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Suppression of the primary resonance vibrations of a forced nonlinear system using a dynamic vibration absorber

机译:使用动态吸振器抑制强迫非线性系统的一次共振

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In a single degree-of-freedom weakly nonlinear oscillator subjected to periodic external excitation, a small-amplitude excitation may produce a relatively large-amplitude response under primary resonance conditions. Jump and hysteresis phenomena that result from saddle-node bifurcations may occur in the steady-state response of the forced nonlinear oscillator. A simple mass-spring-damper vibration absorber is thus employed to suppress the nonlinear vibrations of the forced nonlinear oscillator for the primary resonance conditions. The values of the spring stiffness and mass of the vibration absorber are significantly lower than their counterpart of the forced nonlinear oscillator. Vibrational energy of the forced nonlinear oscillator is transferred to the attached light mass through linked spring and damper. As a result, the nonlinear vibrations of the forced oscillator are greatly reduced and the vibrations of the absorber are significant. The method of multiple scales is used to obtain the averaged equations that determine the amplitude and phases of the first-order approximate solutions to primary resonance vibrations of the forced nonlinear oscillator. Illustrative examples are given to show the effectiveness of the dynamic vibration absorber for suppressing primary resonance vibrations. The effects of the linked spring and damper and the attached mass on the reduction of nonlinear vibrations are studied with the help of frequency response curves, the attenuation ratio of response amplitude and the desensitisation ratio of the critical amplitude of excitation.
机译:在经历周期性外部激励的单自由度弱非线性振荡器中,小幅度激励可能会在初级共振条件下产生相对较大的幅度响应。由鞍形节点分叉引起的跳跃和滞后现象可能出现在强制非线性振荡器的稳态响应中。因此,采用简单的质量-弹簧-阻尼器减振器来抑制用于主要共振条件的强制非线性振荡器的非线性振动。减振器的弹簧刚度和质量值明显低于强迫非线性振荡器的弹簧刚度和质量值。强制非线性振荡器的振动能量通过链接的弹簧和阻尼器传递到附着的轻质量。结果,大大减小了强制振荡器的非线性振动,并且吸收器的振动显着。多尺度方法用于获得平均方程,该方程确定了强制非线性振荡器的一次共振的一阶近似解的幅度和相位。给出说明性示例以示出动态吸振器抑制初级共振的有效性。借助频率响应曲线,响应振幅的衰减比和激励临界振幅的减敏比,研究了弹簧和减振器的连接以及附加质量对减小非线性振动的影响。

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