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SIMULATION OF AMB SUPPORTED ROTOR DURING DROP ON RETAINER BEARINGS

机译:保持架轴承下垂时AMB支撑转子的仿真

摘要

The active magnetic bearings present a new technology which has many advantages compared to traditional bearing designs. Active magnetic bearings, however, require retainer bearings order to prevent damages in the event of a component, power or a control loop failure. In the dropdown situation, when the rotor drops from the magnetic bearings to the retainer bearings, the design parameters of the retainer bearings have a significant influence on the behaviour of the rotor. In this study, the dynamics of an active magnetic bearings supported electric motor during rotor drop on retainer bearings is studied using a multibody simulation approach. Various design parameters of retainer bearings are studied using a simulation model while results are compared with those found in literature. The retainer bearings are modelled using a detailed ball bearing model, which accounts damping and stiffness properties, oil film and friction between races and rolling elements. The model of the ball bearings includes inertia description of rollingelements. The model of the magnetic bearing system contains unbalances of the rotor and stiffness and damping properties of support. In this study, a computationally efficient contact model between the rotor and the retainer bearings is proposed. In addition, this work introduces information for the design of physicalprototype and its retainer bearings.
机译:主动式电磁轴承代表了一种新技术,与传统轴承设计相比,它具有许多优势。但是,主动式磁性轴承需要保持器轴承,以防止部件,电源或控制回路发生故障时造成损坏。在下拉情况下,当转子从磁性轴承掉落到保持器轴承时,保持器轴承的设计参数对转子的性能产生重大影响。在这项研究中,使用多体仿真方法研究了在保持架轴承上的转子掉落期间,由主动磁轴承支撑的电​​动机的动力学。使用仿真模型研究了保持架轴承的各种设计参数,同时将结果与文献中的结果进行了比较。保持架轴承是使用详细的球轴承模型建模的,该模型考虑了阻尼和刚度特性,油膜以及座圈与滚动元件之间的摩擦。球轴承的模型包括滚动元件的惯性描述。磁轴承系统的模型包含转子的不平衡以及支撑的刚度和阻尼特性。在这项研究中,提出了一种计算有效的转子和保持架轴承之间的接触模型。此外,这项工作还介绍了有关物理原型及其保持器轴承设计的信息。

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