State Key Laboratory of Advanced Design and Manufacturing for Vehicle Body, College of Mechanics and Vehicle Engineering, Hunan University, Changsha City 410082, PR China.
Ultrasonics. 2012 Sep;52(7):920-4. doi: 10.1016/j.ultras.2012.02.015. Epub 2012 Mar 19.
A theoretical study is presented on the propagation properties of Lamb wave modes in phononic crystal slabs consisting of a row or more of parallel square cylinders placed periodically in the host material. The surfaces of the slabs are parallel to the axis of periodicity. The dispersion curves of Lamb wave modes are calculated based on the supercell method. The finite element method is employed to calculate the band structures and the transmission power spectra, which are in good agreement with the results by the supercell method. We also have found that the dispersion curves of Lamb waves are strongly dependent on the crystal termination, which is the position of the cut plane through the square cylinders. There exist complete or incomplete (truncated) layers of square cylinders with the change of the crystal termination. The influence of the crystal termination on the band gaps of Lamb wave modes is analyzed by numerical simulations. The variation of the crystal termination leads to obvious changes in the dispersion curves of the Lamb waves and the widths of the band gaps.
本文对由平行正方形圆柱排列在基体材料中周期性排列而成的声子晶体板中兰姆波模态的传播特性进行了理论研究。板的表面与周期性轴平行。基于超胞法计算了兰姆波模态的频散曲线。采用有限元法计算了带结构和透射功率谱,与超胞法的结果吻合较好。我们还发现,兰姆波的频散曲线强烈依赖于晶体终端,即穿过正方形圆柱的切割平面的位置。随着晶体终端的变化,存在完整或不完整(截断)的正方形圆柱层。通过数值模拟分析了晶体终端对兰姆波模式带隙的影响。晶体终端的变化导致兰姆波的频散曲线和带隙宽度发生明显变化。