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Uncoupled poroelastic and intrinsic viscoelastic dissipation in cartilage
Guebum Han
, Cole Hess
, Melih Eriten
, Corinne R. Henak
Research output
:
Contribution to journal
›
Article
›
peer-review
42
Scopus citations
Overview
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Dive into the research topics of 'Uncoupled poroelastic and intrinsic viscoelastic dissipation in cartilage'. Together they form a unique fingerprint.
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Keyphrases
Cartilage
100%
Poroelasticity
100%
Viscoelastic Dissipation
100%
Phase Shift
44%
Dehydration
22%
Phase Dynamics
11%
Viscoelastic Properties
11%
Design Parameters
11%
Dynamic Modulus
11%
Dissipation Mechanism
11%
Viscoelastic Flow
11%
Small Length Scale
11%
Small Radius
11%
Flow-dependent
11%
Viscoelasticity
11%
Contact Radius
11%
Flow Independent
11%
Microindentation Test
11%
Damper
11%
Energy Dissipation Mechanism
11%
Dissipation Behavior
11%
Engineering
Phase Shift
100%
Length Scale
50%
Viscoelasticity
50%
Microscale
25%
Design Parameter
25%
Dynamic Modulus
25%
Energy Dissipation
25%
Characteristic Length
25%
Microindentation Test
25%
Phase Dynamic
25%
Earth and Planetary Sciences
Viscoelasticity
100%
Microbalance
50%
Microhardness
50%
Energy Dissipation
50%
Mathematics
Phase Shift
100%
Length Scale
50%
Characteristic Length
25%
Design Parameter
25%
Energy Dissipation
25%
Medicine and Dentistry
Dissipation
100%