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Heterogeneously perforated honeycomb-corrugation hybrid sandwich panel as sound absorber

机译:异质穿孔蜂窝瓦楞复合夹芯板作为吸声材料

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摘要

An ultra-lightweight sandwich panel with perforated honeycomb-corrugation hybrid (PHCH) core is innovated as a novel sound absorber, which demonstrates great sound absorption as well as excellent mechanical performance. Based on the hybrid-cored sandwich panel, small perforations of different diameters distributed heterogeneously on both the top facesheet and the corrugation are introduced to obtain perfect sound absorption at low frequencies with almost no deterioration in mechanical performance. Theoretical models for sound absorption coefficient and bending stiffness are established, then verified by numerical simulations. With specific mass taken into consideration, an integrated index is proposed to further evaluate the acoustic-mechanical property of the hybrid sandwich. It is found that the PHCH with thinner honeycomb always performs better at low frequencies, and the facesheet is more important to the acoustic-mechanical property than the corrugation. This new kind of lightweight sandwich constructions show promising engineering applications, capable of serving as multi-functional structures with great acoustic and mechanical properties at the same time. (C) 2017 Elsevier Ltd. All rights reserved.
机译:创新的具有穿孔蜂窝波纹复合材料(PHCH)芯的超轻型夹芯板是一种新颖的吸声器,具有出色的吸声性能和出色的机械性能。在混合芯夹心板的基础上,引入了不同直径的小孔,这些小孔不均匀地分布在顶面板和波纹上,从而在低频下获得了完美的吸声,而机械性能几乎没有降低。建立了吸声系数和弯曲刚度的理论模型,然后通过数值模拟进行了验证。考虑到特定质量,提出了一个综合指标,以进一步评估混合三明治的声学-机械性能。发现蜂窝状薄的PHCH在低频下总是表现更好,并且面板对声学机械性能的影响比起波纹更重要。这种新型的轻质夹层结构具有广阔的工程应用前景,能够同时用作具有出色声学和机械性能的多功能结构。 (C)2017 Elsevier Ltd.保留所有权利。

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