Development of Improved Cutting Force Model for Indexable End Milling Process.

인덱서블 엔드밀링 공정을 위한 향상된 절삭력 모델의 개발

  • 김성준 (포항공대 대학원 기계공학과) ;
  • 이한울 (포항공대 대학원 기계공학과) ;
  • 조동우 (포항공대 기계공학과)
  • Published : 2004.10.01

Abstract

Indexable end mills, which consist of inserts and cutter body, have been widely used in roughing of parts in the mold industry. The geometry and distribution of inserts on cutter body are determined by application. This paper proposes analytical cutting force model for indexable flat end-milling process. Developed cutting force model uses the cutting-condition-independent cutting force coefficients and considers runout, cutter deflection and size effect for the accurate cutting force prediction. Unlike solid type endmill, the tool geometry of indexable endmill is variable according to the axial position due to the geometry and distribution of inserts on the cutter body. Thus, adaptive algorithm that calculates tool geometry data at arbitrary axial position was developed. Then number of flute, angular position of flute, and uncutchip thickness are calculated. Finally, presented model was validated through some experiments with aluminum workpiece.

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