• 제목/요약/키워드: Acoustic reflection coefficient

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최소 위상 조건을 적용한 음향 반사계수 측정 (Application of Minimum Phase Condition to the Acoustic Reflection Coefficient Measurement)

  • 허준혁;김덕기;임병덕
    • 한국소음진동공학회논문집
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    • 제15권10호
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    • pp.1131-1136
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    • 2005
  • For the accurate measurement of acoustic properties of a surface, efforts have been made to reduce errors caused by external disturbance. If the reflection coefficient is considered as a transfer function between reflected wane and incident wave, the causality is required between them and the reflection coefficient should be of minimum phase. In this thesis, the minimum phase condition is applied to measure correct reflection coefficient. The reflection coefficient is approximated as a rational function In the Z domain by minimizing the sum square error. Then the minimum phase reflection coefficient is reconstructed using the distribution of poles and zeros of the reflection coefficient model.

음향 임피던스 측정을 위한 이중 마이크로폰 기법에 대한 고찰 (Note on the Two-Microphone Methods for the Measurement of Acoustic Impedance)

  • 서성현
    • 한국수소및신에너지학회논문집
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    • 제29권2호
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    • pp.163-169
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    • 2018
  • The present article discusses about the measurement techniques of acoustic impedance that becomes one of the important acoustic characteristics of various boundaries found inside of propulsion systems. Acoustic characteristics including acoustic impedance and reflection coefficient can be often assessed and estimated by use of the two-microphone method. Theoretical expressions of acoustic impedance and reflection coefficient measured in an impedance tube are presented for both cases with mean flow and without flow, and the practical application of the method through calibration is also provided. The acoustic impedance and the reflection coefficient are related with axial locations of microphones, thermodynamic characteristics of gas inside, and the transfer function between the pressure wave measurements at multiple locations.

최소 위상 조건을 적용한 음향 임피던스 측정 (Application of Minimum Phase Condition to Acoustic Impedance Measurement)

  • 임병덕;허준혁
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2005년도 춘계학술대회논문집
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    • pp.855-860
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    • 2005
  • For the accurate measurement of acoustic properties of a surface, efforts have been made to reduce errors caused by external disturbance. If the reflection coefficient is considered as a transfer function between reflected wave and incident wave, causality is required between them and the reflection coefficient should be of minimum phase. In this thesis, the minimum phase condition is applied to measure correct reflection coefficient. The reflection coefficient is approximated as a rational function in the Z domain by minimizing the sum square error. Then the minimum phase reflection coefficient is reconstructed using the distribution of poles and zeros of the reflection coefficient model. The incident wave, the reflected wave and the impulse response function of causality are recalculated from the minimum phase reflection coefficient for further applications.

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이차원 푸리에 필터링을 이용한 수중음향 펄스 튜브에서의 평면파 반사계수 결정 (Determination of Plane-wave Reflection Coefficient in Underwater Acoustic Pulse Tube Using Two-dimensional Fourier Filtering)

  • 김완구;강휘석;윤석왕
    • 한국음향학회지
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    • 제34권6호
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    • pp.493-498
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    • 2015
  • 물로 채워진 음향 펄스 튜브 내에는 가진 조건들에 따라 복잡한 형태의 음향 신호들이 형성될 수 있다. 이는 펄스 튜브를 이용해 저주파수 대역에서 평면파 반사계수를 측정하는 것을 어렵게 한다. 본 연구에서는 COMSOL Multiphysics를 이용하여 튜브 벽이 가진되는 경우 펄스 튜브 내에 평면파 뿐 아니라 비평면파 모우드의 복잡한 음장이 발생됨을 보였다. 모우드 분리 방법인 이차원 푸리에 필터링으로 입사 또는 반사하는 평면파 모우드만을 각각 분리할 수 있었다. 이에 시간 게이팅을 적용하므로 음향 시편의 평면파 반사계수를 보다 정확하게 결정할 수 있게 하였다.

Acoustic Properties of Rubber Compound for Anechoic Coating

  • Bae, Jong Woo;Kim, Won Ho;Ahn, Byung Hyun
    • Elastomers and Composites
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    • 제53권4호
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    • pp.195-201
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    • 2018
  • Three kinds of rubber compounds were prepared, and their underwater acoustical properties were investigated for anechoic coating. Dynamic mechanical properties of the rubber compounds were measured using a dynamic mechanical analyzer and extended to 100 kHz using time-temperature superposition. The sound speed, reflection coefficient, and attenuation constant were calculated. Silicone rubber showed the lowest reflection coefficient, and nitrile rubber showed the highest attenuation constant. The acoustic properties of nitrile rubber compounds with various compositions were investigated. The sound speed, reflection coefficient, and transmission coefficient of the nitrile rubber in the frequency range of 200-1000 kHz were measured in a water-filled tank.

초장파에 의한 이종재 마찰용접 강도해석 가능성에 관한 연구 (A Feasibility Study on Dissimilar Metals Friction Weld Strength Analysis by Ultrasonic Techniques)

  • 오세규;김동조
    • Journal of Welding and Joining
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    • 제4권2호
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    • pp.47-52
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    • 1986
  • Friction Welds are formed by the mechanisms of diffusion as well as mechanical inter-locking. The severe plastic flow at the interface by the forge action of the process brings the subsurface so close together that detection of any unbounded area becomes very difficult. No reliable method is available so fat to determine the weld quality nondestructively. The paper presents an attempt to determine weld strength quantitatively using the ultrasonic pulseecho method. The new approach calculates the coefficient of reflection based on measured amplitudes of the echoes. This coefficient provides a single quantitative measurement which involves both acoustic energy reflected at the welded interface as well as transmitted across the interface. As a result, it was known that the quantitative relationship between the coefficient and the weld strength (torsional strength) could be drawn.

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음향현미경을 이용한 layer의 두께측정에 관한 연구 (A study on the measurement of layer thickness using acoustic microscope.)

  • 고대식;김흥기;전계석
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 1988년도 전기.전자공학 학술대회 논문집
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    • pp.43-46
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    • 1988
  • In this paper, a methodology for determination of the thickness of layer on a substrate using reflection acoustic microscope has been presented. It has been shown that the amplitude and the phase of reflection coefficient of the layer-substrate composite has been used for measurement of layer thickness, acoustic velosity, mass density of the layer material. The reflection acoustic microscope operating at a frequency of 15 MHz has been used for the experiment and the measured acoustic impedance value for aluminum sample has agreed with the published data, and the measured layer thickness for silver-glass composite has agreed with that measured using micrometer.

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초음파법에 의한 폭발접합 이종금속 접합품질 판정레벨 설정에 관한 연구 (Ultrasonic Test Criterion for the Explosively Welded Fe-Naval Brass Bonding Quality)

  • 장영권;백영남
    • Journal of Welding and Joining
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    • 제19권1호
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    • pp.40-48
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    • 2001
  • An ultrasonic test method, as a nondestructive test is applied to ensure the clad interface quality assessment. According to the reference codes and standards, not only korea Industrial Standard(KS) but also American Society for Testing and Materials (ASTM) Standard, ultrasonic examination procedures use the pulse-echo, A-scan, back reflection signal drop method and/or side drilled reference hole used to establish the acceptance criteria of clad material test. But the variety of bonding materials and sizes makes it difficult to produce the reference blocks, or thus the criteria. In order to overcome these practical difficulties, new ultrasonic testing criterion is suggested. In this new method, the theoretical interface reflection signal amplitude level is calculated and suggested as an acceptance criteria with the back reflection signal set to 100% FSH(Full Screen Height) which is based on acoustic impedance mismatch at the clad interface for the explosive clad ultrasonic inspection. Applicability of suggested criterion, for the explosive clad Fe-Naval Brass with different bonding quality is confirmed to the pre-existed KS and ASTM specifications and verified by using SEM (Seanning Electron Microscope) micrograph. The results obtained by the suggested method is more conservative than the results according to the KS B 0234 and ASTM A 578 specifications The suggested method could be applicable to any other combination of explosive clad ultrasonic inspection.

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Reflection and Transmission of Acoustic Waves Across Contact Interfaces

  • Kim, Noh-Yu;Jhang, Kyung-Young;Lee, Tae-Hoon;Yang, Seung-Yong;Chang, Young-Chul
    • 비파괴검사학회지
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    • 제28권3호
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    • pp.292-301
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    • 2008
  • A linearized model for hysteretic acoustic nonlinearity of imperfectly joined interface is proposed and analyzed by using Coulomb damping to investigate the characteristics of the reflection and transmission coefficients for harmonic waves at the contact interface. Closed crack is modeled as non welded interface that has nonlinear discontinuity condition in displacement across its boundary. Based on the hysteretic contact stiffness of the contact interface, the reflected and transmitted waves are determined by deriving the tractions on both sides of the interface in terms of the discontinuous displacements across the interface. It is found that the amplitudes of the reflected and transmitted waves are dependent on the frequency and the hysteretic stiffness. As the frequency of the incident wave increases, the higher reflection and lower transmission are obtained. It also shows that the hysteresis of the interface increases the reflection coefficient, but reduces the transmission coefficient. A fatigue crack is also made in aluminum specimen to demonstrate these characteristics of the reflection and transmission of contact interfaces.

수조에서 입자 매질의 평면파 반사계수 측정과 Biot 이론에 의한 예측 (Measurement of the Plane Wave Reflection Coefficient for the Saturated Granular Medium in the Water Tank and Comparison to Predictions by the Biot Theory)

  • 이근화
    • 한국음향학회지
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    • 제25권5호
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    • pp.246-256
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    • 2006
  • 평면파 반사 계수는 수중에서의 음파에너지에 관한 해저 바닥의 모든 정보를 담고 있고 음향 해석 모델의 입력 값으로도 사용할 수 있는 음향학적 물리량이다. 본 연구에서는 실험실 수조 환경에서 입자 매질 ( 세 종류의 유리구슬, 모래 )의 평면파 반사 계수, 음속 및 감쇠계수를 측정했다. 반사 실험은 수조의 한계를 고려해 $28{\sim}53^{\circ}$의 입사각과 중심 주파수 100kHz의 협대역 신호를 이용해 수행했다. 자기 교정법 (Self-calibration method)을 이용해 측정된 자료로부터 반사 계수를 계산했고 측정된 반사 계수의 경향 및 실험의 불확실성을 서술했다. 입자 매질의 음속 및 감쇠계수는 거리 수신 신호간의 회귀분석을 통해 계산했다. Biot 이론을 이용해 측정된 음속과 감쇠계수로부터 다공율과 침투율을 추정하고 실제 지질학적 측정값과의 유사성을 확인했다. 최종적으로 추정된 다공율, 침투율을 이용해 이론적 인 반사 계수를 계산하고 반사 실험의 측정값과 비교했다. 본 실험 결과는 Biot 이론으로 일관성 있게 입자 매질의 음향학적 물성을 설명할 수 있음을 입증한다.