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Low-Frequency Broadband Sound Transmission Loss of Infinite Orthogonally Rib-Stiffened Sandwich Structure with Periodic Subwavelength Arrays of Shunted Piezoelectric Patches

机译:低频宽带声音传输无限正交肋骨加强夹层结构,具有分流压电贴片的周期性亚波长阵列

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摘要

This paper studies low-frequency sound transmission loss (STL) of an infinite orthogonally rib-stiffened sandwich structure flexibly connected with periodic subwavelength arrays of finite shunted piezoelectric patches. A complete theoretical model is proposed by three steps. First, the panels and piezoelectric patches on both sides are equivalent to two homogeneous facesheets by effective medium method. Second, we take into account all inertia terms of the rib-stiffeners to establish the governing equations by space harmonic method, separating the amplitude coefficients of the equivalent facesheets through virtual work principle. Third, the expression of STL is reduced. Based on the two prerequisites of subwavelength assumption and convergence criterion, the accuracy and validity of the model are verified by finite element simulations, cited experiments, and theoretical values. In the end, parameters affecting the STL performance of the structure are studied. All of these results show that the sandwich structure can improve the low-frequency STL effectively and broaden the sound insulation bandwidth.
机译:本文研究了无限正交的肋骨加强夹层结构的低频声传输损耗(STL),灵活地连接有限的有限分流压电贴片的周期性亚波长阵列。一个完整的理论模型提出了三个步骤。首先,通过有效的介质方法,两侧的面板和压电贴片相当于两个均匀的面板。其次,我们考虑了肋骨加强筋的所有惯性条款,以通过空间谐波法建立控制方程,通过虚拟工作原理将等同面板的幅度系数分开。第三,STL的表达减少。基于子波长假设和收敛标准的两个先决条件,通过有限元模拟,引用的实验和理论值来验证模型的准确性和有效性。最后,研究了影响结构STL性能的参数。所有这些结果表明,夹层结构有效地提高低频STL,并拓宽隔音带宽。

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