Shear stress in bolt given torque resisted by one bolt Solution

STEP 0: Pre-Calculation Summary
Formula Used
Shear Stress in Bolt = (8*Torque Resisted by Bolt)/(pi*(Diameter of Bolt^2)*Diameter of Bolt Pitch Circle)
fs = (8*Tbolt)/(pi*(dbolt^2)*dpitch)
This formula uses 1 Constants, 4 Variables
Constants Used
pi - Archimedes' constant Value Taken As 3.14159265358979323846264338327950288
Variables Used
Shear Stress in Bolt - (Measured in Pascal) - The Shear Stress in Bolt is the internal force per unit area acting parallel to the surface of the bolt, crucial for assessing the bolt's structural integrity in flanged couplings.
Torque Resisted by Bolt - (Measured in Newton Meter) - The Torque Resisted by Bolt is the rotational force that a bolt can withstand before failure, ensuring the integrity of connections in flanged couplings.
Diameter of Bolt - (Measured in Meter) - The Diameter of Bolt is the measurement across the widest part of the bolt, essential for ensuring proper fit and compatibility in flanged coupling applications.
Diameter of Bolt Pitch Circle - (Measured in Meter) - The Diameter of Bolt Pitch Circle is the distance across the circle that passes through the centers of the bolt holes in a flanged coupling.
STEP 1: Convert Input(s) to Base Unit
Torque Resisted by Bolt: 49 Newton Meter --> 49 Newton Meter No Conversion Required
Diameter of Bolt: 18.09 Millimeter --> 0.01809 Meter (Check conversion ​here)
Diameter of Bolt Pitch Circle: 27.23 Millimeter --> 0.02723 Meter (Check conversion ​here)
STEP 2: Evaluate Formula
Substituting Input Values in Formula
fs = (8*Tbolt)/(pi*(dbolt^2)*dpitch) --> (8*49)/(pi*(0.01809^2)*0.02723)
Evaluating ... ...
fs = 14002688.2273687
STEP 3: Convert Result to Output's Unit
14002688.2273687 Pascal -->14.0026882273687 Newton per Square Millimeter (Check conversion ​here)
FINAL ANSWER
14.0026882273687 14.00269 Newton per Square Millimeter <-- Shear Stress in Bolt
(Calculation completed in 00.004 seconds)

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Flanged Coupling Calculators

Diameter of bolt given maximum load that can be resisted by one bolt
​ LaTeX ​ Go Diameter of Bolt = sqrt((4*Load Resisted by One Bolt)/(pi*Shear Stress in Bolt))
Shear Stress in Bolt using Maximum Load that can be Resisted by One Bolt
​ LaTeX ​ Go Shear Stress in Bolt = (4*Load Resisted by One Bolt)/(pi*(Diameter of Bolt^2))
Maximum amount of load that can be resisted by one bolt
​ LaTeX ​ Go Load Resisted by One Bolt = (Shear Stress in Bolt*pi*Diameter of Bolt^2)/4
Torque Resisted by One Bolt using Load Resisted by One Bolt
​ LaTeX ​ Go Torque Resisted by Bolt = Load Resisted by One Bolt*Diameter of Bolt Pitch Circle/2

Shear stress in bolt given torque resisted by one bolt Formula

​LaTeX ​Go
Shear Stress in Bolt = (8*Torque Resisted by Bolt)/(pi*(Diameter of Bolt^2)*Diameter of Bolt Pitch Circle)
fs = (8*Tbolt)/(pi*(dbolt^2)*dpitch)

What is torque and its application?

Torque is the application of force where there is rotational motion. The most obvious example of torque in action is the operation of a crescent wrench loosening a lug nut, and a close second is a playground seesaw.

How to Calculate Shear stress in bolt given torque resisted by one bolt?

Shear stress in bolt given torque resisted by one bolt calculator uses Shear Stress in Bolt = (8*Torque Resisted by Bolt)/(pi*(Diameter of Bolt^2)*Diameter of Bolt Pitch Circle) to calculate the Shear Stress in Bolt, Shear stress in bolt given torque resisted by one bolt formula is defined as a measure of the stress generated in a bolt due to the torque applied, which affects the bolt's ability to resist the rotational force in a flanged coupling system. Shear Stress in Bolt is denoted by fs symbol.

How to calculate Shear stress in bolt given torque resisted by one bolt using this online calculator? To use this online calculator for Shear stress in bolt given torque resisted by one bolt, enter Torque Resisted by Bolt (Tbolt), Diameter of Bolt (dbolt) & Diameter of Bolt Pitch Circle (dpitch) and hit the calculate button. Here is how the Shear stress in bolt given torque resisted by one bolt calculation can be explained with given input values -> 3.2E-5 = (8*49)/(pi*(0.01809^2)*0.02723).

FAQ

What is Shear stress in bolt given torque resisted by one bolt?
Shear stress in bolt given torque resisted by one bolt formula is defined as a measure of the stress generated in a bolt due to the torque applied, which affects the bolt's ability to resist the rotational force in a flanged coupling system and is represented as fs = (8*Tbolt)/(pi*(dbolt^2)*dpitch) or Shear Stress in Bolt = (8*Torque Resisted by Bolt)/(pi*(Diameter of Bolt^2)*Diameter of Bolt Pitch Circle). The Torque Resisted by Bolt is the rotational force that a bolt can withstand before failure, ensuring the integrity of connections in flanged couplings, The Diameter of Bolt is the measurement across the widest part of the bolt, essential for ensuring proper fit and compatibility in flanged coupling applications & The Diameter of Bolt Pitch Circle is the distance across the circle that passes through the centers of the bolt holes in a flanged coupling.
How to calculate Shear stress in bolt given torque resisted by one bolt?
Shear stress in bolt given torque resisted by one bolt formula is defined as a measure of the stress generated in a bolt due to the torque applied, which affects the bolt's ability to resist the rotational force in a flanged coupling system is calculated using Shear Stress in Bolt = (8*Torque Resisted by Bolt)/(pi*(Diameter of Bolt^2)*Diameter of Bolt Pitch Circle). To calculate Shear stress in bolt given torque resisted by one bolt, you need Torque Resisted by Bolt (Tbolt), Diameter of Bolt (dbolt) & Diameter of Bolt Pitch Circle (dpitch). With our tool, you need to enter the respective value for Torque Resisted by Bolt, Diameter of Bolt & Diameter of Bolt Pitch Circle 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 Shear Stress in Bolt?
In this formula, Shear Stress in Bolt uses Torque Resisted by Bolt, Diameter of Bolt & Diameter of Bolt Pitch Circle. We can use 2 other way(s) to calculate the same, which is/are as follows -
  • Shear Stress in Bolt = (4*Load Resisted by One Bolt)/(pi*(Diameter of Bolt^2))
  • Shear Stress in Bolt = (8*Torque Resisted by Bolt)/(Number of Bolts*pi*(Diameter of Bolt^2)*Diameter of Bolt Pitch Circle)
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