Tangential Stress in Thick Cylinder subjected to External Pressure Solution

STEP 0: Pre-Calculation Summary
Formula Used
Tangential stress in pressurized cylinder = (External pressure on cylinder*(Outer diameter of pressurized cylinder^2)/((Outer diameter of pressurized cylinder^2)-(Inner diameter of pressurized cylinder^2)))*(((Inner diameter of pressurized cylinder^2)/(4*(Radius of pressurized cylinder^2)))+1)
σtang = (Po*(do^2)/((do^2)-(di^2)))*(((di^2)/(4*(r^2)))+1)
This formula uses 5 Variables
Variables Used
Tangential stress in pressurized cylinder - (Measured in Pascal) - Tangential stress in pressurized cylinder is the stress experienced by the cylinder walls when the direction of the deforming force is perpendicular to central axis.
External pressure on cylinder - (Measured in Pascal) - External pressure on cylinder is the amount of pressure of force per unit area acting onto the external surface of a cylinder.
Outer diameter of pressurized cylinder - (Measured in Meter) - Outer diameter of pressurized cylinder is the diameter of the outer edge of a cylinder under pressure.
Inner diameter of pressurized cylinder - (Measured in Meter) - Inner diameter of pressurized cylinder is the diameter of the inner circle or the internal surface of a cylinder under pressure.
Radius of pressurized cylinder - (Measured in Meter) - Radius of pressurized cylinder is a straight line from the center to the cylinder's base to the surface of the cylinder.
STEP 1: Convert Input(s) to Base Unit
External pressure on cylinder: 8 Megapascal --> 8000000 Pascal (Check conversion here)
Outer diameter of pressurized cylinder: 550 Millimeter --> 0.55 Meter (Check conversion here)
Inner diameter of pressurized cylinder: 465 Millimeter --> 0.465 Meter (Check conversion here)
Radius of pressurized cylinder: 240 Millimeter --> 0.24 Meter (Check conversion here)
STEP 2: Evaluate Formula
Substituting Input Values in Formula
σtang = (Po*(do^2)/((do^2)-(di^2)))*(((di^2)/(4*(r^2)))+1) --> (8000000*(0.55^2)/((0.55^2)-(0.465^2)))*(((0.465^2)/(4*(0.24^2)))+1)
Evaluating ... ...
σtang = 54373958.6351782
STEP 3: Convert Result to Output's Unit
54373958.6351782 Pascal -->54.3739586351782 Newton per Square Millimeter (Check conversion here)
FINAL ANSWER
54.3739586351782 54.37396 Newton per Square Millimeter <-- Tangential stress in pressurized cylinder
(Calculation completed in 00.004 seconds)

Credits

Created by Vaibhav Malani
National Institute of Technology (NIT), Tiruchirapalli
Vaibhav Malani has created this Calculator and 600+ more calculators!
Verified by Anshika Arya
National Institute Of Technology (NIT), Hamirpur
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10+ Thick Cylinder Vessel Calculators

External Pressure acting on Thick Cylinder given Tangential Stress
Go External pressure on cylinder = Tangential stress in pressurized cylinder/(((Outer diameter of pressurized cylinder^2)/((Outer diameter of pressurized cylinder^2)-(Inner diameter of pressurized cylinder^2)))*(((Inner diameter of pressurized cylinder^2)/(4*(Radius of pressurized cylinder^2)))+1))
Internal Pressure in Thick Cylinder given Tangential Stress
Go Internal pressure on cylinder = Tangential stress in pressurized cylinder/(((Inner diameter of pressurized cylinder^2)/((Outer diameter of pressurized cylinder^2)-(Inner diameter of pressurized cylinder^2)))*(((Outer diameter of pressurized cylinder^2)/(4*(Radius of pressurized cylinder^2)))+1))
Tangential Stress in Thick Cylinder subjected to Internal Pressure
Go Tangential stress in pressurized cylinder = (Internal pressure on cylinder*(Inner diameter of pressurized cylinder^2)/((Outer diameter of pressurized cylinder^2)-(Inner diameter of pressurized cylinder^2)))*(((Outer diameter of pressurized cylinder^2)/(4*(Radius of pressurized cylinder^2)))+1)
Tangential Stress in Thick Cylinder subjected to External Pressure
Go Tangential stress in pressurized cylinder = (External pressure on cylinder*(Outer diameter of pressurized cylinder^2)/((Outer diameter of pressurized cylinder^2)-(Inner diameter of pressurized cylinder^2)))*(((Inner diameter of pressurized cylinder^2)/(4*(Radius of pressurized cylinder^2)))+1)
External Pressure acting on Thick Cylinder given Radial Stress
Go External pressure on cylinder = Radial stress in pressurized cylinder/(((Outer diameter of pressurized cylinder^2)/((Outer diameter of pressurized cylinder^2)-(Inner diameter of pressurized cylinder^2)))*(((Inner diameter of pressurized cylinder^2)/(4*(Radius of pressurized cylinder^2)))+1))
Internal Pressure in Thick Cylinder given Radial Stress
Go Internal pressure on cylinder = Radial stress in pressurized cylinder/(((Inner diameter of pressurized cylinder^2)/((Outer diameter of pressurized cylinder^2)-(Inner diameter of pressurized cylinder^2)))*(((Outer diameter of pressurized cylinder^2)/(4*(Radius of pressurized cylinder^2)))+1))
Radial Stress in Thick Cylinder subjected to Internal Pressure
Go Radial stress in pressurized cylinder = (Internal pressure on cylinder*(Inner diameter of pressurized cylinder^2)/((Outer diameter of pressurized cylinder^2)-(Inner diameter of pressurized cylinder^2)))*(((Outer diameter of pressurized cylinder^2)/(4*(Radius of pressurized cylinder^2)))-1)
Radial Stress in Thick Cylinder subjected to External Pressure
Go Radial stress in pressurized cylinder = (External pressure on cylinder*(Outer diameter of pressurized cylinder^2)/((Outer diameter of pressurized cylinder^2)-(Inner diameter of pressurized cylinder^2)))*(1-((Inner diameter of pressurized cylinder^2)/(4*(Radius of pressurized cylinder^2))))
Longitudinal Stress in Thick Cylinder subjected to Internal Pressure
Go Longitudinal stress in pressurized cylinder = (Internal pressure on cylinder*(Inner diameter of pressurized cylinder^2)/((Outer diameter of pressurized cylinder^2)-(Inner diameter of pressurized cylinder^2)))
Internal Pressure in Thick Cylinder given Longitudinal Stress
Go Internal pressure on cylinder = Longitudinal stress in pressurized cylinder*((Outer diameter of pressurized cylinder^2)-(Inner diameter of pressurized cylinder^2))/(Inner diameter of pressurized cylinder^2)

Tangential Stress in Thick Cylinder subjected to External Pressure Formula

Tangential stress in pressurized cylinder = (External pressure on cylinder*(Outer diameter of pressurized cylinder^2)/((Outer diameter of pressurized cylinder^2)-(Inner diameter of pressurized cylinder^2)))*(((Inner diameter of pressurized cylinder^2)/(4*(Radius of pressurized cylinder^2)))+1)
σtang = (Po*(do^2)/((do^2)-(di^2)))*(((di^2)/(4*(r^2)))+1)

What is a Pressure Vessel?

A pressure vessel is a container designed to hold gases or liquids at a pressure substantially different from the ambient pressure.

How to Calculate Tangential Stress in Thick Cylinder subjected to External Pressure?

Tangential Stress in Thick Cylinder subjected to External Pressure calculator uses Tangential stress in pressurized cylinder = (External pressure on cylinder*(Outer diameter of pressurized cylinder^2)/((Outer diameter of pressurized cylinder^2)-(Inner diameter of pressurized cylinder^2)))*(((Inner diameter of pressurized cylinder^2)/(4*(Radius of pressurized cylinder^2)))+1) to calculate the Tangential stress in pressurized cylinder, Tangential Stress in Thick Cylinder subjected to External Pressure formula is defined as the stress when the direction of the deforming force or external force is parallel to the cross-sectional area, the stress experienced by the object is called shearing stress or tangential stress. Tangential stress in pressurized cylinder is denoted by σtang symbol.

How to calculate Tangential Stress in Thick Cylinder subjected to External Pressure using this online calculator? To use this online calculator for Tangential Stress in Thick Cylinder subjected to External Pressure, enter External pressure on cylinder (Po), Outer diameter of pressurized cylinder (do), Inner diameter of pressurized cylinder (di) & Radius of pressurized cylinder (r) and hit the calculate button. Here is how the Tangential Stress in Thick Cylinder subjected to External Pressure calculation can be explained with given input values -> 5.4E-5 = (8000000*(0.55^2)/((0.55^2)-(0.465^2)))*(((0.465^2)/(4*(0.24^2)))+1).

FAQ

What is Tangential Stress in Thick Cylinder subjected to External Pressure?
Tangential Stress in Thick Cylinder subjected to External Pressure formula is defined as the stress when the direction of the deforming force or external force is parallel to the cross-sectional area, the stress experienced by the object is called shearing stress or tangential stress and is represented as σtang = (Po*(do^2)/((do^2)-(di^2)))*(((di^2)/(4*(r^2)))+1) or Tangential stress in pressurized cylinder = (External pressure on cylinder*(Outer diameter of pressurized cylinder^2)/((Outer diameter of pressurized cylinder^2)-(Inner diameter of pressurized cylinder^2)))*(((Inner diameter of pressurized cylinder^2)/(4*(Radius of pressurized cylinder^2)))+1). External pressure on cylinder is the amount of pressure of force per unit area acting onto the external surface of a cylinder, Outer diameter of pressurized cylinder is the diameter of the outer edge of a cylinder under pressure, Inner diameter of pressurized cylinder is the diameter of the inner circle or the internal surface of a cylinder under pressure & Radius of pressurized cylinder is a straight line from the center to the cylinder's base to the surface of the cylinder.
How to calculate Tangential Stress in Thick Cylinder subjected to External Pressure?
Tangential Stress in Thick Cylinder subjected to External Pressure formula is defined as the stress when the direction of the deforming force or external force is parallel to the cross-sectional area, the stress experienced by the object is called shearing stress or tangential stress is calculated using Tangential stress in pressurized cylinder = (External pressure on cylinder*(Outer diameter of pressurized cylinder^2)/((Outer diameter of pressurized cylinder^2)-(Inner diameter of pressurized cylinder^2)))*(((Inner diameter of pressurized cylinder^2)/(4*(Radius of pressurized cylinder^2)))+1). To calculate Tangential Stress in Thick Cylinder subjected to External Pressure, you need External pressure on cylinder (Po), Outer diameter of pressurized cylinder (do), Inner diameter of pressurized cylinder (di) & Radius of pressurized cylinder (r). With our tool, you need to enter the respective value for External pressure on cylinder, Outer diameter of pressurized cylinder, Inner diameter of pressurized cylinder & Radius of pressurized cylinder 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 Tangential stress in pressurized cylinder?
In this formula, Tangential stress in pressurized cylinder uses External pressure on cylinder, Outer diameter of pressurized cylinder, Inner diameter of pressurized cylinder & Radius of pressurized cylinder. We can use 1 other way(s) to calculate the same, which is/are as follows -
  • Tangential stress in pressurized cylinder = (Internal pressure on cylinder*(Inner diameter of pressurized cylinder^2)/((Outer diameter of pressurized cylinder^2)-(Inner diameter of pressurized cylinder^2)))*(((Outer diameter of pressurized cylinder^2)/(4*(Radius of pressurized cylinder^2)))+1)
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