A study on the machinability of advanced arc PVD AlCrN-coated tungsten carbide tools in drilling of CFRP/titanium alloy stacks

Kim, Dave, Swan, Sam R., He, Bin, Khominich, Viktor, Bell, Eric, Lee, Seok-Woo and Kim, Tae-Gon 2020, A study on the machinability of advanced arc PVD AlCrN-coated tungsten carbide tools in drilling of CFRP/titanium alloy stacks, Carbon letters, pp. 1-11, doi: 10.1007/s42823-020-00180-8.

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Title A study on the machinability of advanced arc PVD AlCrN-coated tungsten carbide tools in drilling of CFRP/titanium alloy stacks
Author(s) Kim, Dave
Swan, Sam R.
He, Bin
Khominich, Viktor
Bell, Eric
Lee, Seok-Woo
Kim, Tae-Gon
Journal name Carbon letters
Start page 1
End page 11
Total pages 11
Publisher Springer Science and Business Media LLC
Place of publication New York, N.Y.
Publication date 2020
ISSN 1976-4251
2233-4998
Keyword(s) Science & Technology
Physical Sciences
Technology
Chemistry, Multidisciplinary
Materials Science, Multidisciplinary
Chemistry
Materials Science
CFRP-titanium alloy stacks
Carbon fibers
Drilling
Tool wear
AlCrN coating
Hole quality
REINFORCED PLASTICS CFRP
WEAR MECHANISMS
COMPOSITE
TITANIUM
PERFORMANCE
Notes Article in Press
Language eng
DOI 10.1007/s42823-020-00180-8
Indigenous content off
HERDC Research category C1 Refereed article in a scholarly journal
ERA Research output type C Journal article
Grant ID Korea Institute of Indus-trial Technology (KITECH) in the Republic of Korea [grant number JE190014, entitled “Development of machinability optimization in car-bon fiber-reinforced plastics machining system using machine learning algorithm”
Persistent URL http://hdl.handle.net/10536/DRO/DU:30143000

Document type: Journal Article
Collections: Institute for Frontier Materials
GTP Research
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