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Measured anisotropic air flow resistivity and sound attenuation of glass wool

机译:测量各向异性气流电阻率和玻璃棉的声音衰减

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摘要

Department of Mechanical Engineering, Technical University of Denmark, Bygning 358, DK 2800 Lyngby, Denmark The air flow resistivity of glass wool has been measured in different directions. The glass wool was delivered from the manufacturer as slabs measuring 100×600×900 mm3, where the surface 600×900 mm2 was parallel with the conveyor belt used in the manufacturing. Directions in the glass wool are described by a coordinate system with the X axis perpendicular to the conveyor belt, the Z axis in the direction the conveyor belt moves, and the Y axis perpendicular to the two other axes. It was found that the resistivities in the Y and Z directions were equal in all cases. For density 14 kg/m3 the mean resistivity in the X direction was 5.88 kPa s m**2 and in the Y direction 2.94 kPa s m**2. For density 30 kg/m3 the mean resistivity in the X direction was 15.5 kPa s m**2 and in the Y direction 7.75 kPa s m**2. A formula for prediction of resistivity for other densities is given. By comparing measured values of sound attenuation with results calculated from resistivity data, it is demonstrated that the measured attenuation can be predicted in a simple manner. ©2002 Acoustical Society of America. PACS: 43.58.Vb, 43.20.Jr, 43.55.Ev
机译:丹麦技术大学机械工程系,丹麦,比格宁358号,DK 2800,Lyngby,已在不同方向上测量了玻璃棉的空气流动阻力。玻璃棉是从制造商处以尺寸为100×600×900 mm3的平板交付的,其中表面600×900 mm2与制造中使用的传送带平行。玻璃棉的方向由坐标系统描述,其中X轴垂直于传送带,Z轴垂直于传送带移动,Y轴垂直于其他两个轴。发现在所有情况下Y和Z方向的电阻率均相等。对于14 kg / m3的密度,X方向的平均电阻率为5.88 kPa s m ** 2,Y方向的平均电阻率为2.94 kPa s m ** 2。对于30 kg / m3的密度,X方向的平均电阻率为15.5 kPa s m ** 2,Y方向的平均电阻率为7.75 kPa s m ** 2。给出了用于预测其他密度电阻率的公式。通过将声音衰减的测量值与根据电阻率数据计算出的结果进行比较,证明了可以以简单的方式预测所测量的衰减。 ©2002美国声学学会。 PACS:43.58.Vb,43.20.Jr,43.55.Ev

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    Tarnow Viggo;

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