터빈블레이드의 5축 고속가공에서 최적가공경로의 선정

Evaluation of Cutter Orientations in 5-Axis High Speed Milling of Turbine Blade

  • 임태순 (부산대학교 대학원 정밀기계공학과) ;
  • 이채문 (부산대학교 대학원 정밀기계공학과) ;
  • 김석원 (부산대학교 대학원 정밀기계공학과) ;
  • 이득우 (부산대학교 정밀정형 및 금형가공 연구소)
  • 발행 : 2002.02.01

초록

Recently, the development of aerospace and automobile industries brought new technological challenges, related to the growing complexity of products and new geometry models. High speed machining using 5-Axis milling machine is widely used for 3D sculptured surface parts. 5-axis milling of turbine blade generates the vibration, deflection and twisting caused from thin and cantilever shape. So, the surface roughness and the waviness of workpiece are not good. In this paper, The effects of cutter orientation and lead/tilt angle in 5-Axis high speed ball end-milling of turbine blade were investigated to improve the geometric accuracy and surface integrity. The experiments were performed at lead/tilt angle $15^{\circ}$ of workpiece with four cutter directions such as horizontal outward, horizontal inward, vertical outward, and vertical inward. Workpiece deflection, surface roughness and machined surface were measured with various cutter orientations such as cutting direction, and lead/tilt angle. The results show that when 5-axis machining of turbine blade, the best cutting strategy is horizontal inward direction with tilt angle. The results show that when 5-axis machining of turbine blade, the best cutting strategy is horizontal inward direction with tilt angle.

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