Engineering
Cutting Force
100%
Cutting Parameter
70%
Speed Milling
68%
Alloy Steel
58%
Face Milling
52%
Subsurface
47%
Cut Material
45%
Compressive Residual Stress
39%
Surface Layer
33%
Cutting Velocity
32%
Residual Stress Profile
29%
Speed Machining
28%
Rake Face
25%
Feed Rate
24%
Machined Surface
24%
High Strength Steel
20%
Residual Stress
17%
Cutting Performance
16%
Pulse Duration
16%
Cutting Condition
16%
Surface Integrity
16%
Carburized Steel
16%
Oil Supply
16%
Electrode Assembly
16%
Tempered Martensite
16%
High-Strength Low-Alloy Steel
16%
Fatigue Strength
16%
Fine Grain
16%
Cutting Speed
15%
Chemical Wear
13%
Microhardness
12%
Material Removal Rate
11%
Hardness Value
11%
Compressive Stress
10%
Brass Alloy
8%
Scanning Electron Microscope
8%
Stainless Steel
8%
Scale Effect
8%
Stainless Steel
8%
Microstructure
8%
End Milling
8%
Cutting Temperature
8%
Energy Dispersive Spectrometer
8%
Modern Manufacturing
8%
Engineering
8%
Rotating Bending Test
8%
Elemental Composition
8%
Al Content
8%
Abrasive Wear
8%
Cutting Edge
8%
Material Science
Residual Stress
44%
Mechanical Strength
25%
Fatigue Behavior
22%
Control Flow
16%
Surface Treatment
16%
Metallurgical Structure
16%
High Strength Steels
16%
High Speed Machining
16%
Hardened Steel
8%
Aluminum Copper Alloys
8%
High-Cycle Fatigue
8%
Stress Intensity Factor
8%
Crack Growth
8%
Scanning Electron Microscopy
5%
Wear Resistance
5%
Sliding Friction
5%
Medium-Carbon Steels
5%