Shear Stress Correction Factor Solution

STEP 0: Pre-Calculation Summary
Formula Used
Shear Stress Correction Factor of Spring = (1+(.5/Spring Index))
Ks = (1+(.5/C))
This formula uses 2 Variables
Variables Used
Shear Stress Correction Factor of Spring - Shear Stress Correction Factor of Spring is for comparing the strain energies of the average shear stresses with those obtained from the equilibrium.
Spring Index - Spring Index is defined as the ratio of mean coil diameter of the spring to the diameter of the spring Wire.
STEP 1: Convert Input(s) to Base Unit
Spring Index: 9 --> No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Ks = (1+(.5/C)) --> (1+(.5/9))
Evaluating ... ...
Ks = 1.05555555555556
STEP 3: Convert Result to Output's Unit
1.05555555555556 --> No Conversion Required
FINAL ANSWER
1.05555555555556 1.055556 <-- Shear Stress Correction Factor of Spring
(Calculation completed in 00.004 seconds)

Credits

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Created by Kethavath Srinath
Osmania University (OU), Hyderabad
Kethavath Srinath has created this Calculator and 1000+ more calculators!
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Verified by Urvi Rathod
Vishwakarma Government Engineering College (VGEC), Ahmedabad
Urvi Rathod has verified this Calculator and 1900+ more calculators!

24 Stress and Deflections in Springs Calculators

Diameter of Spring Wire given Deflection in Spring
​ Go Diameter of spring wire = ((8*Axial Spring Force*(Mean Coil Diameter of Spring^3)*Active Coils in Spring)/(Modulus of rigidity of spring wire*Deflection of Spring))^(1/4)
Mean Coil Diameter given Deflection in Spring
​ Go Mean Coil Diameter of Spring = (Deflection of Spring*Modulus of rigidity of spring wire*Diameter of spring wire^4/(8*Axial Spring Force*Active Coils in Spring))^(1/3)
Number of Active Coils given Deflection in Spring
​ Go Active Coils in Spring = (Deflection of Spring*Modulus of rigidity of spring wire*Diameter of spring wire^4)/(8*Axial Spring Force*(Mean Coil Diameter of Spring^3))
Modulus of Rigidity given Deflection in Spring
​ Go Modulus of rigidity of spring wire = (8*Axial Spring Force*(Mean Coil Diameter of Spring^3)*Active Coils in Spring)/(Deflection of Spring*Diameter of spring wire^4)
Deflection of Spring
​ Go Deflection of Spring = (8*Axial Spring Force*(Mean Coil Diameter of Spring^3)*Active Coils in Spring)/(Modulus of rigidity of spring wire*Diameter of spring wire^4)
Force Applied on Spring given Deflection in Spring
​ Go Axial Spring Force = Deflection of Spring*Modulus of rigidity of spring wire*Diameter of spring wire^4/(8*(Mean Coil Diameter of Spring^3)*Active Coils in Spring)
Diameter of Spring Wire given Resultant Stress in Spring
​ Go Diameter of spring wire = ((Wahl Factor of Spring*8*Axial Spring Force*Mean Coil Diameter of Spring)/(pi*Shear Stress in Spring))^(1/3)
Mean Coil Diameter given Resultant Stress in Spring
​ Go Mean Coil Diameter of Spring = Shear Stress in Spring*(pi*Diameter of spring wire^3)/(Wahl Factor of Spring*8*Axial Spring Force)
Force acting on Spring given Resultant Stress
​ Go Axial Spring Force = Shear Stress in Spring*(pi*Diameter of spring wire^3)/(Wahl Factor of Spring*8*Mean Coil Diameter of Spring)
Resultant Stress in Spring
​ Go Shear Stress in Spring = Wahl Factor of Spring*(8*Axial Spring Force*Mean Coil Diameter of Spring)/(pi*Diameter of spring wire^3)
Diameter of Spring Wire given Rate of Spring
​ Go Diameter of spring wire = ((Stiffness of Spring*8*Mean Coil Diameter of Spring^3*Active Coils in Spring)/(Modulus of rigidity of spring wire))^(1/4)
Mean Coil Diameter given Rate of Spring
​ Go Mean Coil Diameter of Spring = (Modulus of rigidity of spring wire*Diameter of spring wire^4/(8*Stiffness of Spring*Active Coils in Spring))^(1/3)
Modulus of Rigidity given Rate of Spring
​ Go Modulus of rigidity of spring wire = Stiffness of Spring*(8*Mean Coil Diameter of Spring^3*Active Coils in Spring)/Diameter of spring wire^4
Rate of Spring
​ Go Stiffness of Spring = Modulus of rigidity of spring wire*Diameter of spring wire^4/(8*Mean Coil Diameter of Spring^3*Active Coils in Spring)
Stress Factor of Spring
​ Go Wahl Factor of Spring = ((4*Spring Index-1)/(4*Spring Index-4))+(0.615/Spring Index)
Shear Stress Correction Factor given Diameter of Spring Wire
​ Go Shear Stress Correction Factor of Spring = (1+(.5*Diameter of spring wire/Mean Coil Diameter of Spring))
Mean Coil diameter given Shear Stress Correction Factor
​ Go Mean Coil Diameter of Spring = 0.5*Diameter of spring wire/(Shear Stress Correction Factor of Spring-1)
Diameter of Spring Wire given Shear Stress Correction Factor
​ Go Diameter of spring wire = (Shear Stress Correction Factor of Spring-1)*Mean Coil Diameter of Spring/.5
Strain Energy Stored in Spring
​ Go Strain energy in spring = .5*Axial Spring Force*Deflection of Spring
Force Applied on Spring given Strain Energy Stored in Spring
​ Go Axial Spring Force = 2*Strain energy in spring/Deflection of Spring
Deflection of Spring given Strain Energy Stored
​ Go Deflection of Spring = 2*Strain energy in spring/Axial Spring Force
Rate of Spring given Deflection
​ Go Stiffness of Spring = Axial Spring Force/Deflection of Spring
Spring Index given Shear Stress Correction Factor
​ Go Spring Index = (0.5)/(Shear Stress Correction Factor of Spring-1)
Shear Stress Correction Factor
​ Go Shear Stress Correction Factor of Spring = (1+(.5/Spring Index))

Shear Stress Correction Factor Formula

Shear Stress Correction Factor of Spring = (1+(.5/Spring Index))
Ks = (1+(.5/C))

Define Shear Stress Correction Factor?

hear correction factors are defined comparing the strain energies of the average shear stresses with those obtained from the equilibrium. The computed quantities are necessary to determine the shear stiffness of beams with arbitrary cross–sections.

How to Calculate Shear Stress Correction Factor?

Shear Stress Correction Factor calculator uses Shear Stress Correction Factor of Spring = (1+(.5/Spring Index)) to calculate the Shear Stress Correction Factor of Spring, The Shear Stress Correction Factor formula is defined as the comparing the strain energies of the average shear stresses with those obtained from the equilibrium. Shear Stress Correction Factor of Spring is denoted by Ks symbol.

How to calculate Shear Stress Correction Factor using this online calculator? To use this online calculator for Shear Stress Correction Factor, enter Spring Index (C) and hit the calculate button. Here is how the Shear Stress Correction Factor calculation can be explained with given input values -> 1.055556 = (1+(.5/9)).

FAQ

What is Shear Stress Correction Factor?
The Shear Stress Correction Factor formula is defined as the comparing the strain energies of the average shear stresses with those obtained from the equilibrium and is represented as Ks = (1+(.5/C)) or Shear Stress Correction Factor of Spring = (1+(.5/Spring Index)). Spring Index is defined as the ratio of mean coil diameter of the spring to the diameter of the spring Wire.
How to calculate Shear Stress Correction Factor?
The Shear Stress Correction Factor formula is defined as the comparing the strain energies of the average shear stresses with those obtained from the equilibrium is calculated using Shear Stress Correction Factor of Spring = (1+(.5/Spring Index)). To calculate Shear Stress Correction Factor, you need Spring Index (C). With our tool, you need to enter the respective value for Spring Index and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
How many ways are there to calculate Shear Stress Correction Factor of Spring?
In this formula, Shear Stress Correction Factor of Spring uses Spring Index. We can use 1 other way(s) to calculate the same, which is/are as follows -
  • Shear Stress Correction Factor of Spring = (1+(.5*Diameter of spring wire/Mean Coil Diameter of Spring))
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