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Smart metamaterials for noise and vibration control

机译:噪声和振动控制的智能超材料

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This paper presents a simulation study on the feasibility of smart metamaterial panel equipped with shunted piezoelectric patch vibration absorbers, which is designed to reduce the flexural vibration and sound radiation in the low to mid audio frequency range. The panel is exposed to a rain on the roof time and spatial stochastic excitation. The overall flexural response of the panel is derived in terms of the spectrum of the time averaged total flexural kinetic energy. The panel is equipped with a dense two dimensional array of piezoelectric patch vibration absorbers, which are connected to either passive or active electrical shunts. A vibration stop band effect is obtained both via the spatial organization of the absorbers and via the resonating shunts connected to the piezoelectric patches, which are set to minimize the flexural response of the panel at low and mid audio frequencies.
机译:本文提出了一种仿真研究,可以采用分流压电贴片振动吸收器的智能超材料面板的可行性研究,设计为降低低至中音频范围的弯曲振动和声辐射。面板暴露在屋顶时间和空间随机励磁上的雨中。面板的总体弯曲响应是在平均总弯曲动能的频谱方面推导出来的。该面板配备有密集的二维压电贴片减振器阵列,其连接到无源或主动电气分流器。通过吸收器的空间组织和经由连接到压电贴片的共振分流器来获得振动停止频带效果,其设定为在低和中频频率下最小化面板的弯曲响应。

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