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空腔涡状阶梯分布的复合结构吸声覆盖层研究

Study of composite structure anechoic coating with cavity vortex step distribution

  • 摘要: 针对空腔谐振型吸声覆盖层低频大波谷、窄带吸声的局限性,以圆柱腔型吸声覆盖层为研究对象,提出一种水下复合结构吸声覆盖层。其结构特点在于:(1)不同尺度的圆柱空腔在空间呈现出涡状线阶梯上升的分布形式;(2)在圆柱空腔阵列外部引入金属环壁结构。基于有限元法对复合结构吸声覆盖层的位移变化和能量耗散特点分析其吸声机理,研究分析多种组合结构的吸声特性。结构形式将金属壁和腔体谐振进行组合,有效提升了低频吸声性能,实现了基体材料限制在50 mm厚、频率范围为660 Hz~15 kHz的宽带吸声,其平均吸声系数在0.94以上,同时在0~2.5 MPa静水压力下可以保持良好的吸声性能。仿真与分析结果表明,采用典型的圆柱空腔结合金属环壁的复合设计对于提升低频波谷具有可行性,为实现水下宽带吸声提供了一种可参考方案。

     

    Abstract: With the cylindrical cavity-type anechoic coating as the research object, an underwater composite structure anechoic coating is proposed to overcome the limitations caused by a deep low-frequency wave valley and narrow-band acoustic absorption of the cavity resonance type anechoic coating. It is characterized by (1) the distribution of the cylindrical cavities of different scales in space appearing in the form of vortex line step-rise; (2) the introduction of metal ring wall structure outside the cylindrical cavity array. Based on the finite element analyses of the displacement change and energy dissipation characteristics of the composite structure anechoic coating and its sound absorption mechanism, the sound absorption characteristics of various combination structures are studied. This structure integrates the metal wall and the cavity resonance, which effectively improves the low-frequency sound absorption performance and achieves broadband sound absorption from 660 Hz to 15 kHz under the limit of 50 mm base material thickness, with the average sound absorption coefficient above 0.94 and can maintain good sound absorption performance under 0-2.5 MPa hydrostatic pressure. The simulation and analysis results show the feasibility of using a typical composite design of a cylindrical cavity combined with a metal ring wall to raise the low-frequency wave valley, which provides a reference solution for achieving underwater broadband sound absorption.

     

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