Four-way beam-to-column node: IPE 300 beams on an HEB 240 column

Four-way beam-to-column node: IPE 300 beams on an HEB 240 column

Four IPE 300 beams frame into an HEB 240 column, two of them through short welded beam stubs with bolted end plates. M20 8.8 bolts.

Connection library · Beam-to-column and knee joints

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From a real projectAISC 360-16Checked: all components OK
Four-way beam-to-column node: IPE 300 beams on an HEB 240 column: overall check of the finite element model

The 3D model is the connection as it was checked: members, plates, welds and bolts. Drag to rotate, scroll or pinch to zoom, tap a part type to hide it.

Members
IPE 300 (S275), HEB 240 (S275)
Plates
7–20 mm thick
Bolts
M20 8.8
Welds
fillet, throat 5.7–8 mm
Design code
AISC 360-16
Method
Component-based finite element model (CBFEM)
Plates (plastic strain)0 / 5 %
Bolts36 / 100 %
Welds75.4 / 100 %
Four-way beam-to-column node: IPE 300 beams on an HEB 240 column: equivalent stress in the plates and members
Equivalent stress under the governing load case.
Four-way beam-to-column node: IPE 300 beams on an HEB 240 column: overall check with plastic strain
Overall check: plastic strain and component status.

How it was checked

Every plate, bolt and weld in one model

The joint is modelled with shell elements for the plates and member ends, and with nonlinear springs for bolts, welds and anchors (the component-based finite element method). The member forces are applied at the member ends and the model is loaded step by step to the full design load.

Plates pass when the plastic strain stays below the limit of the code; bolts, welds and anchors are checked against the component resistances of AISC 360-16. The bars above show each component’s utilisation for the governing load case.

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