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Separation of tear energy of polythylene blown films using essential work of energy
Byoung Ho Choi
, A. Willem DeGroot
, Mehmet Demirors
, Rajen Patel
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peer-review
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Keyphrases
Crack Propagation
100%
Ligament
100%
Blown Film
100%
Tearing Energy
100%
Tears
16%
Material Parameters
16%
Fracture Toughness
16%
Plane Stress
16%
Process Conditions
16%
Stress Response
16%
Energy Dissipation
16%
R-square
16%
Cracking Behavior
16%
Load-displacement Curve
16%
Energy Concentration
16%
Tear Test
16%
Shape Ratio
16%
Craze
16%
Actual Energy Consumption
16%
Energy Dissipation Mechanism
16%
Material Instability
16%
DENT Specimens
16%
Microvoid Growth
16%
Engineering
Energy Engineering
100%
Crack Propagation
100%
Blown Film
100%
Essential Work
100%
Film Density
66%
Energy Dissipation
33%
Material Parameter
16%
Plane Stress
16%
Good Correlation
16%
Similarities
16%
Process Condition
16%
Log Scale
16%
Load Displacement Curve
16%
Actual Material
16%
Fracture Strength
16%
Material Science
Film
100%
Crack Propagation
66%
Density
55%
Fracture Toughness
11%