Mechanics · Beams and deflection

Beam deflection

Choose a common beam case, select a profile and its strong or weak axis, then calculate maximum deflection from L, E, I and the applied load.

Created v1.0

By Thibaut Grzelak, Mechanical Analysis Engineer

Beams and deflection
01

Calculation inputs

Configuration
Geometry and material
Profile and second moment
The library automatically fills I from the profile nominal geometry.
The strong axis minimises deflection; the weak axis is the more flexible orientation.
Choose the published catalog value or the Formulaxis analytical value.
Value calculated from the selected profile or entered manually, depending on the selected mode.
Loading
Verified profile

Profile used in this calculation

IPE 200IPE sectionsMajor axisAnalytical value
Value used in the calculation
I1,845.5902 cm⁴
Provenance
Value recalculated by Formulaxis from the nominal geometry.

Major axis — catalog y-y — Formulaxis x-x

IPE 200. Major axis. Analytical value. Value used in the calculation: I = 1,845.5902 cm⁴

Results are up to date.

03

Results

Maximum slope
1.451336mrad

Maximum rotation for the selected case.

Characteristic reaction
5kN

Reaction per support or fixed-end reaction, depending on the case.

Maximum bending moment
7.5kN·m

Maximum absolute bending-moment value.

View calculation detailsFormulas, SI conversion, numerical substitution and resultsOpen ↓

Calculation note

Full calculation details

Straight prismatic beam with constant E and I. Linear-elastic behaviour and small deflection. Shear deformation neglected. Idealized static loads and perfect supports.

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01Formulas and symbols

Formulas used

δFL³/(48EI)Simply supported, centre point load
δ5qL⁴/(384EI)Simply supported, uniform load
δFL³/(3EI)Cantilever, end point load
δqL⁴/(8EI)Cantilever, uniform load
02Assumptions and limits

Scope of validity

  • Straight prismatic beam with constant E and I.
  • Linear-elastic behaviour and small deflection.
  • Shear deformation neglected.
  • Idealized static loads and perfect supports.
03Validation example

Reference numerical case

  1. Simply supported, F = 10 kN at centre, L = 3 m, E = 210 GPa and I = 8,000,000 mm⁴.
  2. Maximum deflection = 3.3482 mm.
  3. Support slope = 3.3482 mrad.
  4. Reaction per support = 5 kN and Mmax = 7.5 kN·m.
04Frequently asked questions

Questions about the calculation

Which I value should be entered?

Use the second moment about the bending axis. A vertical load with section height along y generally uses Ix.

Is shear deflection included?

No. The formulas use Euler–Bernoulli theory and are most suitable for slender beams.

Can several loads be combined?

The first version handles one load case at a time. Linear superposition is possible when support conditions and conventions are consistent.

05References

Technical references

  1. Roark’s Formulas for Stress and Strain, 9th edition, beam tables.
  2. Gere & Goodno, Mechanics of Materials, elastic curve equation.