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Method and device based on double stator inductor arrangements for generating m-phase, high-frequency, polyharmonic traveling electromagnetic waves for use in various technological processes of electrodynamic separation of non-ferromagnetic, conductive materials.
Method and device based on double stator inductor arrangements for generating m-phase, high-frequency, polyharmonic traveling electromagnetic waves for use in various technological processes of electrodynamic separation of non-ferromagnetic, conductive materials.
Method and device based on double stator inductor arrangements for generating m-phase, high-frequency, polyharmonic electromagnetic traveling waves for use in various technological processes of electrodynamic separation of non-ferromagnetic, conductive materials. Methods and devices are presented with which it is possible to generate the smallest, non-ferromagnetic, electrical to separate conductive particles from a thin stream of particles. The basis for this is formed by high-frequency-capable double stator inductors of the appropriate design and with appropriate excitation. Also new is the commutation of the ribbon-shaped winding elements and the frequency sweeping mode, in which a wide range of the particles to be separated is detected.
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