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Thermal Effect on Dynamics of Beam with Variable-Stiffness Nonlinear Energy Sink

机译:可变刚度非线性能量水槽梁动力学的热效应

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摘要

In this study, we investigate the targeted energy transfer (TET) from a simply supported beam that is subjected to thermal variations and external excitations to a local nonlinear energy sink (NES). We derive the governing equation of motion for the beam with an NES device and study the influences of NES parameters on the vibration-suppressing effect. We obtain the optimized parameters of the NES under constant-amplitude harmonic excitation at room temperature. The optimized NES gradually loses its vibration absorption efficiency as the excitation amplitude and temperature increase. We change the nonlinear stiffness of the NES to mitigate the influence of temperature variation and show that NES efficiency can be enhanced by reducing the nonlinear stiffness. We propose a variable-stiffness NES, and the results demonstrate this NES is best for maintaining efficiency over the whole temperature range. We also analyze the transient responses of the system under impulse loads. Results indicate that, like the performance of the system subjected to harmonic excitation, an NES with relatively low stiffness can better suppress vibration with increasing impulse amplitude and temperature.
机译:在这项研究中,我们研究了从简单地支撑的光束的目标能量转移(TET),其经受热变化和外部激发到局部非线性能量水槽(NES)。我们通过NES器件推出了梁的控制方程,并研究了NES参数对振动抑制效果的影响。我们在室温下在恒定振幅激发下获得NE的优化参数。优化的网元逐渐失去其振动吸收效率,因为激励幅度和温度升高。我们改变NE的非线性刚度,以减轻温度变化的影响,并表明通过降低非线性刚度可以提高NES效率。我们提出了一种可变刚度NE,结果证明了该网元最适合在整个温度范围内保持效率。我们还在脉冲载荷下分析了系统的瞬态响应。结果表明,与经过谐波激发的系统的性能一样,具有相对低刚度的NE可以更好地抑制振动振幅和温度。

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