Hoop stress on thick spherical shell given tensile radial strain Solution

STEP 0: Pre-Calculation Summary
Formula Used
Hoop Stress on thick shell = ((Modulus of Elasticity Of Thick Shell*Tensile Strain)-Radial Pressure)*Mass Of Shell/2
σθ = ((E*εtensile)-Pv)*M/2
This formula uses 5 Variables
Variables Used
Hoop Stress on thick shell - (Measured in Pascal) - Hoop Stress on thick shell is the circumferential stress in a cylinder.
Modulus of Elasticity Of Thick Shell - (Measured in Pascal) - Modulus of Elasticity Of Thick Shell is a quantity that measures an object or substance's resistance to being deformed elastically when a stress is applied to it.
Tensile Strain - Tensile Strain is the ratio of change in length to original length.
Radial Pressure - (Measured in Pascal per Square Meter) - Radial Pressure is pressure towards or away from the central axis of a component.
Mass Of Shell - (Measured in Kilogram) - Mass Of Shell is the quantity of matter in a body regardless of its volume or of any forces acting on it.
STEP 1: Convert Input(s) to Base Unit
Modulus of Elasticity Of Thick Shell: 2.6 Megapascal --> 2600000 Pascal (Check conversion ​here)
Tensile Strain: 0.6 --> No Conversion Required
Radial Pressure: 0.014 Megapascal per Square Meter --> 14000 Pascal per Square Meter (Check conversion ​here)
Mass Of Shell: 35.45 Kilogram --> 35.45 Kilogram No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
σθ = ((E*εtensile)-Pv)*M/2 --> ((2600000*0.6)-14000)*35.45/2
Evaluating ... ...
σθ = 27402850
STEP 3: Convert Result to Output's Unit
27402850 Pascal -->27.40285 Megapascal (Check conversion ​here)
FINAL ANSWER
27.40285 Megapascal <-- Hoop Stress on thick shell
(Calculation completed in 00.020 seconds)

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Thick Spherical Shells Calculators

Mass of thick spherical shell given compressive radial strain
​ LaTeX ​ Go Mass Of Shell = (2*Hoop Stress on thick shell)/((Modulus of Elasticity Of Thick Shell*Compressive Strain)-Radial Pressure)
Hoop stress on thick spherical shell given compressive radial strain
​ LaTeX ​ Go Hoop Stress on thick shell = ((Modulus of Elasticity Of Thick Shell*Compressive Strain)-Radial Pressure)*Mass Of Shell/2
Radial pressure on thick spherical shell given compressive radial strain
​ LaTeX ​ Go Radial Pressure = (Adjusted design value*Compressive Strain)-(2*Hoop Stress on thick shell/Mass Of Shell)
Compressive radial strain for thick spherical shells
​ LaTeX ​ Go Compressive Strain = (Radial Pressure+(2*Hoop Stress on thick shell/Mass Of Shell))/Adjusted design value

Hoop stress on thick spherical shell given tensile radial strain Formula

​LaTeX ​Go
Hoop Stress on thick shell = ((Modulus of Elasticity Of Thick Shell*Tensile Strain)-Radial Pressure)*Mass Of Shell/2
σθ = ((E*εtensile)-Pv)*M/2

What is meant by hoop stress?

The hoop stress is the force over the area exerted circumferentially (perpendicular to the axis and the radius of the object) in both directions on every particle in the cylinder wall.

How to Calculate Hoop stress on thick spherical shell given tensile radial strain?

Hoop stress on thick spherical shell given tensile radial strain calculator uses Hoop Stress on thick shell = ((Modulus of Elasticity Of Thick Shell*Tensile Strain)-Radial Pressure)*Mass Of Shell/2 to calculate the Hoop Stress on thick shell, Hoop stress on thick spherical shell given tensile radial strain formula is defined as a relationship that describes the internal stress experienced by a thick spherical shell due to applied radial strain. It helps in understanding the structural integrity and performance of spherical pressure vessels under load. Hoop Stress on thick shell is denoted by σθ symbol.

How to calculate Hoop stress on thick spherical shell given tensile radial strain using this online calculator? To use this online calculator for Hoop stress on thick spherical shell given tensile radial strain, enter Modulus of Elasticity Of Thick Shell (E), Tensile Strain tensile), Radial Pressure (Pv) & Mass Of Shell (M) and hit the calculate button. Here is how the Hoop stress on thick spherical shell given tensile radial strain calculation can be explained with given input values -> 2.7E-5 = ((2600000*0.6)-14000)*35.45/2.

FAQ

What is Hoop stress on thick spherical shell given tensile radial strain?
Hoop stress on thick spherical shell given tensile radial strain formula is defined as a relationship that describes the internal stress experienced by a thick spherical shell due to applied radial strain. It helps in understanding the structural integrity and performance of spherical pressure vessels under load and is represented as σθ = ((E*εtensile)-Pv)*M/2 or Hoop Stress on thick shell = ((Modulus of Elasticity Of Thick Shell*Tensile Strain)-Radial Pressure)*Mass Of Shell/2. Modulus of Elasticity Of Thick Shell is a quantity that measures an object or substance's resistance to being deformed elastically when a stress is applied to it, Tensile Strain is the ratio of change in length to original length, Radial Pressure is pressure towards or away from the central axis of a component & Mass Of Shell is the quantity of matter in a body regardless of its volume or of any forces acting on it.
How to calculate Hoop stress on thick spherical shell given tensile radial strain?
Hoop stress on thick spherical shell given tensile radial strain formula is defined as a relationship that describes the internal stress experienced by a thick spherical shell due to applied radial strain. It helps in understanding the structural integrity and performance of spherical pressure vessels under load is calculated using Hoop Stress on thick shell = ((Modulus of Elasticity Of Thick Shell*Tensile Strain)-Radial Pressure)*Mass Of Shell/2. To calculate Hoop stress on thick spherical shell given tensile radial strain, you need Modulus of Elasticity Of Thick Shell (E), Tensile Strain tensile), Radial Pressure (Pv) & Mass Of Shell (M). With our tool, you need to enter the respective value for Modulus of Elasticity Of Thick Shell, Tensile Strain, Radial Pressure & Mass Of Shell 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 Hoop Stress on thick shell?
In this formula, Hoop Stress on thick shell uses Modulus of Elasticity Of Thick Shell, Tensile Strain, Radial Pressure & Mass Of Shell. We can use 3 other way(s) to calculate the same, which is/are as follows -
  • Hoop Stress on thick shell = ((Modulus of Elasticity Of Thick Shell*Compressive Strain)-Radial Pressure)*Mass Of Shell/2
  • Hoop Stress on thick shell = ((Modulus of Elasticity Of Thick Shell*Compressive Strain)-Radial Pressure)/(2*Poisson's Ratio)
  • Hoop Stress on thick shell = ((Modulus of Elasticity Of Thick Shell*Tensile Strain)-Radial Pressure)/(2*Poisson's Ratio)
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