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Mechanical circulator for elastic waves by using the nonreciprocity of flexible rotating rings

机译:利用柔性旋转环的非互易性的弹性波机械环行器

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Circulators have a wide range of applications in wave manipulation. They provide a non-reciprocal response by breaking the time-reversal symmetry. In the mechanical field, nonlinear isolators and ferromagnetic circulators can be used for this objective. However, they require high power and high volumes. Herein, a flexible rotating ring is used to break the time-reversal symmetry as a result of the combined effect of Coriolis acceleration and material damping. Complete asymmetry of oscillating and evanescent components of wavenumbers is achieved. The elastic ring produces a nonreciprocal response that is used to design a three port mechanical circulator. The rotational speed for maximum transmission in one port and isolation in the other one is determined using analytical equations. A spectral element formulation is used to compute the complex dispersion diagrams and the forced response. Waveguides that support longitudinal and flexural waves are investigated. In this case, the ring nonreciprocity is modulated by the waveguide reciprocal response and the transmission coefficients can be affected. The proposed device is compact, nonferromagnetic, and may open new directions for elastic wave manipulation.
机译:循环器在波浪操纵中具有广泛的应用。它们通过打破时间反转对称性来提供不可逆的响应。在机械领域,非线性隔离器和铁磁环行器可用于此目的。但是,它们需要大功率和大体积。在此,由于科里奥利加速度和材料阻尼的共同作用,使用柔性旋转环来破坏时间反转对称性。实现了波数的振荡和渐逝分量的完全不对称。弹性环产生不可逆的响应,该响应用于设计三端口机械循环器。使用解析方程确定一个端口中的最大传输速度和另一个端口中的隔离速度。频谱元素公式用于计算复杂的色散图和强制响应。研究了支持纵向波和弯曲波的波导。在这种情况下,环形不可逆性通过波导的往复响应进行调制,并且传输系数会受到影响。所提出的装置是紧凑的,非铁磁性的,并且可以为弹性波操纵开辟新的方向。

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