Study on Controller Design for an Active Magnetic Bearing Milling Spindle Using Chatter Stability Analysis

채터 안정성 해석을 이용한 자기베어링 밀링 주축의 제어기 설계 연구

  • 경진호 (한국기계연구원 지능형정밀기계연구부) ;
  • 박종권 (한국기계연구원 지능형정밀기계연구부) ;
  • 노승국 (한국기계연구원 지능형정밀기계연구부)
  • Published : 2002.10.01

Abstract

The characteristic equation for regenerative chatter loop including a delay element replaced by a rational function is presented by a linear differential-difference equation, accounting for the dynamics of the AMB controllers, the uncut chip thickness equation and the cutting process as well as the rigid spindle dynamics itself. The chatter stability analysis of a rigid milling spindle suspended by 5-axes active magnetic bearings(AMBs) is also performed to investigate the influences of the damping and stiffness coefficients of AMBs on the chatter free cutting conditions, as they are allowed to vary within the stable region formed by the AMB control gains. Several cutting tests varying the derivative gains of the AMB were performed to investigate the regenerative chatter vibrations, and it was concluded that the theoretical analysis results are in good consistency with the test results.

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