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The Diameter of Lever Fulcrum Pin is the measurement across the pin that serves as the pivot point in a lever system, affecting its mechanical advantage and stability. Check FAQs
d1=(l1)-(MbP)
d1 - Diameter of Lever Fulcrum Pin?l1 - Length of Effort Arm?Mb - Bending Moment in Lever?P - Effort on Lever?

Diameter of fulcrum pin of lever given bending moment and effort force Example

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Here is how the Diameter of fulcrum pin of lever given bending moment and effort force equation looks like with Values.

Here is how the Diameter of fulcrum pin of lever given bending moment and effort force equation looks like with Units.

Here is how the Diameter of fulcrum pin of lever given bending moment and effort force equation looks like.

11.6Edit=(900Edit)-(275404Edit310Edit)
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Diameter of fulcrum pin of lever given bending moment and effort force Solution

Follow our step by step solution on how to calculate Diameter of fulcrum pin of lever given bending moment and effort force?

FIRST Step Consider the formula
d1=(l1)-(MbP)
Next Step Substitute values of Variables
d1=(900mm)-(275404N*mm310N)
Next Step Convert Units
d1=(0.9m)-(275.404N*m310N)
Next Step Prepare to Evaluate
d1=(0.9)-(275.404310)
Next Step Evaluate
d1=0.0116000000000001m
Next Step Convert to Output's Unit
d1=11.6000000000001mm
LAST Step Rounding Answer
d1=11.6mm

Diameter of fulcrum pin of lever given bending moment and effort force Formula Elements

Variables
Diameter of Lever Fulcrum Pin
The Diameter of Lever Fulcrum Pin is the measurement across the pin that serves as the pivot point in a lever system, affecting its mechanical advantage and stability.
Symbol: d1
Measurement: LengthUnit: mm
Note: Value should be greater than 0.
Length of Effort Arm
The Length of Effort Arm is the distance from the fulcrum to the point where effort is applied on a lever, influencing the lever's mechanical advantage.
Symbol: l1
Measurement: LengthUnit: mm
Note: Value should be greater than 0.
Bending Moment in Lever
The Bending Moment in Lever is the measure of the rotational force acting on a lever, influencing its ability to lift or support loads effectively.
Symbol: Mb
Measurement: TorqueUnit: N*mm
Note: Value should be greater than 0.
Effort on Lever
The Effort on Lever is the force applied to a lever to lift or move a load, demonstrating the principles of mechanical advantage in lever systems.
Symbol: P
Measurement: ForceUnit: N
Note: Value should be greater than 0.

Other Formulas to find Diameter of Lever Fulcrum Pin

​Go Diameter of fulcrum pin of lever given reaction force and bearing pressure
d1=RfPblf
​Go Diameter of fulcrum pin given compressive stress in pin
d1=Rfσtfpl

Other formulas in Design of Fulcrum Pin category

​Go Bearing pressure in fulcrum pin of lever given reaction force and diameter of pin
Pb=Rfd1lf
​Go Length of flucrum pin of lever given reaction force and bearing pressure
lf=RfPbd1
​Go Maximum length of flucrum pin of lever given diameter of fulcrum pin
lf=2d1
​Go Compressive stress in fulcrum pin of lever given reaction force, depth of lever arm
σtfp=Rfd1l

How to Evaluate Diameter of fulcrum pin of lever given bending moment and effort force?

Diameter of fulcrum pin of lever given bending moment and effort force evaluator uses Diameter of Lever Fulcrum Pin = (Length of Effort Arm)-(Bending Moment in Lever/Effort on Lever) to evaluate the Diameter of Lever Fulcrum Pin, Diameter of fulcrum pin of lever given bending moment and effort force formula is defined as a method to determine the diameter of the fulcrum pin required to withstand a given bending moment and effort force. Diameter of Lever Fulcrum Pin is denoted by d1 symbol.

How to evaluate Diameter of fulcrum pin of lever given bending moment and effort force using this online evaluator? To use this online evaluator for Diameter of fulcrum pin of lever given bending moment and effort force, enter Length of Effort Arm (l1), Bending Moment in Lever (Mb) & Effort on Lever (P) and hit the calculate button.

FAQs on Diameter of fulcrum pin of lever given bending moment and effort force

What is the formula to find Diameter of fulcrum pin of lever given bending moment and effort force?
The formula of Diameter of fulcrum pin of lever given bending moment and effort force is expressed as Diameter of Lever Fulcrum Pin = (Length of Effort Arm)-(Bending Moment in Lever/Effort on Lever). Here is an example- 11600 = (0.9)-(275.404/310).
How to calculate Diameter of fulcrum pin of lever given bending moment and effort force?
With Length of Effort Arm (l1), Bending Moment in Lever (Mb) & Effort on Lever (P) we can find Diameter of fulcrum pin of lever given bending moment and effort force using the formula - Diameter of Lever Fulcrum Pin = (Length of Effort Arm)-(Bending Moment in Lever/Effort on Lever).
What are the other ways to Calculate Diameter of Lever Fulcrum Pin?
Here are the different ways to Calculate Diameter of Lever Fulcrum Pin-
  • Diameter of Lever Fulcrum Pin=Force at Lever Fulcrum Pin/(Bearing Pressure in Fulcrum Pin of Lever*Length of Lever Fulcrum Pin)OpenImg
  • Diameter of Lever Fulcrum Pin=Force at Lever Fulcrum Pin/(Compressive Stress in Fulcrum Pin*Length of Pin Boss)OpenImg
Can the Diameter of fulcrum pin of lever given bending moment and effort force be negative?
No, the Diameter of fulcrum pin of lever given bending moment and effort force, measured in Length cannot be negative.
Which unit is used to measure Diameter of fulcrum pin of lever given bending moment and effort force?
Diameter of fulcrum pin of lever given bending moment and effort force is usually measured using the Millimeter[mm] for Length. Meter[mm], Kilometer[mm], Decimeter[mm] are the few other units in which Diameter of fulcrum pin of lever given bending moment and effort force can be measured.
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