Sakamoto Shuichi, Shintani Tetsushi, Hasegawa Tsukasa
Department of Engineering, Niigata University, Ikarashi 2-no-cho 8050, Nishi-ku, Niigata City 950-2181, Japan.
Graduate School of Science and Technology, Niigata University, Ikarashi 2-no-cho 8050, Nishi-ku, Niigata City 950-2181, Japan.
Nanomaterials (Basel). 2022 Sep 2;12(17):3050. doi: 10.3390/nano12173050.
This study aimed to discover an easy and precise prediction model for the acoustic properties of nanofiber nonwoven fabrics. For this purpose, a prediction model focusing on the two dominant parameters in the Limp frame model-bulk density and flow resistivity-was suggested. The propagation constant and characteristic impedance was generated from the effective density and effective volume modulus generated by the predictive model and treated as a one-dimensional transfer matrix. The sound absorption coefficient was then estimated using the transfer matrix approach. The trend of the normal Incident sound absorption coefficient measured and the sound absorption coefficient obtained from the predictive model were consistent. Thus, it is suggested that the predictive model for the proposed nanofiber nonwoven composite sheet is valid.
本研究旨在发现一种用于纳米纤维非织造织物声学性能的简便且精确的预测模型。为此,提出了一种聚焦于柔软框架模型中的两个主要参数——体积密度和流动阻力率的预测模型。传播常数和特性阻抗由预测模型生成的有效密度和有效体积模量得出,并被视为一维传递矩阵。然后使用传递矩阵法估算吸声系数。测量得到的垂直入射吸声系数趋势与预测模型得到的吸声系数一致。因此,表明所提出的纳米纤维非织造复合片材的预测模型是有效的。