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Heat transfer and fluid flow in additive manufacturing
A. Raghavan
, H. L. Wei
,
T. A. Palmer
,
T. Debroy
Materials Research Institute (MRI)
Materials Science and Engineering
Research output
:
Contribution to journal
›
Article
›
peer-review
134
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Scopus citations
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Dive into the research topics of 'Heat transfer and fluid flow in additive manufacturing'. Together they form a unique fingerprint.
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Keyphrases
Fluid Flow
100%
Laser Welding
100%
Heat Transfer Flow
100%
Heat Fluid
100%
Additive Manufacturing
100%
Surface Geometry
100%
Mechanical Properties
66%
Melt Pool
66%
Solidification Parameters
66%
Process Control
33%
Control System
33%
Structure-property Relationships
33%
Surface Temperature
33%
Control Method
33%
Physical Processes
33%
Numerical Simulation
33%
Processing Parameters
33%
Cooling Rate
33%
Temperature Rise
33%
Penetration Depth
33%
Power Level
33%
Microstructure Properties
33%
Deposition Process
33%
Additive Manufacturing Process
33%
Mathematical Modeling
33%
Final Microstructure
33%
Temperature Parameter
33%
Laser Additive Manufacturing
33%
Ti-6Al-4V (Ti64)
33%
Geometric Variation
33%
Molten Pool
33%
Laser Processing Parameters
33%
Deposited Material
33%
Manufacturing Control
33%
Solidification Structure
33%
Thermography
33%
Subsurface Temperature
33%
Engineering
Fluid Flow
100%
Laser Beam Welding
100%
Additive Manufacturing
100%
Energy Engineering
66%
Melt Pool
66%
Solidification Parameter
66%
Subsurface
33%
Process Control
33%
Computer Simulation
33%
Microstructure
33%
Control System
33%
Processing Parameter
33%
Feedback Control System
33%
Cooling Rate
33%
Temperature Increase
33%
Similarities
33%
Mathematical Modeling
33%
Penetration Depth
33%
Deposition Process
33%
Final Microstructure
33%
Power Level
33%
Additive Manufacturing Process
33%
Temperature Parameter
33%
Ti-6al-4v
33%
Laser Processing Parameter
33%
Deposited Material
33%
Process Information
33%
Solidification Structure
33%
Manufacturing Process Control
33%
Material Science
Manufacturing Process Control
33%