Fraport Terminal 3

One of Europe’s largest airport projects

Terminal 3 is one of Europe’s largest privately financed infrastructure projects. For Hilzinger Metallbau, the scale of the development meant planning and delivering eleven technically demanding sub-projects at the same time, all tailored to the requirements of airport operations. The project required Hilzinger not only to coordinate complex processes, but also to deliver façades capable of withstanding the exceptional and sustained stresses associated with a major international aviation hub. Hilzinger’s work on the project demonstrates the company’s comprehensive expertise in large-scale façade and metal construction.

Détails de la référence

Gebäudetyp Transport et infrastructure
Produktbereiche Fenêtres Portes Façades Protection incendie et désenfumage
Schüco Systeme FireStop ADS 90 FR 90 AOC 60 ST FireStop ADS 76.NI SP FWS 60.SI FireStop ADS 90 FR 30
Merkmale Nouvelle construction Protection incendie
Standort Frankfurt am Main, Hessen
Fertigstellung 2022
Architekten Fraport AG
Fachbetrieb hilzinger Metallbau GmbH
Bildnachweis © HGEsch

Designed for the demands of airport operations

Building envelopes in airport environments are exposed to particularly high structural loads. To meet these demands, Hilzinger Metallbau developed a modified façade construction based on the Schüco AOC 60 ST system. The steel mullion-and-transom façades were dimensioned to withstand not only their own static loads, but also the fluctuating pressure and suction forces generated by aircraft operations.

Fire-safety solutions for airport operations

Hilzinger also installed around 550 specialist aluminium and steel doors. The smoke-control and fire doors are integrated directly into the building management system. As part of the smoke and heat exhaust systems (SHEVS), they play a central role in preventive fire protection. In an emergency, the doors can be controlled selectively. This helps to protect the building fabric and supports the safe evacuation of passengers. At the same time, they were designed to withstand a high number of opening cycles, ensuring that they can cope with the intensive demands of daily airport operations over the long term.

Produktinformationen

FireStop ADS 90 FR 90

Schüco Système de portes FireStop ADS 90 FR 90

Construction de protection anti-incendie en aluminium ayant une résistance au feu de 90 minutes avec une flexibilité maximale

Le plus en matière de sécurité : le système de protection incendie en aluminium Schüco FireStop ADS 90 FR 90 fait partie de la plateforme de systèmes innovants Schüco FireStop et offre une gamme complète de portes et de parois anti-incendie, avec une résistance au feu de 90 minutes, testée selon les normes EN 1634 / EN 1364 et DIN 4102.

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AOC 60 ST

Schüco Système de façade AOC 60 ST

Construction rapportée sur acier pour façades et verrières présentant des caractéristiques de performances exceptionnelles

Le système de façades Schüco AOC 60 ST (Steel) permet la construction de verrières et de grandes façades verticales d’exception sur le plan technique et du design, dans une largeur de profilés de 60 mm, sur des ossatures en acier.

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FireStop ADS 76.NI SP

Schüco Système de portes FireStop ADS 76.NI SP

Système de protection anti-fumée non isolé avec une grande flexibilité

Le système de portes à protection anti-fumée non isolées Schüco FireStop ADS 76.NI SP (Non Insulated Smoke Protection) avec son profilé innovant à une chambre et à feuillure ouverte est basé sur la plateforme Schüco FireStop, ce qui garantit une grande flexibilité dans la planification et la construction.

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FWS 60.SI

Schüco Système de façade FWS 60.SI

Façade montant-traverse pour solutions variées certifiées maison passive

Basé sur une technologie d’isolant révolutionnaire, le système de façade Schüco FWS 60.SI (Super Insulated) offre des solutions présentant la plus haute isolation thermique pour la construction d’une grande variété de façades et de verrières du niveau maison passive, y compris des processus de fabrication et de montage optimisés.

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FireStop ADS 90 FR30

Schüco Système de portes FireStop ADS 90 FR 30

Design d’excellence combiné à une protection anti-incendie homologuée pour 30 minutes de résistance au feu Attention: La homologation de cette système pour la Belgique n''est pas encore disponible. Pour plus d''informations, contactez votre interlocuteur 

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Just-in-sequence delivery: the key to construction-site logistics

One of the project’s greatest challenges was coordinating the movement of materials and personnel across the extensive construction site. From June 2021 to December 2025, every stage of the work had to be precisely coordinated. The situation was made more difficult by the limited storage capacity available across the site. To ensure a smooth construction process, Hilzinger’s logistics department established a fully integrated supply chain. Components manufactured at the company’s facilities in Fritzlar and Borken were delivered to their respective installation locations ready for assembly and in the correct sequence. The close integration of CAD design, manufacturing and construction-site logistics proved to be a key factor in delivering the project on schedule and within budget.

The link between terminal and aircraft

At Piers H and J, Hilzinger delivered the façades for a total of 24 passenger boarding bridges and 38 aircraft docking positions. As the direct link between the terminal and the aircraft, these structures are subject to particularly demanding requirements in terms of functionality, fire safety and structural performance. Based on the Schüco AOC 60 ST system, Hilzinger created a transparent mullion-and-transom façade. Its lightweight architectural appearance is combined with fire-compartment sections made from sandwich panels.

Architecture along the new transport route

The new Passenger Transport System (PTS) serves as the central transport link between the airport’s terminals. Station F in the north creates a distinctive architectural feature with its striking elliptical tubular design. Its segmented aluminium sheet façade was precisely installed on the reinforced-concrete structural panels, emphasising the building’s dynamic design language. Hilzinger also delivered technically demanding façade solutions for the station buildings at Terminals 1 to 3, as well as for the PTS maintenance facility. At Terminal 2, this involved integrating steel portal frames into the existing structure, while Terminal 3 required a new infrastructure building with bridge façades linking it to both the terminal and the car park.

Technical solutions for extreme operating conditions

Every component had to withstand the specific conditions of airport operations over the long term. This called for extensive structural verification, including assessments of wind loads and fall-protection performance. The transparent sections of the passenger boarding bridges were fitted with structurally tested glazing assemblies designed to withstand high horizontal impact loads, even when passenger numbers were high. The façades and glazing installed at the PTS facilities were also specifically designed to withstand the extreme conditions created by daily operations. All fixings in the tunnels and stations had to withstand the constant changes in air pressure caused by passing trains. The structural design also incorporated special expansion-joint constructions to accommodate the thermal movement of the large reinforced-concrete viaducts without affecting the performance or structural integrity of the façade and glazing elements.

Apron control tower: precision installation under extreme conditions

One of the project’s particular technical highlights was the installation of the façade on the almost 70-metre-high apron control tower. To provide air traffic controllers with optimum, glare-free visibility, glazing units up to 3.3 metres high were installed at an outward angle. This configuration reversed the direction of the loads and required specially developed anchoring technology. To install the glass units – some weighing up to 800 kilograms – Hilzinger used a mobile crane and a remotely controlled counterweight system fitted with a vacuum glass lifter. This enabled the units to be positioned with millimetre accuracy while taking the prevailing wind conditions into account.