Initial circumference given circumferential strain for rotating thin disc Solution

STEP 0: Pre-Calculation Summary
Formula Used
Initial circumference = Final Circumference/(Circumferential strain+1)
Cinitial = C2/(e1+1)
This formula uses 3 Variables
Variables Used
Initial circumference - (Measured in Meter) - Initial circumference is the initial circumference value of disc, as under no stress.
Final Circumference - (Measured in Meter) - Final Circumference is the final circumference value of disc as increased due to strain on disc.
Circumferential strain - Circumferential strain represents the change in length.
STEP 1: Convert Input(s) to Base Unit
Final Circumference: 6.4 Millimeter --> 0.0064 Meter (Check conversion ​here)
Circumferential strain: 2.5 --> No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Cinitial = C2/(e1+1) --> 0.0064/(2.5+1)
Evaluating ... ...
Cinitial = 0.00182857142857143
STEP 3: Convert Result to Output's Unit
0.00182857142857143 Meter -->1.82857142857143 Millimeter (Check conversion ​here)
FINAL ANSWER
1.82857142857143 1.828571 Millimeter <-- Initial circumference
(Calculation completed in 00.004 seconds)

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21 Expression for Stresses in Rotating Thin Disc Calculators

Poisson's ratio given initial radial width of disc
​ Go Poisson's Ratio = (Radial Stress-((Increase in Radial Width/Initial Radial Width)*Modulus Of Elasticity Of Disc))/(Circumferential Stress)
Modulus of elasticity given initial radial width of disc
​ Go Modulus Of Elasticity Of Disc = (Radial Stress-(Poisson's Ratio*Circumferential Stress))/(Increase in Radial Width/Initial Radial Width)
Modulus of elasticity given radius of disc
​ Go Modulus Of Elasticity Of Disc = ((Circumferential Stress-(Poisson's Ratio*Radial Stress))/(Increase in radius/Disc Radius))
Increase in radius of disc given stresses
​ Go Increase in radius = ((Circumferential Stress-(Poisson's Ratio*Radial Stress))/Modulus Of Elasticity Of Disc)*Disc Radius
Radius of disc given stresses on disc
​ Go Disc Radius = Increase in radius/((Circumferential Stress-(Poisson's Ratio*Radial Stress))/Modulus Of Elasticity Of Disc)
Poisson's ratio given radius of disc
​ Go Poisson's Ratio = (Circumferential Stress-((Increase in radius/Disc Radius)*Modulus Of Elasticity Of Disc))/Radial Stress
Poisson's ratio given circumferential strain on disc
​ Go Poisson's Ratio = (Circumferential Stress-(Circumferential strain*Modulus Of Elasticity Of Disc))/(Radial Stress)
Modulus of elasticity given circumferential strain on disc
​ Go Modulus Of Elasticity Of Disc = (Circumferential Stress-(Poisson's Ratio*Radial Stress))/Circumferential strain
Poisson's ratio given radial strain on disc
​ Go Poisson's Ratio = (Radial Stress-(Radial strain*Modulus Of Elasticity Of Disc))/(Circumferential Stress)
Modulus of elasticity given radial strain on disc
​ Go Modulus Of Elasticity Of Disc = (Radial Stress-(Poisson's Ratio*Circumferential Stress))/Radial strain
Angular speed of rotation for thin cylinder given hoop stress in thin cylinder
​ Go Angular Velocity = Hoop Stress in Disc/(Density Of Disc*Disc Radius)
Density of cylinder material given hoop stress (for thin cylinder)
​ Go Density Of Disc = Hoop Stress in Disc/(Angular Velocity*Disc Radius)
Mean radius of cylinder given hoop stress in thin cylinder
​ Go Disc Radius = Hoop Stress in Disc/(Density Of Disc*Angular Velocity)
Hoop stress in thin cylinder
​ Go Hoop Stress in Disc = Density Of Disc*Angular Velocity*Disc Radius
Initial circumference given circumferential strain for rotating thin disc
​ Go Initial circumference = Final Circumference/(Circumferential strain+1)
Final circumference given circumferential strain for rotating thin disc
​ Go Final Circumference = (Circumferential strain+1)*Initial circumference
Tangential velocity of cylinder given hoop stress in thin cylinder
​ Go Tangential Velocity = Hoop Stress in Disc/(Density Of Disc)
Density of material of cylinder given hoop stress and tangential velocity
​ Go Density Of Disc = Hoop Stress in Disc/Tangential Velocity
Hoop stress in thin cylinder given tangential velocity of cylinder
​ Go Hoop Stress in Disc = Tangential Velocity*Density Of Disc
Increase in radius given circumferential strain for rotating thin disc
​ Go Increase in radius = Circumferential strain*Disc Radius
Radius of disc given circumferential strain for rotating thin disc
​ Go Disc Radius = Increase in radius/Circumferential strain

Initial circumference given circumferential strain for rotating thin disc Formula

Initial circumference = Final Circumference/(Circumferential strain+1)
Cinitial = C2/(e1+1)

What is the allowable stress?

Allowable stress, or allowable strength, is the maximum stress that can be safely applied to a structure. Allowable stress is the stress at which a member is not expected to fail under the given loading conditions.

How to Calculate Initial circumference given circumferential strain for rotating thin disc?

Initial circumference given circumferential strain for rotating thin disc calculator uses Initial circumference = Final Circumference/(Circumferential strain+1) to calculate the Initial circumference, The Initial circumference given circumferential strain for rotating thin disc formula is defined as the linear distance of a circle's edge. Initial circumference is denoted by Cinitial symbol.

How to calculate Initial circumference given circumferential strain for rotating thin disc using this online calculator? To use this online calculator for Initial circumference given circumferential strain for rotating thin disc, enter Final Circumference (C2) & Circumferential strain (e1) and hit the calculate button. Here is how the Initial circumference given circumferential strain for rotating thin disc calculation can be explained with given input values -> 1828.571 = 0.0064/(2.5+1).

FAQ

What is Initial circumference given circumferential strain for rotating thin disc?
The Initial circumference given circumferential strain for rotating thin disc formula is defined as the linear distance of a circle's edge and is represented as Cinitial = C2/(e1+1) or Initial circumference = Final Circumference/(Circumferential strain+1). Final Circumference is the final circumference value of disc as increased due to strain on disc & Circumferential strain represents the change in length.
How to calculate Initial circumference given circumferential strain for rotating thin disc?
The Initial circumference given circumferential strain for rotating thin disc formula is defined as the linear distance of a circle's edge is calculated using Initial circumference = Final Circumference/(Circumferential strain+1). To calculate Initial circumference given circumferential strain for rotating thin disc, you need Final Circumference (C2) & Circumferential strain (e1). With our tool, you need to enter the respective value for Final Circumference & Circumferential strain and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
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