Bending stress in crankweb of centre crankshaft due to tangential thrust for max torque given moment Formula

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Bending Stress in Crankweb Due to Tangential Force is the bending stress in the crankweb due to the tangential component of force on connecting rod at crank pin. Check FAQs
σt=6Mbttw2
σt - Bending Stress in Crankweb Due to Tangential Force?Mbt - Bending Moment in Crankweb Due to Tangential Force?t - Thickness of Crank Web?w - Width of Crank Web?

Bending stress in crankweb of centre crankshaft due to tangential thrust for max torque given moment Example

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Here is how the Bending stress in crankweb of centre crankshaft due to tangential thrust for max torque given moment equation looks like with Values.

Here is how the Bending stress in crankweb of centre crankshaft due to tangential thrust for max torque given moment equation looks like with Units.

Here is how the Bending stress in crankweb of centre crankshaft due to tangential thrust for max torque given moment equation looks like.

2Edit=656333.33Edit40Edit65Edit2

Bending stress in crankweb of centre crankshaft due to tangential thrust for max torque given moment Solution

Follow our step by step solution on how to calculate Bending stress in crankweb of centre crankshaft due to tangential thrust for max torque given moment?

FIRST Step Consider the formula
σt=6Mbttw2
Next Step Substitute values of Variables
σt=656333.33N*mm40mm65mm2
Next Step Convert Units
σt=656.3333N*m0.04m0.065m2
Next Step Prepare to Evaluate
σt=656.33330.040.0652
Next Step Evaluate
σt=1999999.8816568Pa
Next Step Convert to Output's Unit
σt=1.9999998816568N/mm²
LAST Step Rounding Answer
σt=2N/mm²

Bending stress in crankweb of centre crankshaft due to tangential thrust for max torque given moment Formula Elements

Variables
Bending Stress in Crankweb Due to Tangential Force
Bending Stress in Crankweb Due to Tangential Force is the bending stress in the crankweb due to the tangential component of force on connecting rod at crank pin.
Symbol: σt
Measurement: StressUnit: N/mm²
Note: Value should be greater than 0.
Bending Moment in Crankweb Due to Tangential Force
Bending Moment in Crankweb Due to Tangential Force is the bending moment in the crankweb due to the tangential component of force on connecting rod at crank pin.
Symbol: Mbt
Measurement: TorqueUnit: N*mm
Note: Value should be greater than 0.
Thickness of Crank Web
Thickness of Crank Web is defined as the thickness of the crank web (the portion of a crank between the crankpin and the shaft) measured parallel to the crankpin longitudinal axis.
Symbol: t
Measurement: LengthUnit: mm
Note: Value should be greater than 0.
Width of Crank Web
Width of Crank Web is defined as the width of the crank web (the portion of a crank between the crankpin and the shaft) measured perpendicular to the crankpin longitudinal axis.
Symbol: w
Measurement: LengthUnit: mm
Note: Value should be greater than 0.

Other formulas in Design of Crank Web at Angle of Maximum Torque category

​Go Bending moment in crankweb of centre crankshaft due to radial thrust for maximum torque
Mbr=Rv2(b2-lc2-t2)
​Go Bending moment in crankweb of centre crankshaft due to tangential thrust for maximum torque
Mbt=Pt(r-dc2)
​Go Bending moment in crankweb of centre crankshaft due to tangential thrust for max torque given stress
Mbt=σttw26
​Go Bending moment in crankweb of centre crankshaft due to radial thrust for max torque given stress
Mbr=σrwt26

How to Evaluate Bending stress in crankweb of centre crankshaft due to tangential thrust for max torque given moment?

Bending stress in crankweb of centre crankshaft due to tangential thrust for max torque given moment evaluator uses Bending Stress in Crankweb Due to Tangential Force = (6*Bending Moment in Crankweb Due to Tangential Force)/(Thickness of Crank Web*Width of Crank Web^2) to evaluate the Bending Stress in Crankweb Due to Tangential Force, Bending stress in crankweb of centre crankshaft due to tangential thrust for max torque given moment is the amount of bending stress in the right-hand crankweb of a centre crankshaft when it is designed for the maximum torsional moment. Bending Stress in Crankweb Due to Tangential Force is denoted by σt symbol.

How to evaluate Bending stress in crankweb of centre crankshaft due to tangential thrust for max torque given moment using this online evaluator? To use this online evaluator for Bending stress in crankweb of centre crankshaft due to tangential thrust for max torque given moment, enter Bending Moment in Crankweb Due to Tangential Force (Mbt), Thickness of Crank Web (t) & Width of Crank Web (w) and hit the calculate button.

FAQs on Bending stress in crankweb of centre crankshaft due to tangential thrust for max torque given moment

What is the formula to find Bending stress in crankweb of centre crankshaft due to tangential thrust for max torque given moment?
The formula of Bending stress in crankweb of centre crankshaft due to tangential thrust for max torque given moment is expressed as Bending Stress in Crankweb Due to Tangential Force = (6*Bending Moment in Crankweb Due to Tangential Force)/(Thickness of Crank Web*Width of Crank Web^2). Here is an example- 1.4E-5 = (6*56.33333)/(0.04*0.065^2).
How to calculate Bending stress in crankweb of centre crankshaft due to tangential thrust for max torque given moment?
With Bending Moment in Crankweb Due to Tangential Force (Mbt), Thickness of Crank Web (t) & Width of Crank Web (w) we can find Bending stress in crankweb of centre crankshaft due to tangential thrust for max torque given moment using the formula - Bending Stress in Crankweb Due to Tangential Force = (6*Bending Moment in Crankweb Due to Tangential Force)/(Thickness of Crank Web*Width of Crank Web^2).
Can the Bending stress in crankweb of centre crankshaft due to tangential thrust for max torque given moment be negative?
No, the Bending stress in crankweb of centre crankshaft due to tangential thrust for max torque given moment, measured in Stress cannot be negative.
Which unit is used to measure Bending stress in crankweb of centre crankshaft due to tangential thrust for max torque given moment?
Bending stress in crankweb of centre crankshaft due to tangential thrust for max torque given moment is usually measured using the Newton per Square Millimeter[N/mm²] for Stress. Pascal[N/mm²], Newton per Square Meter[N/mm²], Kilonewton per Square Meter[N/mm²] are the few other units in which Bending stress in crankweb of centre crankshaft due to tangential thrust for max torque given moment can be measured.
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