首页> 外文期刊>Journal of Sound and Vibration >Sound transmission of acoustic metamaterial beams with periodic inertial amplification mechanisms
【24h】

Sound transmission of acoustic metamaterial beams with periodic inertial amplification mechanisms

机译:具有周期性惯性放大机制的声学超材料梁的声音传输

获取原文
获取原文并翻译 | 示例
           

摘要

This paper presents the improved sound insulation performance obtained from a new type of acoustic metamaterial, built by attaching periodic inertial amplification (IA) mechanisms to a host beam. The IA mechanism is a triangular bar-and-hinge device, which connects a small mass to the host beam at two separate locations. The band structure of a unit cell and the Sound Transmission Loss (STL) of a finite-length beam are calculated by the spectral element method (SEM), which are validated against finite element references. Numerical simulations show that the STL of the IA acoustic metamaterial beam outperforms that of an ordinary beam across a wide band starting from a very low frequency, which suggests the low-frequency soundproof capacity of the IA acoustic metamaterial beam is greatly enhanced. However, the STL curve also experiences a sudden fall after that band, causing an undesired sound insulation valley. To reveal the underlying physics, the band diagram of the beam is studied together with the trace wavenumber of the incident sound wave. It is found that, due to the collectively amplified inertia of periodic small masses, a wide bandgap is introduced in the band diagram at low frequencies, which effectively suppresses flexural vibration of the beam and eventually leads to the observed STL enhancements. However, as a consequence of this bandgap, band diagram inevitably intersects with acoustic trace wavenumber, creating a coincidence phenomenon. Although happens earlier than classical coincidence, this new coincidence produces a similar STL valley. To mitigate this drawback, a hybrid unit-cell containing two IA mechanisms is designed, which attempts to cover the valley caused by one mechanism with the bandgap induced by the other. The effectiveness of this new design is verified and discussed at last. ? 2021 Elsevier Ltd. All rights reserved.
机译:本文介绍了一种新型声学超材料的隔声性能,这种材料是通过将周期性惯性放大(IA)机制连接到主波束而制成的。IA机构是一个三角形杆和铰链装置,它在两个单独的位置将一个小质量连接到主体梁上。利用谱元法(SEM)计算了单胞的能带结构和有限长梁的声传输损耗(STL),并与有限元参考文献进行了对比验证。数值模拟表明,IA声超材料波束的STL在从极低频开始的宽频带内优于普通波束,这表明IA声超材料波束的低频隔声能力大大增强。然而,STL曲线在该频带之后也会突然下降,导致出现不希望出现的隔声谷。为了揭示潜在的物理现象,我们研究了光束的能带图和入射声波的迹波数。研究发现,由于周期性小质量的惯性集体放大,低频时能带图中引入了宽带隙,有效地抑制了梁的弯曲振动,并最终导致观察到的STL增强。然而,由于这种带隙,带图不可避免地与声迹波数相交,从而产生重合现象。虽然比经典巧合发生得更早,但这种新的巧合产生了类似的STL谷。为了缓解这一缺点,设计了一种包含两个IA机制的混合单元,它试图用另一个机制产生的带隙覆盖一个机制产生的谷。最后对新设计的有效性进行了验证和讨论?2021爱思唯尔有限公司保留所有权利。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号