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Poisson's Ratio is defined as the ratio of the lateral and axial strain. For many metals and alloys, values of Poisson’s ratio range between 0.1 and 0.5. Check FAQs
𝛎=(σHp-(e1E)σl-σc)
𝛎 - Poisson's Ratio?σHp - Hoop Stress Thick Shell?e1 - Circumferential Strain?E - Modulus of Elasticity Of Thick Shell?σl - Longitudinal Stress Thick Shell?σc - Compressive Stress Thick Shell?

Poisson's ratio given circumferential strain in thick cylindrical shell Example

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Here is how the Poisson's ratio given circumferential strain in thick cylindrical shell equation looks like with Values.

Here is how the Poisson's ratio given circumferential strain in thick cylindrical shell equation looks like with Units.

Here is how the Poisson's ratio given circumferential strain in thick cylindrical shell equation looks like.

1.0638Edit=(6Edit-(2.5Edit2.6Edit)0.08Edit-0.55Edit)
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Poisson's ratio given circumferential strain in thick cylindrical shell Solution

Follow our step by step solution on how to calculate Poisson's ratio given circumferential strain in thick cylindrical shell?

FIRST Step Consider the formula
𝛎=(σHp-(e1E)σl-σc)
Next Step Substitute values of Variables
𝛎=(6MPa-(2.52.6MPa)0.08MPa-0.55MPa)
Next Step Convert Units
𝛎=(6E+6Pa-(2.52.6E+6Pa)80000Pa-550000Pa)
Next Step Prepare to Evaluate
𝛎=(6E+6-(2.52.6E+6)80000-550000)
Next Step Evaluate
𝛎=1.06382978723404
LAST Step Rounding Answer
𝛎=1.0638

Poisson's ratio given circumferential strain in thick cylindrical shell Formula Elements

Variables
Poisson's Ratio
Poisson's Ratio is defined as the ratio of the lateral and axial strain. For many metals and alloys, values of Poisson’s ratio range between 0.1 and 0.5.
Symbol: 𝛎
Measurement: NAUnit: Unitless
Note: Value can be positive or negative.
Hoop Stress Thick Shell
Hoop Stress thick shell is the circumferential stress in a cylinder.
Symbol: σHp
Measurement: StressUnit: MPa
Note: Value should be greater than 0.
Circumferential Strain
Circumferential strain represents the change in length.
Symbol: e1
Measurement: NAUnit: Unitless
Note: Value should be greater than 0.
Modulus of Elasticity Of Thick Shell
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.
Symbol: E
Measurement: PressureUnit: MPa
Note: Value can be positive or negative.
Longitudinal Stress Thick Shell
Longitudinal Stress Thick Shell is defined as the stress produced when a pipe is subjected to internal pressure.
Symbol: σl
Measurement: PressureUnit: MPa
Note: Value can be positive or negative.
Compressive Stress Thick Shell
Compressive Stress Thick Shell is the force that is responsible for the deformation of the material such that the volume of the material reduces.
Symbol: σc
Measurement: StressUnit: MPa
Note: Value can be positive or negative.

Other Formulas to find Poisson's Ratio

​Go Poisson's ratio given longitudinal strain in thick cylindrical shell
𝛎=σθ-(σl-(εlongitudinalE)σθ-σc)
​Go Poisson's ratio given radial strain in thick cylindrical shell
𝛎=-σc-(εE)σθ+σl
​Go Poisson's ratio given change in radius of thick cylindrical shell
𝛎=(σθ-(ΔrErcylindrical shell)σl-σc)

Other formulas in Stresses in Thick Cylindrical Shell category

​Go Circumferential strain given stresses on cylindrical shell and Poisson's ratio
e1=σθ-(𝛎(σl-σc))E
​Go Circumferential stress given circumferential strain in thick cylindrical shell
σθ=(e1E)+(𝛎(σl-σc))
​Go Longitudinal stress given circumferential strain in thick cylindrical shell
σl=(σθ-(e1E)𝛎)+σc
​Go Compressive stress given circumferential strain in thick cylindrical shell
σc=σl-(σθ-(e1E)𝛎)

How to Evaluate Poisson's ratio given circumferential strain in thick cylindrical shell?

Poisson's ratio given circumferential strain in thick cylindrical shell evaluator uses Poisson's Ratio = ((Hoop Stress Thick Shell-(Circumferential Strain*Modulus of Elasticity Of Thick Shell))/(Longitudinal Stress Thick Shell-Compressive Stress Thick Shell)) to evaluate the Poisson's Ratio, The Poisson's ratio given circumferential strain in thick cylindrical shell formula is defined as the ratio of the change in the width per unit width of a material, to the change in its length per unit length, as a result of strain. Poisson's Ratio is denoted by 𝛎 symbol.

How to evaluate Poisson's ratio given circumferential strain in thick cylindrical shell using this online evaluator? To use this online evaluator for Poisson's ratio given circumferential strain in thick cylindrical shell, enter Hoop Stress Thick Shell Hp), Circumferential Strain (e1), Modulus of Elasticity Of Thick Shell (E), Longitudinal Stress Thick Shell l) & Compressive Stress Thick Shell c) and hit the calculate button.

FAQs on Poisson's ratio given circumferential strain in thick cylindrical shell

What is the formula to find Poisson's ratio given circumferential strain in thick cylindrical shell?
The formula of Poisson's ratio given circumferential strain in thick cylindrical shell is expressed as Poisson's Ratio = ((Hoop Stress Thick Shell-(Circumferential Strain*Modulus of Elasticity Of Thick Shell))/(Longitudinal Stress Thick Shell-Compressive Stress Thick Shell)). Here is an example- 1.06383 = ((6000000-(2.5*2600000))/(80000-550000)).
How to calculate Poisson's ratio given circumferential strain in thick cylindrical shell?
With Hoop Stress Thick Shell Hp), Circumferential Strain (e1), Modulus of Elasticity Of Thick Shell (E), Longitudinal Stress Thick Shell l) & Compressive Stress Thick Shell c) we can find Poisson's ratio given circumferential strain in thick cylindrical shell using the formula - Poisson's Ratio = ((Hoop Stress Thick Shell-(Circumferential Strain*Modulus of Elasticity Of Thick Shell))/(Longitudinal Stress Thick Shell-Compressive Stress Thick Shell)).
What are the other ways to Calculate Poisson's Ratio?
Here are the different ways to Calculate Poisson's Ratio-
  • Poisson's Ratio=Hoop Stress on thick shell-((Longitudinal Stress Thick Shell-(Longitudinal Strain*Modulus of Elasticity Of Thick Shell))/(Hoop Stress on thick shell-Compressive Stress Thick Shell))OpenImg
  • Poisson's Ratio=(-Compressive Stress Thick Shell-(Strain*Modulus of Elasticity Of Thick Shell))/(Hoop Stress on thick shell+Longitudinal Stress Thick Shell)OpenImg
  • Poisson's Ratio=((Hoop Stress on thick shell-(Change in radius*Modulus of Elasticity Of Thick Shell/Radius Of Cylindrical Shell))/(Longitudinal Stress Thick Shell-Compressive Stress Thick Shell))OpenImg
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