Modeling and Dynamics Analysis on Pseudo-Rigid-Body for the Swing Vibrator of the Caudal-Fin-Like Valve-Less Pump

Xiaoqi Hu, Caiqi Hu, Hui Du, Jude Liu
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引用次数: 1

Abstract

A bio-inspired swing vibrator applied in fluid driving has the characteristics of a large deformation and rigid-lexible structure. Currently, there is a shortage of influential theories and methods to analyze its vibration. This research established a dynamic model for studying the bionic rigid-flexible swing vibrator based on pseudo-rigid-body theory. The weak coupling relationship between vibration arm DOF and flexible caudal-fin DOF was proposed by comparing the diagonal elements with the characteristic matrix's anti-diagonal elements. Analysis results showed that the presence of a flexible caudal-fin had minimal impact on the vibration modes of the vibration arm. The flexible caudal-fin vibration could be treated as a dynamic response that uses the vibration arm's end as a foundation. Experimental studies were conducted, and a laser Doppler vibrometer was used to measure the vibrator's vibration modes. The experimental results indicated that whether the vibrator works in water or in air, the presence of a flexible caudal-fin had little impact on the resonance frequency of the vibration arm. Finally, experimental results were discussed based on theoretical analysis and conclusions. This paper provides an academic tool for modeling, optimization, and a working mechanism analysis on the rigid-flexible swing vibrator.
尾鳍式无阀泵摆振器伪刚体建模与动力学分析
一种应用于流体驱动的仿生摆动振动器具有大变形和刚柔结构的特点。目前,对其振动分析缺乏有影响的理论和方法。基于拟刚体理论,建立了研究仿生刚柔摆振器的动力学模型。通过对角单元与特征矩阵的反对角单元的比较,提出了振动臂自由度与柔性尾鳍自由度之间的弱耦合关系。分析结果表明,柔性尾鳍的存在对振动臂振动模态的影响最小。柔性尾鳍振动可以看作是以振动臂末端为基础的动态响应。进行了实验研究,并利用激光多普勒测振仪测量了振动器的振动模式。实验结果表明,无论振动器工作在水中还是空气中,柔性尾鳍的存在对振动臂共振频率的影响很小。最后,在理论分析和结论的基础上对实验结果进行了讨论。本文为刚柔摆振器的建模、优化和工作机理分析提供了理论工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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