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Nonlinear phononic crystals based on chains of disks alternating with toroidal structures

机译:基于圆盘链与环形结构交替的非线性声子晶体

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摘要

We study experimentally the acoustic response of a load-bearing, phononic crystal composed of alternating steel disks, and polytetrafluoroethylene o-rings under precompression. The crystal allows for axial, rocking, and shear-polarized wavemodes when excited by a broad-band signal applied off-axis. Finite element analysis is employed to determine the system’s wave modes. The nonlinear interaction between disks and o-rings supports a dynamic response that is tunable with variations in static precompression, leading to controllable frequency shifts in a large band gap. A modal analysis reveals that four of the six principal wave modes are susceptible to external precompression while two modes are not.
机译:我们通过实验研究了在预压缩下由交替钢盘和聚四氟乙烯O形圈组成的承重声子晶体的声学响应。当由偏轴施加的宽带信号激发时,晶体允许轴向,摇摆和剪切极化波模式。采用有限元分析来确定系统的波动模式。圆盘和O形圈之间的非线性相互作用支持动态响应,该动态响应可通过静态预压缩的变化进行调整,从而在较大的带隙中导致可控的频移。模态分析表明,六个主波模式中的四个易受外部预压缩,而两个模式则不然。

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