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METHOD ELEKTROSEPARATSII MINERALS in alternating electric field bifilar winding and Electroseparators FOR ITS IMPLEMENTATION (VARIANTS)

机译:交替电场双线绕组和电隔离器中的ELEKTROSEPARATSII矿物的实现方法(变体)

摘要

1. A method elektroseparatsii mineral materials in an alternating electric field bifilar winding consists in that the granular material is a mixture of fine powder particles fed onto the surface of bifilar winding, and comprising the "shooting" of particles from the surface of bifilar winding, characterized in that the surface of bifilar winding create a zone from a mixture of fine powder particles in the state elektropsevdokipyaschego charged particle bed, and inside elektropsevdokipyaschego charged particle bed zone osusches tvlyayut selective simultaneous capture of charged particles a tangential component of a nonuniform electric field bifilar windings, and synchronously captured charged particles are removed from zone elektropsevdokipyaschego charged bed of particles on a trajectory in the form of a traveling wave on the surface of bifilar winding in a direction perpendicular to the winding direction of the winding turns, the operation being carried out repeatedly at different frequencies of the alternating electric field bifilar winding, and the particles inside elektropsevd the fluidized bed is charged directly into the ionized region of a nonuniform electric field bifilar winding and / or a static pre-charge the electric charge to flow onto the surface of bifilar obmotki.2. A method according to claim 1, characterized in that in the granular material of a mixture of fine particles of the powder exposed on the surface of the winding running transversely to the winding coils of electric field generated by the polyphase obmotkoy.3. A method according to claim 1, characterized in that the separation of the particles produced in the low temperature field,
机译:1.交变电场双线绕组中的elektroseparatsii矿物材料的方法,其特征在于,粒状材料是送入双线绕组表面的细粉颗粒的混合物,并且包括从双线绕组表面“捕获”颗粒,其特征在于双线绕组的表面由状态为elektropsevdokipyaschego的带电粒子床中的细粉颗粒混合物形成一个区域,而在elektropsevdokipyaschego的带电粒子床区域内则通过tvlyayut选择性同时捕获带电粒子的非均匀电场双线正切分量绕组,同步捕获的带电粒子以垂直于绕组匝数方向的方向在双股绕组表面上以行波的形式从轨迹上的带电粒子带区域移出,并进行操作重复不同的频率交变电场双线绕组的数量,流化床内部的电介质被直接带入非均匀电场双线绕组的电离区域和/或静态预充电,使电荷流到双线束表面.2。 2.根据权利要求1所述的方法,其特征在于,在暴露于绕组表面上的粉末的细颗粒混合物的颗粒状材料中,所述绕组的表面横向于由多相表层绕组产生的电场的绕组线圈。3。 2.根据权利要求1所述的方法,其特征在于,分离在低温场中产生的颗粒,

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