Keyphrases
Dispersion-strengthened Tungsten
100%
Burning Plasma
100%
Tungsten Alloy
100%
Plasma-material Interface
100%
Plasma-facing Components
100%
Ultrafine
100%
Tungsten
50%
Plasma Burning
33%
Fusion Reactor
33%
Armour Materials
25%
Molybdenum
16%
Steady State
16%
Long Pulse
16%
Irradiation
16%
Material Development
16%
Material Interfaces
16%
Refractory Metals
16%
Radiation Tolerance
16%
High Temperature
16%
Self-healing Materials
8%
Dispersoids
8%
Heat Flux
8%
Helium Behaviour
8%
Characteristic Behavior
8%
Plasma-induced
8%
Reactor Conditions
8%
Extreme Environments
8%
Fusion Energy
8%
Department of Energy
8%
Performance Issues
8%
Embrittlement
8%
Brittle Fracture
8%
Energy Science
8%
Fusion Condition
8%
Low-Z Materials
8%
Graphite
8%
Tungsten Impurity
8%
Surface Morphology
8%
Beryllium
8%
Early Career Award
8%
Pulsed Regime
8%
Hydrogen Retention
8%
Plasma Science
8%
Liquid Metal
8%
Hydrogen Isotope Retention
8%
Knowledge Gap Hypothesis
8%
Interface Studies
8%
Surface Composition
8%
Unique Perspectives
8%
Science Workshop
8%
Nanotechnology
8%
Blister
8%
Scientific Materials
8%
Compositional Properties
8%
Mesoscale Materials
8%
Plasma-material Interactions
8%
Tungsten-based Materials
8%
Tritium Retention
8%
High Thermal Conductivity
8%
Interface Properties
8%
Energy Fusion
8%
Morphological Evolution
8%
Impurity Emission
8%
High Melting Point
8%
Pulsed Plasma
8%
Self-adaptive Materials
8%
Incubation Regime
8%
Intensive Development
8%
Radiation Resistance
8%
Process Composition
8%
Interface Research
8%
Reactor
8%
Magnetic Fusion Device
8%
Core Plasma
8%
Fusion nuclear Science
8%
Hydrogen Irradiation
8%
Interface Fusion
8%
Advanced Materials
8%
Plasma Operation
8%
Helium Irradiation
8%
Discovery Research
8%
Scientific Missions
8%
Lack of Understanding
8%
Thermonuclear Fusion Reactor
8%
Nanostructures
8%
Spark Plasma Sintering
8%
Harsh Environment
8%
Material Design
8%
Materials Science
8%
Multiscale Interactions
8%
Reactor Operation
8%
Retention Mechanism
8%
Thermomechanical Test
8%
Knowledge Gaps
8%
Function Relationship
8%
Microstructure Effect
8%
Tungsten Surface
8%
Hypothesis-driven
8%
Engineering
Plasma Facing Component
100%
Renewals
100%
Material Interface
100%
Nuclear Reactor
21%
Fits and Tolerances
21%
Tritium
7%
Mesoscale
7%
Plasma-Materials Interaction
7%
Embrittlement
7%
Material Development
7%
Spark Plasma Sintering
7%
Extreme Condition
7%
Department of Energy
7%
High Melting Point
7%
Development Phase
7%
High Thermal Conductivity
7%
Intrinsic Property
7%
Dispersoid
7%
Mechanical Testing
7%
Limitations
7%
Fusion Energy
7%
Nuclear Fusion
7%
Multiscale
7%
Brittle Fracture
7%
Material Science
Interface (Material)
100%
Tungsten Alloys
100%
Tungsten
83%
Molybdenum
16%
Refractory Metal
16%
Novel Material
8%
Surface Morphology
8%
Liquid Metal
8%
Thermal Conductivity
8%
Spark Plasma Sintering
8%
Advanced Material
8%
Beryllium
8%
Embrittlement
8%
Mechanical Testing
8%
Materials Design
8%
Brittle Fracture
8%
Surface Structure
8%
Interface Property
8%