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Micromechanical fracture analysis of amylose
W. R. Even
*
,
S. H. Carr
*
Corresponding author for this work
Materials Science and Engineering
Research output
:
Contribution to journal
›
Article
›
peer-review
5
Scopus citations
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Keyphrases
Micromechanics
100%
Fracture Analysis
100%
Amylose
100%
Optical Analysis
50%
Moisture Content
50%
Strain Energy Release Rate
50%
Macromolecules
25%
Engineering Polymers
25%
Microstructure
25%
Fracture Toughness
25%
Microplastics
25%
Crack Tip
25%
Direct Calculation
25%
Birefringence Measurement
25%
Stress Intensity
25%
Tensile Properties
25%
Plastic Zone
25%
Integrated Intensity
25%
Semi-crystalline Materials
25%
Intensity Analysis
25%
J-integral
25%
Tensile Analysis
25%
Bulk Measurements
25%
Absorbed Water
25%
Active Interaction
25%
Material Science
Fracture Toughness
100%
Stress Intensity
100%
Birefringence
100%
Microplastics
100%
J-Integral
100%
Polymer Engineering
100%
Film
100%
Crack Tip
100%
Tensile Property
100%
Engineering
Tensiles
100%
Strain-Energy Release Rate
100%
Fracture Analysis
100%
Microstructure
50%
Impact Toughness
50%
Crack Tip
50%
Plastic Zone
50%
Greater Effect
50%
Absorbed Water
50%
Engineering
50%
Stress Intensity
50%
J-Integral
50%
Tensile Property
50%
Intensity Analysis
50%