• Title/Summary/Keyword: 진동파워

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다양한 가스를 이용한 유도 결합 플라즈마에서 E-H mode 전이 현상

  • Lee, Jeong-Gyu;Lee, Hyo-Chang;Jeong, Jin-Uk
    • Proceedings of the Korean Vacuum Society Conference
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    • 2010.02a
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    • pp.439-439
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    • 2010
  • 다양한 가스 방전에서의 전자에너지 분포함수 측정을 통하여 E-H mode 전이에 대한 연구를 하였다. 단원자 가스 방전에서는, 압력이 증가함에 따라 E-mode에서 H-mode로의 전이를 위한 인가 파워는 크게 바뀌지 않았다. 하지만, 다원자 가스에서는 압력이 증가함에 따라 상당히 높은 인가 파워가 필요하였다. 이것은 다원자 가스에서 압력이 증가함에 따라, 해리, 진동 및 회절 운동, 그리고 음이온 생성으로 인한 플라즈마 밀도의 감소에 의한 것이다. 그에 따라, H-mode 전이를 위한 충분한 플라즈마 밀도를 생성하기 위해서 더 큰 인가 파워가 필요하게 된다. 이러한 연구는 혼합가스에서도 측정하였다.

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Development of Vibration Analysis Software, PFADS-R3 using Power Flow Analysis (파워흐름해석법을 이용한 진동해석 소프트웨어, PFADS-R3 개발)

  • 홍석윤;서성훈;박영호;길현권
    • Proceedings of the Korean Society for Noise and Vibration Engineering Conference
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    • 2003.11a
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    • pp.824-830
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    • 2003
  • The Power Flow Finite Element Method(PFFEM) offers very promising results in predicting the vibration responses of system structures, and the first PFFEM software, PFADS has been developed in Seoul National University for the vibration predictions and analysis of coupled system structures in medium-to-high frequency ranges. PFFEM is numerical method which solves energy governing equation using finite element technique for complicated structures where the exact solutions are not available. Through the upgrades, the current version PFADS R3 could cover the general beam and plate structures including various kinds of beam-plate rigid joints, spring-damper connection and rigid body connection within beam and plate in addition. This software is composed of three parts; translator, model converter and solver. The translator makes its own FE-model from bulk data of commercial FE software, and the model converter is used to convert FE-model to PFFE-model automatically. The solver calculates vibrational energy density and intensity for PFFE-model by solving global matrix equations of PFFEM. For the applications of PFADS R3, two vehicle models and a container model are examined with respect to major parameters, and reliable results are obtained.

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Experimental Study on Power Flow Analysis of Vibration of an Automobile Door (자동차 도어 진동의 파워흐름해석에 대한 실험적 연구)

  • Kil, H.G.;Lee, Y.H.;Lee, G.H.;Hwang, S.G.;Hong, S.Y.;Park, Y.H.;Seo, J.K.;Chae, G.S.;Seo, S.H.
    • Proceedings of the Korean Society for Noise and Vibration Engineering Conference
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    • 2006.05a
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    • pp.782-785
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    • 2006
  • The Power Flow Analysis(PFA) can be effectively used to predict structural vibration in medium-to-high frequency range. In this paper, Power Flow Finite Element Method (PFFEM) based on PFA has been used to predict the vibration of an automobile door. The predicted results for the frequency response function of the door have been compared with corresponding experimental results. In the experiment, the automobile door has been divided into several subsystems and the loss factor of each subsystem has been measured. The input mobility at a source point has been also measured. The data for the loss factors and the input mobility have been used as the input data to predict the vibration of the automobile door with PFFEM. The frequency response functions have been measured over the surface of the door. The comparison between the experimental results and the predicted results for the frequency response functions showed that PFFEM could be an effective tool to predict the structural vibration.

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Vibration and Noise Analysis for Rotary Compressor in Medium-to-high Frequency Ranges (중고주파수 대역의 회전형 압축기 진동소음 해석)

  • Kwon, Hyun-Wung;Song, Jee-Hun;Hong, Suk-Yoon;Hwa, Jong-Hun
    • Transactions of the Korean Society for Noise and Vibration Engineering
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    • v.22 no.11
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    • pp.1033-1041
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    • 2012
  • Power flow analysis(PFA) is introduced for solving the noise and vibration analysis of system structures in medium-to-high frequency ranges. The vibration analysis software, $PFADS_{C++}$ R4 based on power flow finite element method(PFFEM) and the noise prediction software, $NASPFA_{C++}$ R1 based on power flow boundary element method(PFBEM) are developed. In this paper, the coupled PFFE/PFBE method is used to investigate the vibration and radiated noise of the rotary compressor. PFFEM is employed to analyze the vibrational responses of the rotary compressor, and PFBEM is applied to analyze the radiation noise around rotary compressor. The vibrational energy of the structure is used as an acoustic intensity boundary condition of PFBEM. Numerical simulations are presented for the rotary compressor, and reliable results have been obtained.

The Piezoelectric Ultrasonic Cutter Using A Transverse Vibration Mode (횡 진동 모드를 이용한 압전 초음파 커터)

  • Lee, Won-Hee;Kang, Chong-Yun;Kim, Hyun-Jai;Ju, Byeong-Kwon;Yoon, Seok-Jin
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2006.11a
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    • pp.37-38
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    • 2006
  • 본 연구에서는 압전체의 횡 진동모드를 이용한 압전 초음파 진동자를 설계 분석하였다. 이전의 란쥬반 진동자는 진동을 얻기 위하여, 복수의 원판 또는 사각판 형태의 압전 세라믹을 서로 반대 방향으로 분극하여 마주 보도록 설치한 후 전기적으로 병렬로 연결하고 상단 및 하단에 금속부을 부착하여 전체를 볼트로 조인 복잡한 구조와 큰 출력 파워를 갚는 반면, 본 연구에서는 판상형의 압전소자와 일체형 금속진동체를 이용하여 기계적 출력 파워 조절이 용이한 구조의 압전 진동자를 고안하여, 압전진동자의 횡 진동 모드를 이용함으로써 신뢰성과 정확도가 높고 진동효율이 최대가 되도록 설계하였다. 설계 개발된 압전 진동자는 진동의 크기 조절이 용이하여 일반 진동자 뿐 만 아니라, 외과 및 안과 수술에 있어서 인체조직이나 각막상피의 활성화를 유지한 상태에서 안전하게 절개 및 분리 시술용 진동자로 사용 할 수 있는 이점이있다. 압전 진동자는 유한요소법 시뮬레이션 프로그램 (ATILA 5.2.4)을 이용하여 설계를 하였으며 압전소자의 두께는 각각 0.2 mm, 0.5 mm로 제작하여 시뮬레이션 결과와 제작된 샘플의 특성을 비교하였고, 변위측정은 칼날을 결합 한 상태에서 공진 주파수대역 부근 주파수별로 측정 비교하였다.

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Comparison of Damping Ratios by Half Power Bandwidth Method and Synchronized Human Excitation (하프파워법과 인력가진법에 의한 감쇠율 비교)

  • Yoon, Sung-Won
    • Journal of Korean Association for Spatial Structures
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    • v.8 no.2
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    • pp.95-103
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    • 2008
  • This paper is concerned with the damping ratios of two methods, which are frequency domain and time domain approach. Ambient vibrations and synchronized human excitation test were conducted to three reinforced concrete buildings ranging from eleven to nineteen stories. The performance of the half power bandwidth method was investigated using three kinds of sample size, 1024, 2048, and 4096. The damping ratio by synchronized human excitation ranges from 1.05% to 1.22% in the long direction and from 1.16% to 1.50% in short direction. Damping by half power bandwidth method is slightly more overestimated than the synchronized human excitation due to insufficient record length. Damping evaluation by half power bandwidth method was found to be enhanced by using the narrower bandwidth with long recorded data.

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