Response regimes of narrow-band stochastic excited linear oscillator coupled to nonlinear energy sink |
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Authors: | Xiong Huai Kong Xianren Yang Zhenguo Liu Yuan |
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Affiliation: | Research Center of Satellite Technology, Harbin Institute of Technology, Harbin 150001, China |
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Abstract: | This paper draws attention to the issue of the vibration absorption of nonlinear mechanical system coupled to nonlinear energy sink (NES) under the impact of the narrow band stochastic excitation. Firstly, based on the complex-averaging method and frequency detuning methodology, response regimes of oscillators have been researched under the linear impact of coupling a nonlinear attachment with less relativistic mass and an external sinusoidal forcing, of which results turn out that the quasi-periodicity response regime of system which occurs when the external excitation amplitude exceeds the critical values will be the precondition of the targeted energy transfer. Secondly, basing on the path integration method, vibration suppression of NES has been researched when it is affected by a main oscillator with a narrow band stochastic force in the form of trigonometric functions, of which results show that response regimes are affected by the amplitude of stochastic excitation and the disturbance strength. Finally, all these conclusions have been approved by the numerical verification and coincided with the theoretical analysis; meanwhile, after the comparing analysis with the optimal linear absorber, it turns out that the NES which is affected by the narrow band stochastic force could also suppress the vibration of system with a better effect. |
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Keywords: | Nonlinear energy sink Path integration method Stochastic excitation Targeted energy transfer Vibration absorption |
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