Maximum Shear Stress-induced given Allowable Load per mm length of Transverse Fillet Weld Solution

STEP 0: Pre-Calculation Summary
Formula Used
Maximum Shear Stress in Transverse Fillet Weld = Load per Unit Length in Transverse Fillet Weld/(0.8284*Leg of Weld)
𝜏max = Pa/(0.8284*hl)
This formula uses 3 Variables
Variables Used
Maximum Shear Stress in Transverse Fillet Weld - (Measured in Pascal) - Maximum shear stress in transverse fillet weld is the maximum force per unit area that acts coplanar with a cross-section of the weld material arises due to shear forces.
Load per Unit Length in Transverse Fillet Weld - (Measured in Newton per Meter) - Load per unit length in transverse fillet weld is the load-bearing capacity of the double transverse fillet weld per unit length of the weld.
Leg of Weld - (Measured in Meter) - The Leg of Weld is the distance from the joint root to the toe of the weld.
STEP 1: Convert Input(s) to Base Unit
Load per Unit Length in Transverse Fillet Weld: 1378 Newton per Millimeter --> 1378000 Newton per Meter (Check conversion ​here)
Leg of Weld: 21.2 Millimeter --> 0.0212 Meter (Check conversion ​here)
STEP 2: Evaluate Formula
Substituting Input Values in Formula
𝜏max = Pa/(0.8284*hl) --> 1378000/(0.8284*0.0212)
Evaluating ... ...
𝜏max = 78464509.8985997
STEP 3: Convert Result to Output's Unit
78464509.8985997 Pascal -->78.4645098985997 Newton per Square Millimeter (Check conversion ​here)
FINAL ANSWER
78.4645098985997 78.46451 Newton per Square Millimeter <-- Maximum Shear Stress in Transverse Fillet Weld
(Calculation completed in 00.009 seconds)

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Transverse Fillet Weld Calculators

Thickness of Plate given Tensile Stress in Transverse Fillet Weld
​ LaTeX ​ Go Thickness of Transverse Fillet Welded Plate = Load on Transverse Fillet Weld/(Length of Weld*Tensile Stress in Transverse Fillet Weld)
Tensile Stress in Transverse Fillet Weld
​ LaTeX ​ Go Tensile Stress in Transverse Fillet Weld = Load on Transverse Fillet Weld/(0.707*Leg of Weld*Length of Weld)
Tensile Force on Plates given Tensile Stress in Transverse Fillet Weld
​ LaTeX ​ Go Load on Transverse Fillet Weld = Tensile Stress in Transverse Fillet Weld*0.707*Leg of Weld*Length of Weld
Permissible Tensile Strength for Double Transverse Fillet Joint
​ LaTeX ​ Go Tensile Stress in Transverse Fillet Weld = Load on Weld/(1.414*Length of Weld*Length of Weld)

Maximum Shear Stress-induced given Allowable Load per mm length of Transverse Fillet Weld Formula

​LaTeX ​Go
Maximum Shear Stress in Transverse Fillet Weld = Load per Unit Length in Transverse Fillet Weld/(0.8284*Leg of Weld)
𝜏max = Pa/(0.8284*hl)

Define Shear Stress?

Shear stress, force tending to cause deformation of a material by slippage along a plane or planes parallel to the imposed stress. The resultant shear is of great importance in nature, being intimately related to the downslope movement of earth materials and to earthquakes.

How to Calculate Maximum Shear Stress-induced given Allowable Load per mm length of Transverse Fillet Weld?

Maximum Shear Stress-induced given Allowable Load per mm length of Transverse Fillet Weld calculator uses Maximum Shear Stress in Transverse Fillet Weld = Load per Unit Length in Transverse Fillet Weld/(0.8284*Leg of Weld) to calculate the Maximum Shear Stress in Transverse Fillet Weld, The Maximum Shear Stress-induced given Allowable Load per mm length of Transverse Fillet Weld formula is defined as a force tending to cause deformation of a material by slippage along a plane or planes parallel to the imposed stress. Maximum Shear Stress in Transverse Fillet Weld is denoted by 𝜏max symbol.

How to calculate Maximum Shear Stress-induced given Allowable Load per mm length of Transverse Fillet Weld using this online calculator? To use this online calculator for Maximum Shear Stress-induced given Allowable Load per mm length of Transverse Fillet Weld, enter Load per Unit Length in Transverse Fillet Weld (Pa) & Leg of Weld (hl) and hit the calculate button. Here is how the Maximum Shear Stress-induced given Allowable Load per mm length of Transverse Fillet Weld calculation can be explained with given input values -> 7.8E-5 = 1378000/(0.8284*0.0212).

FAQ

What is Maximum Shear Stress-induced given Allowable Load per mm length of Transverse Fillet Weld?
The Maximum Shear Stress-induced given Allowable Load per mm length of Transverse Fillet Weld formula is defined as a force tending to cause deformation of a material by slippage along a plane or planes parallel to the imposed stress and is represented as 𝜏max = Pa/(0.8284*hl) or Maximum Shear Stress in Transverse Fillet Weld = Load per Unit Length in Transverse Fillet Weld/(0.8284*Leg of Weld). Load per unit length in transverse fillet weld is the load-bearing capacity of the double transverse fillet weld per unit length of the weld & The Leg of Weld is the distance from the joint root to the toe of the weld.
How to calculate Maximum Shear Stress-induced given Allowable Load per mm length of Transverse Fillet Weld?
The Maximum Shear Stress-induced given Allowable Load per mm length of Transverse Fillet Weld formula is defined as a force tending to cause deformation of a material by slippage along a plane or planes parallel to the imposed stress is calculated using Maximum Shear Stress in Transverse Fillet Weld = Load per Unit Length in Transverse Fillet Weld/(0.8284*Leg of Weld). To calculate Maximum Shear Stress-induced given Allowable Load per mm length of Transverse Fillet Weld, you need Load per Unit Length in Transverse Fillet Weld (Pa) & Leg of Weld (hl). With our tool, you need to enter the respective value for Load per Unit Length in Transverse Fillet Weld & Leg of Weld 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 Maximum Shear Stress in Transverse Fillet Weld?
In this formula, Maximum Shear Stress in Transverse Fillet Weld uses Load per Unit Length in Transverse Fillet Weld & Leg of Weld. We can use 1 other way(s) to calculate the same, which is/are as follows -
  • Maximum Shear Stress in Transverse Fillet Weld = 1.21*Load on Weld/(Leg of Weld*Length of Weld)
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