PTMS MAGNETIC SEPARATOR's High Magnetic Field Strength and Efficient Sorting Capability: A Technological Leap from "Coarse Screening" to "Precision Filtration". Traditional electromagnetic separators typically feature magnetic fields of 5,000-8,000 Gauss, which can only remove ferromagnetic particles larger than 50 microns in raw materials. However, they prove ineffective against weakly magnetic iron impurities (such as hematite and limonite) found in non-metallic minerals like kaolin and quartz sand.
The high-field permanent magnet PTMS MAGNETIC SEPARATOR system has achieved breakthroughs through two technological innovations: First, it utilizes third-generation rare-earth neodymium iron boron (NdFeB) permanent magnet materials with a magnetic energy product of 45-55 MGOe, which is over ten times greater than traditional ferrite magnets. Second, the "multi-pole focused magnetic system" design enhances magnetic field gradients to over 2000 T/m by optimizing pole arrangement and magnetic medium geometry, creating a composite sorting environment combining "strong magnetic fields with high gradient".
The dual drive of "policy incentive + market premium" makes high-field permanent magnet PTMS MAGNETIC SEPARATOR upgrade from a simple "production tool" to a "strategic asset" for enterprises to participate in green competition. This efficient sorting ability is also reflected in the adaptability to complex materials.
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