Tensile Stress in Rod of Knuckle Joint Solution

STEP 0: Pre-Calculation Summary
Formula Used
Tensile Stress in Knuckle Joint Rod = (4*Load on Knuckle Joint)/(pi*Diameter of Rod of Knuckle Joint^2)
σtrod = (4*L)/(pi*drk^2)
This formula uses 1 Constants, 3 Variables
Constants Used
pi - Archimedes' constant Value Taken As 3.14159265358979323846264338327950288
Variables Used
Tensile Stress in Knuckle Joint Rod - (Measured in Pascal) - Tensile Stress in Knuckle Joint Rod is the amount of stress generated into the rod due to the tensile force onto it.
Load on Knuckle Joint - (Measured in Newton) - Load on Knuckle Joint is basically the amount of load/force any part, product, or joint of a knuckle joint can bear or is acted upon or exerts.
Diameter of Rod of Knuckle Joint - (Measured in Meter) - Diameter of Rod of Knuckle Joint is defined as the diameter of the end rods of a knuckle joint.
STEP 1: Convert Input(s) to Base Unit
Load on Knuckle Joint: 50000 Newton --> 50000 Newton No Conversion Required
Diameter of Rod of Knuckle Joint: 31 Millimeter --> 0.031 Meter (Check conversion here)
STEP 2: Evaluate Formula
Substituting Input Values in Formula
σtrod = (4*L)/(pi*drk^2) --> (4*50000)/(pi*0.031^2)
Evaluating ... ...
σtrod = 66245553.8363768
STEP 3: Convert Result to Output's Unit
66245553.8363768 Pascal -->66.2455538363768 Newton per Square Millimeter (Check conversion here)
FINAL ANSWER
66.2455538363768 66.24555 Newton per Square Millimeter <-- Tensile Stress in Knuckle Joint Rod
(Calculation completed in 00.004 seconds)

Credits

Created by Saurabh Patil
Shri Govindram Seksaria Institute of Technology and Science (SGSITS ), Indore
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National Institute Of Technology (NIT), Hamirpur
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16 Eye Calculators

Bending Stress in Knuckle Pin given Load, Thickness of Eyes and Pin Diameter
Go Bending Stress in Knuckle Pin = (32*Load on Knuckle Joint/2*(Thickess of Eye of Knuckle Joint/4+Thickess of Fork Eye of Knuckle Joint/3))/(pi*Diameter of Knuckle Pin^3)
Thickness of Eye End of Knuckle Joint given Bending Stress in Pin
Go Thickess of Eye of Knuckle Joint = 4*((pi*Diameter of Knuckle Pin^3*Bending Stress in Knuckle Pin)/(16*Load on Knuckle Joint)-Thickess of Fork Eye of Knuckle Joint/3)
Tensile Stress in Fork of Knuckle Joint given Load, Outer Diameter of Eye and Pin Diameter
Go Tensile Stress in Fork of Knuckle Joint = Load on Knuckle Joint/(2*Thickess of Fork Eye of Knuckle Joint*(Outer Diameter of Eye of Knuckle Joint-Diameter of Knuckle Pin))
Shear Stress in Fork of Knuckle Joint given Load, Outer Diameter of Eye and Pin Diameter
Go Shear Stress in Fork of Knuckle Joint = Load on Knuckle Joint/(2*Thickess of Fork Eye of Knuckle Joint*(Outer Diameter of Eye of Knuckle Joint-Diameter of Knuckle Pin))
Tensile Stress in Eye of Knuckle Joint given Load, Outer Diameter of Eye and its Thickness
Go Tensile Stress in Eye of Knuckle Joint = Load on Knuckle Joint/(Thickess of Eye of Knuckle Joint*(Outer Diameter of Eye of Knuckle Joint-Diameter of Knuckle Pin))
Thickness of Eye End of Knuckle Joint given Tensile Stress in Eye
Go Thickess of Eye of Knuckle Joint = Load on Knuckle Joint/(Tensile Stress in Eye of Knuckle Joint*(Outer Diameter of Eye of Knuckle Joint-Diameter of Knuckle Pin))
Shear Stress in Eye of Knuckle Joint given Load, Outer Diameter of Eye and its Thickness
Go Shear Stress in Eye of Knuckle Joint = Load on Knuckle Joint/(Thickess of Eye of Knuckle Joint*(Outer Diameter of Eye of Knuckle Joint-Diameter of Knuckle Pin))
Thickness of Eye End of Knuckle Joint given Shear Stress in Eye
Go Thickess of Eye of Knuckle Joint = Load on Knuckle Joint/(Shear Stress in Eye of Knuckle Joint*(Outer Diameter of Eye of Knuckle Joint-Diameter of Knuckle Pin))
Max Bending Moment in Knuckle Pin given Load, Thickness of Eye and Fork
Go Bending Moment in Knuckle Pin = Load on Knuckle Joint/2*(Thickess of Eye of Knuckle Joint/4+Thickess of Fork Eye of Knuckle Joint/3)
Thickness of Eye End of Knuckle Joint given Bending Moment in Pin
Go Thickess of Eye of Knuckle Joint = 4*(2*Bending Moment in Knuckle Pin/Load on Knuckle Joint-Thickess of Fork Eye of Knuckle Joint/3)
Compressive Stress in Pin Inside Fork of Knuckle Joint given Load and Pin Dimensions
Go Compressive Stress in Knuckle Pin = Load on Knuckle Joint/(2*Thickess of Fork Eye of Knuckle Joint*Diameter of Knuckle Pin)
Compressive Stress in Pin Inside Eye of Knuckle Joint given Load and Pin Dimensions
Go Compressive Stress in Knuckle Pin = Load on Knuckle Joint/(Thickess of Eye of Knuckle Joint*Diameter of Knuckle Pin)
Tensile Stress in Rod of Knuckle Joint
Go Tensile Stress in Knuckle Joint Rod = (4*Load on Knuckle Joint)/(pi*Diameter of Rod of Knuckle Joint^2)
Bending Stress in Knuckle Pin given Bending Moment in Pin
Go Bending Stress in Knuckle Pin = (32*Bending Moment in Knuckle Pin)/(pi*Diameter of Knuckle Pin^3)
Shear Stress in Pin of Knuckle Joint given Load and Pin Diameter
Go Shear Stress in Knuckle Pin = (2*Load on Knuckle Joint)/(pi*Diameter of Knuckle Pin^2)
Thickness of Eye of Knuckle Joint given Rod Diameter
Go Thickess of Eye of Knuckle Joint = 1.25*Diameter of Rod of Knuckle Joint

Tensile Stress in Rod of Knuckle Joint Formula

Tensile Stress in Knuckle Joint Rod = (4*Load on Knuckle Joint)/(pi*Diameter of Rod of Knuckle Joint^2)
σtrod = (4*L)/(pi*drk^2)

What is a Prismatic joint?

A prismatic joint provides a linear sliding movement between two bodies and is often called a slider, as in the slider-crank linkage. A prismatic pair is also called a sliding pair. A prismatic joint can be formed with a polygonal cross-section to resist rotation. The relative position of two bodies connected by a prismatic joint is defined by the amount of linear slide of one relative to the other one. This one parameter movement identifies this joint as one degree of freedom kinematic pair. Prismatic joints provide single-axis sliding often found in hydraulic and pneumatic cylinders.

How to Calculate Tensile Stress in Rod of Knuckle Joint?

Tensile Stress in Rod of Knuckle Joint calculator uses Tensile Stress in Knuckle Joint Rod = (4*Load on Knuckle Joint)/(pi*Diameter of Rod of Knuckle Joint^2) to calculate the Tensile Stress in Knuckle Joint Rod, The Tensile stress in Rod of knuckle joint is the tensile stress acting onto the knuckle pin due to the tensile load acting to pull apart the eye end and the fork of the knuckle joint. Tensile Stress in Knuckle Joint Rod is denoted by σtrod symbol.

How to calculate Tensile Stress in Rod of Knuckle Joint using this online calculator? To use this online calculator for Tensile Stress in Rod of Knuckle Joint, enter Load on Knuckle Joint (L) & Diameter of Rod of Knuckle Joint (drk) and hit the calculate button. Here is how the Tensile Stress in Rod of Knuckle Joint calculation can be explained with given input values -> 6.6E-5 = (4*50000)/(pi*0.031^2).

FAQ

What is Tensile Stress in Rod of Knuckle Joint?
The Tensile stress in Rod of knuckle joint is the tensile stress acting onto the knuckle pin due to the tensile load acting to pull apart the eye end and the fork of the knuckle joint and is represented as σtrod = (4*L)/(pi*drk^2) or Tensile Stress in Knuckle Joint Rod = (4*Load on Knuckle Joint)/(pi*Diameter of Rod of Knuckle Joint^2). Load on Knuckle Joint is basically the amount of load/force any part, product, or joint of a knuckle joint can bear or is acted upon or exerts & Diameter of Rod of Knuckle Joint is defined as the diameter of the end rods of a knuckle joint.
How to calculate Tensile Stress in Rod of Knuckle Joint?
The Tensile stress in Rod of knuckle joint is the tensile stress acting onto the knuckle pin due to the tensile load acting to pull apart the eye end and the fork of the knuckle joint is calculated using Tensile Stress in Knuckle Joint Rod = (4*Load on Knuckle Joint)/(pi*Diameter of Rod of Knuckle Joint^2). To calculate Tensile Stress in Rod of Knuckle Joint, you need Load on Knuckle Joint (L) & Diameter of Rod of Knuckle Joint (drk). With our tool, you need to enter the respective value for Load on Knuckle Joint & Diameter of Rod of Knuckle Joint and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
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