Compressive Stress in Socket of Cotter Joint given Diameter of Spigot and of Socket Collar Formula

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Compressive Stress In Socket is the amount of stress generated into the socket due to the compressive force onto it. Check FAQs
σcso=L(d4-d2)tc
σcso - Compressive Stress In Socket?L - Load on Cotter Joint?d4 - Diameter of Socket Collar?d2 - Diameter of Spigot?tc - Thickness of Cotter?

Compressive Stress in Socket of Cotter Joint given Diameter of Spigot and of Socket Collar Example

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Here is how the Compressive Stress in Socket of Cotter Joint given Diameter of Spigot and of Socket Collar equation looks like with Values.

Here is how the Compressive Stress in Socket of Cotter Joint given Diameter of Spigot and of Socket Collar equation looks like with Units.

Here is how the Compressive Stress in Socket of Cotter Joint given Diameter of Spigot and of Socket Collar equation looks like.

58.1991Edit=50000Edit(80Edit-40Edit)21.478Edit
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Compressive Stress in Socket of Cotter Joint given Diameter of Spigot and of Socket Collar Solution

Follow our step by step solution on how to calculate Compressive Stress in Socket of Cotter Joint given Diameter of Spigot and of Socket Collar?

FIRST Step Consider the formula
σcso=L(d4-d2)tc
Next Step Substitute values of Variables
σcso=50000N(80mm-40mm)21.478mm
Next Step Convert Units
σcso=50000N(0.08m-0.04m)0.0215m
Next Step Prepare to Evaluate
σcso=50000(0.08-0.04)0.0215
Next Step Evaluate
σcso=58199087.438309Pa
Next Step Convert to Output's Unit
σcso=58.199087438309N/mm²
LAST Step Rounding Answer
σcso=58.1991N/mm²

Compressive Stress in Socket of Cotter Joint given Diameter of Spigot and of Socket Collar Formula Elements

Variables
Compressive Stress In Socket
Compressive Stress In Socket is the amount of stress generated into the socket due to the compressive force onto it.
Symbol: σcso
Measurement: StressUnit: N/mm²
Note: Value should be greater than 0.
Load on Cotter Joint
Load on cotter joint is basically the amount of load/force any part or joint, can bear or is acted upon or exerts.
Symbol: L
Measurement: ForceUnit: N
Note: Value should be greater than 0.
Diameter of Socket Collar
Diameter of socket collar is the external diameter of collar of the socket of a cotter joint.
Symbol: d4
Measurement: LengthUnit: mm
Note: Value should be greater than 0.
Diameter of Spigot
The diameter of Spigot is defined as the diameter of the external surface of the spigot or the inner diameter of the socket.
Symbol: d2
Measurement: LengthUnit: mm
Note: Value should be greater than 0.
Thickness of Cotter
Thickness of Cotter is the measure of how much broad is the cotter in direction perpendicular to axial force.
Symbol: tc
Measurement: LengthUnit: mm
Note: Value should be greater than 0.

Other formulas in Strength and Stress category

​Go Tensile Stress in Rod of Cotter Joint
σtrod=4Lπd2
​Go Tensile Stress in Spigot of Cotter Joint given Diameter of Spigot, Thickenss of Cotter and Load
σtsp=Lπd224-d2tc
​Go Shear Stress in Cotter given Cotter Thickness and Width
τco=L2tcb
​Go Shear Stress in Spigot of Cotter Joint given Diameter of Spigot and Load
τsp=L2Lad2

How to Evaluate Compressive Stress in Socket of Cotter Joint given Diameter of Spigot and of Socket Collar?

Compressive Stress in Socket of Cotter Joint given Diameter of Spigot and of Socket Collar evaluator uses Compressive Stress In Socket = (Load on Cotter Joint)/((Diameter of Socket Collar-Diameter of Spigot)*Thickness of Cotter) to evaluate the Compressive Stress In Socket, Compressive stress in socket of cotter joint given diameter of spigot and of socket collar is the amount of stress in the socket of the cotter joint due to the force trying to compress or crush the socket. Compressive Stress In Socket is denoted by σcso symbol.

How to evaluate Compressive Stress in Socket of Cotter Joint given Diameter of Spigot and of Socket Collar using this online evaluator? To use this online evaluator for Compressive Stress in Socket of Cotter Joint given Diameter of Spigot and of Socket Collar, enter Load on Cotter Joint (L), Diameter of Socket Collar (d4), Diameter of Spigot (d2) & Thickness of Cotter (tc) and hit the calculate button.

FAQs on Compressive Stress in Socket of Cotter Joint given Diameter of Spigot and of Socket Collar

What is the formula to find Compressive Stress in Socket of Cotter Joint given Diameter of Spigot and of Socket Collar?
The formula of Compressive Stress in Socket of Cotter Joint given Diameter of Spigot and of Socket Collar is expressed as Compressive Stress In Socket = (Load on Cotter Joint)/((Diameter of Socket Collar-Diameter of Spigot)*Thickness of Cotter). Here is an example- 5.8E-5 = (50000)/((0.08-0.04)*0.021478).
How to calculate Compressive Stress in Socket of Cotter Joint given Diameter of Spigot and of Socket Collar?
With Load on Cotter Joint (L), Diameter of Socket Collar (d4), Diameter of Spigot (d2) & Thickness of Cotter (tc) we can find Compressive Stress in Socket of Cotter Joint given Diameter of Spigot and of Socket Collar using the formula - Compressive Stress In Socket = (Load on Cotter Joint)/((Diameter of Socket Collar-Diameter of Spigot)*Thickness of Cotter).
Can the Compressive Stress in Socket of Cotter Joint given Diameter of Spigot and of Socket Collar be negative?
No, the Compressive Stress in Socket of Cotter Joint given Diameter of Spigot and of Socket Collar, measured in Stress cannot be negative.
Which unit is used to measure Compressive Stress in Socket of Cotter Joint given Diameter of Spigot and of Socket Collar?
Compressive Stress in Socket of Cotter Joint given Diameter of Spigot and of Socket Collar is usually measured using the Newton per Square Millimeter[N/mm²] for Stress. Pascal[N/mm²], Newton per Square Meter[N/mm²], Kilonewton per Square Meter[N/mm²] are the few other units in which Compressive Stress in Socket of Cotter Joint given Diameter of Spigot and of Socket Collar can be measured.
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