Factor Y1 of Self Aligning Ball Bearing when Fa by Fr is less than or equal to e Solution

STEP 0: Pre-Calculation Summary
Formula Used
Factor Y1 of Bearing = (Equivalent Dynamic Load on Self Aligning Bearing-Radial Load Acting on Bearing)/Axial or Thrust Load Acting on Bearing
Y1 = (Peqsa-Fr)/Fa
This formula uses 4 Variables
Variables Used
Factor Y1 of Bearing - Factor Y1 of Bearing is a factor used in the calculation of Equivalent dynamic load for bearings.
Equivalent Dynamic Load on Self Aligning Bearing - (Measured in Newton) - Equivalent dynamic load on self aligning bearing is the net amount of dynamic load acting on a self-aligning bearing.
Radial Load Acting on Bearing - (Measured in Newton) - Radial load acting on bearing is the amount of load onto the bearing acting radially.
Axial or Thrust Load Acting on Bearing - (Measured in Newton) - Axial or thrust load acting on bearing is the amount of thrust load onto the bearing acting axially.
STEP 1: Convert Input(s) to Base Unit
Equivalent Dynamic Load on Self Aligning Bearing: 12250 Newton --> 12250 Newton No Conversion Required
Radial Load Acting on Bearing: 8050 Newton --> 8050 Newton No Conversion Required
Axial or Thrust Load Acting on Bearing: 3000 Newton --> 3000 Newton No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Y1 = (Peqsa-Fr)/Fa --> (12250-8050)/3000
Evaluating ... ...
Y1 = 1.4
STEP 3: Convert Result to Output's Unit
1.4 --> No Conversion Required
FINAL ANSWER
1.4 <-- Factor Y1 of Bearing
(Calculation completed in 00.004 seconds)

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National Institute of Technology (NIT), Tiruchirapalli
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Self Aligning Ball Bearings Calculators

Equivalent Dynamic Load on Self Aligning Ball Bearing when Fa by Fr is less than or equal to e
​ LaTeX ​ Go Equivalent Dynamic Load on Self Aligning Bearing = Radial Load Acting on Bearing+(Factor Y1 of Bearing*Axial or Thrust Load Acting on Bearing)
Axial Thrust Load on Self Aligning Ball Bearing when Fa by Fr is less than or equal to e
​ LaTeX ​ Go Axial or Thrust Load Acting on Bearing = (Equivalent Dynamic Load on Self Aligning Bearing-Radial Load Acting on Bearing)/Factor Y1 of Bearing
Radial Load on Self Aligning Ball Bearing when Fa by Fr is less than or equal to e
​ LaTeX ​ Go Radial Load Acting on Bearing = Equivalent Dynamic Load on Self Aligning Bearing-(Factor Y1 of Bearing*Axial or Thrust Load Acting on Bearing)
Factor Y1 of Self Aligning Ball Bearing when Fa by Fr is less than or equal to e
​ LaTeX ​ Go Factor Y1 of Bearing = (Equivalent Dynamic Load on Self Aligning Bearing-Radial Load Acting on Bearing)/Axial or Thrust Load Acting on Bearing

Factor Y1 of Self Aligning Ball Bearing when Fa by Fr is less than or equal to e Formula

​LaTeX ​Go
Factor Y1 of Bearing = (Equivalent Dynamic Load on Self Aligning Bearing-Radial Load Acting on Bearing)/Axial or Thrust Load Acting on Bearing
Y1 = (Peqsa-Fr)/Fa

What is a self aligning bearing?

Self-aligning bearings refer to a type of bearing designed and used to accommodate misalignment between the housing and shaft. Self-aligning bearings include self-aligning ball bearings, spherical roller bearings, toroidal roller bearings, and self-aligning thrust bearings.

How to Calculate Factor Y1 of Self Aligning Ball Bearing when Fa by Fr is less than or equal to e?

Factor Y1 of Self Aligning Ball Bearing when Fa by Fr is less than or equal to e calculator uses Factor Y1 of Bearing = (Equivalent Dynamic Load on Self Aligning Bearing-Radial Load Acting on Bearing)/Axial or Thrust Load Acting on Bearing to calculate the Factor Y1 of Bearing, Factor Y1 of Self Aligning Ball Bearing when Fa by Fr is less than or equal to e is a factor introduced in the equivalent dynamic load calculation equation for Self Aligning Ball Bearing. Factor Y1 of Bearing is denoted by Y1 symbol.

How to calculate Factor Y1 of Self Aligning Ball Bearing when Fa by Fr is less than or equal to e using this online calculator? To use this online calculator for Factor Y1 of Self Aligning Ball Bearing when Fa by Fr is less than or equal to e, enter Equivalent Dynamic Load on Self Aligning Bearing (Peqsa), Radial Load Acting on Bearing (Fr) & Axial or Thrust Load Acting on Bearing (Fa) and hit the calculate button. Here is how the Factor Y1 of Self Aligning Ball Bearing when Fa by Fr is less than or equal to e calculation can be explained with given input values -> 1.4 = (12250-8050)/3000.

FAQ

What is Factor Y1 of Self Aligning Ball Bearing when Fa by Fr is less than or equal to e?
Factor Y1 of Self Aligning Ball Bearing when Fa by Fr is less than or equal to e is a factor introduced in the equivalent dynamic load calculation equation for Self Aligning Ball Bearing and is represented as Y1 = (Peqsa-Fr)/Fa or Factor Y1 of Bearing = (Equivalent Dynamic Load on Self Aligning Bearing-Radial Load Acting on Bearing)/Axial or Thrust Load Acting on Bearing. Equivalent dynamic load on self aligning bearing is the net amount of dynamic load acting on a self-aligning bearing, Radial load acting on bearing is the amount of load onto the bearing acting radially & Axial or thrust load acting on bearing is the amount of thrust load onto the bearing acting axially.
How to calculate Factor Y1 of Self Aligning Ball Bearing when Fa by Fr is less than or equal to e?
Factor Y1 of Self Aligning Ball Bearing when Fa by Fr is less than or equal to e is a factor introduced in the equivalent dynamic load calculation equation for Self Aligning Ball Bearing is calculated using Factor Y1 of Bearing = (Equivalent Dynamic Load on Self Aligning Bearing-Radial Load Acting on Bearing)/Axial or Thrust Load Acting on Bearing. To calculate Factor Y1 of Self Aligning Ball Bearing when Fa by Fr is less than or equal to e, you need Equivalent Dynamic Load on Self Aligning Bearing (Peqsa), Radial Load Acting on Bearing (Fr) & Axial or Thrust Load Acting on Bearing (Fa). With our tool, you need to enter the respective value for Equivalent Dynamic Load on Self Aligning Bearing, Radial Load Acting on Bearing & Axial or Thrust Load Acting on Bearing 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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