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Design Principle of a Nonlinear Robust Dynamic Vibration Absorber

机译:非线性鲁棒动态振动吸收器的设计原理

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This study aims to develop a design principle of a nonlinear dynamic vibration absorber focusing on its robustness against the alteration of the natural frequency of the primary system. To this end, a 2-DOF coupled system consisting of the primary and absorber systems is analytically solved to evaluate the maximally possible level of the displacement response of the primary system by means of averaging method. In this approach, the equation of motion of the vibration absorber is first solved in the steady-state by the averaging method for a given amplitude of the primary system assuming that the whole responses of the coupled system have the same frequency as the excitation force. Then, the equivalent dynamic stiffness of the dynamic absorber is derived which represents how the absorber acts on the primary system in reaction of the displacement of the primary system. Because the maximally possible displacement amplitude of the primary system is enveloped by the reciprocal of the imaginary part of the equivalent dynamic stiffness, the benefit of introducing a softening effect into the design of the dynamic absorber is theoretically suggested, and validated through numerical simulations.
机译:本研究旨在开发非线性动态振动吸收器的设计原理,其专注于稳健性,以防止初级系统自然频率的改变。为此,一个两自由度耦合系统,包括初级和吸收器系统被解析地求解,以评估通过平均方法的装置中的主系统的位移响应的最大可能电平。在这种方法中,通过假设耦合系统的整个响应具有与激发力相同的频率,通过对主系统的给定幅度的平均方法首先在稳态上求解振动吸收器的运动。然后,导出动态吸收剂的等效动态刚度,其表示吸收器如何在主系统的位移反应中作用于主要系统。因为主系统的最大可能的位移幅度被等效动态刚度的虚部的往复式封闭,所以理论上建议将软化效果引入动态吸收器的设计的益处,并通过数值模拟验证。

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