FormulaDen.com
Physics
Chemistry
Math
Chemical Engineering
Civil
Electrical
Electronics
Electronics and Instrumentation
Materials Science
Mechanical
Production Engineering
Financial
Health
You are here
-
Home
»
Engineering
»
Mechanical
»
Machine Design
Velocity of Moving Plate on Oil in Design of Sliding Contact Bearing Formulas
Velocity of Moving Plate on Oil is the velocity of the plate with respect to fixed plate moving on the oily surface. And is denoted by V
m
. Velocity of Moving Plate on Oil is usually measured using the Meter per Second for Speed. Note that the value of Velocity of Moving Plate on Oil is always positive.
Formulas to find Velocity of Moving Plate on Oil in Design of Sliding Contact Bearing
f
x
Velocity of Moving Plate in Terms of Absolute Viscosity
Go
Design of Sliding Contact Bearing formulas that make use of Velocity of Moving Plate on Oil
f
x
Tangential Force in Sliding Contact Bearing
Go
f
x
Absolute Viscosity of Oil in Terms of Tangential Force
Go
f
x
Area of moving plate of sliding contact bearing given absolute viscosity
Go
List of variables in Design of Sliding Contact Bearing formulas
f
x
Tangential force on moving plate
Go
f
x
Oil film thickness
Go
f
x
Dynamic viscosity of oil
Go
f
x
Area of moving plate on oil
Go
FAQ
What is the Velocity of Moving Plate on Oil?
Velocity of Moving Plate on Oil is the velocity of the plate with respect to fixed plate moving on the oily surface. Velocity of Moving Plate on Oil is usually measured using the Meter per Second for Speed. Note that the value of Velocity of Moving Plate on Oil is always positive.
Can the Velocity of Moving Plate on Oil be negative?
No, the Velocity of Moving Plate on Oil, measured in Speed cannot be negative.
What unit is used to measure Velocity of Moving Plate on Oil?
Velocity of Moving Plate on Oil is usually measured using the Meter per Second[m/s] for Speed. Meter per Minute[m/s], Meter per Hour[m/s], Kilometer per Hour[m/s] are the few other units in which Velocity of Moving Plate on Oil can be measured.
Let Others Know
✖
Facebook
Twitter
Reddit
LinkedIn
Email
WhatsApp
Copied!