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Numerical investigation of the vibro-acoustic response of functionally graded lightweight square panel at low and mid-frequency regions

机译:低于中频区域功能梯度轻型方板振动声反应的数值研究

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摘要

The focus of this paper is to investigate numerically the vibro-acoustic responses of functionally graded lightweight square panel (FGLSP) made from Al/Al2O3 with various boundary conditions (BCs). The approach of analysis is restricted to low and mid-frequency regions. First-order shear deformation theory and finite element method are employed to model the vibro-acoustic response of the FGLSP. Its properties vary along its thickness and are obtained by the Voigt's rule of mixture as well as a simple power law distribution. Modal responses of pristine aluminium material (PAM) obtained analytically and experimentally are used to validate the numerical approximation of modal responses of PAM. These results are used to compare the numerical results of FGLSP and the first twelve mode shapes are obtained for all BCs. A comparison of the result shows that at low and mid frequency regions, the sound transmission loss of FGLSP is higher than the conventional PAM. The study reveals that FGLSP can compete favourably with their pristine material counterparts. This material are particularly useful for noise reducing casings which surround noisy devices, household appliances or industrial machines, and limit noise transmission to the environment.
机译:本文的焦点是在数值上调查由各种边界条件(BCS)的Al / Al2O3由Al / Al2O3制成的功能渐变轻型方板(FGLSP)的振动声反应。分析方法仅限于低频和中频区域。主要采用一阶剪切变形理论和有限元方法来模拟FLSP的振动声反应。其特性沿其厚度变化,并通过Voigt的混合物规则以及简单的电力法分布获得。分析和实验获得的原始铝材料(PAM)的模态反应用于验证PAM的模​​态反应的数值近似。这些结果用于比较FGLSP的数值结果,并且为所有BC获得第一十二个模式形状。结果表明,在低和中频区域,FLSP的声音传输损耗高于传统的PAM。该研究表明,FGLSP可以与原始材料对应物有利地竞争。这种材料对于减少噪声器件,家用电器或工业机器的降噪壳体特别有用,以及限制对环境的噪声传输。

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