Engineering
Contact Surface
33%
Coupled Model
33%
Current Pulse
66%
Durables
33%
Elastic Stress Field
33%
Energy Conversion Efficiency
33%
Finite Difference Method
33%
Finite Element Analysis
33%
Flow Characteristic
33%
High Current Density
33%
Liquid Film
100%
Liquid Metal
66%
Material Interface
33%
Melting Point
66%
Power Level
33%
Reduction Ratio
33%
Sliding Contact
66%
Temperature Distribution
33%
Thermal Boundary Condition
33%
Material Science
Density
33%
Finite Difference Method
33%
Finite Element Method
33%
Interface (Material)
33%
Liquid Film
100%
Liquid Metal
66%
Lubrication
100%
Sliding Contact
66%
Stress Field
33%
Surface (Surface Science)
33%