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Compressive Circumferential Stress or hoop stress is a normal stress in the tangential (azimuth) direction. axial stress, a normal stress parallel to the axis of cylindrical symmetry. Check FAQs
Fcircumference=σc-σR
Fcircumference - Compressive Circumferential Stress?σc - Circumferential Stress due to Fluid Pressure?σR - Resultant Stress?

Compressive circumferential stress exerted by wire given resultant stress in cylinder Example

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Here is how the Compressive circumferential stress exerted by wire given resultant stress in cylinder equation looks like with Values.

Here is how the Compressive circumferential stress exerted by wire given resultant stress in cylinder equation looks like with Units.

Here is how the Compressive circumferential stress exerted by wire given resultant stress in cylinder equation looks like.

-41.998Edit=0.002Edit-42Edit
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Compressive circumferential stress exerted by wire given resultant stress in cylinder Solution

Follow our step by step solution on how to calculate Compressive circumferential stress exerted by wire given resultant stress in cylinder?

FIRST Step Consider the formula
Fcircumference=σc-σR
Next Step Substitute values of Variables
Fcircumference=0.002MPa-42MPa
Next Step Convert Units
Fcircumference=2000Pa-4.2E+7Pa
Next Step Prepare to Evaluate
Fcircumference=2000-4.2E+7
Next Step Evaluate
Fcircumference=-41998000Pa
LAST Step Convert to Output's Unit
Fcircumference=-41.998MPa

Compressive circumferential stress exerted by wire given resultant stress in cylinder Formula Elements

Variables
Compressive Circumferential Stress
Compressive Circumferential Stress or hoop stress is a normal stress in the tangential (azimuth) direction. axial stress, a normal stress parallel to the axis of cylindrical symmetry.
Symbol: Fcircumference
Measurement: PressureUnit: MPa
Note: Value can be positive or negative.
Circumferential Stress due to Fluid Pressure
Circumferential stress due to fluid pressure is a kind of tensile stress exerted on cylinder due to fluid pressure.
Symbol: σc
Measurement: PressureUnit: MPa
Note: Value can be positive or negative.
Resultant Stress
Resultant Stress is the simplified representation of stress.
Symbol: σR
Measurement: StressUnit: MPa
Note: Value can be positive or negative.

Other Formulas to find Compressive Circumferential Stress

​Go Compressive circumferential stress exerted by wire given initial winding stress in wire
Fcircumference=πGwireσw4t
​Go Compressive circumferential stress exerted by wire on cylinder given compressive force
Fcircumference=Fcompressive2Lt

Other formulas in Stress category

​Go Longitudinal stress in thin cylindrical vessel given Longitudinal strain
σl=((εlongitudinalE))+(𝛎σθ)
​Go Efficiency of circumferential joint given longitudinal stress
ηc=PiDi4t
​Go Efficiency of longitudinal joint given hoop stress
ηl=PiDi2t
​Go Internal diameter of vessel given hoop stress and efficiency of longitudinal joint
Di=σθ2tηlPi

How to Evaluate Compressive circumferential stress exerted by wire given resultant stress in cylinder?

Compressive circumferential stress exerted by wire given resultant stress in cylinder evaluator uses Compressive Circumferential Stress = Circumferential Stress due to Fluid Pressure-Resultant Stress to evaluate the Compressive Circumferential Stress, Compressive circumferential stress exerted by wire given resultant stress in cylinder is a normal stress in the tangential (azimuth) direction. axial stress, a normal stress parallel to the axis of cylindrical symmetry. Compressive Circumferential Stress is denoted by Fcircumference symbol.

How to evaluate Compressive circumferential stress exerted by wire given resultant stress in cylinder using this online evaluator? To use this online evaluator for Compressive circumferential stress exerted by wire given resultant stress in cylinder, enter Circumferential Stress due to Fluid Pressure c) & Resultant Stress R) and hit the calculate button.

FAQs on Compressive circumferential stress exerted by wire given resultant stress in cylinder

What is the formula to find Compressive circumferential stress exerted by wire given resultant stress in cylinder?
The formula of Compressive circumferential stress exerted by wire given resultant stress in cylinder is expressed as Compressive Circumferential Stress = Circumferential Stress due to Fluid Pressure-Resultant Stress. Here is an example- -4.2E-5 = 2000-42000000.
How to calculate Compressive circumferential stress exerted by wire given resultant stress in cylinder?
With Circumferential Stress due to Fluid Pressure c) & Resultant Stress R) we can find Compressive circumferential stress exerted by wire given resultant stress in cylinder using the formula - Compressive Circumferential Stress = Circumferential Stress due to Fluid Pressure-Resultant Stress.
What are the other ways to Calculate Compressive Circumferential Stress?
Here are the different ways to Calculate Compressive Circumferential Stress-
  • Compressive Circumferential Stress=(pi*Diameter of Wire*Initial Winding Stress)/(4*Thickness Of Wire)OpenImg
  • Compressive Circumferential Stress=Compressive Force/(2*Length of wire*Thickness Of Wire)OpenImg
Can the Compressive circumferential stress exerted by wire given resultant stress in cylinder be negative?
Yes, the Compressive circumferential stress exerted by wire given resultant stress in cylinder, measured in Pressure can be negative.
Which unit is used to measure Compressive circumferential stress exerted by wire given resultant stress in cylinder?
Compressive circumferential stress exerted by wire given resultant stress in cylinder is usually measured using the Megapascal[MPa] for Pressure. Pascal[MPa], Kilopascal[MPa], Bar[MPa] are the few other units in which Compressive circumferential stress exerted by wire given resultant stress in cylinder can be measured.
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