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A NUMERICAL STUDY ON EFFECT OF ELECTROMAGNETIC ACTUATOR ON RIGID ROTOR SUPPORTED ON GAS FOIL BEARING

机译:电磁执行机构对气浮轴承支撑刚性转子影响的数值研究

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Generally, Gas Foil Bearings (GFBs) are used in high speed machineries which are quite prone to instability or wear and tear. The current trend is to develop hybrid bearings which has conventional bearing (GFB) along with active magnetic bearing as an electromagnetic actuator (EMA). The GFBs are used for normal operation and the magnetic actuator can be used for the improvement of the stability and the load capacity of the bearing. In the present work a numerical study has been carried out to study the effects of magnetic actuator on the stability of bump type GFB supported rigid rotor. A rigid rotor supported on two identical GFBs with and without EMA has been investigated. The electromagnetic forces are incorporated in the equation of motion to provide the active control. A PD controller has been used as a controller for the magnetic actuator. It has been observed that the incorporation of EMA to the GFB reduces the sub synchronous vibrations and hence increases the stability.
机译:通常,气箔轴承(GFB)用于非常不稳定或磨损的高速机械。当前的趋势是开发具有常规轴承(GFB)以及作为电磁致动器(EMA)的主动磁轴承的混合轴承。 GFB可用于正常运行,而电磁执行器可用于改善轴承的稳定性和负载能力。在目前的工作中,已经进行了数值研究,以研究磁致动器对凸块型GFB支承的刚性转子的稳定性的影响。对带有和不带有EMA的两个相同GFB上支撑的刚性转子进行了研究。电磁力被包含在运动方程中以提供主动控制。 PD控制器已用作电磁执行器的控制器。已经观察到,将EMA结合到GFB中减少了次同步振动,因此增加了稳定性。

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