Pipe in conduit 25X2.5 - 40/32 RED 50M Uponor Uni Pipe Plus 1093128
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TECHNICAL DATA
Sales unit dimensions and weight: 1 m
Pipe in conduit 25X2.5 - 40/32 RED 50M Uponor Uni Pipe Plus 1093128
Multilayer PEX-AL-PEX pipe for water and heating installations
The Uponor Uni Pipe Plus pipe is a modern solution for water and heating installations, especially those with radiators. Made of PEX-AL-PEX material (polyethylene, aluminum, polyethylene), it combines the advantages of plastics and metal, ensuring high durability and reliability. Supplied in a roll of 50 meters, it facilitates installation and minimizes the number of connections.
Construction and properties
The pipe consists of three layers: inner and outer layers of polyethylene (PEX) and a middle layer of aluminum. This construction provides:
- 100% oxygen barrier: The aluminum layer prevents oxygen from penetrating the installation, protecting components from corrosion – crucial in heating systems with steel elements.
- High dimensional stability: Low thermal expansion minimizes changes in pipe length due to temperature, which translates to connection durability.
- High flexibility: The pipe is easy to process and allows bending, reducing the need for additional fittings and shortening installation time. The bending radius is even up to 40% smaller than traditional multilayer pipes.
- Lightweight: Facilitates transport and installation, especially at heights or in hard-to-reach places.
- Strength: The aluminum layer strengthens the pipe structure, increasing its resistance to mechanical damage and pressure.
Application and parameters
The Uponor Uni Pipe Plus pipe with a diameter of 25 mm and a wall thickness of 2.5 mm is ideal for:
- Drinking water and utility water installations.
- Central heating installations with radiators.
- Underfloor heating systems (according to manufacturer's recommendations).
- Installations in residential, commercial and industrial construction.
Thanks to its construction and properties, this pipe performs well in both new installations and in the modernization of existing systems. It ensures safe and efficient fluid transport, minimizing the risk of failure and energy losses.

