Engineering
Austenitic Stainless Steel
9%
Ball End Mill
8%
Burrs
8%
Chip Thickness
14%
Computer Simulation
12%
Cutting Edge
14%
Cutting Method
10%
Cutting Performance
10%
Defects
19%
Diamond
29%
Diamond Turning
11%
Electric Discharge Machining
14%
Electrical Discharge
21%
Electroless Nickel
8%
End Mill
21%
End Milling
8%
Experimental Result
15%
Finite Element Method
25%
Finite Element Simulation
8%
Form Accuracy
8%
Fractal Dimension
9%
Glass Surface
8%
Grinding (Machining)
100%
Grinding Force
11%
Grinding Machine
10%
Ground Surface
11%
Heat Treatment
9%
Helix Angle
8%
Hydrodynamics
12%
Material Flow
11%
Mathematical Model
14%
Micro-Lens Array
55%
Microgrooves
33%
Microstructure
36%
Molding Machine
9%
Monocrystal
17%
Moulding Process
35%
Obtains
10%
Precision Glass Moulding
42%
Rake Angle
23%
Setting Tool
11%
Simulation Result
22%
Size Effect
8%
Stainless Steel
11%
Strain
12%
Surface Quality
18%
Surface Topography
10%
Thrust Force
15%
Ti-6al-4v
8%
Ultrasonics
59%
Material Science
Al2O3
8%
Brittleness
6%
Carbide
16%
Carbon Nanotube
7%
Cemented Carbide
6%
Cerium Oxide
7%
Chalcogenides Glass
10%
Coefficient of Friction
7%
Constitutive Modeling
7%
Crystalline Material
6%
Crystallite Size
6%
Cutting Tool
6%
Density
7%
Diamond
38%
Finite Element Method
31%
Finite Element Modeling
7%
Glass
13%
Grain Size
9%
Graphene
11%
Hydrodynamics
9%
Machining
47%
Mechanical Alloying
7%
Mechanical Strength
10%
Molding Compound
21%
Nanocomposites
11%
Nanocrystalline Material
14%
Nanofiber
7%
Nanoindentation
5%
Optical Device
6%
Optical Glass
15%
Oxidation Reaction
7%
Plastic Deformation
10%
Plating
27%
Powder
12%
Refractive Index
10%
Residual Stress
6%
Sapphire
10%
Silicon Carbide
14%
Silicon Dioxide
8%
Stainless Steel
6%
Strain Rate
6%
Superalloys
8%
Surface Morphology
12%
Surface Property
23%
Surface Roughness
44%
Surface Topography
14%
Surface Treatment
8%
Tungsten
11%
Viscoelasticity
14%
Wear Resistance
6%