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SKL-000067 · Skill

EN 1990EN 1993-1-8

Design a bolted end plate connection to Eurocode 3

Describe the column and beam sections, the design forces at the joint, the end plate geometry with its four overhangs, the bolt grid, and the weld throats. Mia builds a small RFEM 6 model, runs the Steel Joints add-on, and reports the governing utilisation across plates, bolts, and welds.

Mia

Mia guides you step by stepShe guides you through the inputs and explains the results.

Worked example

HEB 200 · IPE 300 · NEd 50 kN + VEd 80 kN + MEd 60 kNm

Design verified: bolt row 1 tension governs
System
Beam-to-column joint
Sections
IPE 300 · HEB 200 · S235
Forces
NEd 50 kN · VEd 80 kN · MEd 60 kNm
End plate
15 mm · 60 mm top overhang
Bolts
4x2 M20 gr. 8.8

Design a bolted extended end plate connection between an IPE 300 beam (S235) and a HEB 200 column (S235) with NEd = 50 kN, VEd = 80 kN, MEd = 60 kNm at the joint. End plate 15 mm S235 with a 60 mm top overhang, flush elsewhere, 4 rows x 2 columns of M20 grade 8.8 bolts at 90/140 mm spacing and 45 mm edge distance, 8 mm flange welds and 6 mm web welds, EN-recommended values.

Calculate the example with Mia

Key results

Governing utilisation
η = 0.81 (bolts)
Plate utilisation
η = 0.66
Weld utilisation
η = 0.54

All values are deterministic for the stated inputs. Design forces applied exactly at the joint via a short cantilever stub; EN-recommended partial factors.

  • — Column web and flange are unstiffened.
  • — Bolt grid is treated as a uniform rectangular pattern (equal row and column spacing).

Required inputs

  • Column and beam cross-sections and steel grades
  • Design forces NEd, VEd, MEd at the joint
  • End plate thickness, grade, and the four overhangs
  • Bolt grid (rows x columns, spacing, edge distance), diameter, and grade
  • Flange and web weld throat thickness
  • National Annex

What you receive

  • Governing check and utilisation
  • Plate utilisation (bending/tension components)
  • Bolt utilisation (tension, shear, bearing, or combined)
  • Weld utilisation (flange and web)
  • Assumptions and normative references
Reviewed calculation example

Start from an input template

These templates prefill the form with typical inputs. They are not calculated results; the calculation runs in CALC.

Prepare your calculation
Dlubal CALC
Configure your end plate connection
Structural calculation to standard

System sketch

All required fields completed

Inputs completeReady to calculate

What this skill checks

Self-contained joint model

Builds a minimal column-and-beam RFEM 6 model from the given cross-sections and applies the stated N_Ed, V_Ed, and M_Ed exactly at the joint.

Unrestricted rectangular bolt grid

Configures any rows-by-columns bolt pattern with row/column spacing and edge distance, not limited to a fixed catalogue layout.

Four-sided plate overhang

Sets the end plate overhang beyond the beam profile independently on all four sides (top, bottom, left, right).

Definable weld throats

Sets the flange and web fillet weld throat thickness independently and reports their utilisation.

Component-by-component utilisation

Runs the RFEM 6 Steel Joints add-on (EN 1993-1-8 component method) and reports the governing utilisation for plates, bolts, and welds.

Ready for your first check?

Start with the example and adapt it to your structural system.

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