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首页> 外文期刊>Journal of Applied Mechanics: Transactions of the ASME >Non-Reciprocal Metamaterials With Simultaneously Time-Varying Stiffness and Mass
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Non-Reciprocal Metamaterials With Simultaneously Time-Varying Stiffness and Mass

机译:非互惠的超材料,同时变化刚度和质量

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摘要

A modulated metamaterial that exhibits both time-periodic stiffness and mass simultaneously is presented. The metamaterial element includes a primary body that undergoes infinitesimal motion, and is connected to a dynamic-mechanism structure, involving a rotational body, and spring with a large-scale motion, which is designed to produce a time-modulated linear momentum and elastic constraint for the primary body. The non-reciprocal wave propagation is then investigated in a space-time lattice metamaterial that is constructed by coupling doubly time-modulated elements with linear springs of constant stiffness. The dispersion property shows the frequency degeneracy occurring at the center or edge of the Brillouin zone, and the unidirectional bandgap at certain frequencies. This phenomenon represents a unique property of the doubly modulated metamaterials compared to the singly modulated ones, thus may provide more promising applications to the design of non-reciprocal devices.
机译:提出了一种调制的超材料,其具有同时显示时间周期性刚度和质量。 超材料元件包括经过无限的运动的主体,并且连接到具有旋转体的动态机构结构,并且具有大规模运动的弹簧,其被设计为产生时间调制的线性动量和弹性约束 对于主要的身体。 然后在空时晶层超材料中研究了非往复波传播,该空间晶片超材料通过耦合双时调制元件,该元素与恒定刚度的线性弹簧耦合。 分散性显示在布里渊区的中心或边缘处发生的频率退化,以及在某些频率下的单向带隙。 与单独调制的那些相比,这种现象代表了双重调制的超材料的独特性,因此可以为非互易装置的设计提供更有前途的应用。

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