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Analyses of thermal hydrodynamic lubrication in high-speed rolling. Part I: the effect of the roller's elastic deformation
Fin Lin Jen Fin Lin, Rong Chin Jone
Department of Mechanical Engineering
Research output
:
Contribution to journal
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Article
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peer-review
10
Citations (Scopus)
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Dive into the research topics of 'Analyses of thermal hydrodynamic lubrication in high-speed rolling. Part I: the effect of the roller's elastic deformation'. Together they form a unique fingerprint.
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Physics & Astronomy
rollers
81%
elastic deformation
76%
lubrication
73%
hydrodynamics
51%
high speed
50%
biharmonic equations
18%
Airy function
15%
stress functions
15%
fluid films
15%
lubricants
12%
wear resistance
12%
torque
10%
strip
9%
film thickness
9%
temperature distribution
9%
shear
7%
performance
4%
Chemical Compounds
Elastic Deformation
100%
Lubrication
75%
Hydrodynamics
63%
Torque
21%
Liquid Film
16%
Wear
15%
Shear
15%
Force
11%
Resistance
10%
Pressure
9%
Engineering & Materials Science
Elastic deformation
75%
Lubrication
63%
Hydrodynamics
57%
Hot Temperature
32%
Film thickness
18%
Lubricants
16%
Wear resistance
15%
Temperature distribution
13%
Torque
12%
Substrates
11%
Fluids
10%