Development of Exit Burr Identification Algorithm on Multiple Feature Workpiece and Multiple Tool Path

복합형상 및 다중경로에 대한 Exit Burr 판별 알고리듬의 개발- 스플라인을 포함한 Exit Burr의 해석 -

  • Kim, Ji-Hwan (College of Advanced Technology, Kyung Hee University) ;
  • Lee, Jang-Beom (College of Advanced Technology, Kyung Hee University) ;
  • Kim, Young-Jin (College of Advanced Technology, Kyung Hee University)
  • 김지환 (경희대학교 테크노공학대학 산업공학) ;
  • 이장범 (경희대학교 테크노공학 대학산업공학) ;
  • 김영진 (경희대학교 테크노공학대학 산업공학)
  • Received : 2004.07.16
  • Accepted : 2005.05.26
  • Published : 2005.09.30

Abstract

In the automated production environment in the present days, the minimization of manual operation becomes a very important factor in increasing the efficiency of the production system. The exit burr produced through the milling operation on the edge of workpiece usually requires manual deburring process to enhance the level of precision of the resulting product. So far, researchers have developed various methods to understand the formation of exit burr in cutting process. One method to analytically identify the formation of exit burr was to use the geometrical information of CAD and CAM data used in automated machining. This method, in turn, generated the information resulting from the analysis such as burr type, cutting region, and exit angle. Up to now, the geometrical data were restricted to the single feature and single path. In this paper, a method to deal with the complicated geometric features such as line segment, arc, hole, and spline will be presented and validated using the field data. This method also deals with the complex workpiece shape which is a combination of multiple features. As for the cutting path, multiple tool path is analyzed in order to simulate the real cutting process. All this analysis is combined into a Windows based software and real data are used to validate the program in the conclusion.

Keywords

Acknowledgement

Supported by : 경희대학교

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