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The effect of flow orientation on nitriding process
I. Bedii Özdemir
*
, Firat Akar
*
Corresponding author for this work
Department of Mechanical Engineering
Istanbul Technical University
Research output
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Contribution to journal
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Article
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peer-review
6
Citations (Scopus)
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Keyphrases
Nitriding Process
100%
Reaction Speed
100%
Flow Orientation
100%
Boundary Layer
50%
CFD Simulation
50%
Gas Flow
50%
Gas Phase
50%
Gas Concentration
50%
Flow Direction
50%
Flow Features
50%
Phase Gradient
50%
Catalytic Processes
50%
Decomposition Rate
50%
Surface Concentration
50%
Ammonia Decomposition
50%
High Gas
50%
Gas Temperature
50%
Whole-body
50%
Grid Turbulence
50%
Complex Bodies
50%
Basket Design
50%
Engineering
Nitriding Process
100%
Boundary Layer
50%
Computational Fluid Dynamics
50%
Flow Direction
50%
Phase Gradient
50%
Gas-Phase
50%
Gas Flow
50%
Surface Concentration
50%
Gas Temperature
50%
Early Work
50%
Ammonia Decomposition
50%
Grid Turbulence
50%
Complex Body
50%
Material Science
Nitriding
100%
Gas Flow
50%
Boundary Layer
50%
Catalysis
50%
Computational Fluid Dynamics
50%