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Material Science
Uranium Dioxide
100%
Transmission Electron Microscopy
90%
Grain Boundary
87%
Density
79%
Carbide
78%
Corrosion
75%
Oxide Compound
62%
Surface (Surface Science)
61%
Thermal Conductivity
56%
Scanning Transmission Electron Microscopy
45%
Energy-Dispersive X-Ray Spectroscopy
44%
Fracture Toughness
42%
Composite Material
40%
Flexural Strength
40%
Uranium
39%
Crystal Structure
38%
Annealing
37%
Fission Product
37%
Hot Pressing
36%
Point Defect
35%
Ion Bombardment
35%
Scanning Electron Microscopy
35%
Young's Modulus
34%
Zirconium
33%
Nuclear Fuel
33%
Aluminum Oxide
32%
Aluminum
32%
Proton Irradiation
32%
Single Crystal
31%
Oxidation Resistance
30%
Stainless Steel
30%
Thorium
29%
X-Ray Diffraction
29%
Tomography
28%
Electron Microscopy
28%
Microstructure Evolution
27%
Atom Probe
25%
Thermal Property
25%
Neutron Irradiation
25%
Crystal Defect
24%
Lanthanide Series
23%
Microstructural Evolution
23%
Morphology
20%
Elastic Property
19%
Cerium Oxide
19%
Krypton
19%
Elastic Moduli
18%
Zirconia
18%
Synthesis Reaction
17%
Thermal Expansion
17%
Keyphrases
Irradiation
89%
Mechanical Properties
71%
High Temperature
64%
Dislocation Loops
63%
Grain Boundary
59%
Transmission Electron Microscopy
57%
U3Si2
52%
Microstructure
51%
Neutron-irradiated
45%
Thermal Conductivity
43%
Corrosion
41%
Al-Si
40%
Proton
37%
Room Temperature
37%
Defect Evolution
35%
Annealing
34%
Zr2Al3C4
32%
FeCrAl
31%
Single Crystal
31%
Microstructure Evolution
31%
Thermal Properties
30%
Proton Irradiation
30%
X Ray Diffraction
30%
Al4C3
29%
Additive Manufacturing
29%
Scanning Transmission Electron Microscopy
29%
Thermal Transport
28%
Microstructural Evolution
28%
Fission Products
27%
Radiation Effects
27%
Interdiffusion Behavior
26%
Metallic Fuel
26%
Ion Irradiation
26%
Young's Modulus
26%
Radiation Damage
25%
Zirconia
25%
ThO2
24%
In Situ Transmission Electron Microscopy
24%
Thorium Oxide
24%
Hot-pressing Process
24%
In Situ Synthesis
23%
Oxides
23%
Oxidation Resistance
22%
Atom Probe Tomography
22%
Ni-20Cr
22%
Carbides
22%
Graphite
21%
Energy Dispersive X-ray Spectroscopy
20%
Neutron Irradiation
19%
Molten Salt Corrosion
19%
Engineering
Dislocation Loop
64%
Thermal Conductivity
45%
Stainless Steel
31%
Nuclear Fuel
29%
Room Temperature
28%
Interdiffusion
26%
Fission Product
25%
Microstructural Evolution
25%
Nanoscale
24%
Light Water Reactors
24%
Atom Probe Tomography
23%
Burnup
22%
X Ray Diffraction
21%
Energy dispersive spectrometry
21%
Gas Bubble
19%
Solid Solution
17%
Temperature Range
17%
Phase Stability
17%
Radiation Effect
17%
Nuclear Reactor
17%
Polycrystalline
16%
Low-Temperature
16%
Superlattice
15%
Fast Reactor
15%
Stress Corrosion Cracking
14%
Austenitic Stainless Steel
14%
Focused Ion Beam
14%
Extended Defect
13%
Rigidity
13%
Diffusion Couple
13%
Platelet
12%
Microstructure Evolution
11%
Face-Centered Cubic
11%
High Resolution
11%
In Situ TEM
11%
Exposure Time
11%
Light Water
10%
Induced Defect
9%
Additive Manufacturing
9%
Oxidation Resistance
9%
Uranium Dioxide
9%
Structural Materials
9%
Dynamic Model
9%
Cr Depletion
9%
Boltzmann Equation
8%
Experimental Investigation
8%
Alloying Element
8%
Electron Energy
8%
Degradation Mechanism
8%
Energy Dissipation
8%