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Simulated strength of wet fibre networks
P. P.J. Miettinen
,
J. A. Ketoja
, D. J. Klingenberg
Oy Keskuslaboratorio - Centrallaboratorium Ab (KCL)
University of Wisconsin-Madison
Research output
:
Contribution to journal
›
Article
›
Scientific
›
peer-review
7
Citations (Scopus)
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Keyphrases
Fiber Network
100%
Adhesion Force
100%
Fiber Stiffness
100%
Moisture Content
50%
Fiber Level
50%
Friction
50%
Stiffness
50%
Tensile Strength
50%
Friction Coefficient
50%
Fiber Type
50%
Contact Area
50%
Network Strength
50%
Elongation at Break
50%
Wet Web
50%
Wet Web Strength
50%
Tensile Loading
50%
Grammage
50%
Adhesive Force
50%
Water Surface Tension
50%
Simple Function
50%
Contact Coefficient
50%
Force Magnitude
50%
Web Behavior
50%
Fiber Motion
50%
Engineering
Fibre Level
100%
Contact Area
100%
Tensile Loads
100%
Ultimate Tensile Strength
100%
Adhesive Force
100%
Elongation at Break
100%
Simple Function
100%
Coefficient of Friction
100%
INIS
simulation
100%
fibers
100%
stiffness
50%
friction
33%
adhesion
33%
moisture
16%
levels
16%
interactions
16%
dynamics
16%
water
16%
elongation
16%
motion
16%
shape
16%
tensile strength
16%
adhesives
16%
computer simulation
16%
surface tension
16%
Material Science
Contact Area
100%
Tensile Loads
100%
Ultimate Tensile Strength
100%
Surface Tension
100%
Coefficient of Friction
100%