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An investigation of surface topography and workpiece temperature in whirling milling machining
C. Liu
, Y. He
, Y. Wang
, Y. Li
, S. Wang
, L. Wang
,
Y. Wang
Advanced Engineering Centre
Design for Circular Cities and Regions (DCCR) Research Excellence Group
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Keyphrases
Surface Topography
100%
Whirling Milling
100%
Workpiece Temperature
100%
Milling Machining
100%
Ball Screw
33%
Machining Strategy
33%
Depth of Cut
33%
Maximum Depth
33%
Surface Temperature
16%
Sensitivity Analysis
16%
Temperature Model
16%
Service Performance
16%
Relative Motion
16%
Cutting Conditions
16%
Milling Machine
16%
Scallop Height
16%
Chip Thickness
16%
Chip Generation
16%
Chip Area
16%
Waviness Model
16%
Tool Trajectory
16%
Tool Geometry
16%
Trajectory Motion
16%
Sensitivity Factor
16%
Cutting Velocity
16%
Cutting Experiment
16%
Height Models
16%
Cutting Tool
16%
Engineering
Surface Topography
100%
Milling (Machining)
100%
Great Influence
33%
Machining Strategy
33%
Temperature Model
16%
Chip Thickness
16%
Milling Machine
16%
Service Performance
16%
Relative Motion
16%
Cutting Velocity
16%
Chip Area
16%
Cutting Tool Condition
16%