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Intensity of Pressure Between Flange is defined as the maximum limit of compressive stress that the bush and the flange can resist. Check FAQs
Pa=PDblb
Pa - Intensity of Pressure Between Flange?P - Force on Each Rubber Bush or Pin of Coupling?Db - Outer Diameter of Bush For Coupling?lb - Effective Length of Bush of Coupling?

Permissible Intensity of Pressure between Flange and Rubber Bush in Bushed Pin Coupling Example

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With units
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Here is how the Permissible Intensity of Pressure between Flange and Rubber Bush in Bushed Pin Coupling equation looks like with Values.

Here is how the Permissible Intensity of Pressure between Flange and Rubber Bush in Bushed Pin Coupling equation looks like with Units.

Here is how the Permissible Intensity of Pressure between Flange and Rubber Bush in Bushed Pin Coupling equation looks like.

0.9808Edit=1150Edit35Edit33.5Edit
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Permissible Intensity of Pressure between Flange and Rubber Bush in Bushed Pin Coupling Solution

Follow our step by step solution on how to calculate Permissible Intensity of Pressure between Flange and Rubber Bush in Bushed Pin Coupling?

FIRST Step Consider the formula
Pa=PDblb
Next Step Substitute values of Variables
Pa=1150N35mm33.5mm
Next Step Convert Units
Pa=1150N0.035m0.0335m
Next Step Prepare to Evaluate
Pa=11500.0350.0335
Next Step Evaluate
Pa=980810.234541578Pa
Next Step Convert to Output's Unit
Pa=0.980810234541578N/mm²
LAST Step Rounding Answer
Pa=0.9808N/mm²

Permissible Intensity of Pressure between Flange and Rubber Bush in Bushed Pin Coupling Formula Elements

Variables
Intensity of Pressure Between Flange
Intensity of Pressure Between Flange is defined as the maximum limit of compressive stress that the bush and the flange can resist.
Symbol: Pa
Measurement: PressureUnit: N/mm²
Note: Value should be greater than 0.
Force on Each Rubber Bush or Pin 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.
Symbol: P
Measurement: ForceUnit: N
Note: Value should be greater than 0.
Outer Diameter of Bush For Coupling
Outer Diameter of Bush For Coupling is defined as the diameter of the outside diameter of the bush used inside the coupling.
Symbol: Db
Measurement: LengthUnit: mm
Note: Value should be greater than 0.
Effective Length of Bush of Coupling
Effective Length of Bush of Coupling is the length of the bush of the coupling in contact with the flange.
Symbol: lb
Measurement: LengthUnit: mm
Note: Value should be greater than 0.

Other Formulas to find Intensity of Pressure Between Flange

​Go Permissible Intensity of Pressure between Flange and Rubber Bush of Coupling given Torque
Pa=2MtDbNDplb

Other formulas in Stress Analysis category

​Go Force Acting on Each Pin or Bush of Coupling given Troque Transmitted
P=2MtNDp
​Go Force Acting on Each Pin or Bush of Coupling
P=DblbPa
​Go Allowable Shear Stress in Pins of Coupling
𝜏=8MtπD12DpN

How to Evaluate Permissible Intensity of Pressure between Flange and Rubber Bush in Bushed Pin Coupling?

Permissible Intensity of Pressure between Flange and Rubber Bush in Bushed Pin Coupling evaluator uses Intensity of Pressure Between Flange = Force on Each Rubber Bush or Pin of Coupling/(Outer Diameter of Bush For Coupling*Effective Length of Bush of Coupling) to evaluate the Intensity of Pressure Between Flange, Permissible Intensity of Pressure between Flange and Rubber bush in Bushed Pin Coupling is defined as the limiting value or the allowable value of pressure in between the Flange and Rubber bush in Bushed Pin Coupling. Intensity of Pressure Between Flange is denoted by Pa symbol.

How to evaluate Permissible Intensity of Pressure between Flange and Rubber Bush in Bushed Pin Coupling using this online evaluator? To use this online evaluator for Permissible Intensity of Pressure between Flange and Rubber Bush in Bushed Pin Coupling, enter Force on Each Rubber Bush or Pin of Coupling (P), Outer Diameter of Bush For Coupling (Db) & Effective Length of Bush of Coupling (lb) and hit the calculate button.

FAQs on Permissible Intensity of Pressure between Flange and Rubber Bush in Bushed Pin Coupling

What is the formula to find Permissible Intensity of Pressure between Flange and Rubber Bush in Bushed Pin Coupling?
The formula of Permissible Intensity of Pressure between Flange and Rubber Bush in Bushed Pin Coupling is expressed as Intensity of Pressure Between Flange = Force on Each Rubber Bush or Pin of Coupling/(Outer Diameter of Bush For Coupling*Effective Length of Bush of Coupling). Here is an example- 9.8E-7 = 1150/(0.035*0.0335).
How to calculate Permissible Intensity of Pressure between Flange and Rubber Bush in Bushed Pin Coupling?
With Force on Each Rubber Bush or Pin of Coupling (P), Outer Diameter of Bush For Coupling (Db) & Effective Length of Bush of Coupling (lb) we can find Permissible Intensity of Pressure between Flange and Rubber Bush in Bushed Pin Coupling using the formula - Intensity of Pressure Between Flange = Force on Each Rubber Bush or Pin of Coupling/(Outer Diameter of Bush For Coupling*Effective Length of Bush of Coupling).
What are the other ways to Calculate Intensity of Pressure Between Flange?
Here are the different ways to Calculate Intensity of Pressure Between Flange-
  • Intensity of Pressure Between Flange=2*Torque Transmitted By Coupling/(Outer Diameter of Bush For Coupling*Number of Pins in Coupling*Pitch Circle Diameter of Pins of Coupling*Effective Length of Bush of Coupling)OpenImg
Can the Permissible Intensity of Pressure between Flange and Rubber Bush in Bushed Pin Coupling be negative?
No, the Permissible Intensity of Pressure between Flange and Rubber Bush in Bushed Pin Coupling, measured in Pressure cannot be negative.
Which unit is used to measure Permissible Intensity of Pressure between Flange and Rubber Bush in Bushed Pin Coupling?
Permissible Intensity of Pressure between Flange and Rubber Bush in Bushed Pin Coupling is usually measured using the Newton per Square Millimeter[N/mm²] for Pressure. Pascal[N/mm²], Kilopascal[N/mm²], Bar[N/mm²] are the few other units in which Permissible Intensity of Pressure between Flange and Rubber Bush in Bushed Pin Coupling can be measured.
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