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Use of modal energy transfer as a new damping device with controllable bandwidth

机译:使用模态能量传输作为带宽可控的新型阻尼设备

摘要

This paper presents a new design of nonlinear dynamic absorber (NDA) using the phenomenon of modal energy transfer between the symmetric mode and the anti-symmetric mode of a curved beam. It can reduce the resonance vibration of a primary structure with a controllable operational frequency range. The energy transfer is initiated by an autoparametric vibration and the excitation force required is lowest when the ratio of the resonance frequencies of the first symmetric mode (ω 1) and first anti-symmetric mode (ω 2) is close to 2. The resonance frequency of the first anti-symmetric mode (ω 2) can be altered to control the operational frequency range. The autoparametric vibration response can be used to create an energy-dissipative region with a controllable bandwidth. It is also possible to create a non-dissipative region in between two dissipative regions. This is useful for providing damping for a conventional dynamic absorber without adding high damping material. The damping is due to the dissipation of energy to anti-symmetric mode. Numerical calculations indicate that the resonance vibration of a primary structure can be successfully reduced using this approach. The results are verified with experimental data.
机译:本文提出了一种新的非线性动态吸收器(NDA)设计方案,它利用了弯曲光束对称模式和反对称模式之间的模态能量转移现象。它可以在可控制的工作频率范围内降低初级结构的共振振动。当第一对称模式(ω1)和第一反对称模式(ω2)的谐振频率之比接近2时,能量传递由自参振动引发,所需的激励力最低。可以改变第一反对称模式的ω2(ω2)以控制工作频率范围。自动参量振动响应可用于创建带宽可控制的耗能区域。也可以在两个耗散区域之间创建非耗散区域。这对于在不添加高阻尼材料的情况下为常规动力吸收器提供阻尼是有用的。阻尼是由于能量耗散到反对称模式。数值计算表明,使用这种方法可以成功地减少初级结构的共振。实验结果验证了结果。

著录项

  • 作者

    Hui CK; Ng CF;

  • 作者单位
  • 年度 2011
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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