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Optimized rotor design for rigid balancing of large flexible induction rotors

机译:优化的转子设计可实现大型柔性感应转子的刚性平衡

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The paper presents a simulation method, which helps to optimize the rotor design in terms of vibration and production costs. The method is particularly suitable for rotors that run close below or above the first bending critical speed, because a single-sided rotor core eccentricity excites this first bending mode very strongly. This simulation method can be used to optimize the rotor design to avoid elastic balancing. Rigid balancing can be used, even if the rotor runs above the first critical bending speed. Additionally, this method helps to find the tolerable residual unbalance and maximum tolerable limit for a single-sided rotor core eccentricity. Therefore the method helps to optimize the production process by avoiding elastic balancing and machining of the rotor core outer diameter.
机译:本文提出了一种仿真方法,该方法有助于在振动和生产成本方面优化转子设计。该方法特别适用于在低于或高于第一弯曲临界速度附近运行的转子,因为单面转子铁心偏心非常强烈地激发了该第一弯曲模式。该仿真方法可用于优化转子设计以避免弹性平衡。即使转子以高于第一临界弯曲速度的速度运行,也可以使用刚性平衡。另外,该方法有助于找到单侧转子铁心偏心量的可容许残余不平衡量和最大可容许极限。因此,该方法通过避免弹性平衡和机加工转子铁芯外径来帮助优化生产过程。

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