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Stability and coupling dynamic characteristics of a vibrating system with one internal degree of freedom and two vibrators

机译:一种内部自由度和两个振动器振动系统的稳定性和耦合动态特性

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摘要

In present work the stability and coupling dynamic characteristics for a vibrating system with one internal degree of freedom, driven by two vibrators, are investigated, which is a further extension and innovation of a previous literature. In theory, the responses of the relative and absolute motion of the system are given; the synchronization criterion of the system is obtained based on the average method, and the stability criterion of the synchronous states is derived by Hamilton principle. According to the above theory results, the frequency-amplitude characteristics of the system are discussed qualitatively by numeric, as well as the stable states, phase relationships and corresponding motion types of the system in different resonant regions. The Runge-Kutta routine is employed to verify the feasibility of the used theory method. Finally, an experimental vibrating mill corresponding to the present dynamical model is designed and manufactured, and the experiments are carried out to further examine the validity of the present investigations. It is known that, in order to obtain the reasonable relative circular motion of two rigid frames, in engineering, not only the working point of the system, should be set in the sub-resonant region with respect to the natural frequency of the main vibrating system in x- and y-directions, but also the distance between the rotational center of each vibrator and the cen-troid of the system, must be adjusted to be larger to meet the above requirements. Only in this way, can the greater relative vibration amplitude of the system characterized by the circular motion be realized, the energy be saved, and the ideal isolation effect be satisfied.
机译:在目前的工作中,研究了由两个振动器驱动的具有一个内部自由度的振动系统的稳定性和耦合动态特性,这是先前文献的进一步延伸和创新。理论上,给出了系统的相对和绝对运动的响应;基于平均方法获得系统的同步标准,并且同步状态的稳定性标准由Hamilton原理导出。根据上述理论结果,系统的频率幅度特性通过数字,以及不同谐振区域中的系统的稳定状态,相位关系和对应的运动类型。采用跳动库例程来验证使用的理论方法的可行性。最后,设计和制造了对应于本动态模型的实验振动研磨机,并进行实验,以进一步检查本研究的有效性。众所周知,为了获得两个刚性帧的合理的相对圆周运动,在工程中,不仅在系统的工作点,应该在子谐振区域相对于主振动的固有频率设置在子谐振区域中系统在X和Y方向上,也必须调整每个振动器的旋转中心与系统的CEN-TROID之间的距离,以更大以满足上述要求。只有这样,只有通过圆周运动的系统的更大的相对振动幅度可以实现,节省能量,并且满足理想的隔离效果。

著录项

  • 来源
    《Mechanical systems and signal processing》 |2020年第9期|106812.1-106812.23|共23页
  • 作者单位

    School of Mechanical Engineering and Automation Northeastern University Shenyang Liaoning 110819 PR China Key Laboratory of Vibration and Control of Aero-Propulsion Systems Ministry of Education of China Northeastern University Shenyang Liaoning 110819 PR China;

    School of Mechanical Engineering and Automation Northeastern University Shenyang Liaoning 110819 PR China;

    School of Mechanical Engineering and Automation Northeastern University Shenyang Liaoning 110819 PR China;

    School of Mechanical Engineering and Automation Northeastern University Shenyang Liaoning 110819 PR China;

    School of Mechanical Engineering and Automation Northeastern University Shenyang Liaoning 110819 PR China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Stability; Synchronization; Dynamic characteristics; Different resonant regions; Vibrators;

    机译:稳定;同步;动态特征;不同的共振区;振动器;

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