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Tunable vibrational band gaps in one-dimensional diatomic granular crystals with three-particle unit cells

机译:具有三粒子晶胞的一维双原子颗粒晶体中的可调振动带隙

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摘要

We investigate the tunable vibration filtering properties of statically compressed one-dimensional diatomic granular crystals composed of arrays of stainless steel spheres and cylinders interacting via Hertzian contact. The arrays consist of periodically repeated three-particle unit cells (sphere-cylinder-sphere) in which the length of the cylinder is varied systematically. We investigate the response of these granular crystals, given small amplitude dynamic displacements relative to those due to the static compression, and characterize their linear frequency spectrum. We find good agreement between theoretical dispersion relation analysis (for infinite systems), state-space analysis (for finite systems), and experiments. We report the observation of three distinct pass bands separated by two finite band gaps, and show their tunability for variations in cylinder length and static compression.
机译:我们研究了静态压缩的一维双原子颗粒晶体的可调谐振动过滤特性,该晶体由不锈钢球体和圆柱体阵列组成,它们通过赫兹接触相互作用。阵列由周期性重复的三粒子单位晶胞(球体-圆柱体-球体)组成,其中圆柱体的长度会系统地变化。我们研究了这些粒状晶体的响应,给出了相对于静态压缩引起的小振幅动态位移,并表征了它们的线性频谱。我们在理论色散关系分析(对于无限系统),状态空间分析(对于有限系统)和实验之间找到了很好的一致性。我们报告了由两个有限的带隙分开的三个不同的通带的观察,并显示了它们在汽缸长度和静态压缩中变化的可调性。

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