Engineering
Energy Engineering
96%
Hydrophobic
80%
Low Cycle Fatigue
80%
Corrosion Resistance
80%
Fatigue Behavior
80%
Hydrofluoric Acid Solution
80%
Economic Efficiency
80%
Sudden Change
80%
Laser Beam
80%
Deformation Mechanism
80%
Computer-Aided Molecular Design
80%
High-Entropy Alloys
80%
Corrosion Rate
80%
Kalina Cycle
80%
Low-Temperature Heat Source
80%
Durables
80%
Experimental Investigation
80%
Pressure Ratio
80%
Impeller
80%
Impulse Turbine
80%
Expansion Pressure
80%
Rotors
64%
Power Output
48%
Mechanical Damage
40%
Application Field
40%
Adhesive Force
40%
Low-Temperature
40%
Surface Wettability
40%
Rotational Speed
32%
Mass Flowrate
32%
Turbine Efficiency
32%
Internal Flow
32%
Steam Turbine Blade
26%
Reheaters
22%
Fatigue Resistance
20%
Strain Amplitude
20%
Core Region
20%
Mechanical Abrasion
20%
Fatigue Life
20%
Fatigue Loading
20%
Computer Simulation
16%
Rankine
16%
Linear Function
16%
Computational Fluid Dynamics
16%
Flow Passage
16%
Performance Characteristic
16%
Pressure Rise
16%
Compact Size
16%
Power Engineering
16%
Design Condition
16%
Material Science
Corrosion Resistance
100%
Low-Cycle Fatigue
80%
Martensitic Stainless Steels
80%
Corrosion Protection
80%
Deformation Mechanism
80%
Thermophysical Property
80%
Corrosion
80%
High Entropy Alloys
80%
Ultrahydrophobic Coating
80%
Molecular Structure
80%
Fatigue Behavior
80%
Thermal Property
60%
Gas Turbine
40%
Galvanic Corrosion
40%
Crystal Microstructure
40%
Directed Energy Deposition
40%
Internal Combustion Engine
40%
Acid Corrosion
40%
Fatigue of Materials
40%
Compressibility
40%
Composite Coating
20%
Mechanical Strength
20%
Plasma Etching
20%
Hydrophobicity
20%
Powder Coating
16%