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Modulus of Rigidity of Valve Spring is the elastic coefficient when a shear force is applied resulting in lateral deformation. It gives us a measure of how rigid a body is. Check FAQs
G=8P(Nt-2)D3xdw4
G - Modulus of Rigidity of Valve Spring?P - Axial Force on Valve Spring?Nt - Total Coils in Valve Spring?D - Mean Coil Diameter of Valve Spring?x - Maximum Compression in Valve Spring?dw - Wire Diameter of Valve Spring?

Modulus of Rigidity of Engine Valve Spring given Number of Active Turns of Spring Example

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Here is how the Modulus of Rigidity of Engine Valve Spring given Number of Active Turns of Spring equation looks like with Values.

Here is how the Modulus of Rigidity of Engine Valve Spring given Number of Active Turns of Spring equation looks like with Units.

Here is how the Modulus of Rigidity of Engine Valve Spring given Number of Active Turns of Spring equation looks like.

108082.5916Edit=8340Edit(15Edit-2)46Edit334.8Edit5.5Edit4
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Modulus of Rigidity of Engine Valve Spring given Number of Active Turns of Spring Solution

Follow our step by step solution on how to calculate Modulus of Rigidity of Engine Valve Spring given Number of Active Turns of Spring?

FIRST Step Consider the formula
G=8P(Nt-2)D3xdw4
Next Step Substitute values of Variables
G=8340N(15-2)46mm334.8mm5.5mm4
Next Step Convert Units
G=8340N(15-2)0.046m30.0348m0.0055m4
Next Step Prepare to Evaluate
G=8340(15-2)0.04630.03480.00554
Next Step Evaluate
G=108082591557.169Pa
Next Step Convert to Output's Unit
G=108082.591557169N/mm²
LAST Step Rounding Answer
G=108082.5916N/mm²

Modulus of Rigidity of Engine Valve Spring given Number of Active Turns of Spring Formula Elements

Variables
Modulus of Rigidity of Valve Spring
Modulus of Rigidity of Valve Spring is the elastic coefficient when a shear force is applied resulting in lateral deformation. It gives us a measure of how rigid a body is.
Symbol: G
Measurement: StressUnit: N/mm²
Note: Value should be greater than 0.
Axial Force on Valve Spring
Axial Force on Valve Spring is the force acting at the ends of spring trying to compress or expand it in the axial direction.
Symbol: P
Measurement: ForceUnit: N
Note: Value should be greater than 0.
Total Coils in Valve Spring
Total Coils in Valve Spring is the total number of coils or turns of spring including the coils at the ends of the spring.
Symbol: Nt
Measurement: NAUnit: Unitless
Note: Value should be greater than 0.
Mean Coil Diameter of Valve Spring
Mean Coil Diameter of Valve Spring is defined as the average of the inner and the outer diameters of the spring of an engine valve.
Symbol: D
Measurement: LengthUnit: mm
Note: Value should be greater than 0.
Maximum Compression in Valve Spring
Maximum Compression in Valve Spring is the maximum amount of axial deflection in the valve spring.
Symbol: x
Measurement: LengthUnit: mm
Note: Value should be greater than 0.
Wire Diameter of Valve Spring
Wire Diameter of Valve Spring is the diameter of the wire of a valve spring, which constitutes the coils of the spring.
Symbol: dw
Measurement: LengthUnit: mm
Note: Value should be greater than 0.

Other Formulas to find Modulus of Rigidity of Valve Spring

​Go Modulus of Rigidity of Engine Valve Spring given Maximum Compression in Spring
G=8PND3xdw4
​Go Modulus of Rigidity of Engine Valve Spring given Total Number of Turns of Spring
G=8D3k(Nt-2)dw4

Other formulas in Valve Spring category

​Go Diameter of Wire of Engine Valve Spring given Mean Coil Diameter
dw=D8
​Go Diameter of Wire of Engine Valve Spring given Torsional Shear Stress in Wire
dw=8KPCπfs
​Go Diameter of Wire of Engine Valve Spring
dw=8K((Pi+khmax)C)πfs
​Go Spring Index of Engine Valve Spring given Shear Stress, Maximum Force and Wire Diameter
C=πfsdw28KP

How to Evaluate Modulus of Rigidity of Engine Valve Spring given Number of Active Turns of Spring?

Modulus of Rigidity of Engine Valve Spring given Number of Active Turns of Spring evaluator uses Modulus of Rigidity of Valve Spring = (8*Axial Force on Valve Spring*(Total Coils in Valve Spring-2)*Mean Coil Diameter of Valve Spring^3)/(Maximum Compression in Valve Spring*Wire Diameter of Valve Spring^4) to evaluate the Modulus of Rigidity of Valve Spring, Modulus of rigidity of engine valve spring given number of active turns of spring is the measure of the rigidity of the spring wire material. It is the elastic coefficient when a shear force is applied resulting in lateral deformation and gives us a measure of the body's rigidity. Modulus of Rigidity of Valve Spring is denoted by G symbol.

How to evaluate Modulus of Rigidity of Engine Valve Spring given Number of Active Turns of Spring using this online evaluator? To use this online evaluator for Modulus of Rigidity of Engine Valve Spring given Number of Active Turns of Spring, enter Axial Force on Valve Spring (P), Total Coils in Valve Spring (Nt), Mean Coil Diameter of Valve Spring (D), Maximum Compression in Valve Spring (x) & Wire Diameter of Valve Spring (dw) and hit the calculate button.

FAQs on Modulus of Rigidity of Engine Valve Spring given Number of Active Turns of Spring

What is the formula to find Modulus of Rigidity of Engine Valve Spring given Number of Active Turns of Spring?
The formula of Modulus of Rigidity of Engine Valve Spring given Number of Active Turns of Spring is expressed as Modulus of Rigidity of Valve Spring = (8*Axial Force on Valve Spring*(Total Coils in Valve Spring-2)*Mean Coil Diameter of Valve Spring^3)/(Maximum Compression in Valve Spring*Wire Diameter of Valve Spring^4). Here is an example- 0.108083 = (8*340*(15-2)*0.046^3)/(0.0348*0.0055^4).
How to calculate Modulus of Rigidity of Engine Valve Spring given Number of Active Turns of Spring?
With Axial Force on Valve Spring (P), Total Coils in Valve Spring (Nt), Mean Coil Diameter of Valve Spring (D), Maximum Compression in Valve Spring (x) & Wire Diameter of Valve Spring (dw) we can find Modulus of Rigidity of Engine Valve Spring given Number of Active Turns of Spring using the formula - Modulus of Rigidity of Valve Spring = (8*Axial Force on Valve Spring*(Total Coils in Valve Spring-2)*Mean Coil Diameter of Valve Spring^3)/(Maximum Compression in Valve Spring*Wire Diameter of Valve Spring^4).
What are the other ways to Calculate Modulus of Rigidity of Valve Spring?
Here are the different ways to Calculate Modulus of Rigidity of Valve Spring-
  • Modulus of Rigidity of Valve Spring=(8*Axial Force on Valve Spring*Active Coils in Valve Spring*Mean Coil Diameter of Valve Spring^3)/(Maximum Compression in Valve Spring*Wire Diameter of Valve Spring^4)OpenImg
  • Modulus of Rigidity of Valve Spring=(8*Mean Coil Diameter of Valve Spring^3*Stiffness of Valve Spring*(Total Coils in Valve Spring-2))/(Wire Diameter of Valve Spring^4)OpenImg
Can the Modulus of Rigidity of Engine Valve Spring given Number of Active Turns of Spring be negative?
No, the Modulus of Rigidity of Engine Valve Spring given Number of Active Turns of Spring, measured in Stress cannot be negative.
Which unit is used to measure Modulus of Rigidity of Engine Valve Spring given Number of Active Turns of Spring?
Modulus of Rigidity of Engine Valve Spring given Number of Active Turns of Spring is usually measured using the Newton per Square Millimeter[N/mm²] for Stress. Pascal[N/mm²], Newton per Square Meter[N/mm²], Kilonewton per Square Meter[N/mm²] are the few other units in which Modulus of Rigidity of Engine Valve Spring given Number of Active Turns of Spring can be measured.
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