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Residual Shear Stress in Shaft can be defined as the algebraic sum of applied stress and recovery stress. Check FAQs
ζshaft_res=𝝉0(1-4r(1-((14)(ρr2)3)-((3r14ρ)(r1r2)3))3r2(1-(r1r2)4))
ζshaft_res - Residual Shear Stress in Shaft?𝝉0 - Yield Stress in Shear?r - Radius Yielded?ρ - Radius of Plastic Front?r2 - Outer Radius of Shaft?r1 - Inner Radius of Shaft?

Residual Shear Stress in Shaft when r Lies between Material Constant and r2 Example

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Here is how the Residual Shear Stress in Shaft when r Lies between Material Constant and r2 equation looks like with Values.

Here is how the Residual Shear Stress in Shaft when r Lies between Material Constant and r2 equation looks like with Units.

Here is how the Residual Shear Stress in Shaft when r Lies between Material Constant and r2 equation looks like.

44.0476Edit=145Edit(1-460Edit(1-((14)(80Edit100Edit)3)-((340Edit480Edit)(40Edit100Edit)3))3100Edit(1-(40Edit100Edit)4))
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Residual Shear Stress in Shaft when r Lies between Material Constant and r2 Solution

Follow our step by step solution on how to calculate Residual Shear Stress in Shaft when r Lies between Material Constant and r2?

FIRST Step Consider the formula
ζshaft_res=𝝉0(1-4r(1-((14)(ρr2)3)-((3r14ρ)(r1r2)3))3r2(1-(r1r2)4))
Next Step Substitute values of Variables
ζshaft_res=145MPa(1-460mm(1-((14)(80mm100mm)3)-((340mm480mm)(40mm100mm)3))3100mm(1-(40mm100mm)4))
Next Step Convert Units
ζshaft_res=1.5E+8Pa(1-40.06m(1-((14)(0.08m0.1m)3)-((30.04m40.08m)(0.04m0.1m)3))30.1m(1-(0.04m0.1m)4))
Next Step Prepare to Evaluate
ζshaft_res=1.5E+8(1-40.06(1-((14)(0.080.1)3)-((30.0440.08)(0.040.1)3))30.1(1-(0.040.1)4))
Next Step Evaluate
ζshaft_res=44047619.0476191Pa
Next Step Convert to Output's Unit
ζshaft_res=44.0476190476191MPa
LAST Step Rounding Answer
ζshaft_res=44.0476MPa

Residual Shear Stress in Shaft when r Lies between Material Constant and r2 Formula Elements

Variables
Residual Shear Stress in Shaft
Residual Shear Stress in Shaft can be defined as the algebraic sum of applied stress and recovery stress.
Symbol: ζshaft_res
Measurement: StressUnit: MPa
Note: Value can be positive or negative.
Yield Stress in Shear
Yield Stress in Shear is the yield stress of the shaft in shear conditions.
Symbol: 𝝉0
Measurement: StressUnit: MPa
Note: Value should be greater than 0.
Radius Yielded
Radius Yielded is the remaining stress in a material after the original cause of the stress has been removed, affecting its structural integrity and durability.
Symbol: r
Measurement: LengthUnit: mm
Note: Value should be greater than 0.
Radius of Plastic Front
Radius of Plastic Front is the distance from the center of the material to the point where plastic deformation occurs due to residual stresses.
Symbol: ρ
Measurement: LengthUnit: mm
Note: Value should be greater than 0.
Outer Radius of Shaft
Outer Radius of Shaft is the distance from the center of the shaft to its outer surface, affecting residual stresses in the material.
Symbol: r2
Measurement: LengthUnit: mm
Note: Value should be greater than 0.
Inner Radius of Shaft
Inner Radius of Shaft is the internal radius of a shaft, which is a critical dimension in mechanical engineering, affecting stress concentrations and structural integrity.
Symbol: r1
Measurement: LengthUnit: mm
Note: Value should be greater than 0.

Other Formulas to find Residual Shear Stress in Shaft

​Go Residual Shear Stress in Shaft when r Lies between r1 and Material Constant
ζshaft_res=(𝝉0rρ-((4𝝉0r3r2(1-(r1r2)4))(1-14(ρr2)3-3r14ρ(r1r2)3)))

Other formulas in Residual Stresses For Idealized Stress Strain Law category

​Go Recovery Elasto Plastic Torque
Trec=-(π𝝉0(ρ32(1-(r1ρ)4)+(23r23)(1-(ρr2)3)))
​Go Residual Shear Stress in Shaft for Fully Plastic Case
ζf_res=𝝉0(1-4r(1-(r1r2)3)3r2(1-(r1r2)4))
​Go Residual Angle of Twist for Elasto Plastic Case
θres=𝝉0Gρ(1-(4ρ3r2)(1-14(ρr2)3-3r14ρ(r1r2)31-(r1r2)4))
​Go Recovery Torque in Fully Plastic Case
Tf_rec=-(23πr23𝝉0(1-(r1r2)3))

How to Evaluate Residual Shear Stress in Shaft when r Lies between Material Constant and r2?

Residual Shear Stress in Shaft when r Lies between Material Constant and r2 evaluator uses Residual Shear Stress in Shaft = Yield Stress in Shear*(1-(4*Radius Yielded*(1-((1/4)*(Radius of Plastic Front/Outer Radius of Shaft)^3)-(((3*Inner Radius of Shaft)/(4*Radius of Plastic Front))*(Inner Radius of Shaft/Outer Radius of Shaft)^3)))/(3*Outer Radius of Shaft*(1-(Inner Radius of Shaft/Outer Radius of Shaft)^4))) to evaluate the Residual Shear Stress in Shaft, Residual Shear Stress in Shaft when r Lies between Material Constant and r2 formula is defined as a measure of the remaining shear stress in a shaft after considering the material's properties and radial distance, providing a critical value for shaft design and material selection. Residual Shear Stress in Shaft is denoted by ζshaft_res symbol.

How to evaluate Residual Shear Stress in Shaft when r Lies between Material Constant and r2 using this online evaluator? To use this online evaluator for Residual Shear Stress in Shaft when r Lies between Material Constant and r2, enter Yield Stress in Shear (𝝉0), Radius Yielded (r), Radius of Plastic Front (ρ), Outer Radius of Shaft (r2) & Inner Radius of Shaft (r1) and hit the calculate button.

FAQs on Residual Shear Stress in Shaft when r Lies between Material Constant and r2

What is the formula to find Residual Shear Stress in Shaft when r Lies between Material Constant and r2?
The formula of Residual Shear Stress in Shaft when r Lies between Material Constant and r2 is expressed as Residual Shear Stress in Shaft = Yield Stress in Shear*(1-(4*Radius Yielded*(1-((1/4)*(Radius of Plastic Front/Outer Radius of Shaft)^3)-(((3*Inner Radius of Shaft)/(4*Radius of Plastic Front))*(Inner Radius of Shaft/Outer Radius of Shaft)^3)))/(3*Outer Radius of Shaft*(1-(Inner Radius of Shaft/Outer Radius of Shaft)^4))). Here is an example- 4.4E-5 = 145000000*(1-(4*0.06*(1-((1/4)*(0.08/0.1)^3)-(((3*0.04)/(4*0.08))*(0.04/0.1)^3)))/(3*0.1*(1-(0.04/0.1)^4))).
How to calculate Residual Shear Stress in Shaft when r Lies between Material Constant and r2?
With Yield Stress in Shear (𝝉0), Radius Yielded (r), Radius of Plastic Front (ρ), Outer Radius of Shaft (r2) & Inner Radius of Shaft (r1) we can find Residual Shear Stress in Shaft when r Lies between Material Constant and r2 using the formula - Residual Shear Stress in Shaft = Yield Stress in Shear*(1-(4*Radius Yielded*(1-((1/4)*(Radius of Plastic Front/Outer Radius of Shaft)^3)-(((3*Inner Radius of Shaft)/(4*Radius of Plastic Front))*(Inner Radius of Shaft/Outer Radius of Shaft)^3)))/(3*Outer Radius of Shaft*(1-(Inner Radius of Shaft/Outer Radius of Shaft)^4))).
What are the other ways to Calculate Residual Shear Stress in Shaft?
Here are the different ways to Calculate Residual Shear Stress in Shaft-
  • Residual Shear Stress in Shaft=(Yield Stress in Shear*Radius Yielded/Radius of Plastic Front-(((4*Yield Stress in Shear*Radius Yielded)/(3*Outer Radius of Shaft*(1-(Inner Radius of Shaft/Outer Radius of Shaft)^4)))*(1-1/4*(Radius of Plastic Front/Outer Radius of Shaft)^3-(3*Inner Radius of Shaft)/(4*Radius of Plastic Front)*(Inner Radius of Shaft/Outer Radius of Shaft)^3)))OpenImg
Can the Residual Shear Stress in Shaft when r Lies between Material Constant and r2 be negative?
Yes, the Residual Shear Stress in Shaft when r Lies between Material Constant and r2, measured in Stress can be negative.
Which unit is used to measure Residual Shear Stress in Shaft when r Lies between Material Constant and r2?
Residual Shear Stress in Shaft when r Lies between Material Constant and r2 is usually measured using the Megapascal[MPa] for Stress. Pascal[MPa], Newton per Square Meter[MPa], Newton per Square Millimeter[MPa] are the few other units in which Residual Shear Stress in Shaft when r Lies between Material Constant and r2 can be measured.
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