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Sound transmission loss of plate-type metastructures: Semi-analytical modeling, elaborate analysis, and experimental validation

机译:板式机构的声音传输损耗:半分析建模,精细分析和实验验证

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摘要

Recent studies on plate-type metastructures have shown promising applications in low-frequency sound insulation, as they possess a low-frequency sound transmission loss (STL) that is considerably higher than that derived from the mass law. To design a plate-type metastructure for a sound insulation application, three problems are worth exploring: 1) how to predict efficiently the STL of the metastructure, 2) how to understand its unusual STL behavior, and 3) how to design its parameters to obtain a high STL at a target frequency and achieve a broad frequency band of high STL without increasing the mass. The purpose of this work is to address these problems by investigating a plate-type metastructure that is simply constructed using a periodic array of mass blocks attached to a thin host plate. For the first problem, a semi-analytical method is proposed for efficient prediction of normal, oblique, and diffuse STL based on fast retrieval of dynamic surface mass density using a considerably reduced structural finite element model and without having to include the acoustic field. This method is validated based on comparisons with an existing numerical method and reported experimental data. For the second problem, the mechanisms of unusual STL behavior are revealed by analyzing dynamic surface mass density as well as Bloch wave dispersion and Bloch modes. The third problem is addressed by conducting an elaborate parametric analysis that provides straightforward guidelines for adjusting structural parameters to tune the STL peak frequency as well as offering general guidelines for designing multiple parameters to achieve a broader frequency band of high diffuse STL with a given surface mass density. A design guideline for improving STL bandwidth is experimentally validated through measurements of two specimens designed and fabricated with identical surface mass densities. Because the considered plate-type metastructure is simple yet instructive, these investigations and findings are of fundamental and practical interest to the design of sound insulation metastructures.
机译:最近关于板式代码的研究表明了低频隔音在低频隔音中的有希望的应用,因为它们具有远远高于大规模法的低频声传输损耗(STL)。要设计一个隔音应用程序的板式元结构,值得探索的三个问题:1)如何预测衡量标准的STL,2)如何理解其不寻常的STL行为,以及3)如何将其参数设计为以目标频率获得高STL,在不增加质量的情况下实现高STL的宽频带。本作作品的目的是通过研究简单地使用附接到薄主板的周期性的质量块阵列简单地构造的板式代码来解决这些问题。对于第一个问题,提出了一种半分析方法,用于基于使用显着减少的结构有限元模型的动态表面质量密度的快速检索的正常,倾斜和漫反射STL的半分析方法,并且不必包括声场。该方法基于具有现有数值方法的比较和报告的实验数据进行验证。对于第二个问题,通过分析动态表面质量密度以及布坡波分散和布光模式来揭示异常ST1行为的机制。通过进行精细的参数分析来解决第三个问题,该参数分析提供了用于调整结构参数来调整STL峰值频率的直接指南,以及提供用于设计多个参数的一般指南,以实现具有给定表面质量的更广泛的散射STL的更宽频带密度。通过测量和制造具有相同表面质量密度的两个标本进行实验验证的改进STL带宽的设计指南。由于考虑的板式代码简单而言,因此这些调查和调查结果对隔音机构的设计具有基本和实际的兴趣。

著录项

  • 来源
    《Mechanical systems and signal processing》 |2021年第5期|107487.1-107487.22|共22页
  • 作者单位

    Vibration and Acoustics Research Croup Laboratory of Science and Technology on Integrated Logistics Support College of Intelligence Science and Technology National University of Defense Technology Changsha 410073 China;

    Vibration and Acoustics Research Croup Laboratory of Science and Technology on Integrated Logistics Support College of Intelligence Science and Technology National University of Defense Technology Changsha 410073 China;

    Vibration and Acoustics Research Croup Laboratory of Science and Technology on Integrated Logistics Support College of Intelligence Science and Technology National University of Defense Technology Changsha 410073 China;

    Vibration and Acoustics Research Croup Laboratory of Science and Technology on Integrated Logistics Support College of Intelligence Science and Technology National University of Defense Technology Changsha 410073 China;

    Vibration and Acoustics Research Croup Laboratory of Science and Technology on Integrated Logistics Support College of Intelligence Science and Technology National University of Defense Technology Changsha 410073 China;

    China Aerodynamics Research and Development Center Mianyang 621000 China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Metastructure; Metamaterial; Sound transmission loss; Sound insulation; Low frequency;

    机译:机构;超材料;声音传输损失;隔音;低频;
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