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Designing and experimental study of compact vibration isolator with quasi-zero stiffness

机译:零零刚度紧凑型振动隔离器的设计与实验研究

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摘要

This study aimed to develop a compact high-efficiency vibration isolator. It was proposed to use force characteristic with quasi-zero stiffness. To avoid a number of design problems, the isolator was designed in a dome shape. This study features a mathematical model of the vibration isolator with quasi-zero stiffness. It allows calculating the isolator properties by geometrical parameters. Stability analysis giving advanced formulas for achieving the maximum workload at certain dimensions was made. For an experimental study, the prototypes were made of shock-absorbing rubbers IRP1346, IRP1347, IRP1348, and fluoroelastomer SKF-32. Force characteristic in static condition was studied, which showed the high efficiency of the compact vibration isolator with quasi-zero stiffness: natural frequency equals 0.8-1.2 Hz. An experimental study in dynamic condition was done using load cell sensors to measure dynamic force transmitted with and without the vibration isolator. The experiment shows a vibration isolation coefficient equal to 244, corresponding to the natural vibration frequency of 2.17 Hz. The study shows the vibration isolator with quasi-zero stiffness as highly efficient, compact, and very perspective for industrial application.
机译:本研究旨在开发一个紧凑的高效隔振器。建议用Quasi-Zero刚度使用力特性。为避免许多设计问题,隔离器设计成圆顶形状。该研究具有振动隔离器的数学模型,具有准零刚度。它允许通过几何参数计算隔离器属性。制作了在某些尺寸下实现最大工作量的先进公式的稳定性分析。对于实验研究,原型由减震橡胶IRP1346,IRP1347,IRP1348和含氟弹性体SKF-32制成。研究了静态条件中的力特性,表明紧凑型隔振器具有准零刚度的高效率:固有频率等于0.8-1.2 Hz。使用负载电池传感器进行动态条件的实验研究,以测量随着振动隔离器传输的动态力。实验表明,等于244的振动隔离系数,对应于2.17Hz的自然振动频率。该研究表明,具有准零刚度的振动隔离器,如高效,紧凑,非常透视的工业应用。

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