Rotordynamics of a Centrifuge Rotor-Bearing System for 100,000 rpm Operation

100,000 rpm 운전용 원심분리기 로터-베어링 시스템의 회전체동역학 해석

  • Published : 1998.06.01

Abstract

A rotordynamic analysis is performed with a centrifuge rotor-bearing system for the raing speed of 100,000 rpm. The system is composed of a centrifuge rotor(or simply the rotor), flexible shaft, motor rotor and shaft, and two support rolling element bearings of the motor shaft. Design goals are to achieve wide separation margins of critical speeds and favorable unbalance responses of the rotor at the associated critical speeds. The latter requirements are especially important as the system crosses multiple numbers of critical speeds and as the system may not have enough separaton margins around the rating speed. As the system adopts an extra-flexible shaft, it is shown that the rotor has satisfactory small unbalance responses over higher criticals while having an unsatisfactory large one at the first critical. To supress this a bumper ring or guide bearing needs to be installed at a suitable location of the flexible shaft. It is also shown that even with the flexible shaft the dynamics of the motor must be incoporated into the full system model to accurately identify the fourth critical speed, which is close to the rating speed, and higher ones. The analysis is based on the finite element method.

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References

  1. Journal of Sound And Vibration v.37 no.2 A Note on the Vibrations of a Clamped-Free Beam with a Mass at the Free End Laura, P. A. A.;Pombo, J. L.;Susemihl, E. A.
  2. Journal of Sound and Vibration v.45 no.2 Natural Frequencies of a Uniform Cantilever with a Tip Mass Slendar in the Axial Direction Bhat, B. R.;Wagner, H.
  3. ASME Trans., Journal of Engineering for Industry On Precession and Critical Speeds of Two-Bearing Machines with Overhung Weight Huang, T. C.;Huang, F. C.
  4. Proceedings of Pacific Conference on Manufacturing '96 The Rotordynamics Design of an Ultra-Centrifuge Rotor-Bearing System Lee, A. S.;Kim, Y. C.;Park, J. K.
  5. ASME Trans., Journal of Engineering for Power Finite Element Simulation of Rotor-Bearing Systems with Internal Damping Zorzi, E. S.;Nelson, H. D.
  6. Rotor-dynamics Prediction in Engineering Lalanne, M.;Ferraris, G.
  7. 한국기계연구원 연구보고서 BSM 051-365.M. 초고속 원심불리시스템의 설계 및 제작기술 연구 박종권;이안성 (외)