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Material Science
Polyethylene
100%
Crack Growth
71%
Density
56%
Film
46%
Polypropylene
34%
Stress Corrosion Cracking
31%
Polymer
30%
Mechanical Property
29%
Crack Propagation
29%
Thermoplastics
24%
Fracture Behavior
24%
Fatigue Crack Growth
24%
Crack Initiation
20%
Thin Films
19%
Aluminum Oxide
18%
Polycarbonate
17%
Scanning Electron Microscopy
17%
Fatigue Behavior
16%
Finite Element Method
15%
Chemical Degradation
14%
Fatigue Crack
14%
Hydrogen
14%
Injection Molding
12%
ZnO
11%
Failure Mechanism
11%
Fracture Toughness
10%
Glass Fiber
10%
Fracture Toughness Testing
10%
Surface Crack
9%
Stress Intensity Factor
9%
Acrylonitrile Butadiene Styrene
8%
Alloy Steel
8%
Weathering
8%
Acrylonitrile
8%
Brittle Fracture
8%
Residual Stress
8%
Fracture Mechanics
7%
Tensile Property
7%
Crack Tip
7%
Plastic Deformation
7%
Copolymer
6%
Nanocomposite
6%
Thermal Degradation
5%
Carbon Fiber
5%
Polybutadiene
5%
Polyimide
5%
Poly Methyl Methacrylate
5%
Foam Material
5%
Carbon Nanotube
5%
Hardened Steel
5%
Engineering
Density Polyethylene
51%
Slow Crack Growth
47%
Layer Theory
43%
Crack Growth Behavior
31%
Crack Growth
29%
Stress Corrosion Crack
26%
Finite Element Analysis
24%
Crack Initiation
22%
Crack Propagation
21%
Fatigue Crack Growth
19%
Polycarbonate
17%
Mechanical Property
17%
Polymer
16%
Process Zone
16%
Loading Condition
15%
Fatigue Crack Propagation
14%
Fatigue Behavior
13%
Stress Corrosion Cracking
12%
Chemical Degradation
12%
Fatigue Crack
12%
Fracture Behavior
12%
Acrylonitrile Butadiene Styrene
11%
Layer Model
11%
Parametric Study
11%
Fracture Mechanism
10%
Engineering
10%
Automotives
10%
Plastic Pipe
9%
Material Parameter
9%
Computer Simulation
9%
Test Result
8%
Fatigue Lifetime
8%
Notched Specimen
8%
Semielliptical Surface Crack
8%
Induced Degradation
8%
Thermal Runaway
8%
Hydrogen
8%
Experimental Result
8%
Stress-Intensity Factor
7%
Glass-Fiber Reinforced Plastic
7%
Injection Moulding
7%
Axisymmetric
7%
Growth Kinetics
6%
Plastic Zone
6%
Impact Test
6%
Environmental Stress Cracking
6%
Round Bar
6%
Test Specimen
6%
Multiple Crack
6%
Fatigue Life
5%
Keyphrases
High-density Polyethylene
33%
Crack Layer Theory
32%
Slow Crack Growth
29%
Polyethylene
22%
Crack Growth Behavior
19%
Stress Corrosion Cracking
18%
Mechanical Properties
17%
Polyethylene Blown Films
17%
Fatigue Crack Growth Rate
14%
Crack Growth Simulation
12%
Notched Bars
12%
Crack Layer
12%
Scratch Resistance
12%
Tears
12%
Fatigue Characteristics
12%
Essential Work of Fracture
11%
Aluminum Oxide
11%
Crack Initiation
10%
Crack Growth
10%
Tearing Property
10%
Fracture Characteristics
10%
Crack Propagation
10%
Pipe Grade
9%
Plastic pipe
9%
Polypropylene
9%
Atomic Layer Deposition
9%
Loading Conditions
9%
Polyethylene Film
9%
Process Zone
8%
Finite Element Analysis
8%
Fatigue Crack Growth
8%
Material Parameters
8%
Filled Polypropylene
8%
Scratching Behavior
8%
Acrylonitrile Butadiene Styrene
8%
Fatigue Strength
8%
Chemical Degradation
8%
Fracture Mechanism
8%
Fracture Test
7%
High-density Polyethylene (HDPE) pipes
7%
Scanning Electron Microscopy (SEM-EDS)
7%
High-pressure Hydrogen
7%
Scratch Test
7%
Scratch Property
7%
Mixed-mode Loading
7%
Fatigue Crack Propagation
7%
Fracture Initiation
6%
Scratch Damage
6%
Failure Mechanism
6%
Crack Propagation Behavior
6%