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The Ratio of Inner to Outer Diameter of Hollow Shaft is defined as the inner diameter of the shaft divided by the outer diameter. Check FAQs
C=(1-16Mthollowshaftπdo3𝜏h)14
C - Ratio of Inner to Outer Diameter of Hollow Shaft?Mthollowshaft - Torsional Moment in Hollow Shaft?do - Outer Diameter of Hollow Shaft?𝜏h - Torsional Shear Stress in Hollow Shaft?π - Archimedes' constant?

Ratio of Diameter given Torsional Shear Stress in Hollow Shaft Example

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With units
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Here is how the Ratio of Diameter given Torsional Shear Stress in Hollow Shaft equation looks like with Values.

Here is how the Ratio of Diameter given Torsional Shear Stress in Hollow Shaft equation looks like with Units.

Here is how the Ratio of Diameter given Torsional Shear Stress in Hollow Shaft equation looks like.

0.8504Edit=(1-16320000Edit3.141646Edit335.1Edit)14
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Ratio of Diameter given Torsional Shear Stress in Hollow Shaft Solution

Follow our step by step solution on how to calculate Ratio of Diameter given Torsional Shear Stress in Hollow Shaft?

FIRST Step Consider the formula
C=(1-16Mthollowshaftπdo3𝜏h)14
Next Step Substitute values of Variables
C=(1-16320000N*mmπ46mm335.1N/mm²)14
Next Step Substitute values of Constants
C=(1-16320000N*mm3.141646mm335.1N/mm²)14
Next Step Convert Units
C=(1-16320N*m3.14160.046m33.5E+7Pa)14
Next Step Prepare to Evaluate
C=(1-163203.14160.04633.5E+7)14
Next Step Evaluate
C=0.85039483049206
LAST Step Rounding Answer
C=0.8504

Ratio of Diameter given Torsional Shear Stress in Hollow Shaft Formula Elements

Variables
Constants
Ratio of Inner to Outer Diameter of Hollow Shaft
The Ratio of Inner to Outer Diameter of Hollow Shaft is defined as the inner diameter of the shaft divided by the outer diameter.
Symbol: C
Measurement: NAUnit: Unitless
Note: Value should be less than 1.
Torsional Moment in Hollow Shaft
Torsional Moment in Hollow Shaft is the reaction induced in a structural shaft hollow element when an external force or moment is applied to the element, causing the element to twist.
Symbol: Mthollowshaft
Measurement: TorqueUnit: N*mm
Note: Value should be greater than 0.
Outer Diameter of Hollow Shaft
Outer Diameter of Hollow Shaft is defined as the length of the longest chord of the surface of the hollow circular shaft.
Symbol: do
Measurement: LengthUnit: mm
Note: Value should be greater than 0.
Torsional Shear Stress in Hollow Shaft
Torsional Shear Stress in Hollow Shaft is the shear stress produced in the hollow shaft due to the twisting.
Symbol: 𝜏h
Measurement: StressUnit: N/mm²
Note: Value should be greater than 0.
Archimedes' constant
Archimedes' constant is a mathematical constant that represents the ratio of the circumference of a circle to its diameter.
Symbol: π
Value: 3.14159265358979323846264338327950288

Other Formulas to find Ratio of Inner to Outer Diameter of Hollow Shaft

​Go Ratio of Inner Diameter to Outer Diameter
C=dido
​Go Ratio of Diameters given Tensile Stress in Hollow Shaft
C=1-(Pax hollowπ4σtpdo2)
​Go Ratio of Diameters given Bending Stress of Hollow Shaft
C=(1-32Mb hπdo3σb h)14
​Go Ratio of Diameters given Principle Stress
C=(1-16Mb h+Mb h2+Mthollowshaft2πdo3τ)14

Other formulas in Design of Hollow Shaft category

​Go Inner Diameter of Hollow Shaft given Ratio of Diameters
di=Cdo
​Go Outer Diameter given Ratio of Diameters
do=diC
​Go Tensile Stress in Hollow Shaft when Subjected to Axial Force
σtp=Pax hollowπ4(do2-di2)
​Go Axial Tensile Force given Tensile Stress in Hollow Shaft
Pax hollow=σtpπ4(do2-di2)

How to Evaluate Ratio of Diameter given Torsional Shear Stress in Hollow Shaft?

Ratio of Diameter given Torsional Shear Stress in Hollow Shaft evaluator uses Ratio of Inner to Outer Diameter of Hollow Shaft = (1-16*Torsional Moment in Hollow Shaft/(pi*Outer Diameter of Hollow Shaft^3*Torsional Shear Stress in Hollow Shaft))^(1/4) to evaluate the Ratio of Inner to Outer Diameter of Hollow Shaft, Ratio of Diameter given Torsional Shear Stress in Hollow Shaft formula is defined as a measure of the diameter of a hollow shaft in relation to the torsional shear stress it can withstand, providing a critical design parameter for engineers to ensure the structural integrity of hollow shafts in various mechanical systems. Ratio of Inner to Outer Diameter of Hollow Shaft is denoted by C symbol.

How to evaluate Ratio of Diameter given Torsional Shear Stress in Hollow Shaft using this online evaluator? To use this online evaluator for Ratio of Diameter given Torsional Shear Stress in Hollow Shaft, enter Torsional Moment in Hollow Shaft (Mthollowshaft), Outer Diameter of Hollow Shaft (do) & Torsional Shear Stress in Hollow Shaft (𝜏h) and hit the calculate button.

FAQs on Ratio of Diameter given Torsional Shear Stress in Hollow Shaft

What is the formula to find Ratio of Diameter given Torsional Shear Stress in Hollow Shaft?
The formula of Ratio of Diameter given Torsional Shear Stress in Hollow Shaft is expressed as Ratio of Inner to Outer Diameter of Hollow Shaft = (1-16*Torsional Moment in Hollow Shaft/(pi*Outer Diameter of Hollow Shaft^3*Torsional Shear Stress in Hollow Shaft))^(1/4). Here is an example- 0.850395 = (1-16*320/(pi*0.046^3*35100000))^(1/4).
How to calculate Ratio of Diameter given Torsional Shear Stress in Hollow Shaft?
With Torsional Moment in Hollow Shaft (Mthollowshaft), Outer Diameter of Hollow Shaft (do) & Torsional Shear Stress in Hollow Shaft (𝜏h) we can find Ratio of Diameter given Torsional Shear Stress in Hollow Shaft using the formula - Ratio of Inner to Outer Diameter of Hollow Shaft = (1-16*Torsional Moment in Hollow Shaft/(pi*Outer Diameter of Hollow Shaft^3*Torsional Shear Stress in Hollow Shaft))^(1/4). This formula also uses Archimedes' constant .
What are the other ways to Calculate Ratio of Inner to Outer Diameter of Hollow Shaft?
Here are the different ways to Calculate Ratio of Inner to Outer Diameter of Hollow Shaft-
  • Ratio of Inner to Outer Diameter of Hollow Shaft=Inner Diameter of Hollow Shaft/Outer Diameter of Hollow ShaftOpenImg
  • Ratio of Inner to Outer Diameter of Hollow Shaft=sqrt(1-(Axial Force on Hollow Shaft/(pi/4*Tensile Stress in Hollow Shaft*Outer Diameter of Hollow Shaft^2)))OpenImg
  • Ratio of Inner to Outer Diameter of Hollow Shaft=(1-32*Bending Moment in Hollow Shaft/(pi*Outer Diameter of Hollow Shaft^3*Bending Stress in Hollow Shaft))^(1/4)OpenImg
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