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The influence of temperature on the wear mode and deterioration of coatings used for titanium aircarft engine components
A. J. Freimanis
,
A. E. Segall
, J. C. Conway
, E. J. Whitney
Engineering Science and Mechanics
Research output
:
Contribution to journal
›
Article
›
peer-review
25
Scopus citations
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Dive into the research topics of 'The influence of temperature on the wear mode and deterioration of coatings used for titanium aircarft engine components'. Together they form a unique fingerprint.
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Keyphrases
Rutile
100%
Temperature Effect
100%
Engine Components
100%
Wear Mode
100%
Testing Procedures
50%
Gross Slip
50%
Cu-Ni
50%
Low Temperature
25%
High Temperature
25%
Elevated Temperature
25%
Compressor Blade
25%
High-cycle
25%
Tungsten Carbide
25%
Jet Engine
25%
Low Duty Cycle
25%
Operational Temperature
25%
Fretting Wear
25%
Nickel Coating
25%
Cobalt-molybdenum
25%
Slip Displacement
25%
Deterioration Mechanism
25%
Gross Slip Regime
25%
Compressor Rotor
25%
Cobalt Coating
25%
Carbide Coating
25%
Titanium Interface
25%
Pure Molybdenum
25%
Material Science
Titanium
100%
Cobalt
40%
Molybdenum
40%
Tungsten
20%
Carbide
20%
Fretting Wear
20%
Engineering
Deterioration Mechanism
100%