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A multi-layer active elastic metamaterial with tuneable and simultaneously negative mass and stiffness

机译:一种多层主动弹性超材料,具有可调节的同时负质量和刚度

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摘要

All conventional acoustic/elastic media are restricted to possess positive constants for their constitutive parameters (density and modulus). Metamaterials provide an approach through which this restriction can be broken. By making these parameters negative and/or tuneable a broader range of properties becomes possible. This paper describes the first experimental implementation of an acoustic/elastic metamaterial in which the material parameters can be both simultaneously negative in a finite frequency band and the magnitude of the parameters independently tuneable on demand. The design is an active metamaterial (meta-mechanical-system) which is realized by directly applying feedback control forces to each layer within the metamaterial. The ability to tune the magnitude of the negative parameters has important implications for the use of a standard design that can be tuned to a particular application, or one which can adapt to a changing performance requirement. The implementation of the design is relatively large scale and low frequency, but the unit-cell length is significantly smaller than the wavelength in the double negative band. Importantly, assuming appropriate control hardware is available, the design can be both reduced in scaled and expanded to greater degrees of freedom. © 2014 IOP Publishing Ltd.
机译:所有常规的声学/弹性介质的本构参数(密度和模量)都必须具有正常数。超材料提供了一种可以打破此限制的方法。通过使这些参数为负和/或可调,可以实现更广泛的属性。本文介绍了声学/弹性超材料的第一个实验实现,其中材料参数在有限的频带中可以同时为负,并且参数的大小可以根据需要独立调整。该设计是一种主动的超材料(元机械系统),它是通过将反馈控制力直接施加到超材料中的每一层来实现的。调整负参数的大小的能力对于使用可以调整到特定应用程序或可以适应不断变化的性能要求的标准设计具有重要意义。该设计的实现规模较大且频率较低,但单位单元长度明显小于双负带中的波长。重要的是,假设有适当的控制硬件可用,则设计既可以按比例缩小,又可以扩展到更大的自由度。 ©2014 IOP Publishing Ltd.。

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    Pope S.A.; Laalej H.;

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  • 年度 2014
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  • 正文语种 en
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