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Rotor/Auxiliary Bearing Dynamic Contact Modes In Magnetic Bearing Systems

机译:电磁轴承系统中的转子/辅助轴承动态接触模式

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摘要

Magnetic bearings systems usually incorporate auxiliary bearings so that rotor/stator contact is prevented. The rotor must then make contact with the auxiliary bearings if any clearance boundaries are exceeded. It is then possible for a rotor with a given unbalance condition to exhibit either contact free levitation or to become trapped in various contact modes. For passively mounted auxiliary bearings, the contact modes are determined by the system design parameters. However, it is now feasible to mount the auxiliary bearings in an active system using piezoelectric actuators. If a closed loop control is applied, the mounting (e.g. stiffness/damping) characteristics may be varied on-line. The potential also exists to apply open-loop actuation to the auxiliary bearing to make the clearance domain variable. For example, appropriate synchronous translation of a circular auxiliary bearing may cause it to appear as having a different radius or to be elliptical to the rotor. The question that needs to be addressed is whether this is useful in the destabilisation of contact modes so that contact free levitation may be restored. This paper will investigate whether this is a feasible option.
机译:电磁轴承系统通常包含辅助轴承,以防止转子/定子接触。如果超过任何游隙边界,则转子必须与辅助轴承接触。然后,具有给定不平衡条件的转子可能会表现出无接触悬浮或陷入各种接触模式。对于被动安装的辅助轴承,接触模式由系统设计参数确定。但是,现在可以将辅助轴承安装在使用压电致动器的主动系统中。如果应用闭环控制,则安装特性(例如刚度/阻尼)可能会在线变化。还存在将开环致动应用于辅助轴承以使游隙域可变的潜力。例如,圆形辅助轴承的适当同步平移可能导致它看起来具有不同的半径或相对于转子呈椭圆形。需要解决的问题是,这是否对稳定接触方式有用,以便可以恢复无接触悬浮。本文将研究这是否是可行的选择。

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