Substructure Solutions

The basis for a perfect building envelope – maximum flexibility 

The substructure is the link between the outside skin and the primary supporting construction.

The patented BEMO-FLEX substructure ensures a precise fit and high quality execution of metal coverings, even on complex building shapes.  Even when renovating old buildings with construction tolerances that are often high. 3D pre-planning - often based on a 3D scan of the actual building - makes accurate pre-planning possible as well as cost-effective pre-assembly in the workshop. 

BEMO-FLEX

BEMO-FLEX is a segmented substructure. The system is extremely easy to assemble. FLEX allows you to design a 3D outer layer in easy work steps while compensating for all construction tolerances.

The lower U profiles of the FLEX SYSTEM are mounted in accordance with structural requirements. The installation position can then be recorded in a 3D scan. From this we derive the required position and height of each BEMO halter. The upper U-shaped rails are pre-assembled with the positioning brackets in the workshop and then screwed to the lower U-shaped rail in a second work step.

The system is characterised by good bearing capacity, high compensation of tolerances and very cost-effective planning and assembly. 

Perfect for cylindrical building shapes or those curved around 2 axes.


BEMO-DOME

Eminently suitable for cylindrical building shapes or those curved around 2 axes. 

The standardised system is always composed of the same components and varies between round and square pipes and different holders, depending on the configuration. The substructure can be fastened to a wide variety of bases and offers tolerance compensation of +/- 45mm.

BEMO-DOME is primarily used for:

  • façades in sports stadiums 
  • silos
  • oval towers (e.g. digester towers) 
  • or at the transition points between roof and façade

In order to obtain a perfect surface on the metal profiles, we recommend performing a 3D scan to record on-site measurements and using BEMO 3D execution planning. This will give you a grid plan with the recommended mounting points with their positions and distance from the supporting structure.

The system is characterised by good load bearing capacity, perfect tolerance compensation and simple on-site assembly. 

Substructure Solutions References

Court No. 1 Wimbledon
Court No. 1 Wimbledon
England

Photo: Prater

Architecture:
KSS
Product:
SF N65-400, tapered
Material:
Aluminum
External Surface:
PVDF2
Colour:
sim. RAL 6007
Surface:
7,000 m2
Particularity:
BEMO Flex substructure. Inner bowl used BEMO-TOP as support for rainscreen panels. Full BEMO Engineering package.
Convention Center Astana
Convention Center Astana
Kazakhstan
Architecture:
Adrian Smith + Gordon Gill, Chicago
Product:
SF N65-400, conical
Material:
Aluminium
External Surface:
Stucco, PVDF
Colour:
Similar to RAL 9007
Surface:
19.000 m2
Particularity:
Standing seam with BEMO-TOP rails for holding on Honeycomb boards
Faulturm Amstetten
Faulturm Amstetten
Austria
Product:
BEMO-MONRO
Material:
Aluminium
External Surface:
PE
Colour:
Similar to RAL 9006
Surface:
1.000 m2
Faulturm Bitburg
Faulturm Bitburg
Germany
Product:
BEMO-MONRO
Material:
Aluminium
External Surface:
BEMO-FLON
Colour:
Similar to RAL 9011
Surface:
715 m2
Faulturm Ebermannstadt
Faulturm Ebermannstadt
Germany
Product:
BEMO-MONRO
Material:
Aluminium
Ice Arena Almaty
Ice Arena Almaty
Kazakhstan
Architecture:
Esim Mamonov
Product:
SF N65-400, conical, BEMO-MONRO
Material:
Aluminium
External Surface:
Stucco Natural
Surface:
21.000 m2
Wei-Wu-Ying Center Of The Arts Taiwan
Wei-Wu-Ying Center Of The Arts Taiwan
Taiwan

Photo: provided by CK group

Architecture:
Mecanoo Architecten, Delft
Product:
BEMO-MONRO
Material:
Aluminium
External Surface:
PVDF
Colour:
Similar to RAL 7035
Surface:
31.000 m2
Particularity:
Freeform with extreme BEMO-MONRO tracks

Link to all References

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