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首页> 外文期刊>Journal of vibration and control: JVC >Nonlinear numerical model with contact for Stockbridge vibration damper and experimental validation
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Nonlinear numerical model with contact for Stockbridge vibration damper and experimental validation

机译:斯托克布里奇减振器的接触接触非线性数值模型及实验验证

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摘要

The Stockbridge vibration damper is widely used in overhead transmission lines to reduce Aeolian vibration. Although a linear analytical model has been developed to interpret characteristics of the vibration damper, a much more detailed model is needed to investigate how the nonlinear factors of the structure affect its vibration characteristics. The paper presents a full-scale finite element model of the Stockbridge vibration damper, in which contact conditions are taken into account using the linear perturbation method. Relations between the contact conditions and mode frequencies were studied. It was proved that contact conditions between each two parts of the damper have significant influence on the stiffness of the whole structure. Results obtained from the numerical model compare well with those from the experiment. Finally, this numerical model was applied to investigate how the bonding material between the counterweight and steel strand cable affects the mode frequencies of the vibration damper.
机译:Stockbridge减振器广泛用于架空输电线路,以减少风振。尽管已开发出线性分析模型来解释减振器的特性,但仍需要更详细的模型来研究结构的非线性因素如何影响其阻尼特性。本文提出了斯托克布里奇减振器的全尺寸有限元模型,其中使用线性摄动方法考虑了接触条件。研究了接触条件与模式频率之间的关系。事实证明,减振器每两个部分之间的接触条件对整个结构的刚度有重要影响。从数值模型获得的结果与从实验获得的结果很好地比较。最后,该数值模型用于研究配重和钢绞线之间的粘结材料如何影响减振器的模频率。

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