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Plasma surface treatment of aerospace materials for enhanced adhesive bonding
W. Leahy
, V. Barron
, M. Buggy
,
T. Young
, A. Mas
, F. Schue
, T. McCabe
, M. Bridge
School of Engineering
University of Limerick
Trinity College Dublin
Sciences Et Techniques Du Langeudoc
Research output
:
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Article
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peer-review
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Engineering
Aerospace Material
100%
Bond Strength
100%
Poly-Phenylene Sulphide
100%
Long-Term Durability
100%
Interfacial Energy
100%
Polyetheretherketone
50%
Ray Photoelectron Spectroscopy
50%
Atomic Force Microscopy
50%
Aircraft Structure
50%
Energy Surface
50%
Plasma Treatment
50%
Metallic Component
50%
Lap Shear Test
50%
Surface Wettability
50%
Oxygen Gas
50%
Adhesive Bond
50%
Pure Titanium
50%
Material Science
Titanium
100%
Adhesive Bonding
100%
Aerospace Material
100%
Surface Treatment
100%
Surface Roughness
66%
Surface Energy
66%
Composite Material
66%
Surface (Surface Science)
66%
Polyphenylene
66%
Scanning Electron Microscopy
33%
Wettability
33%
Aircraft
33%
Surface Characterization
33%
Atomic Force Microscopy
33%
X-Ray Photoelectron Spectroscopy
33%
Polyetheretherketone
33%
Contact Angle
33%
Shear Testing
33%
Glass Fiber
33%