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3-D simulation model for gas-assisted laser cutting
M. S. Gross, I. Black, W. H. Müller
School of Engineering & Physical Sciences
Research output
:
Contribution to journal
›
Article
›
peer-review
21
Citations (Scopus)
Overview
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Dive into the research topics of '3-D simulation model for gas-assisted laser cutting'. Together they form a unique fingerprint.
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Earth and Planetary Sciences
Laser Cutting
66%
Gas
66%
Approach
66%
Simulation
66%
Melt
66%
Flow Distribution
33%
Evaporation
33%
State of the Art
33%
Numerical Model
33%
Parallel Computer
33%
Kinetic Theory
33%
Gas Jet
33%
Substrate
33%
Cost
33%
Software
33%
Surface Pressure
33%
Bar
33%
Constraint
33%
Complexity
33%
Adjusting
33%
Shield
33%
Pool
33%
Engineering
Simulation
66%
Computer Simulation
33%
Numerical Model
33%
Evaporation
33%
Dynamic Behavior
33%
Current Limit
33%
Microscale
33%
Melt Pool
33%
Physical Domain
33%
Assist Gas
33%
Substrates
33%
Complexity
33%
Constraints
33%
Computer Science
Simulation
66%
Simulation Model
33%
Dynamic Behavior
33%
Application Software
33%
Physical Domain
33%
Hardware
33%
Complexity
33%
Numerical Simulation
33%
Material Science
Thermal Stress
100%
Gas
66%
Liquid Films
33%
Bar (Metal)
33%
Medicine and Dentistry
Health Care Cost
33%
Therapeutic Procedure
33%