Outer Diameter of Bush in Bushed Pin Coupling given Force Solution

STEP 0: Pre-Calculation Summary
Formula Used
Outer Diameter of Bush For Coupling = Force on Each Rubber Bush or Pin of Coupling/(Effective Length of Bush of Coupling*Intensity of Pressure Flange And Bush of Coupling)
Db = P/(lb*pa)
This formula uses 4 Variables
Variables Used
Outer Diameter of Bush For Coupling - (Measured in Meter) - Outer Diameter of Bush For Coupling is defined as the diameter of the outside diameter of the bush used inside the coupling.
Force on Each Rubber Bush or Pin of Coupling - (Measured in Newton) - Force on Each Rubber Bush or Pin of Coupling is the amount of force that is acting onto an individual bush or pin of the coupling.
Effective Length of Bush of Coupling - (Measured in Meter) - Effective Length of Bush of Coupling is the length of the bush of the coupling in contact with the flange.
Intensity of Pressure Flange And Bush of Coupling - (Measured in Pascal) - Intensity of Pressure Flange And Bush of Coupling is defined as the maximum limit of compressive stress that the bush and the flange can resist.
STEP 1: Convert Input(s) to Base Unit
Force on Each Rubber Bush or Pin of Coupling: 1150 Newton --> 1150 Newton No Conversion Required
Effective Length of Bush of Coupling: 33.5 Millimeter --> 0.0335 Meter (Check conversion ​here)
Intensity of Pressure Flange And Bush of Coupling: 1.01 Newton per Square Millimeter --> 1010000 Pascal (Check conversion ​here)
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Db = P/(lb*pa) --> 1150/(0.0335*1010000)
Evaluating ... ...
Db = 0.0339884734742131
STEP 3: Convert Result to Output's Unit
0.0339884734742131 Meter -->33.9884734742131 Millimeter (Check conversion ​here)
FINAL ANSWER
33.9884734742131 33.98847 Millimeter <-- Outer Diameter of Bush For Coupling
(Calculation completed in 00.004 seconds)

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Created by Vaibhav Malani
National Institute of Technology (NIT), Tiruchirapalli
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Verified by Sagar S Kulkarni
Dayananda Sagar College of Engineering (DSCE), Bengaluru
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​ LaTeX ​ Go Outside Diameter of Hub of Coupling = 2*Diameter of Driving Shaft For Coupling
Diameter of Driving Shaft of Coupling given Length of Hub of Bushed Pin Coupling
​ LaTeX ​ Go Diameter of Driving Shaft For Coupling = Length of Hub For Coupling/1.5

Outer Diameter of Bush in Bushed Pin Coupling given Force Formula

​LaTeX ​Go
Outer Diameter of Bush For Coupling = Force on Each Rubber Bush or Pin of Coupling/(Effective Length of Bush of Coupling*Intensity of Pressure Flange And Bush of Coupling)
Db = P/(lb*pa)

What is coupling?

A coupling can be defined as a mechanical device that permanently joins two rotating shafts to each other.

How to Calculate Outer Diameter of Bush in Bushed Pin Coupling given Force?

Outer Diameter of Bush in Bushed Pin Coupling given Force calculator uses Outer Diameter of Bush For Coupling = Force on Each Rubber Bush or Pin of Coupling/(Effective Length of Bush of Coupling*Intensity of Pressure Flange And Bush of Coupling) to calculate the Outer Diameter of Bush For Coupling, Outer Diameter of Bush in Bushed Pin Coupling given Force is defined as the diameter of the outer surface of the bush of a bushed pin coupling. Outer Diameter of Bush For Coupling is denoted by Db symbol.

How to calculate Outer Diameter of Bush in Bushed Pin Coupling given Force using this online calculator? To use this online calculator for Outer Diameter of Bush in Bushed Pin Coupling given Force, enter Force on Each Rubber Bush or Pin of Coupling (P), Effective Length of Bush of Coupling (lb) & Intensity of Pressure Flange And Bush of Coupling (pa) and hit the calculate button. Here is how the Outer Diameter of Bush in Bushed Pin Coupling given Force calculation can be explained with given input values -> 33988.47 = 1150/(0.0335*1010000).

FAQ

What is Outer Diameter of Bush in Bushed Pin Coupling given Force?
Outer Diameter of Bush in Bushed Pin Coupling given Force is defined as the diameter of the outer surface of the bush of a bushed pin coupling and is represented as Db = P/(lb*pa) or Outer Diameter of Bush For Coupling = Force on Each Rubber Bush or Pin of Coupling/(Effective Length of Bush of Coupling*Intensity of Pressure Flange And Bush of Coupling). Force on Each Rubber Bush or Pin of Coupling is the amount of force that is acting onto an individual bush or pin of the coupling, Effective Length of Bush of Coupling is the length of the bush of the coupling in contact with the flange & Intensity of Pressure Flange And Bush of Coupling is defined as the maximum limit of compressive stress that the bush and the flange can resist.
How to calculate Outer Diameter of Bush in Bushed Pin Coupling given Force?
Outer Diameter of Bush in Bushed Pin Coupling given Force is defined as the diameter of the outer surface of the bush of a bushed pin coupling is calculated using Outer Diameter of Bush For Coupling = Force on Each Rubber Bush or Pin of Coupling/(Effective Length of Bush of Coupling*Intensity of Pressure Flange And Bush of Coupling). To calculate Outer Diameter of Bush in Bushed Pin Coupling given Force, you need Force on Each Rubber Bush or Pin of Coupling (P), Effective Length of Bush of Coupling (lb) & Intensity of Pressure Flange And Bush of Coupling (pa). With our tool, you need to enter the respective value for Force on Each Rubber Bush or Pin of Coupling, Effective Length of Bush of Coupling & Intensity of Pressure Flange And Bush of Coupling 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 Outer Diameter of Bush For Coupling?
In this formula, Outer Diameter of Bush For Coupling uses Force on Each Rubber Bush or Pin of Coupling, Effective Length of Bush of Coupling & Intensity of Pressure Flange And Bush of Coupling. We can use 1 other way(s) to calculate the same, which is/are as follows -
  • Outer Diameter of Bush For Coupling = 2*Torque Transmitted By Coupling/(Intensity of Pressure Flange And Bush of Coupling*Number of Pins in Coupling*Pitch Circle Diameter of Pins of Coupling*Effective Length of Bush of Coupling)
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