1. Multifunction magnetic filter for hydraulic circuits
2. Polyamide PA66 + 30% FV diverter body
3. Cartridge body in polyamide PA66 + 30% FV
4. Cap construction in polyamide PA66 + 33% FV
5. Stainless steel filter AISI 304, 800 microns
6. EPDM PEROX as a hydraulic seal
7. Magnetic element Neodymium RE35 11.000 Gauss.
8. Brass ball valves according UNE-EN 12165
9. Manual air vent valve on cartridge cap
10. Maximum working pressure 4 bar
11. Maximum working temperature 90ºC
12. Connection on system side with ball valve F-F according UNE-EN ISO 228
13. Connection on male G3/4” UNE-EN ISO 228
14. Compatible fluid: Water and water with glycol
By going through a set course, the fluid is forced to cross the mesh of cartridge and enter the filtration chamber, where simultaneous action of magnet, filtering cartridge and the specific geometry in different phases, the water is filtered from the ferrous sludge. First, the sudden cross-section variation (the filtering chamber has a greatest diameter than the conduit) slows down the fluid motion and, consequently the entrainment rate of the particles suspended in it, this preventing them from avoiding the action exerted by the magnetic fields. The large particles collide with the mesh of the filter cartridge and then slow down before circulation again. The magnet placed inside a cylinder at the centre of the filtration chamber, attracts all the impurities having magnetic characteristics. In this way, all magnetic (ferrous residues) and nonmagnetic (algae, sludge, sand, etc.) contaminants in the system are retained in the filtration chamber.
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