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Interlayers for diamond-coated cutting tools
E. R. Kupp
, W. R. Drawl
, K. E. Spear
Materials Science and Engineering
Research output
:
Contribution to journal
›
Article
›
peer-review
56
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Scopus citations
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Keyphrases
Diamond Coating
100%
Cobalt
66%
WC-Co
66%
Boron Containing
66%
Chemical Vapor Deposition Diamond
66%
Diamond
33%
Graphite
33%
Chemical Vapor Deposition
33%
Diffusion Barrier
33%
Tool Materials
33%
Diffusivity
33%
Chemical Bonding
33%
Wear Resistance
33%
Diamond nucleation
33%
Poor Adherence
33%
Carbon Diffusion
33%
Compositional Grading
33%
Thermal Expansion Mismatch
33%
Coated Tools
33%
Coating-substrate Interface
33%
Engineering
Diamond
100%
Interlayer
100%
Chemical Vapor Deposition
75%
Vapor Deposition
75%
Diamond Coating
50%
Experimental Result
25%
Diffusivity
25%
Diffusion Barrier
25%
Wear Resistance
25%
Substrate Interface
25%
Coated Tool
25%
Material Science
Diamond
100%
Cutting Tool
100%
Chemical Vapor Deposition
50%
Cobalt
33%
Boron
33%
Film
33%
Nucleation
16%
Machining
16%
Thermal Expansion
16%
Diffusivity
16%
Tool Material
16%
Wear Resistance
16%
Chemical Bonding
16%
Earth and Planetary Sciences
Interlayer
100%
Vapor Deposition
100%
Nucleation
33%
Diffusivity
33%
Thermal Expansion
33%