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Time-dependent crack behavior in an integrated structure
J. Liang
, Z. Zhang
, J. H. Prévost
, Z. Suo
Civil & Environmental Engineering
Research output
:
Contribution to journal
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Article
›
peer-review
11
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Scopus citations
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Keyphrases
Stress Field
100%
Stress Intensity Factor
100%
Elastic Film
100%
Cracking Behavior
100%
Power-law Creep
100%
Numerical Results
50%
Steady State
50%
Creep Strain
50%
Rigid Substrate
50%
Small Features
50%
Creep
50%
Channel Cracks
50%
Extended Finite Element Method
50%
Square Root
50%
X-FEM
50%
Crack Length
50%
Crack Tip
50%
Displacement Field
50%
Nonlinear Diffusion
50%
Crack Advance
50%
Long-term Reliability
50%
Time-dependent Mechanical Behavior
50%
Creep Crack
50%
Stationary Crack
50%
Film Stress
50%
Dissimilar Materials
50%
Three-layer Structure
50%
Material Feature
50%
Complex Architecture
50%
Crack Wake
50%
Modern Technologies
50%
Biaxial Tensile Stress
50%
Scaling Law
50%
Engineering
Length Scale
100%
Stress Field
100%
Stress-Intensity Factor
100%
Law Creep
100%
Scaling Law
50%
Smallest Feature
50%
Function of Time
50%
Square Root
50%
Crack Length
50%
Tensile Stress σ
50%
Crack Tip
50%
Displacement Field
50%
Layer Structure
50%
Creep Strain
50%
Stationary Crack
50%
Crack Advance
50%
Finite Element Analysis
50%
Mechanical Property
50%
Material Science
Film
100%
Stress Field
40%
Stress Intensity Factor
40%
Ultimate Tensile Strength
20%
Mechanical Property
20%
Extended Finite Element Method
20%
Crack Tip
20%