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Development of a vibration isolator with dry friction damping

机译:开发具有干式摩擦阻尼的隔振器

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摘要

A new type of suspension component with dry friction damping has been developed. It consist of an &_Omega–shaped spring wire which ends can slip in their mountings. By positioning these components under 90 degrees around the suspended object, the suspension functions in all six degrees of freedom. The suspension component will be modeled as a series connection of a spring with a coulomb damper, which in turn is in parallel with a second spring. This model will be analyzed using Hamilton’s equations of motion to deal with the non-linear phenomena. An experimental setup has been realized whereupon the suspension components are validated using hammer impulses. The observed response is an efficiently damped sinusoidal motion which turns into an undamped sinusoid with small amplitude. In the spectrum, the resonance has been limited in magnitude to 10 dB and the isolation characteristic remains -40 dB/decade equivalent to the undamped spring.
机译:已经开发出一种具有干摩擦阻尼的新型悬架组件。它由&_Omega形状的弹簧线组成,其末端可以在安装件中滑动。通过将这些组件放置在悬吊物体周围90度以下,悬吊可以在所有六个自由度中发挥作用。悬架组件将被建模为弹簧与库仑阻尼器的串联连接,而库仑阻尼器又与第二弹簧并联。该模型将使用汉密尔顿的运动方程进行分析,以处理非线性现象。已经实现了实验设置,随后使用锤脉冲验证了悬架组件。观察到的响应是有效阻尼的正弦曲线运动,该运动变为振幅较小的无阻尼正弦曲线。在频谱中,共振的幅度已限制在10 dB,隔离特性保持-40 dB /十倍频程,等效于无阻尼弹簧。

著录项

  • 作者

    Boonen Rene; Sas Paul;

  • 作者单位
  • 年度 2015
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类

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