Multi-stage NC Milling of Uncut Volume caused by Gouging Interference at the Machining of Curved Surfaces

곡면가공시 공구간섭에 따른 미절삭체적의 다단계 NC가공

  • 맹희영 (서울산업대학교 기계설계자동화공학부) ;
  • 차지경 (서울산업대학교 대학원)
  • Published : 2004.10.01

Abstract

A new efficient intelligent machining strategy named the Steepest Directed Tree method is presented in this study, which makes surface model discrete with triangulation meshes and the cutter paths track along the tree directions. In order to formulate these algorithms practically, it is deduced the multi-stage machining approach of uncut volume caused by cutter gouging in the course of milling using flat end mill. It is systematized the checking process the cutter interference by grouping the 6 kinds of gouging types, which yields the environment of connectivity data lists including CL-data, and then the multi-stage machining strategy, that minimizes uncut area by continuously sequencing the generative subsequent CL-paths, is shamed to determine the second tool path for the next uncut area and to compose the operating multi-stage cutting processes. The completed machining system of curved surfaces is evaluated by testing the practical machining experiments which have various kinds of shape conditions.

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