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Geometric reasoning for mill-turn machining process planning
Authors:Yong Se Kim  Youngjin Kim  Frederic Pariente  Eric Wang
Affiliation:

University of Illinois at Urbana-Champaign 104 S. Mathews Ave., Urbana, Illinois 61801, USA

Abstract:An integrated system to support both product and manufacturing process design should be such that (1) the part design can be evaluated and redesigned based on manufacturability analysis and (2) the manufacturing processes can be selected efficiently and flexibly exploiting product information provided by part design representations.

In this paper, we describe the feature-based geometric reasoning system for part modeling and process planning as applied to mill-turn machined parts. The feature recognition system based on convex decomposition and the mapping method to relate the negative feature volumes to machining process classes are applied to mill-turn parts. Also, the geometry-based machining precedence relations have been generated for various alternative machining feature decompositions. The above geometric information is input to mill-turn machining process planning to determine machining process sequences and assignment to multiple spindles and turrets.

Keywords:
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