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Modeling strength and stress diffusion in hip prostheses with nano-reinforced composites
Chen Yuan Chung
機械工程學系
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Biomimetic
100%
Nanostructures
100%
Anisotropy Effect
100%
Mechanical Behavior
100%
Carbon Fiber
100%
Nanotubes
100%
Elastic Solid
100%
Saint-Venant Equations
100%
Holding Together
100%
Nanoplates
100%
Rigid Particle
100%
Long Fibre Composites
100%
Rigid Fiber
100%
Binding Phase
100%
Epoxy Resin
100%
Rigid Plate
100%
Reinforcing Properties
100%
Isotropic Material
100%
Binding Materials
100%
Nano-reinforced Composites
100%
Engineered Materials
100%
Stress-assisted Diffusion
100%
End Effect
100%
Hip Prosthesis
100%
Randomly Oriented
100%
Biological Materials
100%
Engineering
Nanoscale
100%
Nanomaterial
100%
Nanotube
100%
Elastic Solid
100%
Saint-Venant Principle
100%
Biomimetics
100%
Long Fiber
100%
Binding Phase
100%
End Effect
100%
Hip Prosthesis
100%
Mechanical Property
100%
Material Science
Reinforced Composite
100%
Glass Fiber
100%
Anisotropy
50%
Mechanical Property
50%
Carbon Fiber
50%
Biomaterial
50%
Thin Sheet
50%
Nanotube
50%
Isotropic Material
50%
Epoxy
50%
Nanostructure
50%