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套管对细球形粒状材料吸声特性的影响。

Effect of casing on sound absorption characteristics of fine spherical granular material.

作者信息

Tsuruha Takumasa, Yamada Yoshinari, Otani Makoto, Takano Yasushi

机构信息

Takenaka R&D Institute, 1-5-1, Otsuka, Inzai, Chiba 270-1395, Japan.

Graduate School of Engineering, Kyoto University, Kyoto-daigaku Katsura, Nishikyo, Kyoto, 615-8540, Japan.

出版信息

J Acoust Soc Am. 2020 May;147(5):3418. doi: 10.1121/10.0001210.

Abstract

To determine sound absorption coefficients of fine granular materials, the materials must be cased to suppress their flowability. In this study, effects of casing on the sound absorption coefficients of fine granular materials were investigated. The normal incidence sound absorption coefficients of cased hollow glass beads were measured using cylindrical impedance tubes. The measurement results demonstrated that the hollow glass beads present a sound absorption peak, which was attributed to the vibration of a particle frame, in the frequency range of 180 to 700 Hz for sample thickness in the range of 20 to 550 mm. With an increase in the material thickness or diameter of the casing, the first peak of the sound absorption coefficients shifted to a lower frequency. The sound absorption coefficients were calculated using an elastic frame model for porous materials. The effects of friction between the lateral wall of the case and the particle frame were incorporated in the bulk modulus and bulk density of the particle frame in the model. The model predicts correctly the frequency at which the first sound absorption peak occurs with an uncertainty of 10%.

摘要

为了测定细颗粒材料的吸声系数,必须对这些材料进行封装以抑制其流动性。在本研究中,研究了封装对细颗粒材料吸声系数的影响。使用圆柱形阻抗管测量了封装空心玻璃微珠的垂直入射吸声系数。测量结果表明,对于厚度在20至550毫米范围内的样品,空心玻璃微珠在180至700赫兹的频率范围内呈现出一个吸声峰值,这归因于颗粒框架的振动。随着材料厚度或封装直径的增加,吸声系数的第一个峰值向较低频率移动。使用多孔材料的弹性框架模型计算吸声系数。模型中颗粒框架的体积模量和体积密度纳入了封装侧壁与颗粒框架之间的摩擦影响。该模型能够正确预测第一个吸声峰值出现的频率,不确定度为10%。

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