Research for the 5 axis machining simulation system with Octree Algorithm

옥트리에 기반한 5 축 가공 시뮬레이션을 위한 연구

  • Kim Y.H. (Mechanical Eng. Dept. Kon-kuk Univ.) ;
  • Ko S.L. (Mechanical Eng. Dept., Kon-kuk Univ.)
  • 김용현 (건국대 대학원 기계설계학과) ;
  • 고성림 (건국대 기계항공공학부)
  • Published : 2005.06.01

Abstract

The overall goal of this thesis is to develop a new algorithm based on the octree model for geometric and mechanistic milling operation at the same time. Most commercial machining simulators are based on the Z map model, which has several limitations in terms of achieving a high level of precision in five-axis machining simulation. Octree representation being a three-dimensional (3D) decomposition method, an octree-based algorithm is expected to be able to overcome such limitations. With the octree model, storage requirement is reduced. Moreover, recursive subdivision is processed in the boundaries, which reduces useless computations. To achieve a high level of accuracy, fast computation time and less memory consumption, the advanced octree model is suggested. By adopting the supersampling technique of computer graphics, the accuracy can be significantly improved at approximately equal computation time. The proposed algorithm can verify the NC machining process and estimate the material removal volume at the same time.

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