Tee female thread welded 28xRp 3/4"x28 CARBON STEEL CZTW-283428
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TECHNICAL DATA
Sales unit dimensions and weight: 1 pcs
Tee female thread welded 28xRp 3/4"x28 CARBON STEEL CZTW-283428
Press-fit steel fitting with thread – leak-proof connections
The VESBO 28 x 3/4" press-fit tee is a key component in piping installations, providing a durable and tight connection of two pipes with a diameter of 28 mm with a branch ending with a 3/4 inch internal thread. The construction of carbon steel TYPE 1.0034, externally galvanized, guarantees corrosion resistance and long-term reliability in demanding conditions. This is an ideal solution for both professionals and end-users who appreciate quick installation and reliable performance.
Design and application
The tee is designed for installation systems using press-fit technology. This eliminates the need for welding or threading, reducing installation time and minimizing the risk of errors. The use of carbon steel with galvanizing provides high mechanical strength and corrosion resistance, which is particularly important in water, heating and industrial installations. The 3/4 inch internal thread allows for easy connection of fittings, valves or other installation elements. In addition, a visual unpressed ring facilitates quality control of the connection.
Advantages and benefits
- Quick installation: Press-fit technology allows for making a connection in seconds without using fire or additional sealants.
- Durability and tightness: Carbon steel with galvanizing provides high corrosion resistance and long-term connection reliability.
- Versatility: The tee finds application in water, heating and industrial installations.
- Easy quality control: The visual unpressed ring allows for quick assessment of the connection correctness.
- Compatibility: The product is compatible with the VESBO CARBON system offering a wide range of diameters.
- Safety: Eliminating welding minimizes the risk of fire and ensures safe installation even in difficult conditions.
- Mechanical resistance: The construction of the tee provides high resistance to pressure and mechanical loads.

