INIS
electrical conductivity
100%
tensile strength
50%
pressure range mega pa
50%
aluminum
37%
processing
25%
alloys
25%
aluminium alloys
25%
cost
12%
losses
12%
optimization
12%
concentration
12%
increasing
12%
kinetics
12%
precipitation
12%
precipitation hardening
12%
power transmission
12%
strain hardening
12%
Engineering
Electrical Conductivity
75%
Ultimate Tensile Strength
75%
High Electrical Conductivity
25%
Development
25%
Alloy
25%
Power Transmission
12%
Strain Hardening
12%
Processing Method
12%
Precipitation Hardening
12%
Rich Phase
12%
Supports
12%
Low Tensile Strength
12%
Elements
12%
Losses
12%
Kinetic
12%
Precipitation
12%
High Strength
12%
Hardening Mechanism
12%
Earth and Planetary Sciences
Electrical Resistivity
75%
Aluminum
37%
Alloy
25%
Low Cost
12%
Tradeoff
12%
High Strength
12%
Tensile Strength
12%
Work Hardening
12%
Precipitation Hardening
12%
Support
12%
Impact
12%
Addition
12%
Kinetics
12%
Increasing
12%
Chemistry
Conductor
50%
Alloy
25%
Mechanical Strength
25%
Strain Hardening
12%
Tensile Strength
12%
Precipitation (Chemical)
12%
Concentration
12%
Atom
12%
Strength
12%
Chemical Kinetics Characteristics
12%
Precipitation Hardening
12%
Physics
Aluminium
37%
Alloy
25%
Precipitation Hardening
12%
Strain Hardening
12%
Impact
12%
Increasing
12%
Kinetics
12%
High Strength
12%
Material Science
Thermomechanical Processing
12%