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Characterizing the stress intensity factor of graphene sheet with central crack
Jia-Lin Tsai
*
, Meng Jhe Sie
*
此作品的通信作者
機械工程學系
研究成果
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引文 斯高帕斯(Scopus)
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Keyphrases
Graphene Sheets
100%
Stress Intensity Factor
100%
Central Crack
100%
Crack Tip
42%
Stress Distribution
28%
Local Stress Distribution
28%
Stress Formulation
28%
Projection Process
28%
Physical Quantity
14%
Finite Element Method
14%
Molecular Dynamics Simulation
14%
Finite Element Analysis
14%
Covalent Bond
14%
Atomistic Structure
14%
Crack Size
14%
Projection Point
14%
Equilibrium Configuration
14%
Crack Length
14%
Nonlocal Elasticity Theory
14%
Crack-size Effects
14%
Continuum Solid
14%
Projection Position
14%
Nonlocal Elasticity
14%
Projection Approach
14%
Uniaxial Loading
14%
Defective Graphene Sheet
14%
Engineering
Graphene Sheet
100%
Stress-Intensity Factor
100%
Central Crack
100%
Crack Tip
42%
Local Stress
28%
Elasticity Theory
28%
Crack Size
28%
Stress Formulation
28%
Finite Element Analysis
28%
Size Effect
14%
Covalent
14%
Equilibrium Configuration
14%
Crack Length
14%
Computer Simulation
14%
Physical Quantity
14%
Material Science
Graphene
100%
Stress Intensity Factor
100%
Crack Tip
42%
Finite Element Method
28%
Elasticity
28%
Covalent Bond
14%