Complete band gaps in sandwich phononic crystal plates

Xiao-feng Liu, Yan-Feng Wang, Yue-Sheng Wang
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引用次数: 3

Abstract

By using the finite element method, the propagation of Lamb waves in sandwich phononic crystal plates is investigated. This structure is composed of a two-dimensional phononic crystal plate coated with two homogeneous substrates on both surfaces. The phononic crystal plate is constituted by a square array of elastic cylinder embedded in a solid matrix. It is shown that some complete band gaps are opened by changing the thickness of the phononic crystal plate, and that the width of the first band gap becomes larger as the thickness increased. The influence of the thickness and material properties of the substrates on the width of the complete band gap is discussed as well. It is noted that the thickness of either phononic crystal plate or substrates plays a key role in tuning the band gaps of the sandwich phononic crystal plates.
完整的带隙夹层声子晶体板
采用有限元方法研究了兰姆波在夹层声子晶体板中的传播特性。该结构由二维声子晶体板组成,其表面涂有两个均匀的衬底。声子晶体板是由嵌入在固体基体中的弹性圆柱方阵构成的。结果表明,通过改变声子晶体板的厚度可以打开一些完整的带隙,并且随着厚度的增加,第一个带隙的宽度变大。讨论了衬底的厚度和材料性质对全带隙宽度的影响。结果表明,声子晶体板或衬底的厚度对夹层声子晶体板带隙的调节起着关键作用。
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