Keyphrases
Aerospace Alloys
100%
Wheel Wear
100%
Biolubricant
100%
Titanium Alloy
30%
Nickel-based Alloy
30%
High Strength Steel
30%
Grindability
20%
Physicochemical Properties
20%
Cutting Fluid
20%
High Viscosity
20%
Alloy Strength
20%
Working Surface
10%
High Hardness
10%
Heat Dissipation
10%
High Temperature
10%
Tool Wear
10%
Influence Mechanism
10%
High Pressure
10%
Dissipation Behavior
10%
Difficult-to-machine Materials
10%
High Thermal Conductivity
10%
Cooling Performance
10%
Low Viscosity
10%
Aerospace Materials
10%
Wear Surface
10%
Debris
10%
Clogging
10%
Minimum Quantity Lubrication
10%
Antifriction
10%
Saturation Characteristics
10%
Higher Fatty Acids
10%
Fatty Acid Saturation
10%
Surface Burn
10%
Carbon Emission Strategy
10%
Alloy Surface
10%
Lubrication Performance
10%
Material Science
Titanium Alloys
100%
Nickel Alloys
100%
Aerospace Alloy
100%
High Strength Steels
100%
Cutting Fluid
66%
Lubrication
66%
Thermal Conductivity
33%
Aerospace Material
33%
Engineering
Grinding (Machining)
100%
Aerospace Alloy
100%
High Strength Steel
75%
Grindability
50%
Cutting Fluid
50%
Physicochemical Property
50%
Heat Losses
25%
High Thermal Conductivity
25%
Cooling Performance
25%
Aerospace Material
25%
Main Factor
25%
Minimum Quantity Lubrication
25%