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Structural Design and Performance Analysis of a Three-Dimensional Acoustic Metamaterial

机译:三维声学超材料的结构设计与性能分析

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A three-dimensional acoustic metamaterial consisting of frame, spherical attachment and membrane is designed, which has an extremely wide sound insulation band and a low sound insulation frequency. Finite element method is employed to study the influence of spherical attachment size, frame cross section size and membrane thickness on the forbidden band. Results show that within a certain range, as the radius of the attachment increases, the termination frequency and width of the first forbidden band increase. As the frame cross section size increases, the starting frequency of the first forbidden band increases. As the thickness of the membrane increases, the starting frequency of the first forbidden band does not change too much, and the termination frequency of the first forbidden band decreases sharply, and then tends to be flat.
机译:设计由框架,球形附件和膜组成的三维声学超材料,具有极宽的隔音频带和低隔音频率。有限元方法用于研究球形附着尺寸,框架截面尺寸和膜厚度对禁区的影响。结果表明,在一定范围内,随着附件的半径增加,第一禁止带的终端频率和宽度增加。随着帧横截面尺寸的增加,第一禁止带的起始频率增加。随着膜的厚度增加,第一禁止带的起始频率不会改变太多,并且第一禁止带的终端频率急剧下降,然后趋于平坦。

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