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Analytical, numerical and experimental investigation of self resonance in vibration excitation systems

机译:振动激励系统自共振的分析,数值和实验研究

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Eccentric angular motion transfer mechanisms are analyzed in the paper. The de-balancing mass has an additional degree of freedom in these mechanisms. It was found that certain types of such mechanisms posses interesting nonlinear dynamical features when a self-resonance motion mode occurs. Such self-resonance motion mode takes place when the main driving element rotates with relatively high angular velocity, but low frequency vibrations are generated in the range of fundamental frequency of the system. Analytical, numerical and experimental investigations of nonlinear vibration excitation systems were performed. Such vibration excitation systems have high practical value as there is no necessity for complex vibration control equipment - the stability of operation is guaranteed by non-linear dynamical interactions. Laser velocity measurement system was used for experimental investigations of the dynamical properties of the system. The results of the investigations validated the results of the theoretical analysis and provide a background for developing new type of dynamical mechanisms.
机译:本文分析了偏心角运动传递机构。在这些机制中,失衡质量具有额外的自由度。已经发现,当发生自谐振运动模式时,某些类型的这种机构具有有趣的非线性动力学特征。当主驱动元件以相对较高的角速度旋转时,会发生这种自谐振运动模式,但是会在系统的基本频率范围内产生低频振动。进行了非线性振动激励系统的分析,数值和实验研究。这种振动激励系统具有很高的实用价值,因为不需要复杂的振动控制设备-非线性动态相互作用可确保运行的稳定性。激光速度测量系统用于系统动力学特性的实验研究。研究结果验证了理论分析的结果,并为开发新型动力机制提供了背景。

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