• Title/Summary/Keyword: 진동기진력

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Study on the Noise Characteristics of Small AC Motor (AC 소형 모터의 소음 특성 연구)

  • 유원희;오상경;이상조;박영필
    • Proceedings of the Korean Society for Noise and Vibration Engineering Conference
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    • 1991.04a
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    • pp.47-52
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    • 1991
  • 주거환경을 침해하는 소음의 주된 요인은 가전제품으로서, 대부분의 가전제 품은 전기모터에 의해 구동된다. 가전제품을 작동시키는 전기모터는 가전제 품에 기진력을 주는 한편 공기중으로 소음을 방사함으로서 조용한 주거환경 을 해치게 된다. 따라서 조용하고 쾌적한 주거환경 확보를 위해서는 가전제 품용 구동모터의 소음을 효과적으로 차단 또는 감소해야 한다. 모터의 소음 원은 그 모터의 종류와 형태에 따라 약간씩은 다를 수 있으나 일반적으로 크게 기계적 소음, 공기 역학적 소음, 전자기 소음, 열/전기 화학적 소음 등 으로 분류된다. 이들 중 모터의 소음에 큰 영향을 주는 것은 기계적 소음, 공기 역학적 소음, 전자기 소음이며 열/전기 화학적 소음은 매우 작은 편이 다. 또한 공기 역학적 소음은 모터에 팬이 부착될 경우에만 큰 문제가 될 뿐 이며, 팬이 부착되지 않을 경우에는 기계적 소음과 전자기 소음이 주된 소음 원이 된다. 기계적 소음과 전자기 소음은 어느 것이 주된 소음원인지는 일반 적으로 잘 알 수 없기 때문에, 개별적인 연구와 실험을 통하여 파악해야 한 다. 기계적 소음은 주로 회전자의 불균형 회전에 의한 진동 및 그로 인한 외 부 프레임의 진동으로 대별되며, 전자기 소음은 주로 공급(Air-Gap)에서의 투과파(permeance wave)와 기자력(magneto-motive force)에 의한 반지름 방향의 힘에 의해 주로 발생된다. 본 연구에서는 기계적 소음과 전자기 소음 중 모터 소음에 영향이 큰 소음원을 판별해 내고 모델 실험을 통하여 감소 방안을 검토하였다.

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Development of the Decelerator for Briquetting Machine with Low Vibration (저진동 슬래그 분쇄장치용 감속기 개발)

  • Lee, Hyoung Woo;Hur, Nam Soo;Kim, In Hwan
    • Journal of Advanced Marine Engineering and Technology
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    • v.36 no.8
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    • pp.1043-1049
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    • 2012
  • In order to develop the decelerator for briquetting machine which composed of multi-staged gears, shafts and bearings, static design of the decelerator has been carried out through the analysis of bending and face forces, including structural analysis, applied on those teeth in accordance with AGMA(American Gear Manufacturers Association) standard. And also, dynamic design has been carried out with considering of vibratory forces caused by unbalance mass and transmitting error of gear. On the results of vibration analysis, it has been confirmed that there is not any critical speed within its operating range.

Control of Deckhouse Vibration of a Container Ship due to Higher Order Inertial Excitation of Main Engine (주기관 고차 관성기진력에 의한 콘테이너선 선루진동의 제어)

  • Lee, Soo-Mok;Kim, Won-Hyun;Chung, Kyoon-Yang
    • Proceedings of the Korean Society for Noise and Vibration Engineering Conference
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    • 2000.06a
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    • pp.876-880
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    • 2000
  • Vibration problem of deckhouse structure in a container vessel was investigated through the analysis and measurement. The natural frequency of deckhouse structure was found to be resonant with main engine 4th order excitations in the operating range, major sources of which were main engine inertial moment and axial thrust of the propulsion shafting system. To investigate and solve the problem, exciter test was performed to identify the vibration chracteristics of the ship structure and mechanical balancer was installed to compensate the 4th order inertial moment. Measurement results under the conditions with and without balancer operating were compared and analyzed to confirm the balancer effect. Good coincidence was found between the measurement and analysis results, which made it possible to predict the vibration problem in the earlier design stage.

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A Study on the Theoretical Calculation of the Exciting Harmonics for Torsional Vibration of Diesel Engine Shafting (디젤엔진 축계 비틀림진동 기진력 하모닉스의 이론적 계산에 관한 연구)

  • 이용진;이돈출;김의간;전효중
    • Proceedings of the Korean Society for Noise and Vibration Engineering Conference
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    • 1997.10a
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    • pp.76-81
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    • 1997
  • In this paper, the combustion characteristics of marine diesel engines are investigated. Also, the pv diagrams of diesel engine and the torque harmonic coefficients are calculated. Their reliability are verified by comparing the calculated values with those of engine maker. The calculated results of torsional vibration with these theoretical harmonic coefficients show very good agreement with those of engine maker's results. The results of this study may be useful for the calculation of torsional vibration for diesel engine propulsion shafting, especially for 4-stroke engine which is not easy to get harmonics.

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A Study on the Adaptability of Hybrid Mass Damper for the Vibration Control of Structure under Base Excitation (지반 기진력을 받는 구조물의 진동 제어를 위한 Hybrid Mass Damper 의 유용성 연구)

  • Lim, Chae-Wook;Chung, Tae-Young;Moon, Seok-Jun
    • Proceedings of the Korean Society for Noise and Vibration Engineering Conference
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    • 2000.11a
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    • pp.268-275
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    • 2000
  • A hybrid mass damper that combines a tuned mass damper and an actuator has been recognized to be one of the most promising devices for vibration control of a tall building subjected to dynamic loads such as wind and earthquake. In this paper, in order to reduce vibration levels of a 5-story test structure, a hybrid mass damper using AC-servomotor was designed and developed. And control performances using HMD and TMD under random and earthquake excitations are compared through experimental test. It is confirmed that it is more effective to reduce the vibration levels of the test structure using HMD especially for earthquake excitation.

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Ship Vibration Control Utilizing the Phase Difference Identification of Two Excitation Components with the Same Frequency Generated by Diesel Engine and Propeller (동일 주파수 성분의 디젤엔진과 프로펠러 기진력 위상차 규명을 이용한 선박 진동 제어)

  • Seong, Hyemin;Kim, Kisun;Joo, Wonho;Cho, Daeseung
    • Journal of the Society of Naval Architects of Korea
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    • v.57 no.3
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    • pp.160-167
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    • 2020
  • A two-stroke diesel engine and a propeller normally adopted in large merchant ships are regarded as major ship vibration sources. They are directly connected and generate various excitation components proportional to the rotating speed of diesel engine. Among the components, the magnitude of two excitation components with the same frequency generated by both engine and propeller can be compensated by the adjustment of their phase difference. It can be done by the optimization of propeller assembly angle but requires a number of burdensome trials to find the optimal angle. In this paper, the efficient estimation method to determine optimal propeller assembly angle is proposed. Its application requires the axial vibration measurement in sea trial and the numerical vibration analysis for propulsion shafting which can be substituted by additional vibration measurement after one-trial modification of propeller assembly angle. In order to verify the validity of the proposed method, the phase difference between two fifth order excitation components generated by both diesel engine and propeller of a real ship is calculated by the finite element analysis and its result is indirectly validated by the comparison of axial vibration responses at intermediate shaft obtained by the numerical analysis and the measurement in sea trial. Finally, it is numerically confirmed that axial vibration response at intermediate shaft at a resonant speed can be decreased more than 87 % if the optimal propeller assembly angle determined by the proposed method is applied.

Vibration Analysis of Frame Structural Systems by the Receptance Method (Receptance 방법에 의한 골조구조계의 진동해석)

  • S.Y. Han;K.C. Kim
    • Journal of the Society of Naval Architects of Korea
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    • v.28 no.2
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    • pp.174-186
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    • 1991
  • There exist many frame structural systems which may be regarded as a combined structural system composed of beam/bar elements and attachments reducible to damped spring-mass systems. In this paper, analytical methods based on the receptance for the vibration analysis of such a system are presented. For the free vibration analysis and response calculations to point excitations, receptances of a uniform Timoshenko beam and a bar are derived in closed and spectral forms, and the method to obtain the system receptance by synthesizing the receptances of the elements and other subsystems is presented. The system damping property is also obtainable by sysnthesizing the components' damping properties. For calculations of the system responses to support motion, the Support Displacement Transfer Ratio(SDTR) of a uniform Timoshenko beam and a bar conceptually similar to the receptance is defined, and the method of synthesizing them with other subsystems' receptances is also presented. Such a method is very convenient especially in dynamic reanalysis subject to changes of some design variables.

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A Study on the Performance Improvement of a Hydraulic Vibro-hammer System (유압식 진동 항타 시스템의 성능 향상을 위한 연구)

  • 정해권;성원준;송창섭
    • Journal of the Korean Society for Precision Engineering
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    • v.17 no.6
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    • pp.169-175
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    • 2000
  • In this study, the hydraulic vibro-hammer system was analyzed and the analysis tool using GUI was developed. From the parametric analysis, the effects of each factor were revealed. Through the simulation with varying parameters, the method to improve the performance of the hydraulic vibro-hammer system was presented. The analysis tool will help an unskilled programmer analyze the hydraulic vibro-hammer system. The result of this study will help improve the performance of the hydraulic vibro-hammer systems.

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Design Sensitivity Analysis and Optimal Design to Control Forced Harmonic Vibration of Structure (구조물 진동제어를 위한 설계 민감도해석 및 최적설계)

  • J.H. Lee;K.H. Lee
    • Journal of the Society of Naval Architects of Korea
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    • v.32 no.4
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    • pp.64-72
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    • 1995
  • Sizing design sensitivity analysis of structures subjected to the harmonic vibration is performed using adjoint variable method. Constraint is the stress and sizing design variables are thickness, bending moment of inertia, and cross-sectional area of structures. Accurate sensitivities are computed and plotted sensitivity can be used as a design guidance tool. The accuracy of sensitivities is verified by the finite difference values. Also, optimal design of three-bar structure is performed using the computed sensitivity and feasible direction method while satisfying constraints and obtaining the minimum weight.

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High Vibration Phenomena due to Cylinder Explosion Pressure of Low-speed Diesel Engine with 7 Cylinders installed on Land (육상에 설치된 저속 7실린더 디젤엔진의 폭발 기진력 및 고진동 현상)

  • Kim, Yeon-Wahn;Bae, Yong-Chae;Bae, Chun-Hee;Lee, Young-Shin
    • Transactions of the Korean Society for Noise and Vibration Engineering
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    • v.17 no.9
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    • pp.826-834
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    • 2007
  • A 7K60MC-S low speed diesel engine in a power plant has frequently experienced high vibration since the unit completed construction works. Up to date, no fundamental vibration solutions were reached. Hence, several vibration tests and analyses were conducted to identify the root cause of this high vibration and to suggest the optimal countermeasures for diesel engine. The 9.25 Hz and 25.4 Hz vibrations have been observed on main body during operation. The magnitude of engine upper structural vibration is generally similar in horizontal transverse direction. However, differences in the 'Fore' and 'After' vibration magnitude with the same vibration phase angle at 9.25 Hz occur due to the explosion pulsations of 7 cylinders and the Inertia momentum added by the SCR (selective catalytic reduction) duct system. It was analyzed that the excess structural vibration occurred when the natural frequency of engine body is affected by the exciting sources due to the explosion pressure and the discharge pulsation of the seven cylinders in resonance range.