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Analysis of Cooling Regimes as a Function of Biot Number During Quenching by Immersion
Gamaliel Salazar
, Jean Sebastien Lemyre-Baron
,
Mohammad Jahazi
,
Henri Champliaud
,
Antoine Tahan
École de technologie supérieure
Mechanical Engineering Department
LIPPS - Products, Processes and Systems Engineering Laboratory
DYNAMO - Research team in machine, structure and process dynamics
GREPCI - Power Electronics and Industrial Control Research Group
École de technologie supérieure
Safran Landing Systems
Research output
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Journal Article
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peer-review
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Keyphrases
Cooling Regime
100%
Biot number
100%
Transition Temperature
66%
Convection
66%
Cooling Curve
66%
Cooling Rate
33%
Industrial Environment
33%
Temperature Rate
33%
Nonlinear Behavior
33%
Linear Behavior
33%
Thermal Modeling
33%
Time Rate
33%
In Situ Conditions
33%
Condition Information
33%
Transition Duration
33%
Cooling Time
33%
Immersion Quenching
33%
Correlation Model
33%
Transition Boiling
33%
Boiling Transition
33%
Film Boiling
33%
Nucleate Boiling
33%
Forms of Time
33%
Engineering
Cooling Curve
100%
Biot Number
100%
Cooling Rate
50%
Industrial Environment
50%
Quenching
50%
Temperature Time
50%
Nonlinear Behavior
50%
Test Data
50%
Linear Behavior
50%
Characteristic Point
50%
Reference Point
50%
Cooling Time
50%
Correlation Model
50%
Nucleate Boiling
50%
Film Boiling Regime
50%