Performance Assessment and Contouring Error Prediction of High Speed HMC

고속 HMC 이송계의 운동특성 평가 및 운동오차 예측

  • 최헌종 (한국생산기술연구원 생산공정기술본부 나노가공팀) ;
  • 허남환 (한국생산기술연구원 생산공정기술본부 나노가공팀) ;
  • 강은구 (한국생산기술연구원 생산공정기술본부 나노가공팀) ;
  • 이석우 (한국생산기술연구원 생산공정기술본부 나노가공팀) ;
  • 홍원표 (한국생산기술연구원 생산공정기술본부 나노가공팀)
  • Published : 2004.10.01

Abstract

Recently, the evolution in production techniques (e.g. high-speed milling) and the complex shapes involved in modem production design has been increasingly popular. The key to the achievement is a drastic improvement of the dynamic behavior of the machine tool axes used in production machinery. The more complex these tool paths the higher the speed and acceleration requirements. But it is very difficult to reach the target for high speed machine tool because of the limitations of servo system and motion control system. However the direct drive design of machine tool axes, which is based on linear motors and which recently appeared on the market, is a viable candidate to meet the ever increasing demands, because of these advantages such as no backlash, less friction, more mechanical simplicity and very higher acceleration and velocity comparing to the traditional system. This paper focused on the performance tests of the high speed horizontal machine tool based on linear motor. Especially, dynamic characteristics were investigated through circular test and circular form machining test is carried out considering many important parameter. Therefore these several experiments is used to be evaluated the model for prediction of circular motion error and circular machined error.

Keywords