Skip to main content
Article
Friction Drilling of Cast Metals
International Journal of Machine Tools and Manufacture
  • F. Scott Miller, Missouri University of Science and Technology
  • Jia Tao
  • Albert Shih
Editor(s)
Dean, T.A.
Abstract

This study investigates the friction drilling process, a nontraditional hole-making technique, for cast metals. In friction drilling, a rotating conical tool is applied to penetrate work-material and create a bushing in a single step without generating chip. The cast aluminum and magnesium alloys, two materials studied, are brittle compared to the ductile metal workpiece material used in previous friction drilling research. The technical challenge is to generate a cylindrical shaped bushing without significant radial fracture or petal formation. Two ideas of pre-heating the workpiece and high speed friction drilling are proposed. Effects of workpiece temperature, spindle speed, and feed rate on experimentally measured thrust force, torque, and bushing shape were analyzed. The thrust force and torque decreased and the bushing shape was improved with increased workpiece temperature. Varying spindle speed shows mixed results in bushing formation of two different work-materials. The energy, average power, and peak power required for friction drilling were calculated and analyzed to demonstrate quantitatively the benefits of workpiece pre-heating and high spindle speed in friction drilling.

Department(s)
Materials Science and Engineering
Keywords and Phrases
  • Friction,
  • Drilling,
  • Cast Metals,
  • Chipless Hole Making
Document Type
Article - Journal
Document Version
Citation
File Type
text
Language(s)
English
Rights
© 2006 Elsevier, All rights reserved.
Publication Date
10-1-2006
Publication Date
01 Oct 2006
Citation Information
F. Scott Miller, Jia Tao and Albert Shih. "Friction Drilling of Cast Metals" International Journal of Machine Tools and Manufacture (2006) ISSN: 0890-6955
Available at: http://works.bepress.com/f-miller/5/