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Automatic Balancing of Bladed-Disk/Shaft System via Passive Autobalancer Devices

机译:通过被动自动平衡器设备自动平衡刀片磁盘/轴系统

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摘要

Autobalancers for rotor/bearing systems are passive devices consisting of eccentrically mounted balance masses that freely revolve around the rotor's axis of rotation. At certain supercritical speeds, the balancer mass positions naturally adjust to cancel the rotor imbalance. This automatic-balancing phenomena occurs as a result of nonlinear dynamic interaction between the balancer masses and the rotor's lateral vibration. Previous studies have found that autobalancers can effectively compensate for mass imbalance in planar rigid rotors such as hard-disk drives and flywheels, however, their use in bladed-disk and turbomachinery applications has not been previously considered. This study explores the dynamics and stability of a flexible bladed-disk/rotor-bearing system equipped with a dual-ball automatic-balancing device. It is found that the autobalancer effectively compensates for both mass and aerodynamic imbalances produced by a bladed-loss condition over a wide revolutions/minute range at speeds above the first lateral natural frequency. It is also shown that for stable automatic balancing to occur, the ratio of automatic balancer damping to the blade aerodynamic drag coefficient must be above some critical value. The analysis demonstrates that the automatic balancer is able to simultaneously reduce both bearing loads and blade deflections for a simulated blade-loss event.
机译:转子/轴承系统的自动平衡器是一种被动设备,由偏心安装的平衡质量组成,它们绕转子的旋转轴自由旋转。在某些超临界速度下,平衡器质量位置自然会进行调整以消除转子不平衡。这种自动平衡现象是平衡器质量与转子横向振动之间非线性动态相互作用的结果。先前的研究发现,自动平衡器可以有效补偿平面刚性转子(例如硬盘驱动器和飞轮)中的质量不平衡,但是,以前从未考虑过将其用于叶片盘和涡轮机械中。这项研究探讨了配备有双球自动平衡装置的柔性叶片盘/转子轴承系统的动力学和稳定性。已经发现,自动平衡器可以有效补偿叶片损耗情况在较宽的转数/分钟范围内以高于第一横向固有频率的速度产生的质量失衡和空气动力学失衡。还显示出,为了实现稳定的自动平衡,自动平衡器阻尼与叶片空气阻力系数的比率必须高于某个临界值。分析表明,对于模拟的叶片损失事件,自动平衡器能够同时减少轴承负载和叶片挠度。

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