰 소음 상관관계 연구 (Investigation of Viscoelastic Properties of EPDM/PP Thermoplastic Vulcanizates for Reducing Innerbelt Weatherstrip Squeak Noise of Electric Vehicles)

  • 조승현;윤범용;이상현;홍경민;이상현;서종환
    • Composites Research
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    • 제34권3호
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    • pp.192-198
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    • 2021
  • 전기차의 수요 및 보급이 확대됨에 따라 차량 내 이음(buzz, squeak, rattle, BSR) 개선에 대한 요구가 커지고 있다. 이에 풍절음, 도어 글라스 및 차량 진동을 차단하는 인너벨트 웨더스트립(innerbelt weatherstrip)의 댐핑(damping) 특성 향상을 통해 BSR을 저감하는 기술 개발이 필수적이다. 기존 열경화성(thermoset) 탄성체 대비 가볍고 재활용이 가능한 열가소성(thermoplastic) 탄성체가 주목을 받고 있지만 낮은 소재 댐핑과 영구압축줄음률(compression set)로 인해 도어 글라스와 웨더스트립 간 마찰 소음을 발생하는 문제가 있다. 고분자 댐핑 특성은 점탄성(viscoelastic)에 좌우되므로, 본 연구에서는 인너벨트 웨더스트립과 도어 글라스 간 마찰 소음을 개선하기 위해 EPDM (ethylene-propylene-diene monomer)/PP (polypropylene) thermoplastic vulcanizates (TPV)의 재료설계인자(EPDM/PP 비율, EPDM 내 ENB 함량)에 따른 점탄성 분석을 통해 소재 댐핑 특성을 평가하였다. EPDM/PP 비율에 따른 분석을 통해 PP 비율이 낮을수록 소재가 연화되고, 탄성회복력(resilience)이 증가하여 저장탄성률(storage modulus)은 10.8% 감소하고 댐핑 특성을 의미하는 감쇠계수(tanδ)는 88.2% 증가함을 확인하였다. 또한 EPDM 내 ENB 함량이 높을수록 소재의 가교밀도(crosslink density)가 증가하지만, 동적가교(dynamic vulcanizate) 과정 중 PP에 분산된 EPDM particle의 크기가 감소한다. 이로 인해 증가된 EPDM/PP 계면 간 면적 증가로 인해 계면 미끄러짐에서 기인한 손실탄성률(loss modulus)이 24.7% 증가하여 댐핑 특성이 향상되었다. 재료설계인자에 따른 물성분석을 바탕으로 최적 소재(낮은 PP 비율(14 wt%), 높은 ENB 함량 (8.9 wt%))를 배합한 결과 소재 댐핑 특성(tanδ peak)은 기존 소재(PP27, EPDM/PP 30/27, ENB content 5.7 wt%) 대비 140% 증가하여 재료설계인자에 따라 댐핑 특성을 제어할 수 있음을 확인하였다. 설계된 소재의 글라스 마찰 소음 개선 효과를 확인하기 위해 stick-slip 시험을 통해 마찰 소음을 평가하였다. 소재 댐핑 특성이 향상됨에 따라 마찰 진동의 가속도 peak가 약 57.9% 감소하였다. 이러한 결과로부터 재료설계인자에 따른 소재 댐핑 특성 향상을 통해 인너벨트 웨더스트립의 글라스 마찰 소음을 개선할 수 있음을 확인하였으며, 향후 소재 재료설계인자에 따른 물성 제어를 통해 부품의 요구 성능에 맞는 다양한 재료설계에 활용할 수 있을 것으로 기대된다.