Zhao De-Gang, Li Yong, Zhu Xue-Feng
1] Department of Physics, Huazhong University of Science and Technology, Wuhan, 430074, China [2] Department of Physics, Hong Kong University of Science and Technology, Clear Water Bay, Hong Kong, China.
Department of Physics, Hong Kong University of Science and Technology, Clear Water Bay, Hong Kong, China.
Sci Rep. 2015 Mar 20;5:9376. doi: 10.1038/srep09376.
We have investigated the Lamb wave propagation in cellular metamaterial plates constructed by bending-dominated and stretch-dominated unit-cells with the stiffness differed by orders of magnitude at an ultralow density. The simulation results show that ultralight metamaterial plates with textured stubs deposited on the surface can support strong local resonances for both symmetric and anti-symmetric modes at low frequencies, where Lamb waves at the resonance frequencies are highly localized in the vibrating stubs. The resonance frequency is very sensitive to the geometry of textured stubs. By reasonable design of the geometry of resonant elements, we establish a simple loaded-bar model with the array of oscillators having a gradient relative density (or weight) that can support multiple local resonances, which permits the feasibility of a broadband Lamb wave trapping. Our study could be potentially significant in designing ingenious weight-efficient acoustic devices for practical applications, such as shock absorption, cushioning, and vibrations traffic, etc.
我们研究了由弯曲主导和拉伸主导的晶胞构成的细胞超材料板中的兰姆波传播,这些晶胞在超低密度下刚度相差几个数量级。模拟结果表明,表面沉积有纹理化短柱的超轻超材料板在低频时对对称和反对称模式都能支持强烈的局部共振,其中共振频率处的兰姆波高度局域在振动的短柱中。共振频率对纹理化短柱的几何形状非常敏感。通过合理设计共振元件的几何形状,我们建立了一个简单的加载杆模型,该模型具有相对密度(或重量)呈梯度变化的振荡器阵列,能够支持多个局部共振,这使得宽带兰姆波捕获成为可能。我们的研究对于设计用于实际应用的巧妙的重量高效声学装置可能具有潜在的重要意义,例如减震、缓冲和振动传输等。