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EXPERIMENTAL INVESTIGATION OF 2D RAINBOW PHONONIC CRYSTALS FOR BROADBAND VIBRATION ATTENUATION

机译:宽带振动衰减2D彩虹孔隙晶体的实验研究

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Phononic crystals (PnCs) and metamaterials are nowadays widely investigated for vibration suppression owing to their stopbands that prohibit wave propagation. The application of PnCs and metamaterials is however limited by their narrow bandgaps especially for low frequencies. The recently introduced rainbow metamaterials composed of spatially varied oscillating unit cells are found to generate broader bandgaps than the periodic structures. 2D rainbow PnCs consisting of cubic blocks with internal voids connected by curved beam are proposed in the present paper. Masses of the cubic blocks differ due to different dimensions of internal voids. To prove the effects of rainbow design, two 2D block-beam lattice structures, with periodic and nonperiodic units respectively, were manufactured by additive manufacturing method. Frequency response functions of the manufactured PnCs were measured with a testing system containing a mechanical shaker, an impedance head and a laser Doppler vi-brometer. Receptance functions of the PnCs in two directions were measured separately. The obtained experimental results show that the PnC with rainbow mass has extended bandgaps compared with the periodic one.
机译:如今,声子晶体(PNCS)和超材料在禁止波传播的阻挡带上被广泛研究了振动抑制。然而,PNC和超材料的应用受到它们窄的带隙限制,特别是对于低频。最近引入了由空间变化的振荡单元单元组成的彩虹超材料,而不是周期性结构产生更宽的带隙。在本纸上提出了由具有弯光梁连接的内部空隙的立方块组成的彩虹PNC。由于内部空隙的不同尺寸,立方体块的质量不同。为了证明彩虹设计的效果,通过添加制造方法制造了两个2D块梁晶格结构,具有周期性和非周期性单元。用含有机械振动器的测试系统,阻抗头和激光多普勒VI-volomer测量制造的PNC的频率响应函数。分别测量两个方向上PNC的接收功能。所获得的实验结果表明,与周期性的,PNC具有彩虹质量的延伸带隙。

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