Skip to main navigation
Skip to search
Skip to main content
Penn State Home
Help & FAQ
Link opens in a new tab
Search content at Penn State
Home
Researchers
Research output
Research units
Equipment
Grants & Projects
Prizes
Activities
Modeling the transport phenomena during hybrid laser-MIG welding process
J. Zhou
, W. H. Zhang
, H. L. Tsai
, S. P. Marin
, P. C. Wang
, R. Menassa
School of Engineering (Behrend)
Research output
:
Contribution to journal
›
Conference article
›
peer-review
7
Link opens in a new tab
Scopus citations
Overview
Fingerprint
Fingerprint
Dive into the research topics of 'Modeling the transport phenomena during hybrid laser-MIG welding process'. Together they form a unique fingerprint.
Sort by
Weight
Alphabetically
Keyphrases
Transport Phenomena
100%
Hybrid laser-MIG Welding
100%
Laser-MIG Hybrid Welding
100%
MIG Welding Process
100%
Fluid Flow
66%
Weld Pool
66%
Three-dimensional (3D)
33%
Mathematical Model
33%
Liquid Phase
33%
Free Surface
33%
Popular
33%
Laser Welding
33%
Keyhole
33%
Mushy Zone
33%
Pulsed Laser
33%
Solid Phase
33%
Welding Technology
33%
Dynamic Interaction
33%
Numerical Techniques
33%
Thermal Radiation
33%
Multiple Reflections
33%
Weld Bead
33%
Melting Process
33%
Weld Pool Dynamics
33%
Latent Heat
33%
Solidification Process
33%
Heat Mass Transfer
33%
Trial-and-error Method
33%
Volume of Fluid Method
33%
Enthalpy Method
33%
Keyhole Dynamics
33%
Continuum Formulation
33%
Porosity Formation
33%
Welding Method
33%
Transient Keyhole
33%
Fresnel Absorption
33%
MIG Welding
33%
Weld Bead Shape
33%
Inverse Bremsstrahlung Absorption
33%
Computer Animation
33%
Transfer Flow
33%
Keyhole Wall
33%
Physics
Fluid Flow
100%
Transport Phenomena
100%
Liquid Phase
50%
Mathematical Model
50%
Mushy Zone
50%
Pulsed Laser
50%
Enthalpy
50%
Bremsstrahlung
50%
Thermal Radiation
50%
Laser Welding
50%
Porosity
50%
Melting Point
50%
Mass Transport
50%
Latent Heat
50%
Material Science
Fluid Flow
100%
Transport Phenomena
100%
Laser Beam Welding
50%
Solidification
50%