Fine particle electric separator

The electric sorter configuration is a nearly elliptical closed loop, and the cut surface of the tube is rectangular, and its construction diagram is shown in FIG. In the figure, hot air is sent at one place, material is fed at three places, and 2 is a regulating valve. The material flows along the pipeline along with the hot air. A corona pole is installed at the pipeline 4, and 5 is a grounding pole. The fine-grained material entering the pipeline is charged in the BC section. Regardless of whether the conductor or non-conductor ore particles obtain electric charge in the corona field, due to different electrical properties, the charge adsorbed by the conductor ore particles is immediately transmitted through the grounding pole 6 and is discharged to the 8 places with the air flow, between the two. The middle mine is sorted again with air circulation. The electrode size (referring to the length of BC and CD) can also vary depending on the time required to charge and transform the selected mineral.
After the feedstock is fed from the upper part of the drum to the drumhead, it is driven by the drum to the dielectric liquid. At this time, the ore enters the electric field action zone formed between the sieve and the drum, and the dielectric is affected by the non-uniform electric field. The ore with a constant larger than the liquid is sucked on the drum, while the dielectric constant is lower than the liquid but is repelled and falls to the left through the sieve hole. The ore particles sucked on the filament of the drum rotate with the drum. When leaving the key position of the partition plate of the sieve plate, it falls into the groove on the right side, because the field strength at this point becomes small, and it is affected by liquid resistance and gravity, so it can be discharged.
After the two plates are connected to the power source, the dielectric fibers are polarized, and positive and negative charges appear at both ends, forming a high-gradient unit electric field, thereby generating a large amount of electric power, trapping the ore particles, and collecting the ore particles. The clustering effect has established a new trapping point. Studies have shown that the power F e can exceed 50 to 150 times the gravity, and the cutting area captured in the electric field exceeds 100 times the radius of the fiber medium, but is limited to the dielectric body. The surface of the fiber or sphere, when equal to or larger than the diameter of the fiber or sphere, the non-uniformity of the dielectric approaches zero. As long as the power is interrupted, the ore particles trapped on the surface of the fiber or sphere can be washed away immediately, so the new method has great advantages.

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