The construction of ventilated façades in public procurement requires partners with adequate technical and financial qualifications. SOA OS18B certifications for ventilated façades demonstrate the company’s execution capability, ensuring proper management of project progress reports without bureaucratic disruption. Choosing a well-structured, ventilated façade partner like Imola Tecnica ensures complete project coordination, combining engineering reliability, regulatory compliance, and on-time delivery on complex construction sites.
What are the SOA requirements for the design and construction of stoneware ventilated façades in public procurement?
The SOA requirements for the design and construction of stoneware ventilated façades in public procurement require compliance with the OS6 classification III category for the cladding and the OS18-B classification III-bis category for the load-bearing metal substructure. These certifications assure the Public Administration that the contractor has the financial strength, equipment, and technical expertise to manage complex projects. Relying on suppliers with SOA certification in the aforementioned categories streamlines the administrative qualification process. Integrated project management, with a single entity qualified for both the structure and cladding, prevents bureaucratic bottlenecks from the preliminary stages.
On a technical level, the verification of possession of the SOA OS18B requirements for ventilated walls offers the designer and the Works Management the certainty that the executing company has the technical and engineering skills necessary to manage the building envelope in its structural and performance complexity.
Advantages of turnkey ventilated walls to optimize your schedule
Adopting a turnkey ventilated wall package drastically reduces interference between different trades working on the same site. Delegating the entire process to a single technical contact specialized in the supply and installation of porcelain stoneware exterior wall coverings significantly facilitates coordination on the construction site. This unified approach brings tangible benefits:
- Better management and strict adherence to the schedule;
- Implementation of targeted interventions to reduce structural thermal bridges in ventilated walls;
- Ensuring the total durability of ventilated wall anchoring systems.

How does stoneware façade engineering unblock interim certificates on construction sites?
Stoneware façade engineering efficiently unblocks interim certificates, providing Project Management with complete technical documentation, complete material traceability, and certifications for proper installation of ventilated façades. When it becomes necessary to unblock interim certificates on public construction sites, the accuracy of as-built drawings and technical files becomes crucial.
The use of engineered ventilated wall panels guarantees minimal dimensional tolerances for the porcelain stoneware slabs, avoiding disputes during construction and safeguarding the regularity of the work progress.
This approach allows:
- Careful planning to optimize construction site time, eliminating unforeseen events and unscheduled downtime;
- Safe installation of metal substructures for ventilated porcelain stoneware walls equipped with the necessary load certifications;
- Correct calibration of the natural ventilation cavity, for optimal disposal of thermal loads and humidity;
- The adoption of rigorous thermo-hygrometric strategies to prevent interstitial condensation and protect the durability of the stratigraphy;
- Provision of manuals for scheduled maintenance of external surfaces and to ensure future inspection of the anchoring systems of ventilated walls.
Safety and regulations with non-combustible ventilated walls in porcelain stoneware
The installation of noncombustible ventilated walls complies with the most stringent fire prevention regulations, starting with the RTV Facades regulation (section V.13 of the Fire Prevention Code, Ministerial Decree 03/08/2015 and subsequent amendments), currently in force in Italy. The stringent fire safety requirements for the external envelope require the use of Class A1 materials: a requirement that porcelain stoneware naturally meets, without the need for additional treatments. The qualities of this material, however, go far beyond fire resistance. The virtually zero water absorption of the external cladding prevents infiltration and freeze-thaw-related deterioration. Furthermore, the exceptional resistance to thermal shock of the stoneware façade preserves the integrity of the surface even in the most severe climate conditions.
Integrating these systems from the design stage brings benefits that impact overall living comfort: the ventilated cavity contributes to the acoustic insulation of the stoneware façade, reducing the transmission of external noise to the interior. Completing the performance package, total color stability against UV rays guarantees a consistent appearance over time, while the high wind load resistance performance ensures complete public safety even in the event of extreme weather events.
What criteria guide the installation of ventilated walls for high-efficiency buildings?
The criteria guiding the installation of ventilated walls for high-efficiency buildings are based on the perfect alignment of the support grids, the elimination of coplanarity defects, and the use of insulating panels that comply with environmental regulations. Each construction phase must, in fact, pursue maximum energy efficiency for the porcelain stoneware ventilated walls, generating external thermal insulation that eliminates heat loss.
The contractor, with SOA-certified expertise, ensures full compliance with CAM requirements, a key principle of environmental sustainability for ventilated façades required in public procurement. The consistent choice of porcelain stoneware cladding for exterior walls concretely promotes the circular economy in construction, reducing the costs and environmental impacts associated with the disposal and recycling of construction materials. The end result is a prolonged building’s useful life, contributing to the amortization of construction costs from a Life Cycle Assessment perspective and the sustainable management of the building stock.f construction costs from a Life Cycle Assessment perspective and the sustainable management of the building stock.




