Absolute value at the extreme fibre.
Mechanics · Stress and deformation
Bending stress
Calculate maximum elastic bending stress with σ = Mc/I = M/W, where W = I/c.
Created v1.0
By Thibaut Grzelak, Mechanical Analysis Engineer
Results
Ratio σmax/σallow.
Ratio σallow/σmax.
Same mechanical case
Profile comparison
Both profiles use the same calculation data.
- Axis
- Major axis
- Basis
- Analytical values
Values recalculated by Formulaxis from the nominal geometry.
View calculation detailsFormulas, SI conversion, numerical substitution and resultsOpen ↓
Calculation note
Full calculation details
Simple bending in the linear elastic range. Constant section and Navier–Bernoulli assumption. W must match the studied axis and extreme fibre. The calculation does not replace code checks for stability, fatigue or interaction.
IPE beam: a complete worked example
Major axis: 22.8 MPa and 1.81 mm. Minor axis: 156 MPa and 24.8 mm. These are model results, not an approval of the beam.
01Formulas and symbols
Formulas used
|M| / WMaximum normal stressσmax / σadmUtilizationσadm / σmaxSimplified safety factor02Assumptions and limits
Scope of validity
- Simple bending in the linear elastic range.
- Constant section and Navier–Bernoulli assumption.
- W must match the studied axis and extreme fibre.
- The calculation does not replace code checks for stability, fatigue or interaction.
03Validation example
Reference numerical case
- M = 12 kN·m and W = 240 cm³.
- σmax = 50 MPa.
- With σallow = 160 MPa: utilization = 31.25%.
- Simplified safety factor = 3.2.
04Frequently asked questions
Questions about the calculation
Which section modulus should be used?
Use Wx for bending about x and Wy about y. For asymmetric sections, distinguish top and bottom extreme fibres when required.
Why use the absolute moment?
The sign identifies the tension and compression side. The absolute value measures stress magnitude for comparison with an allowable limit.
Does this provide a complete strength check?
No. It does not automatically cover lateral buckling, shear, fatigue, stress concentrations or code load combinations.
05References
Technical references
- Gere & Goodno, Mechanics of Materials, elastic bending theory.
- Roark’s Formulas for Stress and Strain, 9th edition.
Elastic bending
Bending-stress formula: M/W or Mc/I
Both forms are equivalent because W = I/c. Moment, inertia and extreme-fibre distance must refer to the same axis.
Direct calculation with W
Divide maximum bending moment by elastic section modulus.
σmax = |M| / WCalculation with I
When I and c are known, use Mc/I. Do not replace W with I without including c.
σmax = |M| · c / ICoherent-unit example
12 kN·m and 240 cm³ give 50 MPa after conversion to N·mm and mm³.