Engineering
Fuel Pellet
75%
Spark Plasma Sintering
50%
Thermal Conductivity
50%
Thermal Performance
37%
Multiscale
25%
Mass Gain
25%
Uranium Dioxide
25%
Fuel System
25%
Composite Material
25%
Sintering
25%
Powder Blending
25%
Powdered Material
25%
Matrix Material
25%
Sintering
25%
Burnup
25%
High Thermal Conductivity
20%
High Temperature Reactors
17%
Cycle Length
16%
Fission Product
12%
Nuclear Fuel
12%
High Temperature Gas Reactors
12%
Thermal Cycle
12%
Interconnectivity
12%
Porosity
12%
Thermal Radiation
12%
Internals
12%
Carbon Layer
12%
Sintering Behavior
12%
Operating Temperature
11%
Thermal Oxidation
10%
Neutron Absorption
8%
Reactivity Control
8%
Fuel Composition
8%
Nuclear Fuel
8%
Promising Candidate
8%
Onset Temperature
8%
Gas Release
6%
Nitriding
6%
Thermal Diffusivity
6%
Mixed Phase
6%
Release Rate
6%
Low-Temperature
6%
Combustion Analysis
6%
Microstructure
6%
Maximum Temperature
6%
Nuclear Reactor
6%
Cooled Reactor
5%
Material Grade
5%
Oxidation Rate
5%
Material Science
Uranium
100%
Oxidation Reaction
75%
Thermal Conductivity
55%
Density
54%
Spark Plasma Sintering
50%
Uranium Dioxide
50%
Powder
46%
Composite Material
25%
Silicide
25%
Gadolinium
25%
Molybdenum
25%
Microstructural Analysis
25%
Nitride Compound
25%
Sintering
25%
X-Ray Computed Tomography
25%
Sintering
18%
Coated Fuel Particles
16%
Scanning Electron Microscopy
16%
Nuclear Fuel
13%
Inhomogeneous Material
12%
Differential Scanning Calorimetry
10%
Tomography
8%
Pore Size
8%
Fission Product
8%
Thermogravimetric Analysis
5%
Diffusivity
5%
Combustion Analysis
5%
Partial Oxidation
5%
Nitriding
5%
Krypton
5%
Composite Material
5%
Inert Gas
5%
Boron
5%