首页> 外文会议>ASME turbo expo: turbine technical conference and exposition >AUXILIARY BEARING SYSTEM OPTIMIZATION FOR AMB SUPPORTED ROTORS BASED ON ROTOR DROP ANALYSIS - PART Ⅰ: ROTOR DROP ANALYSIS METHOD
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AUXILIARY BEARING SYSTEM OPTIMIZATION FOR AMB SUPPORTED ROTORS BASED ON ROTOR DROP ANALYSIS - PART Ⅰ: ROTOR DROP ANALYSIS METHOD

机译:基于转子跌落分析的AMB支承转子辅助轴承系统优化-第一部分:转子跌落分析方法

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For rotors supported with active magnetic bearings (AMBs), the auxiliary bearing system or backup bearing system is needed to avoid serious potential internal damaging in the event of AMB loss of power or overload. The evolution of auxiliary systems has been made a priority by the American Petroleum Institute using analytical or experimental methods. In part I of this paper, a detailed rotor drop nonlinear transient analysis method including flexible shaft, rolling element bearing components including inner/outer races and balls, as well as flexible/damped supporting structures is given. A finite element based 6-DOF flexible rotor model is used to indicate shaft motion before the drop (operating conditions) and during the rotor drop event. Un-lubricated Hertzian contact models are used between the shaft and inner/outer races, between balls and races. To avoid heavy calculating time, two different methods to calculate ball bearing contact loads are discussed and the simulation results are compared. These models are applied to predict shaft-race-ball displacements and angular speeds, contact loads and ball bearing stresses during the drop for angular contact auxiliary bearings. This method also can be used to design and optimize the auxiliary bearing system as presented in the 2nd part of this paper.
机译:对于装有有源电磁轴承(AMB)的转子,需要使用辅助轴承系统或备用轴承系统,以避免在AMB断电或过载的情况下严重的内部潜在损坏。辅助系统的发展已被美国石油学会(American Petroleum Institute)采用分析或实验方法作为优先事项。在本文的第一部分中,给出了详细的转子跌落非线性瞬态分析方法,该方法包括挠性轴,包括内/外座圈和滚珠的滚动轴承组件以及挠性/阻尼支撑结构。基于有限元的6自由度挠性转子模型用于指示跌落之前(运行条件)和转子跌落事件期间的轴运动。在轴与内/外座圈之间,滚珠与座圈之间使用未润滑的赫兹接触模型。为了避免繁琐的计算时间,讨论了两种不同的计算滚珠轴承接触载荷的方法,并对仿真结果进行了比较。这些模型用于预测角接触辅助轴承在下降过程中的轴-滚珠位移和角速度,接触载荷和球轴承应力。如本文第二部分所述,该方法也可用于设计和优化辅助轴承系统。

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