Diameter of Rod of Cotter Joint given Thickness of Cotter Solution

STEP 0: Pre-Calculation Summary
Formula Used
Diameter of Rod of Cotter Joint = Thickness of Cotter/(0.31)
d = tc/(0.31)
This formula uses 2 Variables
Variables Used
Diameter of Rod of Cotter Joint - (Measured in Meter) - Diameter of Rod of Cotter Joint is defined as the length of the longest chord passing across the rod of a cotter joint end.
Thickness of Cotter - (Measured in Meter) - Thickness of Cotter is the measure of how much broad is the cotter in direction perpendicular to axial force.
STEP 1: Convert Input(s) to Base Unit
Thickness of Cotter: 14 Millimeter --> 0.014 Meter (Check conversion here)
STEP 2: Evaluate Formula
Substituting Input Values in Formula
d = tc/(0.31) --> 0.014/(0.31)
Evaluating ... ...
d = 0.0451612903225806
STEP 3: Convert Result to Output's Unit
0.0451612903225806 Meter -->45.1612903225806 Millimeter (Check conversion here)
FINAL ANSWER
45.1612903225806 45.16129 Millimeter <-- Diameter of Rod of Cotter Joint
(Calculation completed in 00.004 seconds)

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25 Joint Geometry and Dimensions Calculators

Thickness of Cotter given Tensile Stress in Socket
Go Thickness of Cotter = ((pi/4*(Outside Diameter of Socket^2-Diameter of Spigot^2))-(Load at Cotter Joint)/Tensile Stress In Socket)/(Outside Diameter of Socket-Diameter of Spigot)
Width of Cotter by Bending Consideration
Go Mean Width of Cotter = (3*Load on Cotter Joint/(Thickness of Cotter*Bending Stress in Cotter)*(Diameter of Spigot/4+(Diameter of Socket Collar-Diameter of Spigot)/6))^0.5
Thickness of Cotter Joint given Bending Stress in Cotter
Go Thickness of Cotter = (2*Diameter of Socket Collar+Diameter of Spigot)*((Load on Cotter Joint)/(4*Mean Width of Cotter^2*Bending Stress in Cotter))
Diameter of Socket Collar of Cotter Joint given Bending Stress in Cotter
Go Diameter of Socket Collar = (4*Mean Width of Cotter^2*Bending Stress in Cotter*(Thickness of Cotter)/Load on Cotter Joint-Diameter of Spigot)/2
Diameter of Spigot of Cotter Joint given Bending Stress in Cotter
Go Diameter of Spigot = 4*Mean Width of Cotter^2*Bending Stress in Cotter*(Thickness of Cotter)/Load on Cotter Joint-2*Diameter of Socket Collar
Inside Diameter of Socket of Cotter Joint given Shear Stress in Socket
Go Diameter of Spigot = Diameter of Socket Collar-(Load on Cotter Joint)/(2*Axial Distance From Slot to End of Socket Collar*Shear Stress in Socket)
Diameter of socket collar of cotter joint given shear stress in socket
Go Diameter of Socket Collar = (Load on Cotter Joint)/(2*Axial Distance From Slot to End of Socket Collar*Shear Stress in Socket)+Diameter of Spigot
Thickness of Cotter given Compressive Stress in Socket
Go Thickness of Cotter = (Load on Cotter Joint)/((Diameter of Socket Collar-Diameter of Spigot)*Compressive Stress In Socket)
Diameter of Socket Collar of Cotter Joint given Compressive Stress
Go Diameter of Socket Collar = Diameter of Spigot+(Load on Cotter Joint)/(Thickness of Cotter*Compressive Stress in Spigot)
Diameter of Spigot of Cotter Joint given Compressive Stress
Go Diameter of Spigot = Diameter of Socket Collar-(Load on Cotter Joint)/(Thickness of Cotter*Compressive Stress in Spigot)
Minimum Rod Diameter in Cotter Joint given Axial Tensile Force and Stress
Go Diameter of Rod of Cotter Joint = sqrt((4*Load on Cotter Joint)/(Tensile Stress in Cotter Joint Rod*pi))
Cross Section Area of Spigot of Cotter Joint Prone to Failure
Go Cross Sectional Area of Spigot = (pi*Diameter of Spigot^2)/4-Diameter of Spigot*Thickness of Cotter
Diameter of Spigot of Cotter Joint given Shear Stress in Spigot
Go Diameter of Spigot = (Load on Cotter Joint)/(2*Gap between End of Slot to End of Spigot*Shear Stress in Spigot)
Minimum Diameter of Spigot in Cotter Joint Subjected to Crushing Stress
Go Diameter of Spigot = Load on Cotter Joint/(Crushing Stress induced in Cotter*Thickness of Cotter)
Thickness of Cotter given Compressive Stress in Spigot
Go Thickness of Cotter = (Load on Cotter Joint)/(Compressive Stress in Spigot*Diameter of Spigot)
Thickness of Cotter given Shear Stress in Cotter
Go Thickness of Cotter = (Load on Cotter Joint)/(2*Shear Stress in Cotter*Mean Width of Cotter)
Width of Cotter by Shear Consideration
Go Mean Width of Cotter = Shear Force on Cotter/(2*Shear Stress in Cotter*Thickness of Cotter)
Diameter of Rod of Cotter Joint given Thickness of Spigot Collar
Go Diameter of Rod of Cotter Joint = Thickness of Spigot Collar/(0.45)
Thickness of Spigot Collar when Rod Diameter is Available
Go Thickness of Spigot Collar = 0.45*Diameter of Rod of Cotter Joint
Diameter of Rod of Cotter Joint given Spigot Collar Diameter
Go Diameter of Rod of Cotter Joint = Diameter of Spigot Collar/1.5
Diameter of Rod of Cotter Joint given Socket Collar Diameter
Go Diameter of Rod of Cotter Joint = Diameter of Socket Collar/2.4
Diameter of Spigot Collar given Rod Diameter
Go Diameter of Spigot Collar = 1.5*Diameter of Rod of Cotter Joint
Diameter of Socket Collar given Rod Diameter
Go Diameter of Socket Collar = 2.4*Diameter of Rod of Cotter Joint
Diameter of Rod of Cotter Joint given Thickness of Cotter
Go Diameter of Rod of Cotter Joint = Thickness of Cotter/(0.31)
Thickness of Cotter Joint
Go Thickness of Cotter = 0.31*Diameter of Rod of Cotter Joint

Diameter of Rod of Cotter Joint given Thickness of Cotter Formula

Diameter of Rod of Cotter Joint = Thickness of Cotter/(0.31)
d = tc/(0.31)

What is a cotter and when is it used?

Cotter is a flat wedge-shaped metal piece that is used to connect two rods that transmit the force but without rotation. The force may be axial and of tensile or compressive nature. Cotter is fitted in the tapered slot and remains in its position because of wedge action.

How to Calculate Diameter of Rod of Cotter Joint given Thickness of Cotter?

Diameter of Rod of Cotter Joint given Thickness of Cotter calculator uses Diameter of Rod of Cotter Joint = Thickness of Cotter/(0.31) to calculate the Diameter of Rod of Cotter Joint, Diameter of rod of cotter joint given thickness of cotter is the diameter of the end rod of the cotter joint. Diameter of Rod of Cotter Joint is denoted by d symbol.

How to calculate Diameter of Rod of Cotter Joint given Thickness of Cotter using this online calculator? To use this online calculator for Diameter of Rod of Cotter Joint given Thickness of Cotter, enter Thickness of Cotter (tc) and hit the calculate button. Here is how the Diameter of Rod of Cotter Joint given Thickness of Cotter calculation can be explained with given input values -> 45161.29 = 0.014/(0.31).

FAQ

What is Diameter of Rod of Cotter Joint given Thickness of Cotter?
Diameter of rod of cotter joint given thickness of cotter is the diameter of the end rod of the cotter joint and is represented as d = tc/(0.31) or Diameter of Rod of Cotter Joint = Thickness of Cotter/(0.31). Thickness of Cotter is the measure of how much broad is the cotter in direction perpendicular to axial force.
How to calculate Diameter of Rod of Cotter Joint given Thickness of Cotter?
Diameter of rod of cotter joint given thickness of cotter is the diameter of the end rod of the cotter joint is calculated using Diameter of Rod of Cotter Joint = Thickness of Cotter/(0.31). To calculate Diameter of Rod of Cotter Joint given Thickness of Cotter, you need Thickness of Cotter (tc). With our tool, you need to enter the respective value for Thickness of Cotter 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 Diameter of Rod of Cotter Joint?
In this formula, Diameter of Rod of Cotter Joint uses Thickness of Cotter. We can use 4 other way(s) to calculate the same, which is/are as follows -
  • Diameter of Rod of Cotter Joint = sqrt((4*Load on Cotter Joint)/(Tensile Stress in Cotter Joint Rod*pi))
  • Diameter of Rod of Cotter Joint = Diameter of Spigot Collar/1.5
  • Diameter of Rod of Cotter Joint = Diameter of Socket Collar/2.4
  • Diameter of Rod of Cotter Joint = Thickness of Spigot Collar/(0.45)
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