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Oil whirl rotordynamic instability phenomenon-diagnosis and cure in large induction motor

机译:大型感应电动机油液旋翼动态不稳定性现象的诊断与处理

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Reliable design and operation of rotating machinery is critical to achieve bottom line production goals and financial results in petrochemical, transportation and chemical products processing industries. Of the many factors which may cause failure and or reliability issues in these industries, one of the most frustrating and involving relates to bearing failures or high vibration problems. One of the choices for rotating equipments is oil lubricated journal bearings. Oil film journal bearings are susceptible to large-amplitude, lateral vibrations due to a “self-excited rotordynamic instability” known as oil whirl. During oil whirl the rotor orbits in its bearings at a frequency approximately half the rotor speed. Oil whirl is usually caused by lightly loaded bearings, excessive bearing clearances, weak foundation and/or improper oil viscosity. At the inception of non-synchronous oil whirl the amplitude of rotor motion progressively builds at a frequency of approximately less than half of that of the rotor speed and does not damped out. If left uncontrolled oil whirl may lead to catastrophic bearing failures and equipment damage due to high vibration values. This paper will discuss the cause of oil whirl, its effect, how to detect it and its solution.
机译:旋转机械的可靠设计和操作对于实现石油化工,运输和化工产品加工业的底线生产目标和财务成果至关重要。在这些行业中可能引起故障和/或可靠性问题的众多因素中,最令人沮丧和涉及最多的因素之一是轴承故障或高振动问题。旋转设备的选择之一是油润滑轴颈轴承。油膜轴颈轴承由于称为“油涡流”的“自激式转子动力不稳定性”而容易受到大幅度的横向振动。在油旋转期间,转子以大约转子速度一半的频率在轴承中旋转。甩油通常是由轴承轻载,轴承间隙过大,基础薄弱和/或油粘度不当引起的。在开始非同步油旋转时,转子运动的振幅逐渐以大约小于转子速度的一半的频率建立,并且不会衰减。如果不加控制,油涡流可能会由于高振动值而导致灾难性轴承故障和设备损坏。本文将讨论油回旋的原因,影响,如何检测及解决方法。

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