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Measuring sound absorption properties of porous materials using a calibrated volume velocity source

机译:使用校准的体积速度源测量多孔材料的吸声特性

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Measurement of acoustic properties of sound-absorbing materials has been the source of much investigation that has produced practical measuring methods. In particular, the measurement of the normal incidence sound absorption coefficient is commonly done using a well-known configuration of a tube carrying a plane wave. The sound-absorbing coefficient is calculated from the surface impedance measured on a sample of material. Therefore, a direct measurement of the impedance requires knowing the ratio between the sound pressure and the volume velocity. However, the measurement of volume velocity is not straightforward in practice and many methods have been proposed including complex transducers, laser vibrometry, accelerometers and calibrated volume velocity sources. In this paper, a device to directly measure the acoustic impedance of a sample of sound-absorbing material is presented. The device uses an internal microphone in a small cavity sealed by a loudspeaker and a second microphone mounted in front of this source. The calibration process of the device and the limitations of the method are also discussed and measurement examples are presented. The accuracy of the device was assessed by direct comparison with the standardized method. The proposed measurement method was tested successfully with various types of commercial acoustic porous materials.
机译:吸声材料的声学特性的测量已经成为产生实用测量方法的大量研究的来源。特别地,法向入射吸声系数的测量通常使用承载平面波的管的公知配置来完成。吸声系数是根据在材料样品上测得的表面阻抗计算得出的。因此,直接测量阻抗需要知道声压与体积速度之比。然而,体积速度的测量在实践中并不直接,并且已经提出了许多方法,包括复杂的换能器,激光振动测定法,加速度计和校准的体积速度源。在本文中,提出了一种直接测量吸声材料样品的声阻抗的装置。该设备在一个由扬声器密封的小腔内使用内部麦克风,并在该信号源的前面安装第二个麦克风。还讨论了设备的校准过程和方法的局限性,并给出了测量示例。通过与标准方法直接比较来评估设备的准确性。所提出的测量方法已在各种类型的商业声学多孔材料上成功进行了测试。

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