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Design of a single layer micro-perforated sound absorber by finite element analysis

机译:基于有限元分析的单层微孔吸声器设计

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Micro-perforated sound absorbers with sub-millimeter size holes can provide high absorption coefficients. This paper presents results of work on the development of an effective single layer micro-perforated sound absorber from the commercial composite material Parabeam~® with micro diameter holes drilled on one side. Parabeam~® is used as a structural material made from a fabric woven out of a E-glass yarn and consists of two decklayers bonded together by vertical piles in a sandwich structure with piles (thick fibers) woven into the decklayers. The paper includes, the analytical model developed for prediction of absorption coefficients, finite element solution using commercial software MSC.ACTRAN and experimental results obtained from impedance tube measurements. A simple optimization is performed based on the developed models to obtain an efficient absorber configuration. It has been anticipated that several different and interesting applications can be deduced by combining structural and sound absorption properties of this new micro-perforated absorber.
机译:具有亚毫米尺寸的孔的微孔吸声器可以提供高吸收系数。本文介绍了从商用复合材料Parabeam〜®开发的有效单层微穿孔吸声器的工作成果,该复合材料的一侧有微直径孔。 Parabeam〜®用作由用E-玻璃纱编织而成的织物制成的结构材料,由两个夹层通过垂直绒头以三明治结构粘合在一起,而夹心结构(厚纤维)则被编织成夹层。本文包括开发用于预测吸收系数的分析模型,使用商业软件MSC.ACTRAN的有限元解以及从阻抗管测量获得的实验结果。基于开发的模型执行简单的优化以获得有效的吸收器配置。可以预料,通过组合这种新型微孔吸收体的结构和吸声特性,可以得出几种不同而有趣的应用。

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