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Investigation of a multi-ball, automatic dynamic balancing mechanism for eccentric rotors

机译:偏心转子的多球自动动平衡机构的研究

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摘要

This paper concerns an analytical and experimental investigation into the dynamics of an automatic dynamic balancer (ADB) designed to quench vibration in eccentric rotors. This fundamentally nonlinear device incorporates several balancing masses that are free to rotate in a circumferentially mounted ball race. An earlier study into the steady state and transient response of the device with two balls is extended to the case of an arbitrary number of balls. Using bifurcation analysis allied to numerical simulation of a fully nonlinear model, the question is addressed of whether increasing the number of balls is advantageous. It is found that it is never possible to perfectly balance the device at rotation speeds comparable with or below the first natural, bending frequency of the rotor. When considering practical implementation of the device, a modification is suggested where individual balls are contained in separate arcs of the ball race, with rigid partitions separating each arc. Simulation results for a partitioned ADB are compared with those from an experimental rig. Close qualitative and quantitative match is found between the theory and the experiment, confirming that for sub-resonant rotation speeds, the ADB at best makes no difference to the imbalance, and can make things substantially worse. Further related configurations worthy of experimental and numerical investigation are proposed. © 2007 The Royal Society.
机译:本文涉及对自动动态平衡器(ADB)的动力学进行分析和实验研究,该平衡器旨在消除偏心转子的振动。这种基本为非线性的装置结合了多个平衡质量,这些平衡质量可以在圆周安装的滚道中自由旋转。对带有两个球的设备的稳态和瞬态响应的早期研究扩展到任意数量的球的情况。使用与完全非线性模型的数值模拟相关的分叉分析,可以解决增加球数是否有利的问题。已经发现,不可能以与转子的第一自然弯曲频率相当或低于转子的第一自然弯曲频率的旋转速度来完美地平衡设备。在考虑该设备的实际实现时,建议进行修改,将单个球包含在滚珠的单独弧形中,并用刚性隔板将每个弧形分开。将分区的ADB的仿真结果与实验设备的仿真结果进行比较。在理论和实验之间找到了紧密的定性和定量匹配,这证实了对于亚谐振转速,ADB充其量不会对不平衡产生任何影响,并且会使情况变得更糟。提出了值得实验和数值研究的其他相关配置。 ©2007皇家学会。

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