Permissible Tensile Stress in Butt Weld given Efficiency of Welded joint Solution

STEP 0: Pre-Calculation Summary
Formula Used
Tensile Stress in Weld = Tensile Force on Welded Plates/(Welded Base Plate Thickness*Length of Weld*Efficiency of Welded Joints)
σt = P/(tp*L*η)
This formula uses 5 Variables
Variables Used
Tensile Stress in Weld - (Measured in Pascal) - Tensile Stress in Weld is the average stress experienced by the Weld Beads when the joint plates are brought to tension.
Tensile Force on Welded Plates - (Measured in Newton) - Tensile Force on Welded Plates is the stretching force acting on the plates that are welded.
Welded Base Plate Thickness - (Measured in Meter) - Welded Base Plate Thickness is defined as the thickness of the base plate that is welded to another plate.
Length of Weld - (Measured in Meter) - The Length of Weld is the linear distance of the welding segment joined by the welded joint.
Efficiency of Welded Joints - The Efficiency of Welded Joints refers to the strength of a welded joint with respect to the strength of the base metal.
STEP 1: Convert Input(s) to Base Unit
Tensile Force on Welded Plates: 16.5 Kilonewton --> 16500 Newton (Check conversion here)
Welded Base Plate Thickness: 18 Millimeter --> 0.018 Meter (Check conversion here)
Length of Weld: 19.5 Millimeter --> 0.0195 Meter (Check conversion here)
Efficiency of Welded Joints: 0.833 --> No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
σt = P/(tp*L*η) --> 16500/(0.018*0.0195*0.833)
Evaluating ... ...
σt = 56432829.5420732
STEP 3: Convert Result to Output's Unit
56432829.5420732 Pascal -->56.4328295420733 Newton per Square Millimeter (Check conversion here)
FINAL ANSWER
56.4328295420733 56.43283 Newton per Square Millimeter <-- Tensile Stress in Weld
(Calculation completed in 00.004 seconds)

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16 Butt Welds Calculators

Permissible Tensile Stress in Butt Weld given Efficiency of Welded joint
Go Tensile Stress in Weld = Tensile Force on Welded Plates/(Welded Base Plate Thickness*Length of Weld*Efficiency of Welded Joints)
Thickness of Plate given Efficiency of Butt Welded Joint
Go Welded Base Plate Thickness = Tensile Force on Welded Plates/(Tensile Stress in Weld*Length of Weld*Efficiency of Welded Joints)
Length of Butt Weld given Efficiency of Welded Joint
Go Length of Weld = Tensile Force on Welded Plates/(Tensile Stress in Weld*Welded Base Plate Thickness*Efficiency of Welded Joints)
Efficiency of Butt Welded Joint
Go Efficiency of Welded Joints = Tensile Force on Welded Plates/(Tensile Stress in Weld*Welded Base Plate Thickness*Length of Weld)
Tensile Force on Plates given Efficiency of Butt Welded Joint
Go Tensile Force on Welded Plates = Tensile Stress in Weld*Welded Base Plate Thickness*Length of Weld*Efficiency of Welded Joints
Tensile Stress in Boiler Butt Weld given Thickness of Boiler Shell
Go Tensile Stress in Boiler Butt Weld = Internal pressure in boiler*Inner diameter of boiler/(2*Thickness of Boiler Wall)
Thickness of Welded Boiler Shell given Stress in Weld
Go Thickness of Boiler Wall = Internal pressure in boiler*Inner diameter of boiler/(2*Tensile Stress in Boiler Butt Weld)
Internal Pressure in Boiler given Thickness of Welded Boiler Shell
Go Internal pressure in boiler = Thickness of Boiler Wall*2*Tensile Stress in Boiler Butt Weld/Inner diameter of boiler
Inner Diameter of Boiler given Thickness of Welded Boiler Shell
Go Inner diameter of boiler = Thickness of Boiler Wall*2*Tensile Stress in Boiler Butt Weld/Internal pressure in boiler
Strength of Butt Welded Joint
Go Tensile Stress in Butt Weld = Tensile Force on Welded Plates/(Throat Thickness of Weld*Length of Butt Weld)
Permissible Tensile Stress in Butt Weld
Go Tensile Stress in Weld = Tensile Force on Welded Plates/(Length of Weld*Welded Base Plate Thickness)
Length of Butt Weld given Average Tensile Stress in Weld
Go Length of Weld = Tensile Force on Welded Plates/(Tensile Stress in Weld*Throat Thickness of Weld)
Throat of Butt Weld given Average Tensile Stress
Go Throat Thickness of Weld = Tensile Force on Welded Plates/(Length of Weld*Tensile Stress in Weld)
Average Tensile Stress in Butt Weld
Go Tensile Stress in Weld = Tensile Force on Welded Plates/(Length of Weld*Throat Thickness of Weld)
Tensile Force on Plates given Average Tensile Stress in Butt Weld
Go Tensile Force on Welded Plates = Tensile Stress in Weld*Throat Thickness of Weld*Length of Weld
Tensile Force on Butt Welded Plates given Thickness of Plate
Go Tensile Force on Welded Plates = Tensile Stress in Weld*Length of Weld*Throat Thickness of Weld

Permissible Tensile Stress in Butt Weld given Efficiency of Welded joint Formula

Tensile Stress in Weld = Tensile Force on Welded Plates/(Welded Base Plate Thickness*Length of Weld*Efficiency of Welded Joints)
σt = P/(tp*L*η)

Residual Stress in Welding

Welding residual stresses are caused by differential thermal expansion and contraction of the weld metal and parent material. Residual stress levels in and near to the weld can be very high, up to material yield strength magnitude in highly constrained situations, which is the case in most real structures.

How to Calculate Permissible Tensile Stress in Butt Weld given Efficiency of Welded joint?

Permissible Tensile Stress in Butt Weld given Efficiency of Welded joint calculator uses Tensile Stress in Weld = Tensile Force on Welded Plates/(Welded Base Plate Thickness*Length of Weld*Efficiency of Welded Joints) to calculate the Tensile Stress in Weld, Permissible Tensile Stress in Butt Weld given Efficiency of Welded joint is defined as the maximum strength that the Weld Beads should be exposed to when in tension. It's a safety limit, considering different aspects of non-uniformity in stress distribution. Tensile Stress in Weld is denoted by σt symbol.

How to calculate Permissible Tensile Stress in Butt Weld given Efficiency of Welded joint using this online calculator? To use this online calculator for Permissible Tensile Stress in Butt Weld given Efficiency of Welded joint, enter Tensile Force on Welded Plates (P), Welded Base Plate Thickness (tp), Length of Weld (L) & Efficiency of Welded Joints (η) and hit the calculate button. Here is how the Permissible Tensile Stress in Butt Weld given Efficiency of Welded joint calculation can be explained with given input values -> 5.6E-5 = 16500/(0.018*0.0195*0.833).

FAQ

What is Permissible Tensile Stress in Butt Weld given Efficiency of Welded joint?
Permissible Tensile Stress in Butt Weld given Efficiency of Welded joint is defined as the maximum strength that the Weld Beads should be exposed to when in tension. It's a safety limit, considering different aspects of non-uniformity in stress distribution and is represented as σt = P/(tp*L*η) or Tensile Stress in Weld = Tensile Force on Welded Plates/(Welded Base Plate Thickness*Length of Weld*Efficiency of Welded Joints). Tensile Force on Welded Plates is the stretching force acting on the plates that are welded, Welded Base Plate Thickness is defined as the thickness of the base plate that is welded to another plate, The Length of Weld is the linear distance of the welding segment joined by the welded joint & The Efficiency of Welded Joints refers to the strength of a welded joint with respect to the strength of the base metal.
How to calculate Permissible Tensile Stress in Butt Weld given Efficiency of Welded joint?
Permissible Tensile Stress in Butt Weld given Efficiency of Welded joint is defined as the maximum strength that the Weld Beads should be exposed to when in tension. It's a safety limit, considering different aspects of non-uniformity in stress distribution is calculated using Tensile Stress in Weld = Tensile Force on Welded Plates/(Welded Base Plate Thickness*Length of Weld*Efficiency of Welded Joints). To calculate Permissible Tensile Stress in Butt Weld given Efficiency of Welded joint, you need Tensile Force on Welded Plates (P), Welded Base Plate Thickness (tp), Length of Weld (L) & Efficiency of Welded Joints (η). With our tool, you need to enter the respective value for Tensile Force on Welded Plates, Welded Base Plate Thickness, Length of Weld & Efficiency of Welded Joints 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 Tensile Stress in Weld?
In this formula, Tensile Stress in Weld uses Tensile Force on Welded Plates, Welded Base Plate Thickness, Length of Weld & Efficiency of Welded Joints. We can use 2 other way(s) to calculate the same, which is/are as follows -
  • Tensile Stress in Weld = Tensile Force on Welded Plates/(Length of Weld*Throat Thickness of Weld)
  • Tensile Stress in Weld = Tensile Force on Welded Plates/(Length of Weld*Welded Base Plate Thickness)
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