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Indentation deformation and fracture of thin polystyrene films
Min Li
, Manuel L. Palacio
, C. Barry Carter
, William W. Gerberich
Chemical Engineering and Materials Science
Research output
:
Contribution to journal
›
Article
›
peer-review
27
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Scopus citations
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Keyphrases
Atomic Force Microscopy
100%
Polystyrene Films
100%
Indentation Fracture
100%
Indentation Deformation
100%
Delamination
66%
Indentation
66%
Process Zone
66%
Nanoindentation
33%
Plastic Deformation
33%
Fracture Toughness
33%
Film Thickness
33%
Flow Line
33%
Glass Surface
33%
Delaminating
33%
Work of Adhesion
33%
Glass Substrate
33%
Fracture Surface
33%
Microscopic Examination
33%
Interfacial Fracture Toughness
33%
Crack Arrest
33%
Contact Radius
33%
Induced Fracture
33%
Induced Deformation
33%
Atomic Force Microscopy Imaging
33%
Substrate Cracking
33%
Deformation Geometry
33%
Indentation Impression
33%
Induced Delamination
33%
Indentation Load
33%
Interfacial Crack
33%
Cross-section Analysis
33%
Fracture Geometry
33%
Visible Light Microscopy
33%
Zone Analysis
33%
Material Science
Film
100%
Polystyrene
100%
Indentation
100%
Atomic Force Microscopy
80%
Delamination
60%
Fracture Toughness
40%
Surface (Surface Science)
40%
Nanoindentation
20%
Plastic Deformation
20%
Film Thickness
20%
Crack Arrest
20%
Engineering
Indentation
100%
Atomic Force Microscopy
80%
Process Zone
40%
Fracture Strength
40%
Delamination
40%
Fracture Surface
20%
Induced Deformation
20%
Interfacial Crack
20%
Glass Surface
20%
Crack Arrest
20%
Plastic Deformation
20%
Induced Delamination
20%
Flow Line
20%
Work of Adhesion
20%
Cross-Section Analysis
20%
Fracture Geometry
20%
Glass Substrate
20%