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Analytical formulas for the energy, velocity and displacement decays of purely nonlinear damped oscillators

机译:纯非线性阻尼振荡器的能量,速度和位移衰减的解析公式

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摘要

Accurate formulas for obtaining the energy, velocity and displacement decay envelopes in purely nonlinear damped oscillators are presented here. These purely nonlinear oscillators have no linear stiffness components, and the new formulas derived in this paper are found to be highly accurate in determining the decay envelopes, regardless of the system's physical parameters and its initial condition. The mechanism of these new formulas for obtaining the decay envelopes of the nonlinear oscillators is found to be exactly the same as the mechanism of the well-known amplitude decay formulas used for the linear oscillator. Finding such formulas is significant to many scientific applications of these nonlinear oscillators, such as the passive targeted energy transfer through the stiffness-based nonlinear energy sinks (NESs). In these types of NESs, these formulas can be easily applied for system identification and dynamic analysis. In addition, they are expected to have a significant application in different scientific fields for such oscillators.
机译:这里给出了用于获得纯非线性阻尼振荡器中的能量,速度和位移衰减包络的精确公式。这些纯非线性振荡器没有线性刚度分量,并且无论系统的物理参数和初始条件如何,本文得出的新公式在确定衰减包络方面都非常准确。发现这些用于获得非线性振荡器的衰减包络线的新公式的机理与用于线性振荡器的众所周知的振幅衰减公式的机理完全相同。找到这些公式对于这些非线性振荡器的许多科学应用具有重要意义,例如通过基于刚度的非线性能量吸收器(NESs)进行无源目标能量转移。在这些类型的NES中,这些公式可以轻松地应用于系统识别和动态分析。另外,期望它们在这种振荡器的不同科学领域中具有重要的应用。

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