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Articles

A circumscribed local interpolation methodology for CNC machining along linear tool paths

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Pages 245-258 | Received 05 Nov 2019, Accepted 04 May 2020, Published online: 09 Jun 2020

References

  • Sun YW, Guo DM, Jia ZY, et al. Iso-parametric Tool Path Generation from Triangular Meshes for Free-form Surface Machining. Int J Adv Manuf Technol. 2006;28(7–8):721–726.
  • Huang KT, Zhang Z, Gong H, et al. Constructing Smooth Tool Orientation Field Based on Radial Basis Function for 5-axis Machining. Int J Adv Manuf Technol. 2017;91(1–4):1369–1379.
  • Luo M, Zhang DH, Wu BH, et al. Material Removal Process Optimization for Milling of Flexible Workpiece considering Machining Stability. Proc Inst Mech Eng Part B J Eng Manufact. 2011;225(8):1263–1272.
  • Yau HT, Kuo MJ. NURBS Machining and Feed Rate Adjustment for High-speed Cutting of Complex Sculptured Surfaces. Int J P Res. 2001;39(1):21–41.
  • Yeh SS, Su HC. Implementation of Online NURBS Curve Fitting Process on CNC Machine S. Int J Adv Manuf Technol. 2009;40(5–6):531–540.
  • Yau HT, Wang JB. Fast Bezier Interpolator with Real-time Lookahead Function for High-accuracy Machining. Int J Mach Tools Manuf. 2007;47(10):1518–1529.
  • Wang JB, Yau HT. Real-time NURBS Interpolator: application to Short Linear Segments. Int J Adv Manuf Technol. 2009;41(11-12(11–12):1169–1185.
  • Wang Y, Yang D, Liu Y. A Real-time Look-ahead Interpolation Algorithm Based on Akima Curve Fitting. Int J Mach Tools Manuf. 2014;85:122–130.
  • Tsai M-S, Nien H-W, Yau H-T. Development of a Real-time Look-ahead Interpolation Methodology with Spline-fitting Technique for High-speed Machining. Int J Adv Manuf Technol. 2010;47(5–8):621–638.
  • Bi Q, Wang Y, Zhu L, et al. A Practical Continuous-curvature Bézier Transition Algorithm for High-speed Machining of Linear Tool Path. J Intell Rob Syst. 2011;7102:465–476.
  • Sencer B, Ishizaki K, Shamoto E. A Curvature Optimal Sharp Corner Smoothing Algorithm for High-speed Feed Motion Generation of NC Systems along Linear Tool Paths. Int J Adv Manuf Technol. 1977-1992;76(9):2015.
  • Zhao H, Zhu LM, Ding H. A Real-time Look-ahead Interpolation Methodology with Curvature-continuous B-spline Transition Scheme for CNC Machining of Short Line Segments. Int J Mach Tools Manuf. 2013;65:88–98.
  • Sun SJ, Lin H, Zheng LM, et al. A Real-time and Look-ahead Interpolation Methodology with Dynamic B-spline Transition Scheme for CNC Machining of Short Line Segments. Int J Adv Manuf Technol. 2016;84(5–8):1359–1370.
  • Yang JX. AlexanderYuen, “An Analytical Local Corner Smoothing Algorithm for Five-axis CNC Machining,”. Int J Mach Tools Manuf. 2017;123:22–35.
  • Xu F, Sun Y. A Circumscribed Corner Rounding Method Based on Double Cubic B-splines for a Five-axis Linear Tool Path. Int J Adv Manuf Technol. 2018;94(1–4):451–462.
  • Sencer B, Ishizaki K, Shamoto E. High Speed Cornering Strategy with Confined Contour Error and Vibration Suppression for CNC Machine Tools. CIRP Ann Manufact Technol. 2015;64(1):369–372.
  • Zhang Q, Gao X-S, Li H-B, et al. Minimum Time Corner Transition Algorithm with Confined Feedrate and Axial Acceleration for Nc Machining along Linear Tool Path. Int J Adv Manuf Technol. 2017;89(1–4):941–956.
  • Fan W, Lee CH, Chen JH. A Realtime Curvature-smooth Interpolation Scheme and Motion Planning for CNC Machining of Short Line Segments. Int J Mach Tools Manuf. 2015;96:27–46.
  • Leng H, Wu Y, Pan X. Research on Flexible Acceleration and Deceleration Method of NC System. Proc Int Technol Innovation Conf. 2006;524:1953–1956.

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