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Numerical and experimental investigation of the effect of structural links on the sound transmission of a lightweight double panel structure

机译:结构链接对轻型双面板结构传声影响的数值和实验研究

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This paper examines various models predicting the influence of periodically spaced structural links on sound transmission through lightweight double panel structures. A baseline configuration made up from two aluminum plates connected through aluminum C-section channels and a fiberglass filled cavity has been specifically built and its TL measured for comparison and validation of the investigated models. First, classical decoupled approaches are outlined and adapted for the studied case. Next, a periodic model based on existing formulations is presented. The model allows for a 3D incident field and accounts for the absorption in the cavity with the help of an equivalent fluid model for the fiberglass. Three cases of coupling conditions are considered for the links: a mass-spring-mass approximation, a beam-type approximation and a beam-type approximation where the rigidity and the inertia of the beams are neglected. The measurements show that the bridged configuration strongly reduces the TL at mid and high frequency and exhibits pass/stop bands characteristic of periodic structures. The predictions of decoupled approaches capture the physics of the problem only approximately and with the integration of the mass of the connectors in the context of thin lightweight panels, their agreement with experimental data is further reduced. On the other hand, the results obtained with the periodic model are excellent over most of the studied frequency range. However, in the vicinity of the critical frequency of the thicker panel (around 6 kHz), an overestimation of the TL is observed. This suggests that the model will have to account better for damping and resonant transmission.
机译:本文研究了各种模型,这些模型预测了周期性间隔的结构链接对通过轻型双面板结构的声音传输的影响。由两个铝板通过铝制的C形截面通道和一个玻璃纤维填充的空腔连接而成的基线配置已经特别构建,并对其TL进行了测量,以比较和验证研究的模型。首先,概述了经典的解耦方法,并适用于所研究的案例。接下来,提出了基于现有公式的周期模型。该模型允许3D入射场,并借助等效的玻璃纤维流体模型来说明空腔中的吸收。连杆考虑了三种耦合条件:质量-弹簧-质量近似,梁式近似和梁式近似,其中梁的刚度和惯性被忽略。测量表明,桥接配置大大降低了中高频的TL,并表现出周期性结构的通带/阻带特性。解耦方法的预测仅大致反映了问题的物理性质,并且在薄型轻质面板的情况下结合了连接器的质量,进一步降低了它们与实验数据的一致性。另一方面,在大多数研究的频率范围内,使用周期模型获得的结果都非常好。但是,在较厚面板的临界频率附近(约6 kHz),观察到TL的高估。这表明该模型必须更好地考虑阻尼和共振传输。

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