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Autoparametric vibration absorber effect to reduce the first symmetric mode vibration of a curved beam/panel

机译:自参数减振器效应可减少弯曲梁/面板的第一对称模式振动

摘要

This paper presents the implementation of autoparametric phenomena to reduce the symmetrical vibration of a curved beam/panel under external harmonic excitation. The internal energy transfer of a first symmetric mode into first anti-symmetric mode in a curved panel is one example of autoparametric vibration absorber effect. This is similar to the vibration energy transfer from the resonance of a primary structure to the resonance of a secondary springmass (tuned mass damper). The nonlinear response of a curved beam is analyzed using an equation with two modes, and a shaker test. The effect of different configurations of the curve beam/panel, including damping ratios and excitation levels, on the energy transfer of the first symmetric mode to the first anti-symmetric mode was studied. The conventional tuned mass damper (TMD) can reduce the resonance response by energy transfer using damping dissipation, whereas an autoparametric vibration absorber (AVA) can reduce the resonance response by energy transfer using parametric interaction. The results indicate that there is a non-absorption region in which vibration is amplified. For the AVA, the non-absorption region can be minimized by tuning the resonance frequency of the first anti-symmetric mode to half of the first symmetric mode resonance frequency using additional mass. No additional damping material is required for achieving sufficient vibration reduction. The AVA can maintain reliable performance in hot and corrosive environments where damping material cannot perform effectively. This paper presents the first successful experimental results of an autoparametric vibration absorption mechanism in a curved beam.
机译:本文介绍了自参数现象的实现,以减少外部谐波激励下弯曲梁/面板的对称振动。在弯曲面板中从第一对称模式到第一反对称模式的内部能量传递是自参数减振器效应的一个示例。这类似于从主要结构的共振到次要弹簧(调谐质量阻尼器)的共振的振动能量转移。使用具有两种模式的方程式和振动器测试来分析弯曲梁的非线性响应。研究了曲线梁/面板不同配置(包括阻尼比和激励水平)对第一对称模式到第一反对称模式能量转移的影响。传统的调谐质量阻尼器(TMD)可以通过使用阻尼耗散的能量传递来降低共振响应,而自参数减振器(AVA)可以通过使用参数相互作用的能量传递来降低共振响应。结果表明存在一个非吸收区域,在该区域中振动被放大。对于AVA,可以通过使用额外的质量将第一反对称模式的谐振频率调整为第一对称模式谐振频率的一半来最小化非吸收区域。不需要额外的阻尼材料即可实现充分的减振。在阻尼材料无法有效发挥作用的高温和腐蚀性环境中,AVA可以保持可靠的性能。本文介绍了曲线梁中自动参量吸振机制的首次成功实验结果。

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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