• Title/Summary/Keyword: 질량 불균형

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The Imbalance Compensation in CMG ('제어모멘트자이로'의 질량불균형 보정)

  • Lee, Jong-Kuk;Song, Tae-Seong;Kang, Jeong-Min;Song, Deok-Ki;Kwon, Jun-Beom;Seo, Joong-Bo;Oh, Hwa-Suk;Cheon, Dong-Ik;Hong, Young-Gon;Lee, Jun-Yong
    • Journal of the Korean Society for Aeronautical & Space Sciences
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    • v.48 no.11
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    • pp.861-871
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    • 2020
  • Raising the speed of the momentum wheel in the CMG increases the unintended force and torque caused by mass imbalance. This unintended force and torque should be minimized to get the better quality of satellite SAR image because they lead to the vibration of the output image. This paper shows the works on compensating the static imbalance and couple mass imbalance in the CMG wheel. First, the force and torque at the center of mass generated by the mass imbalance were predicted through M&S analysis. Second, the force and torque were estimated similarly through the M&S analysis when the measurement point was moved from the rotation center. Third, the measurement configuration for the force and torque by the mass imbalance was described. Fourth, the change of the force and torque by adding the specified mass to the momentum wheel was observed after comparing the measurements with the results of the M&S. And finally, the effect of the compensation was analyzed by comparing the force and torque before and after the correction while 24Nm class CMG was running in the standby mode.

Sensing Technique of Mass Imbalance for Condition Monitoring of Wind Turbine Blade (풍력발전기 블레이드 상태 모니터링을 위한 질량 불균형 감지기법)

  • Lee, Jong Won
    • Journal of the Korea institute for structural maintenance and inspection
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    • v.15 no.1
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    • pp.209-214
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    • 2011
  • A method to detect rotor mass imbalance, which is one of the typical faults of wind turbine, is presented for effective condition monitoring of wind turbine. Dynamic analysis for a three-bladed horizontal-axis wind turbine was carried out with adding mass to a blade for inflicting the rotor mass imbalance. It has been found that the added mass induce a resulting centrifugal force to nacelle and this leads to a transverse (relative to the rotor axis) oscillation of the nacelle. It has been also found that the amplitude of the oscillation is almost linearly increased as the added mass is increased.

Shimmy Phenomena of Steering Wheel Due to the Tire Uniformity (타이어 유니포머티에 기인한 조향휠의 시미현상 연구)

  • Kim, Jong-Kwan;Song, Sang-Kee;Oh, Jin-Woo
    • The Journal of the Acoustical Society of Korea
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    • v.16 no.1
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    • pp.54-59
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    • 1997
  • The vehicle vibrations result from the exciting forces which are caused by air resistance, engine firing, tire mass unbalance and tire uniformity. Especially, the shake and shimmy phenomena in the steering system are closely related to the vehicle vibration, the tire unbalance, and the tire uniformity. This study presents the shimmy phenomena due to the tire mass unbalance and the tire uniformity in order to investigate their effects.

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On-line Balancing of a Ultra-high speed Rotor with Residual Unbalance (자기베어링을 이용한 잔류질량불균형이 존재하는 초고속 회전체의 온라인 밸런싱)

  • 송상호
    • Journal of the Korean Society of Manufacturing Technology Engineers
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    • v.7 no.1
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    • pp.51-57
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    • 1998
  • In order to minimize vibration problems of rotating machinery rotors have been assembled through balancing machines. Since perfect balancing is impossible, residual unbalances cause serious vibration while the rotor is in high speed region. To minimize unbalance effects of magnetic bearing systems (AMB) during rotation on-line balancing methodology was studied. Unbalances were considered as disturbances of the system. The disturbance observer was used to estimate unbalance force from measurable state and input variables. Balancing inputs computed according to LQR and outputs of the observer were applied to eliminate unbalances during high speed rotation of the AMB. the effectiveness of the on-line balancing was verified through numerical simulations.

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Effect and Reduction Method of Rotating Unbalance Mass on Vibration Characteristics of Front Axle (회전 불균형 질량이 Front Axle 진동특성에 미치는 영향 및 저감 방안)

  • Park, Tae-Wone;Kim, Kee-Joo;Choi, Byung-Ik;Sung, Chang-Won;Kim, Sang-Shik;Kim, Heon-Young
    • Transactions of the Korean Society of Automotive Engineers
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    • v.15 no.6
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    • pp.165-169
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    • 2007
  • The purpose of this study is to investigate the effect of rotating unbalance mass on vibration characteristics of the front axle. The power-train systemof the vehicle is composed of several rotating parts. These component parts should be properly balanced by the balancing machine, however,sometimes these have the unbalance mass which causes the critical vibration in the vehicle. Therefore, this study suggests the vibration improvement method based on reducing the unbalance mass through changing the assembly type between the companion flange and the constant velocity joints. In addition, the way to increase the inertia moment of the companion flange was proposed.

Rotordynamic Analysis of Automotive Turbochargers Supported on Ball Bearings and Squeeze Film Dampers in Series: Effect of Squeeze Film Damper Design Parameters and Rotor Imbalances (볼 베어링과 스퀴즈 필름 댐퍼로 지지되는 차량용 터보차저의 회전체동역학 해석: 스퀴즈 필름 댐퍼 설계 인자와 회전체 불균형 질량의 영향)

  • Kim, Kyuman;Ryu, Keun
    • Tribology and Lubricants
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    • v.34 no.1
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    • pp.9-15
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    • 2018
  • Modern high-performance automotive turbochargers (TCs) implement ceramic hybrid angular contact ball bearings in series with squeeze film dampers (SFDs) to enhance transient responses, thereby reducing the overall emission levels. The current study predicts the rotordynamic responses of the commercial automotive TCs (compressor wheel diameter = ~53 mm, turbine wheel diameter = ~43 mm, and shaft diameter at the bearing locations = ~7 mm) supported on ball bearings and SFDs for various design parameters of SFDs, including radial clearance, axial length, lubricant viscosity, and rotor imbalance conditions (i.e., amplitudes and phase angles) while increasing rotor speed up to 150 krpm. This study validates the predictive rotor finite element model against measurements of mass, polar and transverse moments of inertia, and free-free mode natural frequencies and mode shapes. A nonlinear rotordynamic model integrates nonlinear force coefficients of SFDs to calculate the transient responses of the TC rotor-bearing system. The predicted results show that SFD radial clearances, as well as phase angles of rotor imbalances, have the paramount effect on the dynamic responses of TC shaft motions.

A study on the vibration Control System of Ship Superstructure wit Dynamic Characteristics (가변 동 특성을 갖는 선박 거주구의 진동제어 시스템에 관한 연구)

  • 엄재광;조대승;한성용
    • Proceedings of the Korean Society for Noise and Vibration Engineering Conference
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    • 2002.05a
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    • pp.963-972
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    • 2002
  • 선박 거주구는 승무원 및 여객들이 상주하는 곳으로서 대형 상선의 경우 주선체 상부에 건물형태의 높은 구조이므로, 선박의 불균형력과 프로펠러 기진력으로 인해 주 선체와 연성되어 진동이 발생한다. 대형상선의 거주구는 육상구조물과는 달리 주선체와 마찬가지로 강성은 일정하나 화물적재량의 변화에 따라 선박 거주구의 유효질량이 변화함으로 가변적인 진동특성을 갖는 구조물 중의 하나이다. 본 연구에서는 가변 동특성을 갖는 대형상선의 거주구 진동을 수동형 및 능동형 흡진장치를 통하여 제어할 경우 거주구의 고유진동수 변화에 따른 제어성능의 변화를 반영할 수 있으면서도 제어성능과 안정성이 뛰어난 강건제어 시스템의 설계 가능성을 수치 시뮬레이션을 통하여 확인하고자 하였다. 적용대상은 진동문제가 많이 발생하는 컨테이너 운반선과 초대형 원유운반선의 거주구 진동특성을 3차원 유한 요소법을 이용하여 검토하고, 실험적인 방법으로는 거주구 형태의 구조물의 질량변화에 대한 동조형 흡진기의 제어성능을 시험과 선형이차 진동제어 장치의 진동제어성능 실험결과를 소개하고자 한다.

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A Study on Modeling of LD Movement and Measurement of Mass Center using Piezoelectric Element (압전소자를 이용한 레이저디스크 이동현상의 모델링과 질량중심의 위치결정에 관한 연구)

  • Song, Hwa-Seop;Hong, Jun-Hee
    • Journal of the Korean Society for Precision Engineering
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    • v.16 no.4 s.97
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    • pp.213-219
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    • 1999
  • Piezoelectric element is deformed by driving voltage pattern. We developed a device of moving LD(laser disk) to use the rapid deformation of piezoelectric element. If driving voltage is changed very rapidly, the difference of acceleration is accurred between spindle motor and LD. To move LD on turn table is attained by utilizing difference of acceleration. This paper describes theoretical and experimental results about the movement of LD and presents to measure the center of mass LD with unbalance force.

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