The cooling system for power plants is important to ensure that equipment operates properly with the appropriate filters, preventing equipment failure and unplanned production stoppages.
Efficient magnetic filters play a significant role in improving the performance of filtration devices and filter systems/fluid control, enhancing/reducing the running costs of systems, and increasing operational rates. They have improved the reliability of systems at nuclear power plants in the Czech Republic. They were introduced to reduce failures of various mechanical devices, such as electric valves in steam lines, which were previously considered impossible to address. Magnum was introduced in the steam generator blowdown sample line of steam generator number 4 at the nuclear power plant. This area is of great interest to the owners and operators of the power plant from the perspectives of efficiency (energy is wasted during the blowdown process, but the efficiency of the steam generator is improved) and safety (especially in nuclear power plants, where the entire steam generation process is strictly managed). In the future, it will be necessary to further increase power generation efficiency to reduce greenhouse gas (carbon dioxide) emissions. Before the installation of Magnum, pollutants continued to circulate through conventional filters (most of which were smaller than 1 micron). These hard and sharp metal particles likely caused chain wear, eroding all valves and stationary parts of the system, thereby threatening the overall safety of the nuclear power plant.
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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. When used in conjunction with conventional cartridge filters and the like, it reliably removes fine iron powder that cannot be captured by filter paper but can cause significant damage to hydraulic circuits and gearboxes if accumulated. This next-generation magnetic filter is essential for reducing maintenance frequency and maintaining performance. Its proven track record extends to aircraft, supercars, and wind power generation systems.
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Hydraulic Systems - Hydraulic Generating Equipment for Factories - Hydraulic Equipment 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 Drive 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 Systems for Injection Molding Molds - Cooling Lines for Industrial and Power Generation - Steam Lines for Industrial and Power Generation (liquid only) - Cooling Liquid for Steelmaking Lines - Quenching Liquid Processing Machines and Machine Tools - Various Cutting Fluids for Lathes, Milling Machines, etc. - Processing Oil for Electric Discharge Machines - Various Cleaning Fluids - Hardening Cooling Liquid
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