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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. Check FAQs
M=Pr
M - Bending moment in spiral spring?P - Force on spiral spring?r - Distance of CG of Spiral Spring?

Bending Moment due to Force Example

With values
With units
Only example

Here is how the Bending Moment due to Force equation looks like with Values.

Here is how the Bending Moment due to Force equation looks like with Units.

Here is how the Bending Moment due to Force equation looks like.

1210Edit=22Edit55Edit
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Bending Moment due to Force Solution

Follow our step by step solution on how to calculate Bending Moment due to Force?

FIRST Step Consider the formula
M=Pr
Next Step Substitute values of Variables
M=22N55mm
Next Step Convert Units
M=22N0.055m
Next Step Prepare to Evaluate
M=220.055
Next Step Evaluate
M=1.21N*m
LAST Step Convert to Output's Unit
M=1210N*mm

Bending Moment due to Force Formula Elements

Variables
Bending moment in spiral spring
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.
Symbol: M
Measurement: TorqueUnit: N*mm
Note: Value should be greater than 0.
Force on spiral spring
Force on spiral spring is the pulling force acting onto the end of a spiral spring.
Symbol: P
Measurement: ForceUnit: N
Note: Value should be greater than 0.
Distance of CG of Spiral Spring
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.
Symbol: r
Measurement: LengthUnit: mm
Note: Value should be greater than 0.

Other Formulas to find Bending moment in spiral spring

​Go Bending Moment due to Force given Bending Stress induced in Spring
M=σbbt212
​Go Bending Moment due to Force given Angle of Rotation of Arbor with Respect to Drum
M=θEbt312l
​Go Bending Moment due to Force given Deflection of one End of Spring
M=δEbt312lr
​Go Bending Moment given Strain Energy Stored in Spring
M=UEbt36l

Other formulas in Bending Moment in Spiral Spring category

​Go Distance of centre of Gravity of Spiral from outer end given Bending Moment due to Force
r=MP
​Go Deflection of one End of Spring with Respect to Other End
δ=12MlrEbt3
​Go Distance of centre of Gravity of Spiral from outer end given Deflection of one End of Spring
r=δEbt312Ml

How to Evaluate Bending Moment due to Force?

Bending Moment due to Force evaluator uses Bending moment in spiral spring = Force on spiral spring*Distance of CG of Spiral Spring to evaluate the Bending moment in spiral spring, Bending Moment due to Force formula is defined as a measure of the turning effect of a force around a pivot point, which is crucial in understanding the behavior of spiral springs under various loads, allowing designers to predict and optimize their performance. Bending moment in spiral spring is denoted by M symbol.

How to evaluate Bending Moment due to Force using this online evaluator? To use this online evaluator for Bending Moment due to Force, enter Force on spiral spring (P) & Distance of CG of Spiral Spring (r) and hit the calculate button.

FAQs on Bending Moment due to Force

What is the formula to find Bending Moment due to Force?
The formula of Bending Moment due to Force is expressed as Bending moment in spiral spring = Force on spiral spring*Distance of CG of Spiral Spring. Here is an example- 1.2E+6 = 22*0.055.
How to calculate Bending Moment due to Force?
With Force on spiral spring (P) & Distance of CG of Spiral Spring (r) we can find Bending Moment due to Force using the formula - Bending moment in spiral spring = Force on spiral spring*Distance of CG of Spiral Spring.
What are the other ways to Calculate Bending moment in spiral spring?
Here are the different ways to Calculate Bending moment in spiral spring-
  • Bending moment in spiral spring=Bending Stress in Spiral Spring*Width of Strip of Spiral Spring*Thickness of Strip of Spring^2/12OpenImg
  • Bending moment in spiral spring=Angle of Rotation of Arbor*Modulus of elasticity of spiral spring*Width of Strip of Spiral Spring*Thickness of Strip of Spring^3/(12*Length of Strip of Spiral Spring)OpenImg
  • Bending moment in spiral spring=(Deflection of Spiral Spring*Modulus of elasticity of spiral spring*Width of Strip of Spiral Spring*Thickness of Strip of Spring^3)/(12*Length of Strip of Spiral Spring*Distance of CG of Spiral Spring)OpenImg
Can the Bending Moment due to Force be negative?
No, the Bending Moment due to Force, measured in Torque cannot be negative.
Which unit is used to measure Bending Moment due to Force?
Bending Moment due to Force is usually measured using the Newton Millimeter[N*mm] for Torque. Newton Meter[N*mm], Newton Centimeter[N*mm], Kilonewton Meter[N*mm] are the few other units in which Bending Moment due to Force can be measured.
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