• 제목/요약/키워드: Sound transmission loss

검색결과 314건 처리시간 0.031초

소형 잔향실의 확산 음장 보정 계수 측정 연구 (The Study on Correction Factor of a Small Scale Reverberation Chamber to Estimate Transmission Loss)

  • 김태민;김다래;김정태
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2014년도 추계학술대회 논문집
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    • pp.960-965
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    • 2014
  • Transmission loss of specimen is calculated by measuring energy of incident and transmission and using reverberant room of large size. But normal measurement of transmission loss has trouble because it is actually demanded that large area and specimen of certain size is satisfied with condition of diffused sound field. Especially, in case of mechanical component, interested frequency band is mid-frequency band between 500 ~ 2k Hz, and it is used to be available to minimize a reverberation chamber under conditions satisfying acoustic one because production of specimen for transmission loss measurement has limit. But, as in semi-reverberation room, it is difficult to satisfy condition of diffuse sound field and modification factor is applied to complement that. Correction factor when measuring transmission loss using semi-reverberation chamber is required accuracy because it works as main factor determining reliability of reuslts on transmission loss. In this study, it is analyzed that an effect on correction factor based on varying materials and sizes of specimens in order to deduction of it. Also It is confirmed that applied by elicited correction factor with actual railway vehicle's floor has reliability.

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그라파이트 인터칼레이션 컴파운드가 에폭시 복합재료의 흡·차음성에 미치는 영향 (Effect of Graphite Intercalation Compound on the Sound Absorption Coefficient and Sound Transmission Loss of Epoxy Composites)

  • 이병찬;박규대;최성규;김성룡
    • Composites Research
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    • 제28권6호
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    • pp.389-394
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    • 2015
  • 팽창된 그라파이트 인터칼레이션 컴파운드에 에폭시 수지를 주입하여 제조한 복합재료의 흡 차음성을 연구하였다. 관내법을 이용하여 복합재료의 흡음률과 음향투과손실을 측정하였다. 주사전자현미경을 이용하여 에폭시 매트릭스 내부에 그라파이트 인터칼레이션 컴파운드가 무질서한 방향으로 균일하게 분산된 것을 확인하였다. 그라파이트 인터칼레이션 컴파운드 함량이 증가함에 따라 복합재료의 면밀도가 감소하였으며, epoxy/(GIC 20 wt%) 복합재료의 면밀도는 순수 에폭시에 비하여 56% 감소하였다. 500~1000 Hz 주파수 영역에서 복합재료의 흡음률은 순수 에폭시에 비해 3배 정도 증가하였다. 그라파이트 인터칼레이션 컴파운드의 함량이 증가함에 따라 복합재료에 포함된 기공의 비율이 증가하여 순수 에폭시에 비하여 복합재료의 음향투과손실이 감소하는 것으로 판단된다.

대시 패널의 투과손실 측정 및 예측 (The Measurement and Prediction of Transmission loss through Dash Panel)

  • 김정수;강연준;김윤재
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2005년도 추계 학술대회논문집(수송기계편)
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    • pp.122-125
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    • 2005
  • This study is an measurement and prediction of transmission loss through dash panel with multi-path in a vehicle. Measurement results of transmission loss are derided by sound power measured using the sound intensity method under locating a sound source in the anechoic room and reverberant room, respectively. Prediction one is decided by multi-path analysis of dash panel composed by a various part of materials and complicated shape. Finally, two results show a great agreement between measured and predicted transmission loss.

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APAMAT을 이용한 실험에서 공기층 삽입이 차음재의 투과 손실에 미치는 영향 (Effect of Air Gap Insertion on Transmission Loss of Sound Barrier in APAMAT Measurement)

  • 신재성;강연준;성명호;김현석
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2001년도 춘계학술대회논문집
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    • pp.1180-1184
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    • 2001
  • This paper presents the effect of air gap insertion on the results in measuring the transmission loss of sound barrier by using APAMAT. The measured results show that air gap insertion improves transmission loss as by two-room method or intensity method. The measured results are compared with the predicted transmission loss using MATLAB GUI program based on the transfer matrix method. Predicted results were found to be in reasonable agreement with measured results.

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틸팅 차량용 적층재의 차음성능 평가 (An Estimation of the Sound Insulation Performance of the Multi-layered Panel for a Tilting Train)

  • 서태건;임봉기;김석현;김재철
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2009년도 추계학술대회 논문집
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    • pp.597-600
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    • 2009
  • Sound transmission loss (TL) is experimently investigated on the multi-layered panel used for the floor of a tilting train. Measurement of the intensity transmission loss is performed according to ASTM E 2249-02. The floor structure consists of corrugated steel panel, glass wool, plywood and cover. On the corrugated steel panel, TL drop by local resonance is considered and the TL improvement effect by damping treatment is estimated. Total sound transmission loss of the entire floor structure is obtained and the contribution of each layer is examined.

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이중판의 차음손실 : II. 다공질재 이중판 (Sound Transmission Loss of Double Panels : II. Double Panels with Porous Materials)

  • 강현주;이정권;김현실;김재승;김상렬
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 1998년도 춘계학술대회논문집; 용평리조트 타워콘도, 21-22 May 1998
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    • pp.634-642
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    • 1998
  • This paper deals with the analytical model of an elastic porous material in sound transmission loss of a double panel with fiber glasses. From the parametric analysis, it is concluded that the boundary condition, which is concerned to the contact between the skin panel and core materials, does not have much influence on sound transmission loss of a double panel with fiber glasses, and material properties of the porous material become, however, important factors to mass-spring-mass resonance. The comparisons of the prediction with the measurement of sound transmission loss of walls show good agreement between the two values.

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고속철도 차음구조의 차음성능: 주름 및 압출재의 투과손실 (Sound Insulation Performance of the Panel Structures in High Speed Train: Transmission Loss of the Corrugated and Extruded Panels)

  • 김석현;백인수;김정태
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2007년도 추계학술대회 논문집
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    • pp.82-89
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    • 2007
  • Sound transmission characteristics are investigated on the corrugated steel and aluminium extruded panels used for railway vehicles. Sewell-Sharp-Cremer(SSC) model, equivalent orthotropic plate model and equivalent mass law are applied to predict the sound transmission loss. The predicted values of the sound transmission loss are compared with the measured values. The reliability and the limitation of the prediction models are investigated. For the corrugated panels and honeycomb panels, the coincidence and local resonance severely deteriorate the sound insulation performance around the corresponding frequency bands. The result of the study shows that the equivalent orthotropic plate model and the SSC model can be used as good prediction models, if the coincidence frequency or local resonance frequency is correctly applied.

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Sound Absorption Coefficient and Sound Transmission Loss of Rice Hull Mat

  • Kang, Chun-Won;Lee, Nam-Ho;Jang, Sang-Sik;Kang, Ho-Yang
    • Journal of the Korean Wood Science and Technology
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    • 제47권3호
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    • pp.290-298
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    • 2019
  • The sound absorption coefficient and transmission loss of several types of rice hull mats with varying apparent densities and thicknesses are estimated in this paper using the transfer function and matrix methods, respectively, to evaluate the possibility of using rice hull as an acoustic construction material. The mean sound absorption rates of 10-cm-thick rice hull mats with target densities of $0.10g/cm^3$, $0.12g/cm^3$, and $0.14g/cm^3$ were 0.91, 0.92, and 0.95, respectively, while those of the 1-cm-thick plywood attached to the back of the rice hulls were 0.90, 0.92, and 0.92, respectively. The means of the sound transmission loss of the 10 cm-thick rice hull mats with the target densities of $0.10g/cm^3$, $0.12g/cm^3$, and $0.14g/cm^3$ were 7.66 dB, 10.49 dB, and 14.14 dB, respectively, while those of the 1 cm-thick plywood attached to the back of the rice hulls were 33.34 dB, 36.72 dB, and 38.95 dB, respectively. In conclusion, a rice hull mat could be used as acoustic construction materials because of its high sound absorption coefficient and sound transmission loss.

전달손실 최대화를 위한 흡음재-패널 배열 최적설계 (Sound Transmission Loss Maximization of Multi-panel Structures Lined with Poroelastic Materials by Topology Optimization)

  • 김용진;이중석;강연준;김윤영
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2008년도 추계학술대회논문집
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    • pp.728-733
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    • 2008
  • Though multi-panel structures lined with a poroelastic material have been widely used to reduce sound transmission in various fields, most of the previous works to design them were conducted by repeated analyses or experiments based on initially given configurations or sequences. Therefore, it was difficult to obtain the optimal sequence of multi-panel structures lined with a poroelastic material yielding superior sound isolation capability. In this work, we propose a new design method to sequence a multi-panel structure lined with a poroelastic material having maximized sound transmission loss. Being formulated as a one-dimensional topology optimization problem for a given target frequency, the optimal sequencing of panel-poroelastic layers is systematically carried out in an iterative manner. In this method, a panel layer is expressed as a limiting case of a poroelastic layer to facilitate the optimization process. This means that main material properties of a poroelastic material are treated as Interpolated functions of design variables. The designed sequences of panel-poroelastic layers were shown to be significantly affected by the target frequencies; more panel layers were used at higher target frequencies. The sound transmission loss of the system was calculated by the transfer matrix derived from Biot's theory.

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간이잔향실을 이용한 철도차량 바닥재의 음향투과손실 측정 (Sound transmission loss measurement of railway vehicle floor using semi-reverberation room)

  • 신범식;천광욱;최연선
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2008년도 추계학술대회 논문집
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    • pp.1420-1425
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    • 2008
  • This study is to examine the sound transmission loss of a railway vehicle floor. To this end, a semi-reverberation room was constructed. The semi-reverberation room was made of a railway vehicle floor between the sound radiating chamber and the sound receiving chamber. To block the sound, the wall was made of acryl, urethane foam, wood, and glass fiber. The test followed the KS F 2808 standard, and a typical reverberation room was used to verify the performance of the semi-reverberation room. As a result, comparison of the measurements showed that the test results of the semi-reverberation room had the same tendency as those of the reverberation room. Consequently it was possible to measure the sound transmission loss of railway vehicle structures using the semi-reverberation room.

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