Special magnetic filters are widely used in quenching and scale removal processes at steel mills around the world to suppress iron-based contamination and in lubricants and hydraulic equipment.
Quenching and descaling operations at the steel mill The issues of fine contamination such as iron and steel chips, rust, and iron oxide are caused by the quenching and scaling removal processes. Effective magnetic filters in the steel industry provide significant benefits in improving the performance of water circulation systems, cooling systems, filtration devices, filter systems, and fluid adjustments, playing a major role in improving and reducing system running costs, extending the lifespan of system components, enhancing reliability, and increasing critical uptime. Magnum is a simple and effective technology. In the "quenching" process, steel is heated for a certain period to harden it, and then rapidly cooled by immersing it in water or oil. However, an important step is that the water used causes the scale on the surface of the steel to flake off. This contaminates the fluid systems such as cooling water. The water is typically sent to a large settling tank, where larger chips settle out. However, smaller chips and contaminants are recirculated and reintroduced into the system and process. As a result, this can lead to blockages in valves, rotary couplings, pumps, and spray nozzles.
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This is a new type of magnetic filter that has a special internal structure, capable of capturing sub-micron particles with magnets while preventing clogging and reflow. By using it in conjunction with conventional cartridge filters and others, it reliably removes fine iron powder that cannot be captured by filter paper but can cause significant damage to hydraulic circuits and gearboxes when accumulated. It is an essential next-generation magnetic filter for reducing maintenance frequency and maintaining performance. This groundbreaking magnetic filter core technology leverages the advantages of traditional filters while overcoming their disadvantages. By installing it within the circuit, it efficiently removes fine wear particles without causing clogging or reflow. Its performance is recognized worldwide, maintaining the performance of aircraft, racing vehicles, and various hydraulic and lubrication equipment.
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Hydraulic Systems - Hydraulic Generating Equipment for Factories - Hydraulic Devices for Processing Machines, etc. - Hydraulic Testing Equipment - Construction Machinery - Ships - Mining Machinery - Agricultural Machinery - Railways Large Transmissions - Transmission for Wind Power Generation Equipment - Transmission for Coal Pulverizers in Thermal Power Plants - Transmission for Kilns, Coal Pulverizers, etc. in Cement Plants - Transmission for Feed Roller Drives in Factories - Transmission for Mixing and Calendar Machines in Factories - Transmission for Crushing, Grinding, and Smelting Processes in Mines and Metal Manufacturing Plants Automobiles and Motorcycles - Transmission Oil - Power Steering - Engine Oil Water Cooling and Heating Systems - Cooling System for Injection Molding Molds - Cooling Lines for Industrial and Power Generation - Steam Lines for Industrial and Power Generation (liquid only) - Cooling Liquid for Ironmaking Lines - Quenching Liquid Processing Machines and Machine Tools - Various Cutting Fluids for Lathes, Milling Machines, etc. - Processing Oil for Electric Discharge Machines - Various Cleaning Liquids - Hardening Cooling Liquid
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