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Xu Fei
Professor
School of Aeronautics
h-index
1539
Citations
20
h-index
Calculated based on number of publications stored in Pure and citations from Scopus
2003
2025
Research activity per year
Overview
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Research output
(192)
Similar Profiles
(6)
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Dive into the research topics where Fei Xu is active. These topic labels come from the works of this person. Together they form a unique fingerprint.
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Weight
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Engineering
Hydrodynamics
100%
Impact Loads
43%
Finite Element Analysis
27%
Spray Water
27%
Joints (Structural Components)
26%
Dynamic Response
26%
Impact Response
24%
Experimental Result
23%
Failure Mode
21%
Impact Damage
20%
Adhesive Layer
16%
Failure Strength
16%
Tensiles
15%
Numerical Model
15%
Strain Rate
15%
Good Agreement
14%
Constitutive Model
14%
Composite Structure
13%
Similarity
13%
Composite Scarf Repair
13%
Simulation Result
13%
Damage Model
13%
Test Result
12%
Impact Resistance
12%
Aircraft Structure
12%
Ductile Metal
11%
Void Growth
11%
Bird Impact
11%
Bolted Joint
11%
Protective Structure
11%
Contaminated Runway
11%
Large Deformation
11%
Impact Energy
10%
Loading Rate
10%
Yield Point
9%
Metal Matrix Composite
9%
Similarity Law
9%
Fracture Strength
9%
Smooth Particle Hydrodynamics
9%
Impact Problem
8%
Damage Mode
8%
Stress-Strain Curve
8%
Material Model
8%
Growth Behavior
8%
Damage Evolution
8%
Cohesive Zone Model
8%
Numerical Stability
7%
Boundary Condition
7%
Reliability Analysis
7%
Young's Modulus
7%
Material Science
Composite Material
97%
Hydrodynamics
51%
Aircraft
50%
Composite Laminate
28%
Finite Element Method
26%
Impact Loads
26%
Particle Method
25%
Density
25%
Surface (Surface Science)
24%
Strain Rate
19%
Volume Fraction
12%
Elastomer
11%
Metal Matrix Composite
10%
Composite Material
10%
Impact Resistance
9%
Elastic Moduli
9%
Cohesive Zone Model
8%
Spacecraft
8%
Cermet
7%
Stress Concentration
7%
Yield Stress
7%
Adhesive Property
7%
Damage Evolution
7%
Aluminum Alloy
6%
Multiphase Flow
6%
Shear Strength
6%
Finite Element Modeling
6%
Carbon Fiber
6%
Large Deformation
6%
Aluminum
6%
Laminated Plate
5%
Superlattice
5%
Static Loading
5%
Dynamic Loads
5%
Fracture Toughness
5%
Particle Shape
5%