Joint Efficiency given Plate Thickness Formula

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Joint Efficiency of Pipe is a factor required in all head and shell calculations that accounts for how closely a finished weld joint. Check FAQs
η=Pirσtppt
η - Joint Efficiency of Pipe?Pi - Internal Pressure of Pipe?r - Pipe Radius in Millimeter?σtp - Permissible Tensile Stress?pt - Plate Thickness in Millimeter?

Joint Efficiency given Plate Thickness Example

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Here is how the Joint Efficiency given Plate Thickness equation looks like with Values.

Here is how the Joint Efficiency given Plate Thickness equation looks like with Units.

Here is how the Joint Efficiency given Plate Thickness equation looks like.

1.9997Edit=74.99Edit200Edit75Edit100Edit
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Joint Efficiency given Plate Thickness Solution

Follow our step by step solution on how to calculate Joint Efficiency given Plate Thickness?

FIRST Step Consider the formula
η=Pirσtppt
Next Step Substitute values of Variables
η=74.99MPa200mm75MPa100mm
Next Step Convert Units
η=7.5E+7Pa0.2m7.5E+7Pa0.1m
Next Step Prepare to Evaluate
η=7.5E+70.27.5E+70.1
Next Step Evaluate
η=1.99973333333333
LAST Step Rounding Answer
η=1.9997

Joint Efficiency given Plate Thickness Formula Elements

Variables
Joint Efficiency of Pipe
Joint Efficiency of Pipe is a factor required in all head and shell calculations that accounts for how closely a finished weld joint.
Symbol: η
Measurement: NAUnit: Unitless
Note: Value should be greater than 0.
Internal Pressure of Pipe
Internal Pressure of Pipe is a measure of how the internal energy of a system changes when it expands or contracts at constant temperature.
Symbol: Pi
Measurement: PressureUnit: MPa
Note: Value can be positive or negative.
Pipe Radius in Millimeter
Pipe Radius in Millimeter is the radius of the pipe through which the fluid is flowing.
Symbol: r
Measurement: LengthUnit: mm
Note: Value should be greater than 0.
Permissible Tensile Stress
Permissible Tensile Stress is a stress that ensures that the stresses developed in a structure due to service loads do not exceed the elastic limit.
Symbol: σtp
Measurement: StressUnit: MPa
Note: Value should be greater than 0.
Plate Thickness in Millimeter
Plate Thickness in Millimeter is the distance through the bearing plate in mm.
Symbol: pt
Measurement: LengthUnit: mm
Note: Value should be greater than 0.

Other formulas in Steel Pipes category

​Go Plate Thickness Required to Resist Internal Pressure
pt=Pirσtpη
​Go Internal Pressure given Plate Thickness
Pi=ptrσtpη
​Go Radius of Pipe given Plate Thickness
r=ptPiσtpη
​Go Permissible Tensile Stress given Plate Thickness
σtp=Pirptη

How to Evaluate Joint Efficiency given Plate Thickness?

Joint Efficiency given Plate Thickness evaluator uses Joint Efficiency of Pipe = (Internal Pressure of Pipe*Pipe Radius in Millimeter)/(Permissible Tensile Stress*Plate Thickness in Millimeter) to evaluate the Joint Efficiency of Pipe, The Joint Efficiency given Plate Thickness formula is defined as a measure of how well a joint (such as a welded, bolted, or riveted connection) transfers load between connected plates, considering the thickness of the plates involved. Joint Efficiency of Pipe is denoted by η symbol.

How to evaluate Joint Efficiency given Plate Thickness using this online evaluator? To use this online evaluator for Joint Efficiency given Plate Thickness, enter Internal Pressure of Pipe (Pi), Pipe Radius in Millimeter (r), Permissible Tensile Stress tp) & Plate Thickness in Millimeter (pt) and hit the calculate button.

FAQs on Joint Efficiency given Plate Thickness

What is the formula to find Joint Efficiency given Plate Thickness?
The formula of Joint Efficiency given Plate Thickness is expressed as Joint Efficiency of Pipe = (Internal Pressure of Pipe*Pipe Radius in Millimeter)/(Permissible Tensile Stress*Plate Thickness in Millimeter). Here is an example- 0.2496 = (74990000*0.2)/(75000000*0.1).
How to calculate Joint Efficiency given Plate Thickness?
With Internal Pressure of Pipe (Pi), Pipe Radius in Millimeter (r), Permissible Tensile Stress tp) & Plate Thickness in Millimeter (pt) we can find Joint Efficiency given Plate Thickness using the formula - Joint Efficiency of Pipe = (Internal Pressure of Pipe*Pipe Radius in Millimeter)/(Permissible Tensile Stress*Plate Thickness in Millimeter).
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