Zuo Shuguang, Huang Haidong, Wu Xudong, Zhang Minghai, Ni Tianxin
Clean Energy Automotive Engineering Center, TongJi University, NO.4800, Cao'an Road, Shanghai 201804, China.
J Acoust Soc Am. 2018 Mar;143(3):1326. doi: 10.1121/1.5025041.
To achieve a wider band gap and a lower cut-on frequency, a locally resonant phononic crystal (LRPC) with a dual-base plate is investigated in this paper. Compared with the LRPC with a single plate, the band structure of the LRPC with a dual-base plate is calculated using the method of plane wave expansion and verified by the finite element method. According to the analysis of the band curves of the LRPC with a dual-base plate, the mechanisms are explained. Next, the influences of the thickness of the plates, the stiffness of the springs, the mass of resonators, and the lattice constant are also investigated. The results show that the structural asymmetry between the upper and the lower plate is conducive to reducing the cut-on frequency and broadening the band gap effectively. The results indicate a different approach for the application of LRPC in vibration and noise control.
为了实现更宽的带隙和更低的截止频率,本文研究了一种具有双基板的局部共振声子晶体(LRPC)。与单板LRPC相比,采用平面波展开法计算了双基板LRPC的能带结构,并通过有限元法进行了验证。根据对双基板LRPC能带曲线的分析,对其机理进行了解释。接下来,还研究了板的厚度、弹簧的刚度、谐振器的质量和晶格常数的影响。结果表明,上下板之间的结构不对称有利于降低截止频率并有效拓宽带隙。结果为LRPC在振动和噪声控制中的应用指明了一种不同的方法。