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A Study on the Cutting Forces and Tool Deformation when Flat-ended Pocket Machining

평엔드밀 포켓가공시 절삭력과 공구변형에 관한 연구

  • Received : 2016.12.27
  • Accepted : 2017.03.02
  • Published : 2017.04.30

Abstract

Recently, the operation of precision pocket machining has been studied for the high speed and accuracy in industry to increase production and quality. Moreover, the demand for products with complex 3D free-curved surface shapes has increasing rapidly in the development of computer systems, CNC machining, and CAM software in various manufacturing fields, especially in automotive engineering. The type of aluminum (Al6061) that is widely used in aerospace fields was used in this study, and end-mill down cutting was conducted in fillet cutting at a corner with end-mill tools for various process conditions. The experimental results may demonstrate that the end mill cutter with four blades is more advantageous than that of the two blades on shape forming in the same condition precise machining conditions. It was also found that cutting forces and tool deformation increased as the cutting speed increased. When the tool was located at $45^{\circ}$ (four locations), the corner was found to conduct the maximum cutting force rather than the start point of the workpiece. The experimental research is expected to increase efficiency when the economical precision machining methods are required for various cutting conditions in industry.

Keywords

References

  1. M. E. Martellotti, "An Analysis of the Milling Process," Trans. of ASME, Vol. 63, pp. 677-700, 1941.
  2. J. Tlust and P. Macneil, "Dynamics of Cutting Forces in End Milling," Annals of the CIRP, Vol. 24, pp. 21-25, 1975.
  3. D. H. Wang and K. S. Yun, "Characteristics of Tool Deflection of Ball-end Mill Cutter in Pencil Cutting of the Corner," J. of the KSPE, Vol. 16, No. 2, pp. 123-129, 1999.
  4. D. H. Wang, W. I. Kim and J. S. Lim, "The mechanism and detection of tool fracture using sensor fusion in cutting force and AE signals for small diameter ball-end milling," J. of KSMPE, Vol. 3, No. 3, pp. 24-31, 2004.
  5. Lee, J. Y., Kim, C. H., and Sea, C. W., "Plating hardness and its effect to the form accuracy in shaping of corner cube on cu-plated steel plate using a single diamond tool," Journal of KSMPE, Vol. 13, No. 5, pp. 64-69, 2014.
  6. Noh, Y. H., "A study on surface roughness of aluminum 7075 to nose radius and cooling method in CNC lathe machining," Journal of KSMPE, Vol. 14, No. 4, pp. 85-91, 2015.
  7. Chen, T. C. and Hong, H., "Comparison of the tool life of tungsten carbides coated by multi-layer TiCN and TiAlCN for end mills using the Taguchi method," Journal of Materials Processing Technology, No. 123, pp. 1-4, 2002

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