Width given Deflection of Square Section Wire Spring Solution

STEP 0: Pre-Calculation Summary
Formula Used
Diameter of Spring = ((44.7*Spring Load*Mean Radius^3*Number of Coils)/(Deflection of Spring*Modulus of Rigidity))^(1/4)
d = ((44.7*Wload*R^3*N)/(δ*GTorsion))^(1/4)
This formula uses 6 Variables
Variables Used
Diameter of Spring - (Measured in Meter) - Diameter of Spring wire is the diameter of the wire from which a spring is made.
Spring Load - (Measured in Newton) - Spring Load is the instantaneous load applied perpendicular to the specimen cross section.
Mean Radius - (Measured in Meter) - The Mean Radius of spring coil is the average distance from the centerline of the spring wire to the axis of the spring.
Number of Coils - Number of Coils in spring is the total number of turns made by wire along its length.
Deflection of Spring - (Measured in Meter) - Deflection of Spring is how a spring responds when force is applied or released.
Modulus of Rigidity - (Measured in Pascal) - Modulus of Rigidity is the measure of the rigidity of the body, given by the ratio of shear stress to shear strain. It is often denoted by G.
STEP 1: Convert Input(s) to Base Unit
Spring Load: 85 Newton --> 85 Newton No Conversion Required
Mean Radius: 225 Millimeter --> 0.225 Meter (Check conversion ​here)
Number of Coils: 9 --> No Conversion Required
Deflection of Spring: 3.4 Millimeter --> 0.0034 Meter (Check conversion ​here)
Modulus of Rigidity: 40 Gigapascal --> 40000000000 Pascal (Check conversion ​here)
STEP 2: Evaluate Formula
Substituting Input Values in Formula
d = ((44.7*Wload*R^3*N)/(δ*GTorsion))^(1/4) --> ((44.7*85*0.225^3*9)/(0.0034*40000000000))^(1/4)
Evaluating ... ...
d = 0.0411381162470735
STEP 3: Convert Result to Output's Unit
0.0411381162470735 Meter -->41.1381162470735 Millimeter (Check conversion ​here)
FINAL ANSWER
41.1381162470735 41.13812 Millimeter <-- Diameter of Spring
(Calculation completed in 00.008 seconds)

Credits

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Created by Rithik Agrawal
National Institute of Technology Karnataka (NITK), Surathkal
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Spring of Square Section Wire Calculators

Mean radius given Deflection of Square Section Wire Spring
​ LaTeX ​ Go Mean Radius = ((Deflection of Spring*Modulus of Rigidity*Diameter of Spring^4)/(44.7*Spring Load*Number of Coils))^(1/3)
Modulus of Rigidity using Deflection of Square Section Wire Spring
​ LaTeX ​ Go Modulus of Rigidity = (44.7*Spring Load*Mean Radius^3*Number of Coils)/(Deflection of Spring*Diameter of Spring^4)
Load given Deflection of Square Section Wire Spring
​ LaTeX ​ Go Spring Load = (Deflection of Spring*Modulus of Rigidity*Diameter of Spring^4)/(44.7*Mean Radius^3*Number of Coils)
Deflection of Square Section Wire Spring
​ LaTeX ​ Go Deflection of Spring = (44.7*Spring Load*Mean Radius^3*Number of Coils)/(Modulus of Rigidity*Diameter of Spring^4)

Width given Deflection of Square Section Wire Spring Formula

​LaTeX ​Go
Diameter of Spring = ((44.7*Spring Load*Mean Radius^3*Number of Coils)/(Deflection of Spring*Modulus of Rigidity))^(1/4)
d = ((44.7*Wload*R^3*N)/(δ*GTorsion))^(1/4)

What is Spring?

A Spring is an elastic object that stores mechanical energy. Springs are typically made of spring steel. There are many spring designs. In everyday use, the term often refers to coil springs. A spring is an elastic object that stores mechanical energy. Springs are typically made of spring steel. There are many spring designs. In everyday use, the term often refers to coil springs.

How to Calculate Width given Deflection of Square Section Wire Spring?

Width given Deflection of Square Section Wire Spring calculator uses Diameter of Spring = ((44.7*Spring Load*Mean Radius^3*Number of Coils)/(Deflection of Spring*Modulus of Rigidity))^(1/4) to calculate the Diameter of Spring, The Width given Deflection of Square Section Wire Spring formula is defined as the width of the cross-section of the spring assembly. Diameter of Spring is denoted by d symbol.

How to calculate Width given Deflection of Square Section Wire Spring using this online calculator? To use this online calculator for Width given Deflection of Square Section Wire Spring, enter Spring Load (Wload), Mean Radius (R), Number of Coils (N), Deflection of Spring (δ) & Modulus of Rigidity (GTorsion) and hit the calculate button. Here is how the Width given Deflection of Square Section Wire Spring calculation can be explained with given input values -> 45003.02 = ((44.7*85*0.225^3*9)/(0.0034*40000000000))^(1/4).

FAQ

What is Width given Deflection of Square Section Wire Spring?
The Width given Deflection of Square Section Wire Spring formula is defined as the width of the cross-section of the spring assembly and is represented as d = ((44.7*Wload*R^3*N)/(δ*GTorsion))^(1/4) or Diameter of Spring = ((44.7*Spring Load*Mean Radius^3*Number of Coils)/(Deflection of Spring*Modulus of Rigidity))^(1/4). Spring Load is the instantaneous load applied perpendicular to the specimen cross section, The Mean Radius of spring coil is the average distance from the centerline of the spring wire to the axis of the spring, Number of Coils in spring is the total number of turns made by wire along its length, Deflection of Spring is how a spring responds when force is applied or released & Modulus of Rigidity is the measure of the rigidity of the body, given by the ratio of shear stress to shear strain. It is often denoted by G.
How to calculate Width given Deflection of Square Section Wire Spring?
The Width given Deflection of Square Section Wire Spring formula is defined as the width of the cross-section of the spring assembly is calculated using Diameter of Spring = ((44.7*Spring Load*Mean Radius^3*Number of Coils)/(Deflection of Spring*Modulus of Rigidity))^(1/4). To calculate Width given Deflection of Square Section Wire Spring, you need Spring Load (Wload), Mean Radius (R), Number of Coils (N), Deflection of Spring (δ) & Modulus of Rigidity (GTorsion). With our tool, you need to enter the respective value for Spring Load, Mean Radius, Number of Coils, Deflection of Spring & Modulus of Rigidity 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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