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The transmissibility of vibration isolators with cubic nonlinear damping under both force and base excitations

机译:在力和基础激励下具有立方非线性阻尼的隔振器的传递性

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摘要

The influence of a nonlinear damping which is a function of both the velocity and displacement is investigated for a single degree of freedom (sdof) isolator. The analytical relationships between the force or displacement transmissibility and the nonlinear damping coefficient are developed in the frequency domain for the isolator systems subjected to both force and base excitation. It is theoretically shown that the cubic order nonlinear damping can produce much better isolation performance, i.e., obvious peak suppression at resonant frequency and very close transmissibility to system linear dampingover non-resonant frequencies under both force and base displacement excitations. Moreover, when only the pure cubic order nonlinear damping is used without linear damping, the force or displacement transmissibility is even better. The results are compared with the other nonlinear damping terms previously studied in the literature. Numerical studies are presented to illustrate the results.
机译:对于单自由度(sdof)隔离器,研究了非线性阻尼的影响,非线性阻尼是速度和位移的函数。力或位移传递率与非线性阻尼系数之间的解析关系是在频域中针对既受力又受基础激励的隔离器系统建立的。从理论上讲,三次阶非线性阻尼可以产生更好的隔离性能,即在力和基本位移激励下,在共振频率处具有明显的峰值抑制,并且在非共振频率上具有非常接近系统线性阻尼的传递性。此外,当仅使用纯立方阶非线性阻尼而没有线性阻尼时,力或位移的传递性甚至更好。将结果与文献中先前研究的其他非线性阻尼项进行比较。数值研究表明了结果。

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