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Damage Modeling of Composite Structures
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20
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Published By Elsevier
9780128209639
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Implicit finite element analysis of postbuckling and delamination of symmetric and unsymmetric composite laminates under compression using virtual crack closure technique
Damage Modeling of Composite Structures
◽
10.1016/b978-0-12-820963-9.00016-x
◽
2021
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pp. 109-126
Author(s):
Pengfei Liu
Keyword(s):
Finite Element Analysis
◽
Finite Element
◽
Crack Closure
◽
Composite Laminates
◽
Virtual Crack Closure Technique
◽
Closure Technique
◽
Element Analysis
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Implicit finite element analysis of progressive failure and strain localization of notched carbon fiber/epoxy composite laminates under tension
Damage Modeling of Composite Structures
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10.1016/b978-0-12-820963-9.00006-7
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2021
◽
pp. 49-67
Author(s):
Pengfei Liu
Keyword(s):
Finite Element Analysis
◽
Finite Element
◽
Carbon Fiber
◽
Strain Localization
◽
Composite Laminates
◽
Epoxy Composite
◽
Progressive Failure
◽
Element Analysis
◽
Carbon Fiber Epoxy
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Implicit finite element analysis of failure behaviors of adhesive composite joints using exponential and bilinear cohesive models
Damage Modeling of Composite Structures
◽
10.1016/b978-0-12-820963-9.00008-0
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2021
◽
pp. 27-48
Author(s):
Pengfei Liu
Keyword(s):
Finite Element Analysis
◽
Finite Element
◽
Composite Joints
◽
Element Analysis
◽
Cohesive Models
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Explicit finite element analysis of plastic composite laminates under low-velocity impact
Damage Modeling of Composite Structures
◽
10.1016/b978-0-12-820963-9.00012-2
◽
2021
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pp. 253-276
Author(s):
Pengfei Liu
Keyword(s):
Finite Element Analysis
◽
Finite Element
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Composite Laminates
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Low Velocity Impact
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Low Velocity
◽
Element Analysis
◽
Explicit Finite Element
◽
Velocity Impact
◽
Plastic Composite
◽
Explicit Finite Element Analysis
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Viscoelastic bilinear cohesive model and parameter identification for failure analysis of adhesive composite joints using explicit finite element analysis
Damage Modeling of Composite Structures
◽
10.1016/b978-0-12-820963-9.00004-3
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2021
◽
pp. 175-190
Author(s):
Pengfei Liu
Keyword(s):
Finite Element Analysis
◽
Finite Element
◽
Parameter Identification
◽
Failure Analysis
◽
Composite Joints
◽
Element Analysis
◽
Cohesive Model
◽
Explicit Finite Element
◽
Explicit Finite Element Analysis
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Front Matter
Damage Modeling of Composite Structures
◽
10.1016/b978-0-12-820963-9.09993-4
◽
2021
◽
pp. i-ii
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Explicit finite element analysis of impact-induced damage of composite wind turbine blade under typhoon by considering fluid/solid interaction
Damage Modeling of Composite Structures
◽
10.1016/b978-0-12-820963-9.00003-1
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2021
◽
pp. 297-303
Author(s):
Pengfei Liu
Keyword(s):
Finite Element Analysis
◽
Finite Element
◽
Wind Turbine
◽
Turbine Blade
◽
Wind Turbine Blade
◽
Element Analysis
◽
Explicit Finite Element
◽
Explicit Finite Element Analysis
◽
Fluid Solid Interaction
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Localized damage models and implicit finite element analysis of notched carbon fiber/epoxy composite laminates under tension
Damage Modeling of Composite Structures
◽
10.1016/b978-0-12-820963-9.00011-0
◽
2021
◽
pp. 69-107
Author(s):
Pengfei Liu
Keyword(s):
Finite Element Analysis
◽
Finite Element
◽
Carbon Fiber
◽
Composite Laminates
◽
Epoxy Composite
◽
Element Analysis
◽
Damage Models
◽
Carbon Fiber Epoxy
◽
Localized Damage
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Explicit finite element analysis of micromechanical failure behaviors of thermoplastic composites under transverse tension and shear
Damage Modeling of Composite Structures
◽
10.1016/b978-0-12-820963-9.00001-8
◽
2021
◽
pp. 305-327
Author(s):
Pengfei Liu
Keyword(s):
Finite Element Analysis
◽
Finite Element
◽
Thermoplastic Composites
◽
Element Analysis
◽
Explicit Finite Element
◽
Transverse Tension
◽
Explicit Finite Element Analysis
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Cohesive/friction coupled model and implicit finite element analysis for delamination analysis of composite laminates under three-point bending
Damage Modeling of Composite Structures
◽
10.1016/b978-0-12-820963-9.00005-5
◽
2021
◽
pp. 145-173
Author(s):
Pengfei Liu
Keyword(s):
Finite Element Analysis
◽
Finite Element
◽
Composite Laminates
◽
Coupled Model
◽
Element Analysis
◽
Three Point Bending
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