Radial Load Acting on Bearing in Terms of Unit Bearing Pressure Solution

STEP 0: Pre-Calculation Summary
Formula Used
Radial load acting on sliding bearing = Unit bearing pressure for bearing*Axial Length of Bearing*Journal Diameter
Wr = p*la*d
This formula uses 4 Variables
Variables Used
Radial load acting on sliding bearing - (Measured in Newton) - Radial load acting on sliding bearing is the force acting onto the journal bearing radially.
Unit bearing pressure for bearing - (Measured in Pascal) - Unit bearing pressure for bearing is the average pressure acting on the contact surface of the bearing.
Axial Length of Bearing - (Measured in Meter) - The Axial Length of Bearing is defined as the length of the bearing measured along its axis.
Journal Diameter - (Measured in Meter) - The Journal Diameter Value is defined as the diameter of the journal of the bearing.
STEP 1: Convert Input(s) to Base Unit
Unit bearing pressure for bearing: 0.96 Megapascal --> 960000 Pascal (Check conversion here)
Axial Length of Bearing: 20 Millimeter --> 0.02 Meter (Check conversion here)
Journal Diameter: 51 Millimeter --> 0.051 Meter (Check conversion here)
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Wr = p*la*d --> 960000*0.02*0.051
Evaluating ... ...
Wr = 979.2
STEP 3: Convert Result to Output's Unit
979.2 Newton --> No Conversion Required
FINAL ANSWER
979.2 Newton <-- Radial load acting on sliding bearing
(Calculation completed in 00.004 seconds)

Credits

Created by Vaibhav Malani
National Institute of Technology (NIT), Tiruchirapalli
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9 Sliding Bearing Parameters Calculators

Load acting on Bearing in Terms of Flow of Lubricant
Go Load Acting on Sliding Bearing = Flow of Lubricant across Bearing Pad*Total Projected Area of Bearing Pad*Dynamic Viscosity of Lubricant/(Flow Coefficient*(Oil film thickness^3))
Axial Length of Bearing in Terms of Flow Variable
Go Axial Length of Bearing = 2*pi*Flow of Lubricant into Clearance Space/(Radius of Journal*Radial clearance for bearing*Journal Speed*Flow Variable)
Tangential Force in Sliding Contact Bearing
Go Tangential force on moving plate = Dynamic viscosity of oil*Area of moving plate on oil*Velocity of Moving Plate on Oil/Oil film thickness
Load Acting on Bearing in Terms of Load Coefficient and Pressure of Lubricating Oil in Recess
Go Load Acting on Sliding Bearing = Load coefficient for bearing*Total Projected Area of Bearing Pad*Pressure of Lubricating Oil
Axial Length of Bearing in Terms of Unit Bearing Pressure
Go Axial Length of Bearing = Radial load acting on sliding bearing/(Unit bearing pressure for bearing*Journal Diameter)
Radial Load Acting on Bearing in Terms of Unit Bearing Pressure
Go Radial load acting on sliding bearing = Unit bearing pressure for bearing*Axial Length of Bearing*Journal Diameter
Radius of Bearing in Terms of Minimum Film Thickness
Go Radius of Bearing = Eccentricity in bearing+Minimum Film Thickness+Radius of Journal
Radius of Bearing in Terms of Radial Clearance
Go Radius of Bearing = Radius of Journal+Radial clearance for bearing
Outflow of Lubricant in Terms of Flow Ratio Variable
Go Out-Flow of Lubricant = Flow of Lubricant/Flow Ratio Variable

Radial Load Acting on Bearing in Terms of Unit Bearing Pressure Formula

Radial load acting on sliding bearing = Unit bearing pressure for bearing*Axial Length of Bearing*Journal Diameter
Wr = p*la*d

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 Radial Load Acting on Bearing in Terms of Unit Bearing Pressure?

Radial Load Acting on Bearing in Terms of Unit Bearing Pressure calculator uses Radial load acting on sliding bearing = Unit bearing pressure for bearing*Axial Length of Bearing*Journal Diameter to calculate the Radial load acting on sliding bearing, The Radial Load Acting on Bearing in Terms of Unit Bearing Pressure formula is defined as the product of unit bearing pressure, length, and diameter of bearing. Radial load acting on sliding bearing is denoted by Wr symbol.

How to calculate Radial Load Acting on Bearing in Terms of Unit Bearing Pressure using this online calculator? To use this online calculator for Radial Load Acting on Bearing in Terms of Unit Bearing Pressure, enter Unit bearing pressure for bearing (p), Axial Length of Bearing (la) & Journal Diameter (d) and hit the calculate button. Here is how the Radial Load Acting on Bearing in Terms of Unit Bearing Pressure calculation can be explained with given input values -> 979.2 = 960000*0.02*0.051.

FAQ

What is Radial Load Acting on Bearing in Terms of Unit Bearing Pressure?
The Radial Load Acting on Bearing in Terms of Unit Bearing Pressure formula is defined as the product of unit bearing pressure, length, and diameter of bearing and is represented as Wr = p*la*d or Radial load acting on sliding bearing = Unit bearing pressure for bearing*Axial Length of Bearing*Journal Diameter. Unit bearing pressure for bearing is the average pressure acting on the contact surface of the bearing, The Axial Length of Bearing is defined as the length of the bearing measured along its axis & The Journal Diameter Value is defined as the diameter of the journal of the bearing.
How to calculate Radial Load Acting on Bearing in Terms of Unit Bearing Pressure?
The Radial Load Acting on Bearing in Terms of Unit Bearing Pressure formula is defined as the product of unit bearing pressure, length, and diameter of bearing is calculated using Radial load acting on sliding bearing = Unit bearing pressure for bearing*Axial Length of Bearing*Journal Diameter. To calculate Radial Load Acting on Bearing in Terms of Unit Bearing Pressure, you need Unit bearing pressure for bearing (p), Axial Length of Bearing (la) & Journal Diameter (d). With our tool, you need to enter the respective value for Unit bearing pressure for bearing, Axial Length of Bearing & Journal Diameter and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
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