THERMAL INSULATION AND NON-INSULATED ALUMINUM JOINERY


Heat Insulated Aluminum Joinery

Thermal Insulated Aluminum Joinery Systems These are aluminum joinery systems formed by connecting interior and exterior aluminum profiles with an insulating profile in order to provide thermal insulation. Heat-insulated aluminum joinery is often preferred in cases where it is aimed to make the most of thermal insulation on the exterior of the building. Although its lightness is considered an advantage, it is the most durable material with a long life, which makes it indispensable.

Heat Insulated Aluminum joinery profiles are made into a 3-room system by making a PVC insulation bridge. It should be known that the joinery plane area is determined according to the project dimensions and varies. We can also diversify the surface sizes as narrow, medium and wide series. Heat-insulated aluminum joinery is required for door and window systems to be used on building exteriors.

Aluminum Shredding Without Heat Insulation

Non-heat-insulated aluminum joinery appeals to a wide range of purposes. The profile feature is that there is no insulation bridge. The chopping plane area varies in various dimensions. Surface sizes are diversified as narrow, medium and wide series. Non-heat-insulated aluminum joinery is required for door and window systems to be used on building interior surfaces. The system includes all RAL codes in color options. All of the wicks used for heat and water insulation in the frame and wing profiles are EPDM wicks. It is possible to make all pop-up systems.

The assembly phase is of two types. The first is the blind-frame assembly. In this mounting form, the blind should be mounted on the crates scale. When joinery is installed on blind boxes that are not on the scale, the problem of closing the opening wings arises. Another system is the wall-mounted system. Installation is made with a screwing system suitable for the aluminum joinery wall element. In order for this system to be healthy, it is important that the wall is smooth.