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The nonlinear dynamic analysis of the ball-spring automatic balancer by the multiple scales method

机译:球弹簧自动平衡器的非线性动力学多尺度分析

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Utilizing ball-type auto-balancer in rotating systems is a popular method in industry in order to eliminate the rotational vibration. Recently, by using numerical methods, it is shown that a ball-type auto-balancer equipped with both the radial and peripheral springs, ball-spring automatic balancer (AB), is an improved model. In this paper, due to the advantages of analytical methods over the numerical ones, the complete system dynamics, i.e., the stability analysis and the time response, of the rotor equipped with ball-spring AB is analyzed by the multiple scales method as a unified technique. Therefore, with no need for implementing any other stability theories, the stability analysis is a definite advantage of this method due to the less computation cost. Moreover, the time responses show a good agreement with those obtained through the numerical method. Finally, for the first time, the influence of the peripheral springs on the time responses and the stable equilibrium points of the rotor with ball-spring AB is studied in details. The results show that the peripheral springs decrease the vibration amplitude at the transient and leave some residual imbalance at the steady state and accordingly, there is a compromise between the system working performance at the transient and the steady state.
机译:为了消除旋转振动,在旋转系统中使用球形自动平衡器是工业上流行的方法。近来,通过使用数值方法,示出了同时配备有径向和周边弹簧的球形自动平衡器,球形弹簧自动平衡器(AB)是改进的模型。由于分析方法相对于数值方法的优势,采用多尺度方法统一分析了装有球弹簧AB的转子的完整系统动力学,即稳定性分析和时间响应。技术。因此,无需执行任何其他稳定性理论,由于计算成本较低,因此稳定性分析是该方法的绝对优势。而且,时间响应与通过数值方法获得的时间响应显示出良好的一致性。最后,首次详细研究了外围弹簧对带有球形弹簧AB的转子的时间响应和稳定平衡点的影响。结果表明,外围弹簧减小了瞬态时的振动幅度,并在稳态时留下了一些残余不平衡,因此,系统在瞬态时的工作性能与稳态之间存在折衷。

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