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Effects of the features of a green soundabsorbing material on its acoustical properties

机译:绿色探空吸收材料特征对声学特性的影响

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This paper focuses on the airflow resistivity of a sound absorber. The airflow resistivity is used to predict sound absorption coefficients using mathematical models. As most green materials have unique characteristics, such as fiber curliness and non-circular cross-sections, the effect of these characteristics on acoustical properties needs to be studied. This work firstly discusses the development of an experimental set-up for measuring airflow resistivity and then develops an equation for estimating the airflow resistivity of a green material incorporating its unique characteristics. Samples of fibers with different curliness values are formed, and the effect of curliness on airflow resistivity is measured. The curliness of natural fibers is quantified by defining a unique factor, known as the curliness factor. The equation for airflow resistivity prediction is formed by the application of the Ergun equation and the experimental results obtained, which is then validated for fibers of different curliness. The sound absorption coefficients of the samples with different curliness values are measured. It is observed that an increase in curliness increases the airflow resistivity and sound absorption coefficient. The mathematical model proposed by Miki is used to predict the sound absorption coefficient, and the predicted results are compared with the measured results.y
机译:本文侧重于吸音器的气流电阻率。气流电阻率用于预测使用数学模型的吸声系数。由于大多数绿色材料具有独特的特性,例如纤维虹膜和非圆形横截面,因此需要研究这些特性对声学性质的影响。这项工作首先探讨了用于测量气流电阻率的实验装置的开发,然后开发用于估计包含其独特特性的绿色材料的气流电阻率的等式。形成具有不同曲线值的纤维的样品,测量虹刷对气流电阻率的影响。通过定义独特的因子来定量天然纤维的虹刷,称为虹软系数。通过应用Ergun方程的应用和获得的实验结果形成气流电阻率预测的等式,然后验证了不同卷曲的纤维。测量具有不同虹压值的样品的声音吸收系数。观察到卷曲的增加会增加气流电阻率和吸声系数。 Miki提出的数学模型用于预测声音吸收系数,并将预测结果与测量结果进行比较.Y

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