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Design of Machine Elements
Thickness of Cotter in Design of Cotter Joint Formulas
Thickness of Cotter is the measure of how much broad is the cotter in direction perpendicular to axial force. And is denoted by t
c
. Thickness of Cotter is usually measured using the Millimeter for Length. Note that the value of Thickness of Cotter is always positive.
Formulas to find Thickness of Cotter in Design of Cotter Joint
f
x
Thickness of Cotter Joint
Go
f
x
Thickness of Cotter given Tensile Stress in Socket
Go
f
x
Thickness of Cotter given Shear Stress in Cotter
Go
f
x
Thickness of Cotter given Compressive Stress in Spigot
Go
f
x
Thickness of Cotter given Compressive Stress in Socket
Go
f
x
Thickness of Cotter Joint given Bending Stress in Cotter
Go
Design of Cotter Joint formulas that make use of Thickness of Cotter
f
x
Tensile Stress in Spigot of Cotter Joint given Diameter of Spigot, Thickenss of Cotter and Load
Go
f
x
Shear Stress in Cotter given Cotter Thickness and Width
Go
f
x
Compressive Stress in Spigot of Cotter Joint Considering Crushing Failure
Go
f
x
Compressive Stress in Socket of Cotter Joint given Diameter of Spigot and of Socket Collar
Go
f
x
Bending Stress in Cotter of Cotter Joint
Go
f
x
Compressive Stress of Spigot
Go
f
x
Tensile Stress in Socket of Cotter Joint given Outer and Inner Diameter of Socket
Go
f
x
Permissible Shear Stress for Cotter
Go
f
x
Tensile Stress in Spigot
Go
f
x
Maximum Load taken by Cotter Joint given Spigot Diameter, Thickness and Stress
Go
f
x
Load Taken by Socket of Cotter Joint given Tensile Stress in Socket
Go
f
x
Force on Cotter given Shear Stress in Cotter
Go
f
x
Load Taken by Spigot of Cotter Joint given Compressive Stress in Spigot Considering Crushing Failure
Go
f
x
Load Taken by Socket of Cotter Joint given Compressive Stress
Go
f
x
Minimum Diameter of Spigot in Cotter Joint Subjected to Crushing Stress
Go
f
x
Diameter of Spigot of Cotter Joint given Compressive Stress
Go
f
x
Diameter of Spigot of Cotter Joint given Bending Stress in Cotter
Go
f
x
Width of Cotter by Shear Consideration
Go
f
x
Width of Cotter by Bending Consideration
Go
f
x
Diameter of Socket Collar of Cotter Joint given Compressive Stress
Go
f
x
Diameter of Socket Collar of Cotter Joint given Bending Stress in Cotter
Go
f
x
Diameter of Rod of Cotter Joint given Thickness of Cotter
Go
f
x
Cross Section Area of Spigot of Cotter Joint Prone to Failure
Go
f
x
Cross Section Area of Socket of Cotter Joint Prone to Failure
Go
List of variables in Design of Cotter Joint formulas
f
x
Diameter of Rod of Cotter Joint
Go
f
x
Outside Diameter of Socket
Go
f
x
Diameter of Spigot
Go
f
x
Force on Cotter Joint
Go
f
x
Tensile Stress In Socket
Go
f
x
Load on Cotter Joint
Go
f
x
Shear Stress in Cotter
Go
f
x
Mean Width of Cotter
Go
f
x
Compressive Stress in Spigot
Go
f
x
Diameter of Socket Collar
Go
f
x
Compressive Stress In Socket
Go
f
x
Bending Stress in Cotter
Go
FAQ
What is the Thickness of Cotter?
Thickness of Cotter is the measure of how much broad is the cotter in direction perpendicular to axial force. Thickness of Cotter is usually measured using the Millimeter for Length. Note that the value of Thickness of Cotter is always positive.
Can the Thickness of Cotter be negative?
No, the Thickness of Cotter, measured in Length cannot be negative.
What unit is used to measure Thickness of Cotter?
Thickness of Cotter is usually measured using the Millimeter[mm] for Length. Meter[mm], Kilometer[mm], Decimeter[mm] are the few other units in which Thickness of Cotter can be measured.
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