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一维指数形变截面有限周期声子晶体的研究
引用本文:付志强,林书玉,陈时,鲜晓军,张小丽,王勇.一维指数形变截面有限周期声子晶体的研究[J].物理学报,2012,61(19):194301-194301.
作者姓名:付志强  林书玉  陈时  鲜晓军  张小丽  王勇
作者单位:1. 陕西师范大学应用声学研究所,西安,710062
2. 陕西师范大学应用声学研究所,西安710062 中国电子科技集团第26研究所,重庆400060
基金项目:陕西师范大学研究生创新基金(批准号: 2011CXB012)和国家自然科学基金(批准号: 11174192)资助的课题.
摘    要:本文利用集中质量法对弹性纵波在一维指数形截面有限周期声子晶体中的传播进行了研究, 得到了频率响应函数的表达式. 与一维等截面的声子晶体相比, 指数形变截面声子晶体带隙内的衰减值随着输出端截面积的增大而减小, 同时带隙的起始频率降低而截止频率升高, 也即带隙的宽度会得到拓展. 晶格常数和材料组份比变化时, 变截面声子晶体带隙的起始频率和截止频率的变化趋势与等截面时的声子晶体相同. 希望本文的研究能够推动声子晶体在减振降噪等领域中的应用.

关 键 词:声子晶体  声波带隙  集中质量法  频率响应函数
收稿时间:2012-02-13

Investigation of one-dimensional finite phononic crystal with exponential section
Fu Zhi-Qiang,Lin Shu-Yu,Chen Shi,Xian Xiao-Jun,Zhang Xiao-Li,Wang Yong.Investigation of one-dimensional finite phononic crystal with exponential section[J].Acta Physica Sinica,2012,61(19):194301-194301.
Authors:Fu Zhi-Qiang  Lin Shu-Yu  Chen Shi  Xian Xiao-Jun  Zhang Xiao-Li  Wang Yong
Institution:1. Institute of Applied Acoustics, Shaanxi Normal University, Xi'an 710062, China;2. China Electronics Technology Group Corporation 26 Research Institute, Chongqing 400060, China
Abstract:In this paper, we study the propagation of elastic longitudinal wave in one-dimensional (1D) finite periodic phononic crystal with exponential section, and obtain the expression of frequency response function. Comparing the 1D phononic crystal with constant section, we find that the value of attenuation inside the band gap decreases quickly as the cross-sectional area of output and increases, at the same time, the initial frequency decreases and the cut-off frequency increases, i.e. the width of the band gap will increase. The effects of the lattice constant and the filling fraction on band gap are also analyzed. The change trends of the initial frequency and cut-off frequency are consistent with those of constant section. We hope that the investigation of this paper will be helpful for the phononic crystal in practical application such as vibration shield.
Keywords:phononic crystal  acoustic band gap  lump-mass method  frequency response function
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