首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Experimental and theoretical investigation on synchronization of a vibration system flexibly driven by two motors
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Experimental and theoretical investigation on synchronization of a vibration system flexibly driven by two motors

机译:两个电动机灵活驱动振动系统同步的实验与理论研究

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摘要

With the increasing requirements for screening new materials, such as high-density and high-viscosity drilling fluids, it is necessary to increase the exciting force of the shale shaker to fully handle the new materials. To increase the exciting force of shale shaker while improving the force condition, a dynamic model of a vibration system flexibly driven by two motors is proposed in this paper. The dynamic behavior and synchronization theory of this system are investigated by using Lagrange equation and Hamilton's principle. The calculation proves that the conventional planar vibration system rigidly driven by two motors is a special case of the investigated spatial vibration system flexibly driven by two motors. The phase difference between the eccentric rotors is automatically adjusted by the system to balance the change in the motor installation position for maintaining synchronization and stability. Theoretical investigation and experimental verification prove that the system can synchronize vibration without additional control synchronization.
机译:随着筛选新材料的越来越多的要求,例如高密度和高粘度钻井液,需要增加页岩振荡器的励磁力以完全处理新材料。为了提高页岩振动筛的同时提高力条件的同时,在本文中提出了由两个电动机灵活地驱动的振动系统的动态模型。使用拉格朗日方程和汉密尔顿原则研究了该系统的动态行为和同步理论。该计算证明,由两个电动机刚性驱动的传统平面振动系统是由两个电动机灵活地驱动的调查空间振动系统的特殊情况。偏心转子之间的相位差由系统自动调节,以平衡电动机安装位置的变化,以保持同步和稳定性。理论研究和实验验证证明系统可以同步振动而无需额外的控制同步。

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