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具有二元结构的二维局部共振声子晶体。

Two-dimensional locally resonant phononic crystals with binary structures.

作者信息

Wang Gang, Wen Xisen, Wen Jihong, Shao Lihui, Liu Yaozong

机构信息

Institute of Mechatronical Engineering, National University of Defense Technology, Changsha 410073, China.

出版信息

Phys Rev Lett. 2004 Oct 8;93(15):154302. doi: 10.1103/PhysRevLett.93.154302. Epub 2004 Oct 5.

Abstract

The lumped-mass method is applied to study the propagation of elastic waves in two-dimensional binary periodic systems, i.e., periodic soft rubber/epoxy and vacuum/epoxy composites, for which the conventional methods fail or converge very slowly. A comprehensive study is performed for the two-dimensional binary locally resonant phononic crystals, which are composed of periodic soft rubber cylinders immersed in epoxy host. Numerical simulations predict that subfrequency gaps also appear because of the high contrast of mass density and elastic constant of the soft rubber. The locally resonant mechanism in forming the subfrequency gaps is thoroughly analyzed by studying the two-dimensional model and its quasi-one-dimensional mechanical analog. The rule used to judge whether a resonant mode in the phononic crystals can result in a corresponding subfrequency gap or not is found.

摘要

采用集中质量法研究弹性波在二维二元周期系统中的传播,即周期性软橡胶/环氧树脂和真空/环氧树脂复合材料,传统方法对此类系统失效或收敛非常缓慢。对由浸没在环氧树脂基体中的周期性软橡胶圆柱组成的二维二元局部共振声子晶体进行了全面研究。数值模拟预测,由于软橡胶的质量密度和弹性常数的高对比度,也会出现亚频隙。通过研究二维模型及其准一维力学模拟,深入分析了形成亚频隙的局部共振机制。找到了用于判断声子晶体中的共振模式是否会导致相应亚频隙的规则。

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