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Study on the force transmissibility of vibration isolators with geometric nonlinear damping

机译:具有几何非线性阻尼的隔振器传力研究

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By a special layout of the damper in a vibration isolation system, the velocity-nth power damping of the damper can be transformed into the velocity-displacement dependent damping in the moving direction due to geometric nonlinearity. This study is mainly concerned with the mechanism of this geometric nonlinear damping and tries to find some guidelines for designing isolators with high performance, regardless of the isolator is passive or active. The model used in this study is an unconstrained two-degree-of-freedom isolation system, which is suitable for investigating vibration isolation in space vehicles. The motion equation is solved by the averaging method to obtain the amplitude-frequency equation. The influence of damping coefficients on the force transmissibility is analyzed. Results show that this kind of damping has some advantages in improving isolation performance at both the resonance and higher frequencies. Meanwhile, it can also degrade the isolation performance if unreasonable parameters are chosen.
机译:通过减振器在隔振系统中的特殊布置,由于几何非线性,减振器的速度n次方功率阻尼可以转换为运动方向上与速度位移有关的阻尼。这项研究主要涉及这种几何非线性阻尼的机理,并试图找到一些设计高性能隔离器的指南,而不论隔离器是被动的还是主动的。本研究中使用的模型是一种无约束的两自由度隔离系统,适用于研究航天器的振动隔离。用平均法求解运动方程,得到幅频方程。分析了阻尼系数对力传递的影响。结果表明,这种阻尼在改善谐振和更高频率下的隔离性能方面具有一些优势。同时,如果选择了不合理的参数,也会降低隔离性能。

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