Thickness of Strip given Deflection of one end of Spring with respect to other end Solution

STEP 0: Pre-Calculation Summary
Formula Used
Thickness of Strip of Spring = ((12*Bending moment in spiral spring*Length of Strip of Spiral Spring*Distance of CG of Spiral Spring)/(Modulus of elasticity of spiral spring*Width of Strip of Spiral Spring*Deflection of Spiral Spring))^(1/3)
t = ((12*M*l*r)/(E*b*δ))^(1/3)
This formula uses 7 Variables
Variables Used
Thickness of Strip of Spring - (Measured in Meter) - The Thickness of Strip of Spring is defined as the thickness of the wired strip by which the spiral spring is manufactured.
Bending moment in spiral spring - (Measured in Newton Meter) - Bending moment in spiral spring is the reaction induced in a spiral spring when an external force or moment is applied to the element, causing the element to bend.
Length of Strip of Spiral Spring - (Measured in Meter) - Length of Strip of Spiral Spring is defined as the length of the thin strip of which spiral spring coils are manufactured.
Distance of CG of Spiral Spring - (Measured in Meter) - The Distance of CG of Spiral Spring from Outer End is the distance between the spiral's outer end strip and the center of gravity of the spiral.
Modulus of elasticity of spiral spring - (Measured in Pascal) - Modulus of elasticity of spiral spring is a quantity that measures the spring's resistance to being deformed elastically when stress is applied to it.
Width of Strip of Spiral Spring - (Measured in Meter) - The Width of Strip of Spiral Spring is defined as the thickness of the wired strip measured in the lateral direction and by which the spiral spring is manufactured.
Deflection of Spiral Spring - (Measured in Meter) - Deflection of Spiral Spring is the deflection of one end of spring with respect to the other.
STEP 1: Convert Input(s) to Base Unit
Bending moment in spiral spring: 1200 Newton Millimeter --> 1.2 Newton Meter (Check conversion ​here)
Length of Strip of Spiral Spring: 5980 Millimeter --> 5.98 Meter (Check conversion ​here)
Distance of CG of Spiral Spring: 55 Millimeter --> 0.055 Meter (Check conversion ​here)
Modulus of elasticity of spiral spring: 207000 Newton per Square Millimeter --> 207000000000 Pascal (Check conversion ​here)
Width of Strip of Spiral Spring: 11.52 Millimeter --> 0.01152 Meter (Check conversion ​here)
Deflection of Spiral Spring: 1018 Millimeter --> 1.018 Meter (Check conversion ​here)
STEP 2: Evaluate Formula
Substituting Input Values in Formula
t = ((12*M*l*r)/(E*b*δ))^(1/3) --> ((12*1.2*5.98*0.055)/(207000000000*0.01152*1.018))^(1/3)
Evaluating ... ...
t = 0.00124954505746455
STEP 3: Convert Result to Output's Unit
0.00124954505746455 Meter -->1.24954505746455 Millimeter (Check conversion ​here)
FINAL ANSWER
1.24954505746455 1.249545 Millimeter <-- Thickness of Strip of Spring
(Calculation completed in 00.004 seconds)

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Osmania University (OU), Hyderabad
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Thickness of Strip Calculators

Thickness of Strip given Deflection of one end of Spring with respect to other end
​ LaTeX ​ Go Thickness of Strip of Spring = ((12*Bending moment in spiral spring*Length of Strip of Spiral Spring*Distance of CG of Spiral Spring)/(Modulus of elasticity of spiral spring*Width of Strip of Spiral Spring*Deflection of Spiral Spring))^(1/3)
Thickness of Strip given Strain Energy Stored in Strip
​ LaTeX ​ Go Thickness of Strip of Spring = (6*Bending moment in spiral spring^2*Length of Strip of Spiral Spring/(Modulus of elasticity of spiral spring*Width of Strip of Spiral Spring*Strain energy in spiral spring))^(1/3)
Thickness of Strip when Angle of Rotation of Arbor with Respect to Drum
​ LaTeX ​ Go Thickness of Strip of Spring = (12*Bending moment in spiral spring*Length of Strip of Spiral Spring/(Modulus of elasticity of spiral spring*Width of Strip of Spiral Spring*Angle of Rotation of Arbor))^(1/3)
Thickness of Strip given Bending Stress induced at outer end of Spring
​ LaTeX ​ Go Thickness of Strip of Spring = sqrt(12*Bending moment in spiral spring/(Width of Strip of Spiral Spring*Bending Stress in Spiral Spring))

Thickness of Strip given Deflection of one end of Spring with respect to other end Formula

​LaTeX ​Go
Thickness of Strip of Spring = ((12*Bending moment in spiral spring*Length of Strip of Spiral Spring*Distance of CG of Spiral Spring)/(Modulus of elasticity of spiral spring*Width of Strip of Spiral Spring*Deflection of Spiral Spring))^(1/3)
t = ((12*M*l*r)/(E*b*δ))^(1/3)

Define Deflection of Spring?

Spring deflection, also known as spring travel, is the action of a compression spring compressing (being pushed), an extension spring extending (being pulled), or a torsion spring torquing (radially) when a load is applied or released. A travelled distance is exactly what deflection is.

How to Calculate Thickness of Strip given Deflection of one end of Spring with respect to other end?

Thickness of Strip given Deflection of one end of Spring with respect to other end calculator uses Thickness of Strip of Spring = ((12*Bending moment in spiral spring*Length of Strip of Spiral Spring*Distance of CG of Spiral Spring)/(Modulus of elasticity of spiral spring*Width of Strip of Spiral Spring*Deflection of Spiral Spring))^(1/3) to calculate the Thickness of Strip of Spring, Thickness of Strip given Deflection of one end of Spring with respect to other end formula is defined as a measure of the thickness of a strip in a spiral spring, which is influenced by the deflection of one end of the spring with respect to the other end, and is critical in determining the spring's overall mechanical properties. Thickness of Strip of Spring is denoted by t symbol.

How to calculate Thickness of Strip given Deflection of one end of Spring with respect to other end using this online calculator? To use this online calculator for Thickness of Strip given Deflection of one end of Spring with respect to other end, enter Bending moment in spiral spring (M), Length of Strip of Spiral Spring (l), Distance of CG of Spiral Spring (r), Modulus of elasticity of spiral spring (E), Width of Strip of Spiral Spring (b) & Deflection of Spiral Spring (δ) and hit the calculate button. Here is how the Thickness of Strip given Deflection of one end of Spring with respect to other end calculation can be explained with given input values -> 1249.545 = ((12*1.2*5.98*0.055)/(207000000000*0.01152*1.018))^(1/3).

FAQ

What is Thickness of Strip given Deflection of one end of Spring with respect to other end?
Thickness of Strip given Deflection of one end of Spring with respect to other end formula is defined as a measure of the thickness of a strip in a spiral spring, which is influenced by the deflection of one end of the spring with respect to the other end, and is critical in determining the spring's overall mechanical properties and is represented as t = ((12*M*l*r)/(E*b*δ))^(1/3) or Thickness of Strip of Spring = ((12*Bending moment in spiral spring*Length of Strip of Spiral Spring*Distance of CG of Spiral Spring)/(Modulus of elasticity of spiral spring*Width of Strip of Spiral Spring*Deflection of Spiral Spring))^(1/3). Bending moment in spiral spring is the reaction induced in a spiral spring when an external force or moment is applied to the element, causing the element to bend, Length of Strip of Spiral Spring is defined as the length of the thin strip of which spiral spring coils are manufactured, The Distance of CG of Spiral Spring from Outer End is the distance between the spiral's outer end strip and the center of gravity of the spiral, Modulus of elasticity of spiral spring is a quantity that measures the spring's resistance to being deformed elastically when stress is applied to it, The Width of Strip of Spiral Spring is defined as the thickness of the wired strip measured in the lateral direction and by which the spiral spring is manufactured & Deflection of Spiral Spring is the deflection of one end of spring with respect to the other.
How to calculate Thickness of Strip given Deflection of one end of Spring with respect to other end?
Thickness of Strip given Deflection of one end of Spring with respect to other end formula is defined as a measure of the thickness of a strip in a spiral spring, which is influenced by the deflection of one end of the spring with respect to the other end, and is critical in determining the spring's overall mechanical properties is calculated using Thickness of Strip of Spring = ((12*Bending moment in spiral spring*Length of Strip of Spiral Spring*Distance of CG of Spiral Spring)/(Modulus of elasticity of spiral spring*Width of Strip of Spiral Spring*Deflection of Spiral Spring))^(1/3). To calculate Thickness of Strip given Deflection of one end of Spring with respect to other end, you need Bending moment in spiral spring (M), Length of Strip of Spiral Spring (l), Distance of CG of Spiral Spring (r), Modulus of elasticity of spiral spring (E), Width of Strip of Spiral Spring (b) & Deflection of Spiral Spring (δ). With our tool, you need to enter the respective value for Bending moment in spiral spring, Length of Strip of Spiral Spring, Distance of CG of Spiral Spring, Modulus of elasticity of spiral spring, Width of Strip of Spiral Spring & Deflection of Spiral Spring 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 Thickness of Strip of Spring?
In this formula, Thickness of Strip of Spring uses Bending moment in spiral spring, Length of Strip of Spiral Spring, Distance of CG of Spiral Spring, Modulus of elasticity of spiral spring, Width of Strip of Spiral Spring & Deflection of Spiral Spring. We can use 3 other way(s) to calculate the same, which is/are as follows -
  • Thickness of Strip of Spring = sqrt(12*Bending moment in spiral spring/(Width of Strip of Spiral Spring*Bending Stress in Spiral Spring))
  • Thickness of Strip of Spring = (12*Bending moment in spiral spring*Length of Strip of Spiral Spring/(Modulus of elasticity of spiral spring*Width of Strip of Spiral Spring*Angle of Rotation of Arbor))^(1/3)
  • Thickness of Strip of Spring = (6*Bending moment in spiral spring^2*Length of Strip of Spiral Spring/(Modulus of elasticity of spiral spring*Width of Strip of Spiral Spring*Strain energy in spiral spring))^(1/3)
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