Material Science
Adiabatic Shear Band
44%
Aerogels
13%
Aluminum
18%
Aluminum Alloys
13%
Aluminum Composite
9%
Building Material
10%
Carbon Fiber
17%
Compressive Strength
15%
Copper Alloys
14%
Deformation Mechanism
23%
Density
33%
Density (Specific Gravity)
11%
Dynamic Loads
11%
Electroless Deposition
11%
Explosive
13%
Grain Boundary
17%
Grain Size
15%
Graphene
13%
Heat of Reaction
9%
Heat Treatment
31%
Intermetallics
13%
Martensite
11%
Matrix Composite
8%
Mechanical Property
12%
Mechanical Strength
100%
Microcracks
10%
Microstructural Analysis
12%
Microstructural Evolution
10%
Nanocrystalline
8%
Nanoparticle
8%
Niobium Alloys
18%
Oxidant
13%
Plastic Deformation
12%
Plating
8%
Powder
22%
Powder Metallurgy
24%
Shaped Charge
14%
Silicon Dioxide
9%
Sintering
9%
Sintering Temperature
9%
Solid Solution
12%
Spark Plasma Sintering
17%
Strain Rate
26%
Tantalum Alloys
13%
Tensile Property
12%
Ti-6Al-4V
50%
Titanium Alloys
15%
Tungsten
65%
Ultimate Tensile Strength
16%
Yield Stress
19%
Engineering
Adiabatic Shear Band
29%
Adiabatic Shear Banding
22%
Aerogels
17%
Basalt Fibre
22%
Carbon Steel
8%
Compressive Strength
9%
Critical Failure
9%
Deformation Mechanism
14%
Dynamic Behavior
12%
Dynamic Recrystallization
17%
Energy Engineering
20%
Energy Release
18%
Failure Mechanism
23%
Failure Strain
14%
Flow Stress
13%
Heat Treatment
18%
High Strain Rate
11%
Hot Rolling
11%
Hydrostatic Extrusion
22%
Impact Velocity
6%
Infiltration Method
8%
Initial Temperature
8%
Intermetallics
13%
Loading Condition
12%
Low Temperature Toughness
8%
Low-Temperature
8%
Microstructure
78%
Microstructure Observation
7%
Mo Content
9%
Penetration Depth
14%
Penetration Performance
36%
Penetrator
8%
Plastic Deformation
10%
Powder Metallurgy
6%
Rates of Strain
8%
Reactive Material
13%
Rod
7%
Shaped Charge
24%
Solid Solution
8%
Spark Plasma Sintering
15%
Steel Plate
12%
Strain
8%
Strain Rate
23%
Subgrains
6%
Tensile Property
12%
Tensile Test
7%
Tensiles
12%
Ti-6al-4v
22%
Ti-6al-4v Alloy
13%
Ultimate Tensile Strength
7%