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ULTRATHIN OMNIDIRECTIONAL VIBRATION-ISOLATION METASURFACE STRUCTURE AND DESIGN METHOD THEREOF

机译:超薄的全向振动隔离质量表面结构及其设计方法

摘要

The present invention relates to an ultrathin omnidirectional vibration-isolation metasurface structure and a design method thereof. The omnidirectional vibration-isolation metasurface structure includes a flat plate and a vibration isolation metasurface structure arranged on the flat plate. The vibration isolation metasurface structure is designed in any closed shape according to the shape and position of a vibration source. The vibration isolation metasurface structure is composed of periodically arranged supercells. Each supercell includes j unit cells with a gradient index. The unit cell is in a zigzag shape. The total reflection of elastic waves at any incident angle is realized by designing an elastic wave metasurface with a sub-wavelength thickness in the present invention, so that a vibration isolation purpose is achieved. The metasurface has the characteristics of light and thin structure, small volume, wide work frequency range and capability of achieving 360-degree omnidirectional vibration isolation.
机译:本发明涉及超薄的全向振动隔离质量表面结构及其设计方法。全向振动隔离质量表面结构包括平板和布置在平板上的振动隔离质量表面结构。振动隔离元表面结构根据振动源的形状和位置设计在任何封闭的形状。隔振元度面结构由周期性排列的超级胶凝。每个超级单元包括具有梯度索引的J单位单元。单元电池处于曲折形状。通过在本发明中设计具有子波长厚度的弹性波元表面来实现任何入射角的弹性波的总反射,从而实现了振动隔离目的。 Metasurface具有轻型和薄结构的特点,体积小,工作频率范围小,达到360度全向隔振的能力。

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