Force taken by graduated length leaves given force applied at end of spring Solution

STEP 0: Pre-Calculation Summary
Formula Used
Force Taken by Graduated Length Leaves = Force Applied at End of Leaf Spring-Force Taken by Full Length Leaves
Pg = P-Pf
This formula uses 3 Variables
Variables Used
Force Taken by Graduated Length Leaves - (Measured in Newton) - Force Taken by Graduated Length Leaves is defined as the portion of force that is taken by graduated length leaves.
Force Applied at End of Leaf Spring - (Measured in Newton) - Force Applied at End of Leaf Spring is defined as the net amount of force that is acting onto the spring.
Force Taken by Full Length Leaves - (Measured in Newton) - Force Taken by Full Length Leaves is defined as the portion of Force that is taken by extra full length leaves.
STEP 1: Convert Input(s) to Base Unit
Force Applied at End of Leaf Spring: 37500 Newton --> 37500 Newton No Conversion Required
Force Taken by Full Length Leaves: 8600 Newton --> 8600 Newton No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Pg = P-Pf --> 37500-8600
Evaluating ... ...
Pg = 28900
STEP 3: Convert Result to Output's Unit
28900 Newton --> No Conversion Required
FINAL ANSWER
28900 Newton <-- Force Taken by Graduated Length Leaves
(Calculation completed in 00.020 seconds)

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Created by Kethavath Srinath
Osmania University (OU), Hyderabad
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Vishwakarma Government Engineering College (VGEC), Ahmedabad
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Force Taken By Leaves Calculators

Force Taken by Graduated length leaves given Deflection at Load Point
​ LaTeX ​ Go Force Taken by Graduated Length Leaves = Deflection of Graduated Leaf at Load Point*Modulus of Elasticity of Spring*Number of Graduated Length Leaves*Width of Leaf*Thickness of Leaf^3/(6*Length of Cantilever of Leaf Spring^3)
Force taken by Graduated length leaves given Bending Stress in Plate
​ LaTeX ​ Go Force Taken by Graduated Length Leaves = Bending Stress in Graduated Leaf*Number of Graduated Length Leaves*Width of Leaf*Thickness of Leaf^2/(6*Length of Cantilever of Leaf Spring)
Force Taken by Full Length Leaves given Bending Stress in Plate Extra Full Length
​ LaTeX ​ Go Force Taken by Full Length Leaves = Bending Stress in Full Leaf*Number of Full length Leaves*Width of Leaf*Thickness of Leaf^2/(6*Length of Cantilever of Leaf Spring)
Force Taken by Graduated length leaves given Number of Leaves
​ LaTeX ​ Go Force Taken by Graduated Length Leaves = 2*Force Taken by Full Length Leaves*Number of Graduated Length Leaves/(3*Number of Full length Leaves)

Force taken by graduated length leaves given force applied at end of spring Formula

​LaTeX ​Go
Force Taken by Graduated Length Leaves = Force Applied at End of Leaf Spring-Force Taken by Full Length Leaves
Pg = P-Pf

Define a Multi Leaf Spring?

Multi-leaf springs are widely used for the suspension of cars, trucks and railway wagons. A multi-leaf spring consists of a series of flat plates, usually of semi-elliptical shape. The flat plates are called leaves of the spring. The leaf at the top has maximum length. The length gradually decreases from the top leaf to the bottom leaf. The longest leaf at the top is called master leaf.

How to Calculate Force taken by graduated length leaves given force applied at end of spring?

Force taken by graduated length leaves given force applied at end of spring calculator uses Force Taken by Graduated Length Leaves = Force Applied at End of Leaf Spring-Force Taken by Full Length Leaves to calculate the Force Taken by Graduated Length Leaves, Force taken by graduated length leaves given force applied at end of spring formula is defined as the measure of force exerted by the leaves of a spring balance when a force is applied at the end of the spring, providing an accurate reading of the force applied. Force Taken by Graduated Length Leaves is denoted by Pg symbol.

How to calculate Force taken by graduated length leaves given force applied at end of spring using this online calculator? To use this online calculator for Force taken by graduated length leaves given force applied at end of spring, enter Force Applied at End of Leaf Spring (P) & Force Taken by Full Length Leaves (Pf) and hit the calculate button. Here is how the Force taken by graduated length leaves given force applied at end of spring calculation can be explained with given input values -> 28900 = 37500-8600.

FAQ

What is Force taken by graduated length leaves given force applied at end of spring?
Force taken by graduated length leaves given force applied at end of spring formula is defined as the measure of force exerted by the leaves of a spring balance when a force is applied at the end of the spring, providing an accurate reading of the force applied and is represented as Pg = P-Pf or Force Taken by Graduated Length Leaves = Force Applied at End of Leaf Spring-Force Taken by Full Length Leaves. Force Applied at End of Leaf Spring is defined as the net amount of force that is acting onto the spring & Force Taken by Full Length Leaves is defined as the portion of Force that is taken by extra full length leaves.
How to calculate Force taken by graduated length leaves given force applied at end of spring?
Force taken by graduated length leaves given force applied at end of spring formula is defined as the measure of force exerted by the leaves of a spring balance when a force is applied at the end of the spring, providing an accurate reading of the force applied is calculated using Force Taken by Graduated Length Leaves = Force Applied at End of Leaf Spring-Force Taken by Full Length Leaves. To calculate Force taken by graduated length leaves given force applied at end of spring, you need Force Applied at End of Leaf Spring (P) & Force Taken by Full Length Leaves (Pf). With our tool, you need to enter the respective value for Force Applied at End of Leaf Spring & Force Taken by Full Length Leaves 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 Force Taken by Graduated Length Leaves?
In this formula, Force Taken by Graduated Length Leaves uses Force Applied at End of Leaf Spring & Force Taken by Full Length Leaves. We can use 3 other way(s) to calculate the same, which is/are as follows -
  • Force Taken by Graduated Length Leaves = Bending Stress in Graduated Leaf*Number of Graduated Length Leaves*Width of Leaf*Thickness of Leaf^2/(6*Length of Cantilever of Leaf Spring)
  • Force Taken by Graduated Length Leaves = Deflection of Graduated Leaf at Load Point*Modulus of Elasticity of Spring*Number of Graduated Length Leaves*Width of Leaf*Thickness of Leaf^3/(6*Length of Cantilever of Leaf Spring^3)
  • Force Taken by Graduated Length Leaves = 2*Force Taken by Full Length Leaves*Number of Graduated Length Leaves/(3*Number of Full length Leaves)
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