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Experimental evidence of Willis coupling in a one-dimensional effective material element

机译:一维有效材料单元中威利斯耦合的实验证据

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摘要

The primary objective of acoustic metamaterial research is to design subwavelength systems that behave as effective materials with novel acoustical properties. One such property couples the stress–strain and the momentum–velocity relations. This response is analogous to bianisotropy in electromagnetism, is absent from common materials, and is often referred to as Willis coupling after J.R., Willis, who first described it in the context of the dynamic response of heterogeneous elastic media. This work presents two principal results: first, experimental and theoretical demonstrations, illustrating that Willis properties are required to obtain physically meaningful effective material properties resulting solely from local behaviour of an asymmetric one-dimensional isolated element and, second, an experimental procedure to extract the effective material properties from a one-dimensional isolated element. The measured material properties are in very good agreement with theoretical predictions and thus provide improved understanding of the physical mechanisms leading to Willis coupling in acoustic metamaterials.
机译:声学超材料研究的主要目标是设计可充当具有新颖声学特性的有效材料的亚波长系统。一种这样的性质将应力-应变关系和动量-速度关系耦合在一起。该响应类似于电磁学中的各向异性,是普通材料所不具备的,在J.R. Willis(在异质弹性介质的动态响应的背景下首次描述)之后,通常被称为Willis耦合。这项工作提出了两个主要结果:首先是实验和理论证明,它们说明了Willis特性是获得物理上有意义的有效材料特性所必需的,而这种有效材料特性完全是由于非对称一维孤立元素的局部行为所致,其次是通过实验方法来提取Willis特性。一维隔离元素的有效材料特性。所测量的材料特性与理论预测非常吻合,因此可以更好地理解导致声学超材料中威利斯耦合的物理机制。

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