Load Carried by Parallel Fillet Weld Solution

STEP 0: Pre-Calculation Summary
Formula Used
Load on weld = 1.414*Shear Stress*Length of Parallel Fillet Weld*Thickness of Plate
W = 1.414*𝜏*Lparallel*tplate
This formula uses 4 Variables
Variables Used
Load on weld - (Measured in Newton) - Load on weld is the instantaneous load applied perpendicular to the specimen cross section.
Shear Stress - (Measured in Pascal) - Shear Stress is force tending to cause deformation of a material by slippage along a plane or planes parallel to the imposed stress.
Length of Parallel Fillet Weld - (Measured in Meter) - Length of Parallel Fillet Weld is the distance between two consecutive end of welds.
Thickness of Plate - (Measured in Meter) - The thickness of plate is the state or quality of being thick. The measure of the smallest dimension of a solid figure: a board of two-inch thickness.
STEP 1: Convert Input(s) to Base Unit
Shear Stress: 2.4 Megapascal --> 2400000 Pascal (Check conversion here)
Length of Parallel Fillet Weld: 200 Millimeter --> 0.2 Meter (Check conversion here)
Thickness of Plate: 12 Millimeter --> 0.012 Meter (Check conversion here)
STEP 2: Evaluate Formula
Substituting Input Values in Formula
W = 1.414*𝜏*Lparallel*tplate --> 1.414*2400000*0.2*0.012
Evaluating ... ...
W = 8144.64
STEP 3: Convert Result to Output's Unit
8144.64 Newton -->8.14464 Kilonewton (Check conversion here)
FINAL ANSWER
8.14464 Kilonewton <-- Load on weld
(Calculation completed in 00.004 seconds)

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14 Analysis of Compound Weld Calculators

Length of Single Fillet Lap Weld given Total Load Carried by Plates in Compound Weld
Go Length of Single Fillet Lap Weld = (Load on weld-1.414*Shear Stress*Length of Parallel Fillet Weld*Thickness of Plate)/(0.707*Tensile Stress*Thickness of Plate)
Length of Parallel Fillet Weld given Total Load Carried by Plates in Compound Weld
Go Length of Parallel Fillet Weld = (Load on weld-0.707*Tensile Stress*Length of Single Fillet Lap Weld*Thickness of Plate)/(1.414*Shear Stress*Thickness of Plate)
Allowable Tensile Stress given Total Load Carried by Plates in Compound Weld
Go Tensile Stress = (Load on weld-1.414*Shear Stress*Length of Parallel Fillet Weld*Thickness of Plate)/(0.707*Length of Single Fillet Lap Weld*Thickness of Plate)
Maximum Shear Stress given Total Load Carried by Plates in Compound Weld
Go Shear Stress = (Load on weld-0.707*Tensile Stress*Length of Single Fillet Lap Weld*Thickness of Plate)/(1.414*Length of Parallel Fillet Weld*Thickness of Plate)
Total Load Carried by Plates in Compound Weld
Go Load on weld = 1.414*Shear Stress*Length of Parallel Fillet Weld*Thickness of Plate+0.707*Tensile Stress*Length of Single Fillet Lap Weld*Thickness of Plate
Thickness of Plates given Total Load Carried by Plates in Compound Weld
Go Thickness of Plate = Load on weld/(1.414*Shear Stress*Length of Parallel Fillet Weld+0.707*Tensile Stress*Length of Single Fillet Lap Weld)
Length of Single Fillet Lap Weld given Load Carried by Single Fillet Lap Weld
Go Length of Single Fillet Lap Weld = Load on weld/(0.707*Tensile Stress*Thickness of Plate)
Allowable Tensile Stress given Load Carried by Single Fillet Lap Weld
Go Tensile Stress = Load on weld/(0.707*Length of Single Fillet Lap Weld*Thickness of Plate)
Thickness of Plates given Load Carried by Single Fillet Lap Weld
Go Thickness of Plate = Load on weld/(0.707*Tensile Stress*Length of Single Fillet Lap Weld)
Load Carried by Single Fillet Lap Weld
Go Load on weld = 0.707*Tensile Stress*Length of Single Fillet Lap Weld*Thickness of Plate
Length of Parallel Fillet Weld given Load Carried by Parallel Fillet Weld
Go Length of Parallel Fillet Weld = Load on weld/(1.414*Shear Stress*Thickness of Plate)
Maximum Shear Stress given Load Carried by Parallel Fillet Weld
Go Shear Stress = Load on weld/(1.414*Length of Parallel Fillet Weld*Thickness of Plate)
Thickness of Plates given Load Carried by Parallel Fillet Weld
Go Thickness of Plate = Load on weld/(1.414*Shear Stress*Length of Parallel Fillet Weld)
Load Carried by Parallel Fillet Weld
Go Load on weld = 1.414*Shear Stress*Length of Parallel Fillet Weld*Thickness of Plate

Load Carried by Parallel Fillet Weld Formula

Load on weld = 1.414*Shear Stress*Length of Parallel Fillet Weld*Thickness of Plate
W = 1.414*𝜏*Lparallel*tplate

What do you mean by maximum shear stress theory?

The maximum shear stress theory states that the failure or yielding of a ductile material will occur when the maximum shear stress of the material equals or exceeds the shear stress value at the yield point in the uniaxial tensile test.

How to Calculate Load Carried by Parallel Fillet Weld?

Load Carried by Parallel Fillet Weld calculator uses Load on weld = 1.414*Shear Stress*Length of Parallel Fillet Weld*Thickness of Plate to calculate the Load on weld, The Load carried by parallel fillet weld formula is defined as a weight or source of pressure borne on weld. Load on weld is denoted by W symbol.

How to calculate Load Carried by Parallel Fillet Weld using this online calculator? To use this online calculator for Load Carried by Parallel Fillet Weld, enter Shear Stress (𝜏), Length of Parallel Fillet Weld (Lparallel) & Thickness of Plate (tplate) and hit the calculate button. Here is how the Load Carried by Parallel Fillet Weld calculation can be explained with given input values -> 0.008145 = 1.414*2400000*0.2*0.012.

FAQ

What is Load Carried by Parallel Fillet Weld?
The Load carried by parallel fillet weld formula is defined as a weight or source of pressure borne on weld and is represented as W = 1.414*𝜏*Lparallel*tplate or Load on weld = 1.414*Shear Stress*Length of Parallel Fillet Weld*Thickness of Plate. Shear Stress is force tending to cause deformation of a material by slippage along a plane or planes parallel to the imposed stress, Length of Parallel Fillet Weld is the distance between two consecutive end of welds & The thickness of plate is the state or quality of being thick. The measure of the smallest dimension of a solid figure: a board of two-inch thickness.
How to calculate Load Carried by Parallel Fillet Weld?
The Load carried by parallel fillet weld formula is defined as a weight or source of pressure borne on weld is calculated using Load on weld = 1.414*Shear Stress*Length of Parallel Fillet Weld*Thickness of Plate. To calculate Load Carried by Parallel Fillet Weld, you need Shear Stress (𝜏), Length of Parallel Fillet Weld (Lparallel) & Thickness of Plate (tplate). With our tool, you need to enter the respective value for Shear Stress, Length of Parallel Fillet Weld & Thickness of Plate 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 Load on weld?
In this formula, Load on weld uses Shear Stress, Length of Parallel Fillet Weld & Thickness of Plate. We can use 2 other way(s) to calculate the same, which is/are as follows -
  • Load on weld = 0.707*Tensile Stress*Length of Single Fillet Lap Weld*Thickness of Plate
  • Load on weld = 1.414*Shear Stress*Length of Parallel Fillet Weld*Thickness of Plate+0.707*Tensile Stress*Length of Single Fillet Lap Weld*Thickness of Plate
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