Automated Drill Modeling for Drilling Process Simulation

Author:

Vijayaraghavan Athulan1,Dornfeld David A.1

Affiliation:

1. Laboratory for Manufacturing and Sustainability, University of California at Berkeley, 1115 Etcheverry Hall, Berkeley, CA 94720-1740

Abstract

Accurate models of two-flute conical twist drills are needed for finite element simulations of the drilling process. Existing drill designing methods rely extensively on discretized analytical equations to describe the drill and different sets of equations that need to be formulated as the drill design changes. This paper presents a method to create accurate models of two-flute conical twist drills using solid-modeling techniques, which addresses some of these shortcomings. Boolean operations are used to mimic the drill manufacturing steps and generate the fully designed drill. The drills generated by this method have been used in finite element simulations to study the effect of drill point geometry on burr formation in drilling.

Publisher

ASME International

Subject

Industrial and Manufacturing Engineering,Computer Graphics and Computer-Aided Design,Computer Science Applications,Software

Reference19 articles.

1. Strategies for Preventing and Minimizing Burr Formation;Dornfeld

2. Examples of FEM Application in Manufacturing Technology;Klocke;J. Mater. Process. Technol.

3. Vijayaraghavan, A. , 2005, “Drilling of Fiber-Reinforced Plastics — Tool Modeling and Defect Prediction,” Masters report, University of California, Berkeley.

4. Gardner, J D., , 2006, “Investigation of the Effect of Drill Geometry on Burr Formation Using Finite Element Modeling,” Masters report, University of California, Berkeley.

5. Some Experiments on the Influence of Various Factors on Drill Performance;Galloway;Trans. ASME

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