Engineering
Grinding (Machining)
100%
Cutting Force
66%
Ultrasonics
62%
Surface Quality
54%
Monocrystal
37%
Machined Surface
33%
Finite Element Method
32%
High Strength Steel
31%
Cutting Parameter
30%
End Milling
30%
Diamond
29%
Microstructure
28%
Cutting Edge
27%
Experimental Result
27%
Finite Element Modeling
27%
Precision Glass Moulding
27%
Cutting Speed
26%
Surface Integrity
26%
Micro-Lens Array
25%
Stainless Steel
25%
Residual Stress
22%
Defects
21%
Two Dimensional
20%
Feed Rate
19%
Milling Micro
19%
Cutting Performance
19%
Speed Milling
18%
End Mill
18%
Rake Angle
18%
Surface Layer
17%
Fractal Dimension
17%
Simulation Result
17%
Obtains
16%
Cut Material
16%
Strain Rate
16%
Surface Topography
16%
Constitutive Model
15%
Thrust Force
15%
Grinding Force
15%
Alloy Steel
13%
Mathematical Model
13%
Rake Face
12%
Grinding Wheel
12%
Machining Quality
12%
Fatigue Life
11%
Face Milling
11%
Cutting Fluid
11%
Surface Defect
11%
Ball End Mill
11%
Mesoscale
11%
Material Science
Machining
86%
Surface Roughness
48%
Surface Property
31%
Fatigue of Materials
28%
Diamond
24%
Surface Topography
23%
Residual Stress
22%
Cemented Carbide
21%
High Strength Steels
20%
Finite Element Method
18%
Cutting Tool
17%
Strain Rate
15%
Sapphire
14%
Surface Texture
13%
Plating
13%
Superalloys
12%
Cutting Fluid
12%
Grain Size
12%
Fretting
12%
Wear Resistance
11%
Mechanical Strength
11%
Surface Morphology
10%
Finite Element Modeling
10%
Conformal Contact
9%
Shaft
9%
Surface Defect
9%
Molding Compound
9%
Tool Material
9%
High Speed Steel
9%
Crack Initiation
9%
Volume Fraction
8%
Fretting Fatigue
8%
Machine Tool
8%
Plastic Deformation
8%
Stainless Steel
7%
Nickel-Based Superalloys
7%
Corrosion
7%
Optical Glass
7%
Fatigue Behavior
7%
Chip Formation
7%
High Entropy Alloys
7%
Density
7%
Aluminum Alloys
7%
Aluminum
7%
Microhardness
6%
Carbide
6%
Titanium
6%
Matrix Composite
6%
Cobalt
6%
Carbon Dioxide
5%