• 제목/요약/키워드: Stick-Slip Vibration

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자동차용 워터펌프의 스퀼소음 저감을 위한 영향도분석 (Parametric Study for the Squeal Noise Reduction of an Automobile Water Pump)

  • 김보형;정원영;백홍길;강동진;정진태
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2013년도 춘계학술대회 논문집
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    • pp.492-497
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    • 2013
  • In this study, a parametric study is performed to investigate the squeal noise of an automobile water pump. The squeal noise studied in this paper is generated by the self-excited torsional resonance of the rotating shaft, and this noise is related to the stick-slip phenomenon of the mechanical seal in the water pump. The mechanical seal friction has the characteristics of the negative velocity-gradient. The equations of motion of multiple-degree-of-freedom torsional vibration model is constructed by the Holzer's method and then the equation is transformed to an equivalent single-degree-of-freedom torsional resonance simulation model. A squeal noise criteria is determined by the simulation model to perform the parametric study. The design parameters(the mass moment of inertia of the pulley, the mass moment of inertia of the impeller, the length of the shafts, the radius of the shafts, spinning speed of the shafts, the position of the mechanical seal, radius of the mechanical seal, and normal load of the mechanical seal) are investigated to confirm the stability for the squeal noise.

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자동차용 워터펌프의 스퀼소음 저감을 위한 영향도 분석 (Parametric Study for the Squeal Noise Reduction of an Automobile Water Pump)

  • 김보형;정원영;백홍길;강동진;정진태
    • 한국소음진동공학회논문집
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    • 제23권7호
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    • pp.624-630
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    • 2013
  • In this study, a parametric study is performed to investigate the squeal noise of an automobile water pump. The squeal noise studied in this paper is generated by the self-excited torsional resonance of the rotating shaft, and this noise is related to the stick-slip phenomenon of the mechanical seal in the water pump. The mechanical seal friction has the characteristics of the negative velocity-gradient. The equations of motion of multiple-degree-of-freedom torsional vibration model is constructed by the Holzer's method and then the equation is transformed to an equivalent single-degree-of-freedom torsional resonance simulation model. A squeal noise criteria is determined by the simulation model to perform the parametric study. The design parameters(the mass moment of inertia of the pulley, the mass moment of inertia of the impeller, the length of the shafts, the radius of the shafts, spinning speed of the shafts, the position of the mechanical seal, radius of the mechanical seal, and normal load of the mechanical seal) are investigated to confirm the stability for the squeal noise.

Friction tuned mass damper optimization for structure under harmonic force excitation

  • Nasr, Aymen;Mrad, Charfeddine;Nasri, Rachid
    • Structural Engineering and Mechanics
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    • 제65권6호
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    • pp.761-769
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    • 2018
  • In this work, an optimization method of Friction Tuned Mass Damper (FTMD) parameters is presented. Friction tuned mass dampers (FTMD) are attached to mechanical structures to reduce their vibrations with dissipating the vibratory energy through friction between both bodies. In order to exploit the performances of FTMD, the determination of the optimum parameters is recommended. However, the presence of Coulomb's friction force requires the resolution of a non-linear stick-slip problem. First, this work aims at determining the responses of the vibratory system. The responses of the main mass and of the FTMD are determined analytically in the sticking and sliding phase using the equivalent damping method. Second, this work aims to optimize the FTMD parameters; the friction coefficient and the tuned frequency. The optimization formulation based on the Ricciardelli and Vickery method at the resonance frequencies, this method is reformulated for a system with a viscous damping. The inverse problem of finding the FTMD parameters given the magnitude of the force and the maximum acceptable displacement of the primary system is also considered; the optimization of parameters leads to conclude on the favorable FTMD giving significant vibration decrease, and to advance design recommendations.

乾性摩찰音 에 관한 硏究 (A Study on Dry Friction-Induced Sound)

  • 김재호;김석삼
    • 대한기계학회논문집
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    • 제8권6호
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    • pp.591-598
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    • 1984
  • 본 논문에서는 고체상호간 미끄름접촉에 의해 발생하는 진동과 소음의 특성을 조사하기 위해서 실험과 이론해석을 행하였다. 미끄름접촉과 관련된 소음에는 brake squeal 혹은 wheel screech등과 같이 stick-slip 형태의 동적 불안정 상태와 관련이 있는 squeal noise와, 겉보기로 동적 안정 상태에 있으나 미끄름접촉면간에 내재하는 미끄름접촉 고유의 불규칙한 동특성에 기인하여 발생하는 rubbing noise가 있다. 본 연구의 대상은 보다 기본적인 형태인 후자에 한한다.

단자유도 건물에 설치된 마찰감쇠기의 등가점성감쇠비 (Equivalent Viscous Damping Ratio of a Friction Damper Installed in a SDOF Building)

  • 성지영;민경원
    • 한국전산구조공학회논문집
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    • 제23권2호
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    • pp.199-208
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    • 2010
  • 건물에 설치된 마찰감쇠기는 외력의 크기에 따라 정지와 운동의 상태를 반복하여 외부 입력에너지를 소산시키기 때문에 외력과 응답관계가 비선형이다. 마찰감쇠기가 설치된 단자유도 건물은 마찰감쇠기외에 점성감쇠가 동시에 존재하므로 해석적인 정해를 구하기가 어렵다. 본 연구에서는 첫째, 점성과 마찰감쇠가 있는 단자유도계 건물의 자유진동 정해를 통하여 변위응답과 가속도 응답특성을 분석하였다. 둘째, 자유진동의 경우 응답이 멈출 때까지 소산에너지식을 이용하여 등가점성감쇠비를 구하였다. 셋째, 조화가진 일 때는 수치해석을 통하여 마찰력비 $F_r$에 따른 응답 특성을 알아보았다. 넷째, 조화가진의 경우 에너지 균형식을 바탕으로 등가점성감쇠비를 유도하였다. 등가점성감쇠비는 변위응답비의 영향을 받으므로 응답을 알아야만 구할 수 있다. 건물 응답의 진동수 특성은 협소영역(narrow band)이므로 고유진동수에 의해 지배된다고 가정하여 등가점성감쇠비를 구하였다. 마지막으로, 유도한 자유진동과 조화가진의 등가점성감쇠비를 이용한 등가선형운동방정식의 해를 비선형 수치해석 한 결과와 비교하여 검증하였다.

증기발생기 튜브재질의 미끄럼 마멸 및 프레팅 마멸 특성 (Sliding Wear and Fretting Wear of Steam Generator Tube Materials)

  • 김동구;조정우;이영제
    • Tribology and Lubricants
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    • 제17권5호
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    • pp.380-385
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    • 2001
  • In nuclear power steam generators, high flow rates can induce vibration of the tubes resulting in fretting wear damage due to contacts between the tubes and their supports. In this paper the fretting wear tests and the sliding wear tests were performed using the steam generator tube materials of Inconel 600 and 690 against STS 304. Sliding tests with the pin-on-disk type tribometer were done under various applied loads and sliding speeds at air environment. Fretting tests were done under various vibrating amplitudes and applied normal loads. From the results of sliding and fretting wear tests, the wear of Inconel 600 and 690 can be predictable using the work rate model. Depending on normal loads and vibrating amplitudes, distinctively different wear mechanisms and often drastically different wear rates can occur. It was found the results that the wear coefficients for Inconel 600 and 690 were 262.3$\times$10$\^$-15/Pa$\^$-1/ and 209.2$\times$10$\^$-15/Pa$\^$-1/, respectively. This study shows that Inconel 690 can provide much better wear resistance than Inconel 600 in air.

PTFE-폴리이미드 복합 재료의 마찰과 마모 특성 (Friction and Wear Characteristics of PTFE-Polyimide Composite)

  • 심현해;권오관
    • Tribology and Lubricants
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    • 제11권4호
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    • pp.28-34
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    • 1995
  • PTFE has good mechanical and chemical stability at wide temperature range, and more over, shows a low value of friction coefficient. On the other hand, it shows cold flow and high wear rate. However, these short comings can be overcome by adding various fillers. In this experiment, PTFE and polyimide powder were mixed into composite and its tribological characteristics was investigated. 100% polyimide was also tested for comparison. The countefface material was a stainless steel (SUS304). Friction and wear tester of ring-on-block type was used at room temperature and under atmosphere. After the wear test, the worn surfaces were examined by optical microscope. The test results show that PTFE-polyimide composite generates. the wear transfer film on both sides of the friction surfaces, and, the friction coefficient and the wear rates are relatively low. 100% polyimide generated little wear transfer films, showed high friction and wear rates, and also showed some problems of vibration and noise. It even damaged the stainless steel countefface. It was concluded that 100% polyimide does not generate transfer film well because its shear resistanbe is high and it stickslips, thus, friction coefficients and wear rates are high. In case of PTFE-polyimide composite, on the other hand, transfer film containing sufficient PTFE adheres and remains on both wear surfaces well enough because PTFE has low shear resistance. Polyimide particles in the composite were proved to be able to bear normal load and does not show stick-slip because they are covered with transfer film containing much PTFE.

필기 감성에 관련한 마찰메커니즘 분석 (Analysis of Friction Mechanisms Associated with Write Feeling)

  • 박진확;김민섭;이영제
    • Tribology and Lubricants
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    • 제32권6호
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    • pp.207-211
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    • 2016
  • To interpret the perception that originates from tactile sensibility during people touch and recognize the object surfaces, this study focuses on the development of a friction model that can describe the interaction of a stylus pen sliding over the counter surfaces. In addition, the study includes several other experimental factors such as the pressure, temperature, and topology of surface, which can have an effect on the emotional user experience concerning various surfaces; this research aims to suggest a method to quantitatively evaluate the relation between these experimental parameters and emotional user experience. Accordingly, the objective of research comprises the friction characteristic technology for measurement of fine tribological behavior and a standard to quantify the emotional feedback. Existing panels or input devices that provide interaction feedback about user actions simply operate with a single frequency vibration or sound response. On the contrary, this research investigates various interaction characteristics including friction force, frequency, and surface topology synthetically. Using the developed model, which can explain the relation between the friction parameters and emotional user experience, developers can design their product in order to provide the user with expected emotional sensibility. Consequently, it can contribute to reduce the development cost about sensitivity model.

Modelling of the interfacial damping due to nanotube agglomerations in nanocomposites

  • Jarali, Chetan S.;Madhusudan, M.;Vidyashankar, S.;Lu, Y. Charles
    • Smart Structures and Systems
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    • 제19권1호
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    • pp.57-66
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    • 2017
  • Nanocomposites reinforced with carbon nanotube fibers exhibit greater stiffness, strength and damping properties in comparison to conventional composites reinforced with carbon/glass fibers. Consequently, most of the nanocomposite research is focused in understanding the dynamic characteristics, which are highly useful in applications such as vibration control and energy harvesting. It has been observed that those nanocomposites show better stiffness when the geometry of nanotubes is straight as compared to curvilinear although nanotube agglomeration may exist. In this work the damping behavior of the nanocomposite is characterized in terms of loss factor under the presence of nanotube agglomerations. A micro stick-slip damping model is used to compute the damping properties of the nanocomposites with multiwall carbon nanotubes. The present formulation considers the slippage between the interface of the matrix and the nanotubes as well as the slippage between the interlayers in the nanotubes. The nanotube agglomerations model is also presented. Results are computed based on the loss factor expressed in terms of strain amplitude and nanotube agglomerations. The results show that although-among the various factors such as the material properties (moduli of nanotubes and polymer matrix) and the geometric properties (number of nanotubes, volume fraction of nanotubes, and critical interfacial shear stresses), the agglomeration of nanotubes significantly influences the damping properties of the nanocomposites. Therefore the full potential of nanocomposites to be used for damping applications needs to be analyzed under the influence of nanotube agglomerations.

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.