• 제목/요약/키워드: Corner-pinned Plates

검색결과 6건 처리시간 0.019초

압전소자를 이용한 음향 진동 박판에 대한 제어 기법 (Reduction Method of Acoustic Vibrating Plate Using Piezo Electric Material)

  • Dohee, Jung;SeeBok, Park;Wooyoung, Kim
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2004년도 춘계학술대회논문집
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    • pp.421-428
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    • 2004
  • Acoustic response control of a corner-pinned plate using piezoelectric wafers was studied, both theoretically and experimentally. Three different sizes of aluminum alloy plates were used and available ball joints were employed to hold the plate at the four corners. The plate with the largest aspect ratio showed the largest and most clear responses to the acoustic excitation in the range of frequencies (0~200Hz), and sound pressure levels (80~100dB) as predicted. The reduction of the acoustic response of the plate by piezoelectric actuator was very significant, more than expected, but abatement of the sound transmission through the plate was only slightly altered by the piezoelectric actuator. This work is an original work extending earlier work with doors excited by acoustic fields. The important difference is the used of ball joints to simulate the joints.

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압전 소자를 이용한 항공기용 사각박판에 대한 음향 반응제어 (Control of Acoustic Response of A/C Rectangular Plate Using Piezo Electric Material)

  • 정도희;박신옥
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2004년도 추계학술대회논문집
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    • pp.633-636
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    • 2004
  • Acoustic response control of a corner-pinned plate using piezoelectric wafers was studied, both theoretically and experimentally. Three different sizes of aluminum alloy plates were used and available ball joints were employed to hold the plate at the four comers. The plate with the largest aspect ratio showed the largest and most clear responses to the acoustic excitation in the range of frequencies $(0\sim200Hz)$, and sound pressure levels $(80\sim100dB)$ as predicted. The reduction of the acoustic response of the plate by piezoelectric actuator was very significant, more than expected, but abatement of the sound transmission through the plate was only slightly altered by the piezoelectric actuator. This work is an original work extending earlier work with doors excited by acoustic fields. The important difference is the used of ball joints to simulate the joints.

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Techniques For Control Acoustic Response of Corner-Pinned Rectangular Plate Using Piezo-electric Actuator

  • Jung, Do-Hee;Kim, Woo-Young;Lee, Sang-Kee;Park, Seen-Ok
    • International Journal of Aeronautical and Space Sciences
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    • 제4권2호
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    • pp.79-87
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    • 2003
  • Acoustic response control of a comer-pinned plate using piezoelectric wafers was studied, both theoretically and experimentally. Three different sizes of aluminum alloy plates were used and available ball joints were employed to hold the plate at the four comers. The plate with the largest aspect ratio showed the largest and most clear responses to the acoustic excitation in the range of frequencies (0~200Hz), and sound pressure levels (80~100dB) as predicted. The reduction of the acoustic response of the plate by piezoelectric actuator was very significant, more than expected, but abatement of the sound transmission through the plate was only slightly altered by the piezoelectric actuator. This work is an original work extending earlier work with doors excited by acoustic fields. The important difference is the used of ball joints to simulate the joints.

모드법에 의한 클램프 조건 사각평판의 음향방사특성 예측모델 (A Numerical Model of an Edge-clamped Rectangular Plate Based on a Mode Method to Predict Acoustic Radiation Characteristics)

  • 유지우
    • 한국소음진동공학회논문집
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    • 제21권4호
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    • pp.374-383
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    • 2011
  • A numerical model based on a mode method coupling beams and a rectangular plate is proposed to estimate radiation characteristics of an edge-clamped rectangular plate. The radiation efficiency and radiation power in the audio frequency range including the critical frequency can be predicted. The proposed model is rather simple and straightforward and gives reliable results comparing to the previous studies. The estimated radiation characteristics are compared to those of the pinned condition plates and also to those based on the formulae proposed by Maidanik. The radiation efficiency of the clamped plate seems a little higher than that of the pinned plate in the frequency range of corner and edge modes. It is explicitly shown that the power as well as efficiency at high frequencies is not influenced by these edge boundary conditions.

압전 소자를 이용한 음향 진동 박판에 대한 제어 기법 (Reduction Method of Acoustic Vibrating Plate Using Piezo Electric Material)

  • 정도희;박신옥;김우영;이상기
    • 한국소음진동공학회논문집
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    • 제13권10호
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    • pp.777-784
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    • 2003
  • 본 논문에서는 압전소자를 이용한 코너 지지된 직사각형 박판의 음향 반응에 대한 제어에 관하여 이론과 실험적인 연구를 하였다. 3개의 각각 다른 종횡비의 알루미늄판을 사용하였고 고정은 4개의 코너에서 볼조인트를 이용하였다. 그 결과 종횡비가 가장 큰 박판에서 0∼200Hz 진동수와 80∼100dB의 음압의 가진에서 예측대로 가장 크고 선명한 응답을 보였다. 압전소자에 의한 판을 통한 음향전달 감소는 크지 않았지만, 압전소자를 이용한 음향반응 제어는 기대 이상으로 현저하였다. 본 실험은 항공기 승강문의 음장 가진에 대한 선행 연구를 확장시킨 독창적인 연구이다. 가장 중요한 차이점은 문의 조인트를 볼 조인트로 모사한 것이다.

모서리의 경계조건이 가이드 조건인 사각 평판의 음향방사 특성 연구 (Sound Radiation Characteristics of Rectangular Plates with a Guided Edge Condition)

  • 유지우
    • 한국소음진동공학회논문집
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    • 제19권9호
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    • pp.876-883
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    • 2009
  • The radiation of sound from a rectangular plate with a guided edge condition is investigated. By taking this particular boundary condition into account, simple analytical forms of the average radiation efficiency and radiation power based on the modal approach can be found, where the cross-modal terms can average out for all possible point excitation locations. Design variables of the plate such as thickness, aspect ratio, and damping that are closely related to the sound radiation are mainly discussed. The radiation power of the guided plate is found to be governed by the piston mode as well as the critical frequency. While both the radiation efficiency and the radiation power seem to be influenced by thickness and a large aspect ratio, damping loss factor seems less important to the radiation power. It is also shown that no clear corner and edge mode regions may be found for the guided case, unlike the pinned.