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The sound insulation of single leaf finite size rectangular plywood panels with orthotropic frequency dependent bending stiffness

机译:单叶有限尺寸矩形胶合板隔声的正交各向异性频率弯曲刚度

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摘要

Current theories for predicting the sound insulation of orthotropic materials are limited to a small range of infinite panels. This paper presents a method that allows for the prediction of the sound insulation of a finite size orthotropic panel. This method uses an equation for the forced radiation impedance of a finite size rectangular panel. This approach produces an equation that has three nested integrals. The long numerical calculation times were reduced by using approximate formulas for the azimuthally averaged forced radiation impedance. This reduced the number of nested integrals from three to two. The resulting predictions are compared to results measured using two sample sizes of four different thicknesses of plywood and one sample size of another three different thicknesses of plywood. Plywood was used for all the tests because it is somewhat orthotropic. It was found during testing that the Young's moduli of the plywood were dependent on the frequency of excitation. The influence of the frequency dependent Young's moduli was then included in the prediction method. The experimental results were also compared with a simple isotropic prediction method.
机译:当前用于预测正交异性材料的隔音的理论仅限于一小部分无限面板。本文提出了一种方法,可以预测有限尺寸的正交各向异性板的隔音效果。此方法使用一个方程来表示有限尺寸矩形面板的强制辐射阻抗。这种方法产生具有三个嵌套积分的方程。通过使用方位角平均强制辐射阻抗的近似公式,减少了较长的数值计算时间。这将嵌套积分的数量从三个减少到两个。将所得的预测与使用两种不同大小的胶合板的两个样本大小和另一个三种不同厚度的胶合板的一个样本大小测得的结果进行比较。胶合板用于所有测试,因为它有些正交各向异性。在测试过程中发现,胶合板的杨氏模量取决于激发频率。然后将频率相关的杨氏模量的影响包括在预测方法中。还将实验结果与简单的各向同性预测方法进行了比较。

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    Wareing R; Davy J; Pearse J;

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  • 年度 2016
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