Skip to main navigation
Skip to search
Skip to main content
ÉTS Research Discovery Portal Home
Help & FAQ
Link opens in a new tab
Français
English
Search content at ÉTS Research Discovery Portal
Home
Profiles
Research units
Research output
Datasets
Press/Media
Heat-Assisted Metal Spinning: Review
Sergio Elizalde
,
Mohammad Jahazi
,
Henri Champliaud
École de technologie supérieure
Mechanical Engineering Department
LIPPS - Products, Processes and Systems Engineering Laboratory
DYNAMO - Research team in machine, structure and process dynamics
École de technologie supérieure
Research output
:
Contribution to journal
›
Review Article
›
peer-review
1
Citation (Scopus)
Overview
Fingerprint
Fingerprint
Dive into the research topics of 'Heat-Assisted Metal Spinning: Review'. Together they form a unique fingerprint.
Sort by
Weight
Alphabetically
Keyphrases
Adaptive Machine Learning
33%
Al-Mg
33%
Al-Ti
33%
Assist-as-needed Control
33%
Conventional Spinning
33%
Coupled Thermo-mechanical
33%
Data-driven Optimization
33%
Defect Formation
33%
Defect Mitigation
33%
Digital Twin
33%
Dynamic Recrystallization
33%
Elevated Temperature
33%
Energy Cost
33%
Energy Efficiency
33%
Feed Rate
33%
Finite Element Simulation
33%
Flow Forming
33%
Force Control
33%
Formability
33%
Formability Prediction
33%
Forming Force
33%
Furnace Flame
33%
Furnace Gases
33%
Gas Convection
33%
Global Heating
33%
Grain Growth
33%
Heat-assisted
100%
Heating Strategy
33%
High Ductility
33%
High Strength Steel
33%
Hot Gas
33%
In Situ Temperature Measurement
33%
Incremental Forming
33%
Key Process Parameters
33%
Local Heating
33%
Measure Control
33%
Metal Spinning
100%
Microstructural Evolution
33%
Microstructure Control
33%
Ni-based Alloy
33%
Phase Transformation
33%
Properties Tailoring
33%
Rate Reduction
33%
Real-time Sensing
33%
Remaining Challenges
33%
Shear Flow
33%
Shear Spinning
33%
Spin Forming
33%
Spindle Speed
33%
Temperature Uniformity
33%
Thermal Management
33%
Thickness Reduction
33%
Transformation Dynamics
33%
Engineering
Alloy
50%
Conservation of Energy
50%
Digital Twin
50%
Dynamic Recrystallization
50%
Elevated Temperature
50%
Feed Rate
50%
Final Property
50%
Finite Element Simulation
50%
Forming Force
50%
Furnace Gas
50%
High Strength Steel
50%
Hot Gas
50%
Incremental Forming
50%
Key Process Parameter
50%
Learning System
50%
Local Heating
50%
Metal Spinning
100%
Microstructural Evolution
50%
Ni Alloy
50%
Phase Transition
50%
Spindle Speed
50%
Thickness Reduction
50%
Material Science
Alloy
50%
Crystallization
50%
Digital Twin
50%
Ductility
50%
Elevated Temperature
50%
Finite Element Simulation
50%
Flow Forming
50%
High Strength Steel
50%
Metal Spinning
100%
Microstructural Evolution
50%
Nickel Alloy
50%
Thermal Management
50%