Engineering
Cutting Force
100%
Face Milling
45%
Machine Tool
40%
Metalworking Fluid
39%
Based Cutting Fluid
37%
Microstructure
37%
Atomisation
36%
Force Model
34%
Mechanistic Model
28%
Microscale
26%
Manufacturing Process
25%
Finite Element Method
24%
End Milling
24%
Experimental Investigation
24%
Good Agreement
24%
Carbon Nanotube
23%
Experimental Result
23%
Spindle Speed
22%
Nodular Iron
21%
Machining Force
21%
Microfiltration
18%
Chip Thickness
17%
Tapping (Threads)
16%
Mesoscale
16%
Cutting Fluid
15%
Edge Radius
15%
Electric Discharge Machining
15%
Force Signal
15%
Model Parameter
14%
Machining Simulation
14%
Model Prediction
14%
Mechanistic Modeling
14%
Chip Load
14%
Dielectrics
14%
Speed Machining
13%
Process Parameter
13%
Cutting Edge
13%
Stability Analysis
12%
Minimum Chip Thickness
12%
Analytical Model
12%
Electrodischarge Machining
11%
Cutting Condition
11%
Material Removal
11%
Ti-6al-4v
11%
Machined Surface
11%
Micro Machining
11%
Runout
11%
Simulation Result
10%
Computer Simulation
10%
Force System
10%
Keyphrases
Cutting Force
74%
Metalworking Fluids
47%
Cutting Fluid
46%
Face Milling
42%
Atomization
35%
Microstructure
33%
Mechanistic Model
27%
Spray System
26%
Cutting Process
25%
Machinability
25%
Machine Tool
24%
Process Faults
21%
Micro-end Milling
21%
Machining Process
21%
Carbon Nanotubes
20%
Ploughing
19%
Machining Force
19%
Microfiltration
18%
Ductile Iron
18%
Mechanistic Approach
17%
Variable Speed
17%
Electrical Discharge Machining
16%
Finite Element
16%
Machining Simulation
16%
Turning Process
15%
Model Prediction
15%
Modeling Approach
15%
Chip Load
15%
Surface Roughness
14%
Tool Wear
14%
End Milling
14%
Model-driven Development
14%
Machined Surface
14%
Workpiece Material
13%
Micromachining
13%
Feed Rate
13%
Machining System
13%
Cutter
13%
Cutting Tool
12%
Chisel Edge
12%
Tool Geometry
12%
Semi-synthetic
12%
Chip Thickness
12%
Hole Quality
12%
Spindle
12%
Micro-milling
12%
Ti-6Al-4V (Ti64)
12%
Flux Decline
12%
Material Removal
11%
Micro-electrical Discharge Machining (Micro-EDM)
11%