Accessories for Prefabricated Halls

We also offer a wide range of accessories for prefabricated halls: automatic ventilation, windows, doors, gates, gutters, etc.

Tarpaulin cladding

The type of fabric is determined by the manufacturer and depends on the span of the tent halls and the type of use.

  • SIOEN B 9000: PVC-coated fabric, 100% PES fabric (9×9 weave), PVC coating with a weight of 680 g/m², coated on both sides, waterproof, light-permeable, UV- and mold-resistant (tensile strength 3000 N/5 cm, temperature resistance -30/+70 °C). Flammability class E. Service life approx. 10 years. See below for sail color options.
  • SIOEN B 8103: PVC-coated fabric, 100% PES fabric (8×8 weave), PVC coating with a weight of 650 g/m², double-sided Siofluo coating, water-resistant, self-extinguishing, light-permeable, UV and mold resistant (tensile strength 2500 N/5 cm, temperature resistance -30/+70 °C). Flammability class B-s2,d0, EN 13501-1, DIN 4102 B1 M2. Service life approx. 10 years. See below for sail color options.
  • SIOEN B 9103: PVC-coated fabric, 100% PES fabric (9×9 weave), PVC coating with a weight of 680 g/m², Siofluo coating on both sides, water-resistant, self-extinguishing, light-transmitting, UV- and mold-resistant (tensile strength 3000 N/5 cm, temperature resistance -30/+70 °C). Flammability class B-s2,d0, EN 13501-1, DIN 4102 B1 M2. Service life approx. 10 years and more. Sails available in white and gray.
  • SIOEN B 9113: PVC-coated fabric, 100% PES fabric (9x9 weave), PVC coating with a weight of 730 g/m², double-sided Siofluo coating, water-resistant, self-extinguishing, light-permeable, UV- and mold-resistant (tensile strength 3000 N/5 cm, temperature resistance -30/+70 °C). Flammability class B-s2,d0, EN 13501-1, DIN 4102 B1 M2. Service life approx. 15 years. Sails available in white and gray.
  • Serge Ferrari FLEXLIGHT 702 S2: PVC-coated fabric, 100% PES fabric (9x9 weave), PVC coating with a weight of 750 g/m², highly stable Precontraint technology, special double-sided PVDF coating based on polyamide - increased self-cleaning properties and service life of the sail, water-resistant, self-extinguishing, highly light-permeable, resistant to UV radiation and mold (tensile strength 3000 N/5 cm, temperature resistance -30/+70 °C). Flammability class B-s2,d0, EN 13501-1, DIN 4102 B1, M2. Lifespan approx. 20 years. 7-year warranty! Color design of sails in white.

 

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Solid cladding

The parameters of the fixed cladding (after the type has been specified by the customer) are determined by the manufacturer and depend on the spans of the tent halls.

Trapezoidal sheets (T18|T35, etc.)

They are made of steel sheet, which is hot-dip coated with a layer of aluzinc or zinc. Alternatively, they are treated with certain types of paint in various colors and finishes. Some trapezoidal sheets can also be configured with anti-condensation or perforation treatment (for acoustic attenuation).

General parameters of trapezoidal sheets (T18/T35)

Construction/total widths: 870/913 mm | 1035/1078 mm
Lengths:

0.5 – 7 running meters at a thickness of 0.50 mm/0.5 – 8 running meters at a thickness of 0.70 mm

0.5 – 9 running meters at a thickness of 0.50 mm/0.5 – 12 running meters at a thickness of 0.70 mm

Thicknesses: 0.50 – 0.80 mm | 0.50 – 1 mm
Surface finishes: galvanized | polyester, polyurethane, galvanized, aluzinc

PIR insulation panels

These are commonly made from various foam, cotton wool, and other fillings that form the core between two metal shells. The fillings differ in terms of thermal insulation, moisture permeability, flammability, and surface treatment of the shell.

General parameters of PIR sandwich panels

These depend on the selected material and its properties, as agreed with the customer.

NOTE: The basic parameters are only general illustrations of the types of materials we use, which may vary depending on the order!

Entrance strips on a cable

Sliding entrance rails on a cable are suspended using roller bearings on guide cables and are part of split canvas side panels. The fastening system allows for easy spreading of the canvas and also meets the requirements for lockability of entrance canvases. An effective and fully functional solution in terms of cost.

Entrance strips on a rail

Sliding entrance rails on the track are suspended using industrial rollers on guide rails and are part of the split canvas side panels. The fastening system allows for easy spreading of the tarpaulins and also meets the requirements for lockability of the entrance tarpaulins. This system is more robust and easier to operate than a guide cable. An even more effective and fully functional solution in the mid-price range.

Split side panels and doors

Split side walls are mainly used as an entrance to a textile hall or as a ventilation segment in cases where the emphasis is not on the enclosure of the space. They are made of fabric and can be closed with straps or sliding rails and pulled apart to the width of the entire segment. Another entrance solution is to use tarpaulin doors (single or double), which are incorporated into a steel frame with a locking option.

Sliding doors

Internal sliding doors with a steel frame and canvas filling can be moved along a console rail using industrial rollers. The auxiliary supports are made of aluminum profiles and have a zinc coating. Lockable.

Ventilation openings

The ventilation openings are located in the gable surfaces of the fabric halls. They are made of materials that prevent the ingress of mechanical impurities. In adverse weather conditions, the openings can be closed with a roller shutter. It is possible to install roof ventilation rotary chimneys or floor vents in the side walls of the fabric cladding.

Lighting

The lighting of fabric halls is usually provided by LED fixtures placed parallel to each other in the roof section of the ridge joints. The intensity of the lighting depends on specific requirements. Connection can also be made with an electrical switchboard and inspection.

Connecting passages

The connecting passage is a steel or aluminum prefabricated cage with a zinc and anodized finish. The upper part is designed with a gable roof, canvas cladding anchored with aluminum grooved strips and keel strips. The connection between the existing building and the tarpaulin hall is made using anchor brackets and consoles, while the floor anchoring itself works via footings. The system provides a connection between the tarpaulin hall and the existing building, or between two tarpaulin halls.

Partitioning of halls

If necessary, we offer partitioning solutions to divide the interior of the hall into several separate units. Passageways can be installed in the partitions.  

Gutters

When assembling several textile halls together, we offer the option of connecting individual structures into a single unit using sheet metal gutters (troughs), thereby increasing the uniform roofed area. This gutter system also works when connecting the hall to an existing building. Alternatively, it can be used independently where water needs to be drained. The installation of the gutter must be consulted with the manufacturer in advance.

Insulation for winter, preventing condensation

If you need to use the tarpaulin hall as production space requiring temperature control during the winter months, we offer an inner insulating tarpaulin layer that prevents heat loss. This doubles the hall's cladding, and the air gap between the top and bottom tarpaulin layers prevents heat loss and possible water condensation in the roof during large temperature differences. This modification enables trouble-free winter operation with optimal temperature conditions. 

Bottom edging

The standard modular construction system for tent halls does not allow for the insulation of the lower edge of the cladding against water seepage at the load-bearing feet. This modification serves to prevent rainwater from seeping into the interior of the tent hall at the lower edge. This involves extending the bottom edge of the cover sheet and welding the support feet with canvas. The extended part of the canvas is then drained into the ground or outside the building area. The modification must be consulted in advance and depends on the structural readiness of the building foundation. The exact design is then determined accordingly.

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