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Performance of nonlinear mechanical, resonant-shunted piezoelectric, and electronic vibration absorbers for multi-degree-of-freedom structures.

机译:用于多自由度结构的非线性机械,谐振分流压电和电子减振器的性能。

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摘要

Linear vibration absorbers are a valuable tool used to suppress vibrations due to harmonic excitation in structural systems. Limited evaluation of the performance of nonlinear vibration absorbers for nonlinear structures exists in the current literature. The state of the art is extended in this work to vibration absorbers in their three major physical implementations: the mechanical vibration absorber, the inductive-resistive shunted piezoelectric vibration absorber, and the electronic vibration absorber (also denoted a positive position feedback controller). A single, consistent, physically similar model capable of examining the response of all three devices is developed.;The performance of vibration absorbers attached to single-degree-of-freedom structures is next examined for performance, robustness, and stability. Perturbation techniques and numerical analysis combine to yield insight into the tuning of nonlinear vibration absorbers for both linear and nonlinear structures. The results both clarify and validate the existing literature on mechanical vibration absorbers. Several new results, including an analytical expression for the suppression region's location and bandwidth and requirements for its robust performance, are derived.;Nonlinear multiple-degree-of-freedom structures are next evaluated. The theory of Non-linear Normal Modes is extended to include consideration of modal damping, excitation, and small linear coupling, allowing estimation of vibration absorber performance. The dynamics of the N+1-degree-of-freedom system reduce to those of a two-degree-of-freedom system on a four-dimensional nonlinear modal manifold, thereby simplifying the analysis. Quantitative agreement is shown to require a higher order model which is recommended for future investigation.;Finally, experimental investigation on both single and multi-degree-of-freedom systems is performed since few experiments on this topic are reported in the literature. The experimental results qualitatively verify the analytical models derived in this work. The dissertation concludes with a discussion of future work which remains to allow nonlinear vibration absorbers, in all three physical implementations, to enter the engineer's toolbox.
机译:线性减振器是用于抑制由于结构系统中的谐波激励而引起的振动的有价值的工具。当前文献中对用于非线性结构的非线性减振器的性能进行了有限的评估。在这项工作中,现有技术在其三个主要的物理实现中扩展到了减振器:机械减振器,电感-电阻并联压电减振器和电子减振器(也称为正位置反馈控制器)。建立了一个能够检查所有三个设备响应的,一致的,物理上相似的模型。;接下来将研究连接到单自由度结构上的减震器的性能,鲁棒性和稳定性。摄动技术和数值分析相结合,可以深入了解线性和非线性结构的非线性减振器的调谐。结果澄清并验证了有关机械减振器的现有文献。得出了几个新的结果,包括抑制区域的位置和带宽的解析表达式以及对鲁棒性能的要求。;接下来评估了非线性多自由度结构。非线性法线模式的理论已扩展到包括模态阻尼,激励和小的线性耦合的考虑,从而可以估计减震器的性能。在二维非线性模态流形上,N + 1自由度系统的动力学降低为两自由度系统的动力学,从而简化了分析。定量协议显示需要更高阶的模型,建议用于以后的研究。最后,由于文献中很少有关于该主题的实验报道,因此对单自由度和多自由度系统都进行了实验研究。实验结果定性地验证了这项工作中得出的分析模型。论文最后讨论了未来的工作,该工作仍然允许非线性减振器在所有三种物理实现中进入工程师的工具箱。

著录项

  • 作者

    Agnes, Gregory Stephen.;

  • 作者单位

    Virginia Polytechnic Institute and State University.;

  • 授予单位 Virginia Polytechnic Institute and State University.;
  • 学科 Engineering Aerospace.;Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 1997
  • 页码 151 p.
  • 总页数 151
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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