미소절삭에서의 절삭력 해석

An Analysis of Cutting Force in Micromachining

  • 김동식 (한국과학기술원 기계공학과 대학원) ;
  • 강철희 (통일중공업(주)) ;
  • 곽윤근 (한국과학기술원 기계공학과)
  • Kim, Dong Sik ;
  • Kahng, C.H. ;
  • Kwak, Yoon Keun
  • 발행 : 1995.12.01

초록

Ultraprecision machining technology has been playing a rapidly increasing and important role in manufacturing. However, the physics of the micromachining process at very small depth of cut, which is typically 1 .mu. m or less is not well understool. Shear along the shear plane and friction at the rake face dominate in conventional machining range. But sliding along the flank face of the tool due to the elastic recovery of the workpiece material and the effects of plowing due to the large effective negative rake angle resultant from the tool edge radius may become important in micromachining range. This paper suggests an orthogonal cutting model considering the cutting edge radius and then quantifies the effect of plowing due to the large effective negative rake angle.

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