Kinematic Viscosity given Viscosity and Density for Sliding Contact Ball Bearing Solution

STEP 0: Pre-Calculation Summary
Formula Used
Kinematic viscosity of lubricant oil = Dynamic Viscosity of Lubricant/Density of Lubricating Oil
z = μl/ρ
This formula uses 3 Variables
Variables Used
Kinematic viscosity of lubricant oil - (Measured in Square Meter per Second) - Kinematic viscosity of lubricant oil is an atmospheric variable defined as the ratio between the dynamic viscosity μ and the density ρ of the fluid.
Dynamic Viscosity of Lubricant - (Measured in Pascal Second) - The Dynamic Viscosity of Lubricant is the resistance to movement of one layer of fluid over another.
Density of Lubricating Oil - (Measured in Kilogram per Cubic Meter) - The Density of Lubricating Oil is defined as the mass of a unit volume of oil.
STEP 1: Convert Input(s) to Base Unit
Dynamic Viscosity of Lubricant: 220 Centipoise --> 0.22 Pascal Second (Check conversion ​here)
Density of Lubricating Oil: 0.88 Gram per Cubic Centimeter --> 880 Kilogram per Cubic Meter (Check conversion ​here)
STEP 2: Evaluate Formula
Substituting Input Values in Formula
z = μl/ρ --> 0.22/880
Evaluating ... ...
z = 0.00025
STEP 3: Convert Result to Output's Unit
0.00025 Square Meter per Second -->250 Centistokes (Check conversion ​here)
FINAL ANSWER
250 Centistokes <-- Kinematic viscosity of lubricant oil
(Calculation completed in 00.004 seconds)

Credits

Creator Image
Created by Vaibhav Malani
National Institute of Technology (NIT), Tiruchirapalli
Vaibhav Malani has created this Calculator and 600+ more calculators!
Verifier Image
Verified by Anshika Arya
National Institute Of Technology (NIT), Hamirpur
Anshika Arya has verified this Calculator and 2500+ more calculators!

12 Viscosity and Density of Lubricant Calculators

Viscosity of Lubricant in Terms of Sommerfeld Number of Bearing
​ Go Dynamic Viscosity of Lubricant = 2*pi*Sommerfeld Number of Journal Bearing*Unit bearing pressure for bearing/(((Radius of Journal/Radial clearance for bearing)^2)*Journal Speed)
Viscosity of Lubricant in Terms of Flow of Lubricant
​ Go Dynamic Viscosity of Lubricant = Pressure difference between slot sides*Breadth of slot for oil flow*(Oil film thickness^3)/(12*Length of slot in direction of flow*Flow of lubricant from slot)
Viscosity in Terms of Flow Coefficient and Flow of Lubricant
​ Go Dynamic Viscosity of Lubricant = Flow Coefficient*Load Acting on Sliding Bearing*(Oil film thickness^3)/(Total Projected Area of Bearing Pad*Flow of Lubricant across Bearing Pad)
Density of Lubricating Oil in Terms of Temperature Rise Variable
​ Go Density of Lubricating Oil = Temperature Rise Variable*Unit bearing pressure for bearing/(Specific heat of bearing oil*Temperature rise of bearing lubricant)
Area of moving plate of sliding contact bearing given absolute viscosity
​ Go Area of moving plate on oil = Tangential force on moving plate*Oil film thickness/(Dynamic viscosity of oil*Velocity of Moving Plate on Oil)
Velocity of Moving Plate in Terms of Absolute Viscosity
​ Go Velocity of Moving Plate on Oil = Tangential force on moving plate*Oil film thickness/(Dynamic viscosity of oil*Area of moving plate on oil)
Absolute Viscosity of Oil in Terms of Tangential Force
​ Go Dynamic viscosity of oil = Tangential force on moving plate*Oil film thickness/(Area of moving plate on oil*Velocity of Moving Plate on Oil)
Viscosity in Terms of Absolute Temperature for Sliding Contact Bearing
​ Go Dynamic viscosity of oil = 10^((Constant a for viscosity relationship+(Constant b for Viscosity Relationship/Absolute temperature of oil in Kelvin)))
Kinematic Viscosity in Centi-Stokes in Terms of Viscosity in Saybolt's Unversal Seconds
​ Go Kinematic Viscosity in Centi-Stokes = (0.22*Viscosity in Saybolt Universal Seconds)-(180/Viscosity in Saybolt Universal Seconds)
Viscosity in Terms of Kinematic Viscosity and Density for Sliding Contact Bearing
​ Go Dynamic Viscosity of Lubricant = Kinematic viscosity of lubricant oil*Density of Lubricating Oil
Density in Terms of Kinematic Viscosity and Viscosity for Sliding Contact Bearing
​ Go Density of Lubricating Oil = Dynamic Viscosity of Lubricant/Kinematic viscosity of lubricant oil
Kinematic Viscosity given Viscosity and Density for Sliding Contact Ball Bearing
​ Go Kinematic viscosity of lubricant oil = Dynamic Viscosity of Lubricant/Density of Lubricating Oil

Kinematic Viscosity given Viscosity and Density for Sliding Contact Ball Bearing Formula

Kinematic viscosity of lubricant oil = Dynamic Viscosity of Lubricant/Density of Lubricating Oil
z = μl/ρ

What is Sliding Contact Bearing?

The sliding contact bearings in which the sliding action is along the circumference of a circle or an arc of a circle and carrying radial loads are known as journal or sleeve bearings.

How to Calculate Kinematic Viscosity given Viscosity and Density for Sliding Contact Ball Bearing?

Kinematic Viscosity given Viscosity and Density for Sliding Contact Ball Bearing calculator uses Kinematic viscosity of lubricant oil = Dynamic Viscosity of Lubricant/Density of Lubricating Oil to calculate the Kinematic viscosity of lubricant oil, The Kinematic Viscosity given Viscosity and Density for Sliding Contact Ball Bearing formula is defined as the ratio of the viscosity of oil to density. Kinematic viscosity of lubricant oil is denoted by z symbol.

How to calculate Kinematic Viscosity given Viscosity and Density for Sliding Contact Ball Bearing using this online calculator? To use this online calculator for Kinematic Viscosity given Viscosity and Density for Sliding Contact Ball Bearing, enter Dynamic Viscosity of Lubricant l) & Density of Lubricating Oil (ρ) and hit the calculate button. Here is how the Kinematic Viscosity given Viscosity and Density for Sliding Contact Ball Bearing calculation can be explained with given input values -> 2.5E+8 = 0.22/880.

FAQ

What is Kinematic Viscosity given Viscosity and Density for Sliding Contact Ball Bearing?
The Kinematic Viscosity given Viscosity and Density for Sliding Contact Ball Bearing formula is defined as the ratio of the viscosity of oil to density and is represented as z = μl or Kinematic viscosity of lubricant oil = Dynamic Viscosity of Lubricant/Density of Lubricating Oil. The Dynamic Viscosity of Lubricant is the resistance to movement of one layer of fluid over another & The Density of Lubricating Oil is defined as the mass of a unit volume of oil.
How to calculate Kinematic Viscosity given Viscosity and Density for Sliding Contact Ball Bearing?
The Kinematic Viscosity given Viscosity and Density for Sliding Contact Ball Bearing formula is defined as the ratio of the viscosity of oil to density is calculated using Kinematic viscosity of lubricant oil = Dynamic Viscosity of Lubricant/Density of Lubricating Oil. To calculate Kinematic Viscosity given Viscosity and Density for Sliding Contact Ball Bearing, you need Dynamic Viscosity of Lubricant l) & Density of Lubricating Oil (ρ). With our tool, you need to enter the respective value for Dynamic Viscosity of Lubricant & Density of Lubricating Oil and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
Let Others Know
Facebook
Twitter
Reddit
LinkedIn
Email
WhatsApp
Copied!