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Strength of Materials
Poisson's Ratio in Expression for Stresses in Rotating Thin Disc Formulas
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. And is denoted by 𝛎.
Formulas to find Poisson's Ratio in Expression for Stresses in Rotating Thin Disc
f
x
Poisson's ratio given circumferential strain on disc
Go
f
x
Poisson's ratio given radial strain on disc
Go
f
x
Poisson's ratio given radius of disc
Go
f
x
Poisson's ratio given initial radial width of disc
Go
Expression for Stresses in Rotating Thin Disc formulas that make use of Poisson's Ratio
f
x
Radial strain on disc given stresses
Go
f
x
Radial stress for disc given circumferential strain on disc
Go
f
x
Radial stress given initial radial width of disc
Go
f
x
Radial stress given radial strain on disc
Go
f
x
Radial stress given radius of disc
Go
f
x
Circumferential strain on disc given stresses
Go
f
x
Circumferential stress given circumferential strain on disc
Go
f
x
Circumferential stress given initial radial width of disc
Go
f
x
Circumferential stress given radial strain on disc
Go
f
x
Circumferential stress given radius of disc
Go
f
x
Increase in initial radial width of disc given stresses
Go
f
x
Initial radial width of disc given stresses on disc
Go
f
x
Modulus of elasticity given circumferential strain on disc
Go
f
x
Modulus of elasticity given radial strain on disc
Go
f
x
Radius of disc given stresses on disc
Go
f
x
Increase in radius of disc given stresses
Go
f
x
Modulus of elasticity given radius of disc
Go
f
x
Modulus of elasticity given initial radial width of disc
Go
List of variables in Expression for Stresses in Rotating Thin Disc formulas
f
x
Circumferential Stress
Go
f
x
Circumferential Strain
Go
f
x
Modulus Of Elasticity Of Disc
Go
f
x
Radial Stress
Go
f
x
Radial strain
Go
f
x
Increase in radius
Go
f
x
Disc Radius
Go
f
x
Increase in Radial Width
Go
f
x
Initial Radial Width
Go
FAQ
What is the 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.
Can the Poisson's Ratio be negative?
{YesorNo}, the Poisson's Ratio, measured in {OutputVariableMeasurementName} {CanorCannot} be negative.
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