Polyurethane sandwich panel
A polyurethane sandwich panel is a multilayer building material consisting of two outer metal layers and an inner thermal insulation layer. It is because of this “sandwich” structure that it got its name – sandwich panel.
Sandwich panels are used to construct walls, roofs, and refrigeration chambers because they are distinguished by:
With high thermal insulation properties
With long-term exploitation
Aesthetically
Quick and easy installation
Types of sandwich panels:
Roof sandwich panels – designed for roofing a building. Provides protection from moisture and temperature changes.
Wall sandwich panel – used for exterior and interior walls. It is distinguished by good thermal insulation and aesthetics.
Refrigeration sandwich panel – specially designed for refrigerators and temperature-controlled warehouses.
Single-sided panel – used for temporary structures such as containers and pavilions.


Values
Leadership
Teamwork
Innovation
Customer loyalty
approach
Quality
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Improvement

What is a sandwich panel?
A sandwich panel is a construction material, which is made of two layers of galvanized aluminum sheets with polyurethane foam wedged in between. The panel is characterized by a high degree of safety.

Applying sandwich panel in the construction works
Compared to the traditional construction approaches, application of sandwich panels in the construction works relatively reduces time required for the construction, which is a high priority for the client, as time is a critical asset for them.

Distinctive Features of the Sandwich Panels
One of the most important advantages of the sandwich panel are construction simplicity, high coefficient of the thermal insulation and high fire resistance, which are one of the main preconditions for your safety and peacefulness.

Sandwich Panel as an Energy-Efficient Product
Over-consumption of energy leads the world to the environmental crisis. Applying sandwich panels in the construction works not only saves the environmental resources, but also balances the temperature of the building and, consequently, utility costs are reduced.






























