首页> 外文会议>ASME turbo expo conference >ON THE CONTROL OF SYNCHRONOUS VIBRATION IN ROTOR/MAGNETIC BEARING SYSTEMS INVOLVING AUXILIARY BEARING CONTACT
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ON THE CONTROL OF SYNCHRONOUS VIBRATION IN ROTOR/MAGNETIC BEARING SYSTEMS INVOLVING AUXILIARY BEARING CONTACT

机译:关于辅助轴承接触的转子/磁轴承系统中同步振动的控制

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摘要

During the normal operation of rotor/magnetic bearing systems, contacts with auxiliary bearings or bushes are avoided. However, auxiliary bearings are required under abnormal conditions and in malfunctions situations to prevent contact between the rotor and stator laminations. Studies in the open literature deal largely with rotor drop and the requirements of auxiliary bearing design parameters for safe run-down. Rotor drop occurs when the rotor is de-levitated and no further means of magnetic bearing control is available. This paper considers the case when full control is still available and rotor/auxiliary bearing contact has been induced by an abnormal operating condition or temporary fault. It is demonstrated that events leading to contact from a linearly stable rotor orbit can drive the rotor into a non-linear vibratory motion involving persistent contacts. Furthermore, the phase of the measured vibration response may be changed to such an extent that synchronous controllers designed to minimize rotor vibration amplitudes will worsen the rotor response, resulting in higher contact forces. A modified controller design is proposed and demonstrated to be capable of returning a rotor from a contacting to a non-contacting state.
机译:在转子/磁轴承系统的正常操作中,避免了与辅助轴承或灌木丛的联系人。然而,在异常条件和故障情况下需要辅助轴承,以防止转子和定子叠片之间的接触。开放文学的研究在很大程度上与转子下降和辅助轴承设计参数的要求进行安全倒塌。当转子被去升悬浮并且没有进一步的磁轴承控制装置时,发生转子掉落。本文考虑了完全控制仍然可用的情况,并且转子/辅助轴承触点已经通过异常的操作条件或临时故障引起。据证明,导致从线性稳定的转子轨道接触的事件可以将转子驱动成涉及持续触点的非线性振动运动。此外,可以改变测量的振动响应的相位,使得设计成最小化转子振动振动幅度的同步控制器将使转子响应变得更加较高的接触力。提出并说明改进的控制器设计,以能够将转子从接触返回到非接触状态。

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