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Dynamics of a passive micro-vibration isolator based on a pretensioned plane cable net structure and fluid damper

机译:基于预张紧平面电缆净结构和流体阻尼器的无源微隔振器的动态

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This paper addresses dynamic modelling and experiments on a passive vibration isolator for application in the space environment. The isolator is composed of a pretensioned plane cable net structure and a fluid damper in parallel. Firstly, the frequency response function (FRF) of a single cable is analysed according to the string theory, and the FRF synthesis method is adopted to establish a dynamic model of the plane cable net structure. Secondly, the equivalent damping coefficient of the fluid damper is analysed. Thirdly, experiments are carried out to compare the plane cable net structure, the fluid damper and the vibration isolator formed by the net and the damper, respectively. It is shown that the plane cable net structure can achieve substantial vibration attenuation but has a great amplification at its resonance frequency due to the light damping of cables. The damping effect of fluid damper is acceptable without taking the poor carrying capacity into consideration. Compared to the plane cable net structure and the fluid damper, the isolator has an acceptable resonance amplification as well as vibration attenuation.
机译:本文涉及在空间环境中应用的动态建模和实验。隔离器由预张紧平面电缆净结构和平行流体阻尼器组成。首先,根据串理论分析单电缆的频率响应函数(FRF),采用FRF合成方法来建立平面电缆网结构的动态模型。其次,分析了流体阻尼器的等效阻尼系数。第三,进行实验以比较平面电缆网结构,流体阻尼器和由网和阻尼器形成的振动隔离器。结果表明,由于电缆的光阻,平面电缆网结构可以实现大量振动衰减,而是在其共振频率下具有很大的放大。流体阻尼器的阻尼效果是可以接受的,而不考虑较差的承载能力。与平面电缆网结构和流体阻尼器相比,隔离器具有可接受的共振放大以及振动衰减。

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