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A 6DOF passive vibration isolator using x-shape supporting structures

机译:采用X形支撑结构的6DOF被动隔振器

摘要

A novel 6 degree of freedom (6-DOF) passive vibration isolator is studied theoretically and validated with experiments. Based on the Stewart platform configuration, the 6-DOF isolator is constructed by 6 X-shape structures as legs, which can realize very good and tunable vibration isolation performance in all 6 directions with a passive manner. The mechanic model is established for static analysis of the working range, static stiffness and loading capacity. Thereafter, the equation of motion of the isolator is derived with the Hamilton principle. The equivalent stiffness and the displacement transmissibility in the six decoupled DOFs direction are then discussed with experimental results for validation. The results reveal that (a) by designing the structure parameters, the system can possess flexible stiffness such as negative, quasi-zero and positive stiffness, (b) due to the combination of the Stewart platform and the X-shape structure, the system can have very good vibration isolation performance in all the 6 directions and in a passive manner, and (c) compared with the simplified linear-stiffness legs, the nonlinearity of the X-shape structures enhance the passive isolator to have much better vibration isolation performance.
机译:理论上研究了新型的6自由度(6-DOF)被动隔振器,并通过实验进行了验证。 6-DOF隔离器基于Stewart平台配置,由6个X形结构作为支脚构造,可以被动方式在所有6个方向上实现非常好的可调振动隔离性能。建立了力学模型,用于静态分析工作范围,静态刚度和承载能力。此后,利用汉密尔顿原理导出隔离器的运动方程。然后讨论了六个解耦自由度方向上的等效刚度和位移传递率,并通过实验结果进行了验证。结果表明:(a)通过设计结构参数,该系统可以具有柔性刚度,例如负,准零和正刚度;(b)由于Stewart平台和X形结构的结合,该系统可以在所有六个方向上以及以被动方式具有非常好的隔振性能,并且(c)与简化的线性刚度支腿相比,X形结构的非线性增强了被动隔振器具有更好的隔振性能。

著录项

  • 作者

    Wu Z; Jing X; Sun B; Li F;

  • 作者单位
  • 年度 2016
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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