Bending Stress given Resultant Shear Stress in Weld Solution

STEP 0: Pre-Calculation Summary
Formula Used
Bending Stress in Welded Joint = sqrt(2*(Resultant Shear Stress in Weld^2)-(Primary Shear Stress in Weld^2))
σb = sqrt(2*(τ^2)-(τ1^2))
This formula uses 1 Functions, 3 Variables
Functions Used
sqrt - A square root function is a function that takes a non-negative number as an input and returns the square root of the given input number., sqrt(Number)
Variables Used
Bending Stress in Welded Joint - (Measured in Pascal) - Bending stress in welded joint is the normal stress that is induced at a point in a welded joint subjected to loads that cause it to bend.
Resultant Shear Stress in Weld - (Measured in Pascal) - Resultant shear stress in weld is defined as the resultant stress-induced by two or more forces acting on the welded joint.
Primary Shear Stress in Weld - (Measured in Pascal) - Primary shear stress in weld is defined as the force tending to cause deformation of the welded joint by slippage along a plane or planes parallel to the imposed stress.
STEP 1: Convert Input(s) to Base Unit
Resultant Shear Stress in Weld: 70 Newton per Square Millimeter --> 70000000 Pascal (Check conversion ​here)
Primary Shear Stress in Weld: 25 Newton per Square Millimeter --> 25000000 Pascal (Check conversion ​here)
STEP 2: Evaluate Formula
Substituting Input Values in Formula
σb = sqrt(2*(τ^2)-(τ1^2)) --> sqrt(2*(70000000^2)-(25000000^2))
Evaluating ... ...
σb = 95786220.3033401
STEP 3: Convert Result to Output's Unit
95786220.3033401 Pascal -->95.7862203033401 Newton per Square Millimeter (Check conversion ​here)
FINAL ANSWER
95.7862203033401 95.78622 Newton per Square Millimeter <-- Bending Stress in Welded Joint
(Calculation completed in 00.004 seconds)

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Welded Joints Subjected to Bending Moment Calculators

Moment of Inertia of all Welds given Bending Moment
​ LaTeX ​ Go Moment of Inertia of Weld about Neutral Axis = Bending Moment in Welded Joint*Distance of Point in Weld to Neutral Axis/Bending Stress in Welded Joint
Bending Stress Caused Due to Bending Moment
​ LaTeX ​ Go Bending Stress in Welded Joint = Bending Moment in Welded Joint*Distance of Point in Weld to Neutral Axis/Moment of Inertia of Weld about Neutral Axis
Bending Moment given Bending Stress
​ LaTeX ​ Go Bending Moment in Welded Joint = Moment of Inertia of Weld about Neutral Axis*Bending Stress in Welded Joint/Distance of Point in Weld to Neutral Axis
Primary Shear Stress-induced due to Eccentric Load
​ LaTeX ​ Go Primary Shear Stress in Weld = Eccentric Load on Weld/Throat Area of Welds

Bending Stress given Resultant Shear Stress in Weld Formula

​LaTeX ​Go
Bending Stress in Welded Joint = sqrt(2*(Resultant Shear Stress in Weld^2)-(Primary Shear Stress in Weld^2))
σb = sqrt(2*(τ^2)-(τ1^2))

Define Bending Stress?

Bending stress is the normal stress that an object encounters when it is subjected to a large load at a particular point that causes the object to bend and become fatigued.

How to Calculate Bending Stress given Resultant Shear Stress in Weld?

Bending Stress given Resultant Shear Stress in Weld calculator uses Bending Stress in Welded Joint = sqrt(2*(Resultant Shear Stress in Weld^2)-(Primary Shear Stress in Weld^2)) to calculate the Bending Stress in Welded Joint, The Bending Stress given Resultant Shear Stress in Weld formula is defined as the normal stress that an object encounters when it is subjected to a large load at a particular point that causes the object to bend and become fatigued. Bending Stress in Welded Joint is denoted by σb symbol.

How to calculate Bending Stress given Resultant Shear Stress in Weld using this online calculator? To use this online calculator for Bending Stress given Resultant Shear Stress in Weld, enter Resultant Shear Stress in Weld (τ) & Primary Shear Stress in Weld 1) and hit the calculate button. Here is how the Bending Stress given Resultant Shear Stress in Weld calculation can be explained with given input values -> 9.6E-5 = sqrt(2*(70000000^2)-(25000000^2)).

FAQ

What is Bending Stress given Resultant Shear Stress in Weld?
The Bending Stress given Resultant Shear Stress in Weld formula is defined as the normal stress that an object encounters when it is subjected to a large load at a particular point that causes the object to bend and become fatigued and is represented as σb = sqrt(2*(τ^2)-(τ1^2)) or Bending Stress in Welded Joint = sqrt(2*(Resultant Shear Stress in Weld^2)-(Primary Shear Stress in Weld^2)). Resultant shear stress in weld is defined as the resultant stress-induced by two or more forces acting on the welded joint & Primary shear stress in weld is defined as the force tending to cause deformation of the welded joint by slippage along a plane or planes parallel to the imposed stress.
How to calculate Bending Stress given Resultant Shear Stress in Weld?
The Bending Stress given Resultant Shear Stress in Weld formula is defined as the normal stress that an object encounters when it is subjected to a large load at a particular point that causes the object to bend and become fatigued is calculated using Bending Stress in Welded Joint = sqrt(2*(Resultant Shear Stress in Weld^2)-(Primary Shear Stress in Weld^2)). To calculate Bending Stress given Resultant Shear Stress in Weld, you need Resultant Shear Stress in Weld (τ) & Primary Shear Stress in Weld 1). With our tool, you need to enter the respective value for Resultant Shear Stress in Weld & Primary Shear Stress in 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 Bending Stress in Welded Joint?
In this formula, Bending Stress in Welded Joint uses Resultant Shear Stress in Weld & Primary Shear Stress in Weld. We can use 1 other way(s) to calculate the same, which is/are as follows -
  • Bending Stress in Welded Joint = Bending Moment in Welded Joint*Distance of Point in Weld to Neutral Axis/Moment of Inertia of Weld about Neutral Axis
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