• 제목/요약/키워드: Sound absorption material

검색결과 151건 처리시간 0.031초

흡음형 방음벽의 성능향상에 관한 연구 (A Study on Performance Improvement of Sound Absorbing Noise Barrier)

  • 김현실;김재승;강현주;김봉기;김상렬
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2001년도 추계학술대회논문집 II
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    • pp.849-854
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    • 2001
  • A study on performance of the sound absorbing noise barrier is presented. Noise barrier of sound absorbing type is composed of the front panel, sound absorbing material, and back panel. For allowing sound path, front panel is usually perforated. The performance of the noise barrier is governed by the opening ratio of the perforated panel, sound absorption coefficient of the sound absorbing material. In this study, the effects of the opening ratio, diameter of the hole, thickness of the sound absorbing material are investigated. It is found that the thickness of the sound absorbing material must be at least 50 mm to ensure the required minimum NRC value 0.70, and the opening ratio is greater than 0.2. It is shown that the thickness of the back panel is crucial in providing required STL (Sound Transmission Loss) value. The performance of the developed noise barrier is measured, where its sound absorbing coefficient and sound transmission loss satisfy the criteria.

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Sound Absorption and Physical Properties of Carbonized Fiberboards with Three Different Densities

  • Lee, Min;Park, Sang-Bum;Byeon, Hee-Seop
    • Journal of the Korean Wood Science and Technology
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    • 제42권5호
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    • pp.555-562
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    • 2014
  • Characteristics of carbonized fiberboard such as chemical materials absorption, electromagnetic shielding, and electrical and mechanical performance were determined in previous studies. The carbonized board therefore confirmed that having excellent abilities of these characteristics. In this study, the effect of density on physical properties and sound absorption properties of carbonized fiberboards at $800^{\circ}C$ were investigated for the potential use of carbonized fiberboards as a replacement of conventional sound absorbing material. The thickness of fiberboards after carbonization was reduced 49.9%, 40.7%, and 43.3% in low density fiberboard (LDF), medium density fiberboard (MDF), and high density fiberboard (HDF), respectively. Based on SEM images, porosity of carbonized fiberboard increased by carbonization due to removing adhesives. Moreover, carbonization did not destroy structure of wood fiber based on SEM results. Carbonization process influenced contraction of fiberboard. The sound absorption coefficient of carbonized low density fiberboard (c-LDF) was higher than those of carbonized medium density fiberboard (c-MDF) and carbonized high density fiberboard (c-HDF). This result was similar with original fiberboards, which indicated sound absorbing ability was not significantly changed by carbonization compared to that of original fiberboards. Therefore, the sound absorbing coefficient may depend on source, texture, and density of fiberboard rather than carbonization.

금속와이어 흡음재의 음향특성 (Acoustical Properties of Steel-Wire Sound Absorbing Materials)

  • 이승;박상준;이동훈;배재근;김민배
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2001년도 추계학술대회논문집 II
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    • pp.1341-1346
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    • 2001
  • In this study, the acoustic properties of steel-wire sound absorbing materials with different thickness and bulk density were investigated in terms of characteristic impedance, propagation constant, and absorption coefficient. The well-known two-cavity method was used for evaluating those acoustic parameter values in experiments. Also, in order to validate the experimentally measured values, the results were compared with the results obtained from Chung and Blaser's transfer function method and SWR method. The experimentally measured values of normal absorption coefficients were generally agreed well with the corresponding values from the transfer function method and the SWR method. Based on the experimental results, the following conclusions could be made. The magnitude of the absorption coefficient and the frequency range of the maximum absorption coefficient were controllable by changing the thickness and bulk density of the sound absorbing materials. Also, the magnitude of the absorption coefficient depended on the characteristic impedance and the propagation constant. As large as the air cavity depth at the rear side of the steel-wire sound absorbing materials, the maximum magnitude of the absorption coefficient occurred at the lower frequency ranges.

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다중 다공판 시스템의 흡음성능 향상에 관한 연구 (A Study on the Improvement of Acoustic Absorption of Multiple Layer Perforated Panel Systems)

  • 이동훈;서성원;홍병국;송화영
    • 한국소음진동공학회논문집
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    • 제15권5호
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    • pp.571-577
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    • 2005
  • The acoustic absorption of multiple layer perforated panel systems is largely reduced at the anti-resonance frequency. In order to improve the acoustic absorption at the anti-resonance frequency, the sound absorbing materials are inserted between perforated panels. By the insertion of absorbing materials, it is found that the multiple layer perforated panel system has better acoustic absorption at the anti-resonance frequency and more broadband frequency. Besides, it is shown that the absorption coefficients from the transfer matrix method agree well with the values measured by the two-microphone impedance tube method for various combinations of perforated panels, airspaces or sound absorbing materials.

금속와이어 흡음재의 흡음성능에 관한 실험적 연구 (An Experimental Study on the Absorption Performance of Steel-Wire Sound Absorbing Materials)

  • 서성원;용호택;이동훈
    • 설비공학논문집
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    • 제15권5호
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    • pp.413-421
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    • 2003
  • The acoustic performances of steel-wire sound absorbing materials with different thicknesses and bulk densities were investigated experimentally. The well-known two-cavity method was used to measure the characteristic impedance, propagation constant and absorption coefficient. The normal absorption coefficients measured by two-cavity method agreed well with those by the two-microphone impedance tube method. The experimental results showed that the magnitude of the absorption coefficient and the frequency range of the maximum absorption coefficient were controllable by changing the thickness and bulk density of the steel-wire. Therefore, the steel-wires obtained from the crushed tire chips could be used as a good absorbing material.

배후공기층이 복합흡음구조의 흡음특성에 미치는 영향에 관한 실험적 연구 (An Experimental Study on the Effect of Air Space on the Absorption Property of Composite Absorption System)

  • 오양기
    • KIEAE Journal
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    • 제1권2호
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    • pp.47-54
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    • 2001
  • Single sound absorbers such as porous materials, panels, and Helmholts resonators have limited performance with some extents of frequency region. For example, porous materials do not attenuate low frequency sounds, while panels do not absorb high frequency sounds. Composite absorption structure with coverings, porous materials, and air gaps are an alternative for wide band sound absorption. Slits, panels, perforated panels are those materials for coverings, glass wool, mineral wool, polyester, and polyurethane are frequently used porous materials. Air gap between the porous material and background surface is one of major factors which governs the absorption characteristics of composite absorption structures, especially in the low frequency area. Calculations and measurements show that the absorption coefficients of composite absorption structure, in mid and low frequency bands, are getting higher with increased air gaps. Perforated panels rather than slits and panels are good coverings with higher number as far as absorption coefficient is concerned. Perforated panels with porous materials and 37 cm of air gaps in background have high absorption coefficients for all frequency bands, above 0.7 to 1.0. All measurements are performed in reverberation chamber, Mokpo National University, according to ISO 354 and ISO 3382.

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함정 격실에 적용되는 흡음재와 잔향시간에 따른 실내 소음 분석 (Investigation of the Indoor Noise of Naval Vessel according to the Sound Absorption and Reverberation Time in a Cabin)

  • 한형석;박미유;조흥기;김중길;임동빈;손윤준
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2010년도 추계학술대회 논문집
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    • pp.586-591
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    • 2010
  • The sound field can be classified to the direct and reverberant sound field. If the sound absorption material in a room is not applied sufficiently, the reverberant sound field increases and the sound pressure in a room also increases when the sound source exists in a room. Therefore, the reverberation time should be controled in order to reduce the reverberant sound as well as sound pressure level in a room. Even though the reverberation time is specified and researched widely in architectural engineering, it is rarely performed in a marine engineering. Therefore, in this research, the reverberation time in a navel vessel is researched related to the noise reduction in a cabin.

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일본산속성수 찬친모도키재의 물리적 성질과 흡음성능 평가 (Physical and Sound Absorption Properties Estimation of Cherospondias axillaris, Japanese Fast Growing Tree)

  • 강춘원;김광철;강욱;마츠무라 준지;타노우에 미사토
    • Journal of the Korean Wood Science and Technology
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    • 제38권6호
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    • pp.463-469
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    • 2010
  • 속성수의 이용가능성을 파악하기 위하여 일본산 속성수 중의 하나인 찬친모도키(Choerospondias)의 물리적 성질, 역학적 성질 그리고 흡음특성을 조사하여 주거재료로서의 적용가능성을 검토하였다. 찬친모도키재는 평균 연륜폭이 약 8 mm 정도로 생장이 빨랐으며 기건비중은 약 0.55이었다. 찬친모도키재는 다른 건축자재에 비하여 흡음성능이 열등하지 않았고 비교적 우수한 강도적 성질을 나타내어 구조재나 마감재 등에의 이용이 가능할 것으로 사료되었다.

조선산업 폐합판의 강도적 성질과 흡음성능 (Mechanical Properties and Sound Absorption Capability of Shipbuilding Plywood Waste)

  • 강춘원;김광철;박희준;강욱
    • Journal of the Korean Wood Science and Technology
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    • 제38권6호
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    • pp.457-462
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    • 2010
  • 적절한 용도개발이 필요한 조선산업 폐합판의 흡음성능과 기계적 성질을 파악하고자 메이플과 메란티 폐합판을 적층하고 재단하여 폐합판재활용보드를 만들어 전달함수법으로 흡음율을 측정하고 휨강도를 측정하였다. 메이플과 메란티에서 제작된 폐합판 적층 보드의 최대강도는 각각 534와 414 kgf/$cm^2$으로 나타나 상용합판과 비교하여 비슷한 강도성능을 나타내었다. 측정주파수범위에서 메란티 폐합판재활용보드의 흡음율은 0.25 전후의 수치를 나타내어 비교 대상인 섬유판과 신갈나무 시험편보다 높은 흡음율을 나타내었다. 폐합판 재활용보드의 측면을 슬라이스절삭하여 제작한 보드는 우수한 강도적 성능과 흡음성능으로 실내장식재로의 재활용이 기대되었다.

경계요소법을 이용한 터보냉동기 덕트의 내부 음향장 해석 (An Analysis of Acoustic Field for Turbo Chiller Discharge Duct by Using Boundary Element Method)

  • 전완호;이준근;정필중
    • 소음진동
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    • 제10권6호
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    • pp.963-970
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    • 2000
  • The turbo chiller uses centrifugal compressor, which operates at about 14,500 rpm. Due to the high rpm of the impeller, the noise of chiller males one of the serious problems. The possibility of the sound reduction by using absorbing material is studied in this paper. The generated sound propagates through the duct and then radiates to the outer field. So, the use of sound absorption material inside the duct is one of the effective methods. To study the effect of location of the material, we use Boundary Element Method to analyze the sound field inside the duct system. Numerical study shows the highest sound pressure region is near the elbow of curved duct. From the numerical study, it is also shown that appropriate use of sound absorbing material at this region makes 8dB reduction of the highest noise level.

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