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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Vibration control of imbalanced Jeffcott rotor by virtual passive dynamic absorber with optimal parameter values
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Vibration control of imbalanced Jeffcott rotor by virtual passive dynamic absorber with optimal parameter values

机译:通过最佳参数值的虚拟无源动态吸收器振动控制jeffcott转子的振动控制

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摘要

Today, dynamic absorbers are widely used to control vibrations of the systems that are being excited by the harmonic forces. In this paper, the usage of the magnetic force as virtual dynamic absorber for vibration control in rotary systems is investigated. In order to examine this new method, two different types of passive dynamic absorber systems are applied to control imbalanced Jeffcott rotor vibrations. In the first type of the absorber system, damper is located between the absorber mass and the disk and in the second type, it is located between the absorber mass and the ground. Then, the optimal parameters of absorber system, stiffness and damping have been analytically achieved by using two fixed points theory. Moreover, for further reduction of the vibration amplitude, combined paths have been designed for rotor frequency response. Finally, in order to evaluate the obtained results, the experimental data of our virtual dynamic absorbers were compared with simulation results and it is found that the vibration amplitude of rotor was efficiently limited in this case. Furthermore, the second type of the absorber system with equal mass ratio to the first type of the absorber system was more efficient than the first one in reduction of the amplitude of vibrations. Our findings show that the second absorber transfer more force than the first one since the second absorber connects chasis of system with damper. Therefore, it is recommended to apply the first absorber after the first resonance.
机译:如今,动态吸收剂广泛用于控制由谐波力兴奋的系统的振动。本文研究了磁力作为旋转系统中振动控制的虚拟动态吸收器的使用。为了检查这种新方法,应用了两种不同类型的无源动态吸收器系统来控制不平衡的Jeffcott转子振动。在第一类型的吸收体系中,阻尼器位于吸收体和盘之间,并且在第二种类型之间,它位于吸收体质量和地之间。然后,通过使用两个固定点理论,已经分析了吸收体系的最佳参数,刚度和阻尼。此外,为了进一步减小振动幅度,设计了用于转子频率响应的组合路径。最后,为了评估所获得的结果,将虚拟动态吸收剂的实验数据与模拟结果进行比较,并且发现转子的振动幅度在这种情况下有效地限制。此外,具有相等质量比的第二种类型的吸收体系与第一类型的吸收体系更有效地比在减少振动幅度的第一类型中更有效。我们的研究结果表明,由于第二吸收器将系统与阻尼器连接起来,第二吸收器转移比第一个的力更多的力。因此,建议在第一谐振之后施加第一吸收器。

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