Material Science
Aerogels
16%
Aerospace Vehicle
16%
Al2O3
24%
Battery (Electrochemical Energy Engineering)
54%
Carbon Carbon Composites
33%
Carbon Fiber
100%
Cathode
16%
Ceramic Coating
16%
Composite Material
23%
Composite Structure
16%
Compressive Strength
16%
Debonding
25%
Density
16%
Elastic Deformation
16%
Elastic Moduli
30%
Energy Density
95%
Flexural Strength
47%
Fracture Toughness
20%
Functional Surface
66%
Grain Boundary
16%
Graphene
37%
Impact Strength
16%
Lithium Ion Battery
50%
Magnetic Particle
16%
Mechanical Property
30%
Mechanical Strength
59%
Metamaterial
16%
Nanocrystalline Material
69%
Nanoindentation
19%
Nanoparticle
16%
Oxidation Reaction
77%
Oxidation Resistance
30%
Polymer Matrix Composites
33%
Porous Carbon
16%
Refractory Material
16%
Sandwich Panel
16%
Shear Strength
38%
Silicon Carbide
33%
Single Crystal
66%
Space Vehicle
16%
State-of-Charge
16%
Stereolithography
16%
Surface Energy
79%
Tensile Property
33%
Thermal Insulation
16%
Thermal Shock
33%
Thin Films
33%
Three Dimensional Printing
25%
Ultimate Tensile Strength
44%
Young's Modulus
45%
Engineering
Axisymmetric
16%
Battery (Electrochemical Energy Engineering)
18%
Bending Strength
50%
Carbon Composite
16%
Collection Efficiency
16%
Compressive Strength
16%
Computer Simulation
22%
Constitutive Model
16%
Contact Problem
16%
Coupling Effect
33%
Debonding
16%
Deep Learning
16%
Deformation Behavior
38%
Demonstrates
16%
Dependent Surface
33%
Dimensional Surface
16%
Directional
58%
Energy Density
44%
Energy Engineering
31%
Energy Surface
20%
Experimental Result
23%
Fiber-Reinforced Polymer
33%
Graphene
25%
Holding Time
27%
Hydrophobic
22%
Increasing Temperature
34%
Influencing Factor
20%
Lithium-Ion Batteries
33%
Lubricant
16%
Magnetic Field
16%
Microstructure
25%
Microstructure Evolution
16%
Nanomaterial
33%
Nanoparticle
16%
Nonlinearity
16%
One Dimensional
16%
Potential Energy
19%
Relative Humidity
33%
Sandwich Structures
16%
Shear Strength
22%
Size Effect
43%
State of Charge
16%
Strain Field
16%
Surface Effect
66%
Temperature Dependence
19%
Temperature Increase
49%
Thin Films
33%
Two Dimensional
33%
Ultimate Tensile Strength
29%
Young's Modulus
43%