• 389 Citations
  • 7 h-Index
20052020
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Fingerprint Dive into the research topics where David Thomas Allan Matthews is active. These topic labels come from the works of this person. Together they form a unique fingerprint.

Engineering & Materials Science

Wear of materials
Lasers
Steel
Friction
Surface roughness
Pulsed lasers
Stamping
Texturing
Carbides
Coatings
Alloy steel
Textures
Skin
Steel sheet
Skin friction
3D printers
Multilayers
Microstructure
Wear resistance
Hardening
Stainless steel
Temperature
Hardness
Sheet metal
Zinc
Laser pulses
Ablation
Descaling
Metallic glass
Iron
Substrates
Crystallography
Scanning electron microscopy
Tribology
Microfabrication
High strength steel
Cold rolling
Dilution
Laser ablation
Cracks
Laser cladding
Plating
Crack initiation
Paint
Surface structure
Vanadium
Heating
Electron microscopy
Leaching
Surface topography

Chemical Compounds

Steel
Wear of materials
Lasers
Friction
Texturing
Carbides
Textures
Skin
Surface roughness
Stainless Steel
Pulsed lasers
Steel sheet
Skin friction
Stamping
Alloy steel
Multilayers
Hardening
Coatings
Hardness
Microstructure
Sheet metal
Descaling
Wear resistance
Metallic glass
Temperature
Iron
Powders
Vanadium
Crystallography
Laser pulses
Microfabrication
High strength steel
Cold rolling
Dilution
Substrates
Ablation
Laser cladding
Plating
Paint
Surface structure
Scanning electron microscopy
Electron microscopy
Leaching
Microhardness
Wetting
Zinc
Metals
Eutectics
Elasticity
Processing

Physics & Astronomy

General

steels
lasers
ultrashort pulsed lasers
craters
strip
ablation
hardening
fluence
thresholds
high strength steels
textures
high power lasers
pulsed lasers
pulses
microstructure
retraining
sliding
dilution
chemical composition
abrasives
casts
metals
scanning electron microscopy
cracks
inventions
crystals

Chemistry and Materials

zinc
carbides
iron
wear resistance
vanadium
chromium
surface roughness
air
hardness
Laves phases
glass
liquids
coefficient of friction

Engineering

laser ablation
coatings
stamping
YAG lasers
plating

Physics

friction
high speed
roughness
fines
laser beams
wavelengths