Equivalent Dynamic Load for Ball Bearing Solution

STEP 0: Pre-Calculation Summary
Formula Used
Equivalent dynamic load on back to back bearing = Dynamic Load Capacity of Bearing/(Rated Bearing Life^(1/3))
Pb = C/(L10^(1/3))
This formula uses 3 Variables
Variables Used
Equivalent dynamic load on back to back bearing - (Measured in Newton) - Equivalent dynamic load on back to back bearing is a net dynamic load on a back-to-back or face-to-face mounted bearing.
Dynamic Load Capacity of Bearing - (Measured in Newton) - Dynamic Load Capacity of Bearing is the maximum permissible load that a specimen can withstand when repeatedly in motion over a long period of time.
Rated Bearing Life - Rated Bearing Life is defined as the total number of million revolutions the bearing rotates before failure.
STEP 1: Convert Input(s) to Base Unit
Dynamic Load Capacity of Bearing: 36850 Newton --> 36850 Newton No Conversion Required
Rated Bearing Life: 144 --> No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Pb = C/(L10^(1/3)) --> 36850/(144^(1/3))
Evaluating ... ...
Pb = 7030.45330634838
STEP 3: Convert Result to Output's Unit
7030.45330634838 Newton --> No Conversion Required
FINAL ANSWER
7030.45330634838 7030.453 Newton <-- Equivalent dynamic load on back to back bearing
(Calculation completed in 00.004 seconds)

Credits

Created by Vaibhav Malani
National Institute of Technology (NIT), Tiruchirapalli
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7 Dynamic Load Calculators

Equivalent Dynamic Load for Bearing given Radial Factor
Go Equivalent dynamic load on back to back bearing = (Radial Factor*Radial load acting on bearing)+(Thrust Factor for Bearing*Axial or thrust load acting on bearing)
Equivalent Dynamic Load for Bearing given Rated Bearing Life
Go Equivalent dynamic load on back to back bearing = Dynamic Load Capacity of Bearing/(Rated Bearing Life^(1/Constant p of bearing))
Dynamic Load Capacity for Bearing given Rated Bearing Life
Go Dynamic Load Capacity of Bearing = Equivalent dynamic load on back to back bearing*(Rated Bearing Life^(1/Constant p of bearing))
Equivalent Dynamic Load for Roller Bearing
Go Equivalent dynamic load on back to back bearing = Dynamic Load Capacity of Bearing/(Rated Bearing Life^(0.3))
Equivalent Dynamic Load for Ball Bearing
Go Equivalent dynamic load on back to back bearing = Dynamic Load Capacity of Bearing/(Rated Bearing Life^(1/3))
Dynamic Load Capacity for Roller Bearing
Go Dynamic Load Capacity of Bearing = Equivalent dynamic load on back to back bearing*(Rated Bearing Life^(0.3))
Dynamic Load Capacity for Ball Bearing
Go Dynamic Load Capacity of Bearing = Equivalent dynamic load on back to back bearing*(Rated Bearing Life^(1/3))

Equivalent Dynamic Load for Ball Bearing Formula

Equivalent dynamic load on back to back bearing = Dynamic Load Capacity of Bearing/(Rated Bearing Life^(1/3))
Pb = C/(L10^(1/3))

What is a rolling contact bearing?

The term rolling contact bearings refers to the wide variety of bearings that use spherical balls or some other type of roller between the stationary and the moving elements. The most common type of bearing supports a rotating shaft, resisting purely radial loads or a combination of radial and axial (thrust) loads.

How to Calculate Equivalent Dynamic Load for Ball Bearing?

Equivalent Dynamic Load for Ball Bearing calculator uses Equivalent dynamic load on back to back bearing = Dynamic Load Capacity of Bearing/(Rated Bearing Life^(1/3)) to calculate the Equivalent dynamic load on back to back bearing, Equivalent Dynamic Load for Ball Bearing is the equivalent dynamic load onto the bearing. This is the net load acting onto the rotating bearing. Equivalent dynamic load on back to back bearing is denoted by Pb symbol.

How to calculate Equivalent Dynamic Load for Ball Bearing using this online calculator? To use this online calculator for Equivalent Dynamic Load for Ball Bearing, enter Dynamic Load Capacity of Bearing (C) & Rated Bearing Life (L10) and hit the calculate button. Here is how the Equivalent Dynamic Load for Ball Bearing calculation can be explained with given input values -> 7030.453 = 36850/(144^(1/3)).

FAQ

What is Equivalent Dynamic Load for Ball Bearing?
Equivalent Dynamic Load for Ball Bearing is the equivalent dynamic load onto the bearing. This is the net load acting onto the rotating bearing and is represented as Pb = C/(L10^(1/3)) or Equivalent dynamic load on back to back bearing = Dynamic Load Capacity of Bearing/(Rated Bearing Life^(1/3)). Dynamic Load Capacity of Bearing is the maximum permissible load that a specimen can withstand when repeatedly in motion over a long period of time & Rated Bearing Life is defined as the total number of million revolutions the bearing rotates before failure.
How to calculate Equivalent Dynamic Load for Ball Bearing?
Equivalent Dynamic Load for Ball Bearing is the equivalent dynamic load onto the bearing. This is the net load acting onto the rotating bearing is calculated using Equivalent dynamic load on back to back bearing = Dynamic Load Capacity of Bearing/(Rated Bearing Life^(1/3)). To calculate Equivalent Dynamic Load for Ball Bearing, you need Dynamic Load Capacity of Bearing (C) & Rated Bearing Life (L10). With our tool, you need to enter the respective value for Dynamic Load Capacity of Bearing & Rated Bearing Life and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
How many ways are there to calculate Equivalent dynamic load on back to back bearing?
In this formula, Equivalent dynamic load on back to back bearing uses Dynamic Load Capacity of Bearing & Rated Bearing Life. We can use 3 other way(s) to calculate the same, which is/are as follows -
  • Equivalent dynamic load on back to back bearing = (Radial Factor*Radial load acting on bearing)+(Thrust Factor for Bearing*Axial or thrust load acting on bearing)
  • Equivalent dynamic load on back to back bearing = Dynamic Load Capacity of Bearing/(Rated Bearing Life^(1/Constant p of bearing))
  • Equivalent dynamic load on back to back bearing = Dynamic Load Capacity of Bearing/(Rated Bearing Life^(0.3))
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