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Acoustic characterization of additive manufactured perforated panel backed by honeycomb structure with circular and non-circular perforations

机译:具有圆形和非圆形孔眼的蜂窝结构支持的增材制造的穿孔板的声学特性

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This paper studies the acoustic properties of an additive manufactured micro-perforated panel backed by a periodic honeycomb structure. Extrusion-based Fused Filament Fabrication (FFF) technique of Additive Manufacturing (AM) is used to fabricate the integrated honeycomb structures with a perforated face sheet. Normal absorption coefficient of the fabricated structure is measured in impedance tube using two microphone transfer function method. A generalized analytical formulation based on unit section analysis applicable to various cross sections of perforations has been proposed to predict the absorption coefficient, where shape dependent viscous effects in the perforation are incorporated by deriving effective complex density of the medium. To study the effect of perforation shape, three geometries viz., circular, triangular and square perforations are considered for analysis where triangular shape found to have more absorption coefficient and lower frequency of peak absorption. In addition, broadband absorption coefficient of proposed structure has been demonstrated by deploying hexagonal cells of different lengths in a unit section. The analytical results are compared with experimental results and a good agreement is observed between them. A parametric study is conducted to understand effect of perforated hole size and cell length on the absorption coefficient and peak frequency. Results show that the proposed structures can be tuned to desired frequency range by altering geometric parameters like cell length, shape and size of perforation hole. Technique and methodology presented in the current study gives an alternative way to design and fabricate honeycomb structures with perforations for acoustic applications such as aircraft cabins, ship structures and building acoustics. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本文研究了由周期性蜂窝结构支持的增材制造的微孔板的声学特性。基于增材制造(AM)的基于挤压的熔丝制造(FFF)技术用于制造具有穿孔面板的集成蜂窝结构。使用两个传声器传递函数法在阻抗管中测量所制造结构的正常吸收系数。已经提出了适用于穿孔的各种横截面的,基于单位截面分析的通用分析公式,用于预测吸收系数,其中通过得出介质的有效复数密度,将穿孔中形状相关的粘性效应纳入其中。为了研究穿孔形状的影响,考虑了三个几何形状,即圆形,三角形和正方形的穿孔,以进行分析,发现三角形形状具有更大的吸收系数和更低的峰值吸收频率。另外,通过在单位截面中布置不同长度的六边形单元已经证明了所提出的结构的宽带吸收系数。将分析结果与实验结果进行比较,并观察到它们之间的良好一致性。进行了参数研究,以了解穿孔的孔尺寸和孔长度对吸收系数和峰值频率的影响。结果表明,通过改变像孔长度,孔眼形状和大小之类的几何参数,可以将所提出的结构调整到所需的频率范围。当前研究中介绍的技术和方法论为设计和制造带有穿孔的蜂窝结构提供了另一种方法,这些穿孔用于声学应用,例如飞机机舱,船舶结构和建筑声学。 (C)2019 Elsevier Ltd.保留所有权利。

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