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Tool path planning for 5-Axis flank milling of ruled surfaces considering CNC linear interpolation
Journal article   Peer reviewed

Tool path planning for 5-Axis flank milling of ruled surfaces considering CNC linear interpolation

Chih-Hsing Chu, Ping-Han Wu and Wei-Tai Lei
Journal of Intelligent Manufacturing, Vol.23(3), pp.471-480
06/2012

Abstract

Developability;Five-Axis machining;Flank milling;Linear interpolation;Ruled surface;Tool path planning

This paper investigates tool path planning for 5- axis flank milling of ruled surfaces in consideration of CNC linear interpolation. Simulation analyses formachining error show insights into the tool motion that generates a precision machined surface. Contradicting to previous thoughts, the resultant tool path does not necessarily produce minimal machining error when the cutter contacts the rulings of a developable surface. This effect becomes more significant as the distance between two cutter locations is increased. An optimizing approach that adjusts the tool position locally may not produce minimal error as far as the entire surface is concerned. The optimal tool path computed by a global search scheme based on dynamic programming supports this argument. A flank milling experiment and CMM measurement further validate the findings of this work. © Springer Science+Business Media, LLC 2010.

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