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Acoustic properties of unconsolidated granular mixes

机译:非固结颗粒状混合物的声学特性

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Simple empirical relations have been proposed to relate a limited number of directly measurable non-acoustic properties of an unconsolidated granular mix to its characteristic acoustic impedance and propagation constant. These properties are: characteristic particle dimension, porosity, tortuosity and the density of the grain base. It is believed that the model accounts heuristically for the mechanical friction between the elements of the rigid frame, the absorption in the frame micro-pores, and the degree of compaction. These effects can be important and are linked to the value of material density. This work presents practical applications of the proposed model for the prediction of the acoustic characteristics of hard-backed layers of loose granular mixes which can be used for acoustic absorption and insulation. It is shown that the predictions are in excellent agreement with the measured data for a representative range of loose granular mixes. A comparison of the results of the 4-parameter Attenborough model for the acoustic properties of porous media and the experimental data is made also. This model is used extensively to predict the acoustic properties of porous ground and granular media. The accuracy of this model with respect to loose granular materials is discussed.
机译:已经提出了简单的经验关系,以将未固结的颗粒混合物的有限数量的直接可测量的非声学特性与其特征声阻抗和传播常数相关联。这些性质是:特征颗粒尺寸,孔隙率,曲折度和晶粒基体的密度。可以相信,该模型启发性地说明了刚性框架元件之间的机械摩擦,框架微孔中的吸收以及压实度。这些影响可能很重要,并且与材料密度的值有关。这项工作提出了所提出的模型的实际应用,用于预测可用于吸声和隔离的疏松颗粒状混合物的硬背层的声学特性。结果表明,该预测值与代表范围的疏松颗粒混合物的实测数据非常吻合。还对多孔多孔介质声学特性的4参数Attenborough模型的结果与实验数据进行了比较。该模型被广泛用于预测多孔地面和颗粒介质的声学特性。讨论了该模型相对于散状颗粒材料的准确性。

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