THOR
Stainless steel manifolds
Steel manifolds are used in the construction of modern plumbing and heating systems. Stainless steel manifolds are distinguished by their high quality, performance and durability.
Stainless steel is a material that is inherently resistant to corrosion. Despite their robustness, steel manifolds are lighter than brass manifolds of the same size and are therefore easier to install. Thanks to their larger flow sections, steel manifolds allow for greater water flow, improving the hydraulic efficiency of the system and ensuring more uniform heat distribution.
Documentation
Technical features
Description
THOR (6A00 SERIES) manifolds with 3/4” Eurocone outlets are the ideal solution for the distribution of water in radiant heating and cooling systems.
These manifolds are pre-assembled on brackets and are available with 1” delivery and return flow rods. They can be housed in metal cases and placed within partition walls.
A wide range of accessories makes it possible to complete the manifold with all the necessary components for the proper functioning of the system: shut-off ball valves, venting valves, bypass valves and input/output taps.
These manifolds are pre-assembled on brackets and are available with 1” delivery and return flow rods. They can be housed in metal cases and placed within partition walls.
A wide range of accessories makes it possible to complete the manifold with all the necessary components for the proper functioning of the system: shut-off ball valves, venting valves, bypass valves and input/output taps.
Benefits
- Balancing of each loop
- No unnecessary waste
- High technical comfort
- Suitable both for high and low temperature installations
- Mechanical resistance
- High lightness
- No tension corrosion
- No electrolytic corrosion
- High flow rate
Applications
-
T.min. with control stem
- -20°C
-
T.min. with flow meter
- -7°C
-
T.max with control stem
- +95°C
-
T.max with flow meter
- +65°C
-
Press. max with mecahnical screw
- 10 bar
-
Press. max with flow meter
- 6 bar
-
Flow rate with flow meter
- 0.5 lt/min
-20°C: only with antifreeze liquid (glycol) in % max of 30%
-
T.min. with control stem
- -20°C
-
T.min. with flow meter
- -7°C
-
T.max with control stem
- +95°C
-
T.max with flow meter
- +65°C
-
Press. max with mecahnical screw
- 10 bar
-
Press. max with flow meter
- 6 bar
-
Flow rate with flow meter
- 0.5 lt/min
-20°C: only with antifreeze liquid (glycol) in % max of 30%
-
T.min. with control stem
- -20°C
-
T.min. with flow meter
- -7°C
-
T.max with control stem
- +95°C
-
T.max with flow meter
- +65°C
-
Press. max with mecahnical screw
- 10 bar
-
Press. max with flow meter
- 6 bar
-
Flow rate with flow meter
- 0.5 lt/min
-20°C: only with antifreeze liquid (glycol) in % max of 30%
-
T.min. with control stem
- -20°C
-
T.min. with flow meter
- -7°C
-
T.max with control stem
- +95°C
-
T.max with flow meter
- +65°C
-
Press. max with mecahnical screw
- 10 bar
-
Press. max with flow meter
- 6 bar
-
Flow rate with flow meter
- 0.5 lt/min
-20°C: only with antifreeze liquid (glycol) in % max of 30%
-
T.min. with control stem
- -20°C
-
T.min. with flow meter
- -7°C
-
T.max with control stem
- +95°C
-
T.max with flow meter
- +65°C
-
Press. max with mecahnical screw
- 10 bar
-
Press. max with flow meter
- 6 bar
-
Flow rate with flow meter
- 0.5 lt/min
-20°C: only with antifreeze liquid (glycol) in % max of 30%