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Recycling of abrasives from wasted slurry by superconducting magnetic separation

机译:通过超导磁分离从废浆液中回收磨料

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Abrasives have been recovered from the slurry wasted of the factory where the silicon wafers for solar battery are processed. The slurry consists of oil and abrasives and is used in the wire saw. The viscosity of the slurry is carefully controlled to maintain a high cutting performance though it tends to be high as the silicon powder is accumulated in the slurry. The cutting performance of the slurry decreases as the amount of the silicon powder increases. The abrasives, however, still have enough performance to cut the silicon wafers. Iron segments of the wire saw were found to attach to the SiC abrasives. The iron segments magnetize the abrasives in the mechanochemical process and thus reduce the cutting performance of the abrasives. Due to the iron segments presence the abrasives with poor cutting performance could be separated from the slurry by means of superconducting magnetic separator. After the magnetic separation a centrifugal separator was used to separate the silicon powder. It was confirmed that the superconducting magnetic separation is applicable to this practical application.
机译:已从工厂的废浆中回收了磨料,在工厂中加工了用于太阳能电池的硅片。该浆料由油和研磨剂组成,用于线锯中。浆液的粘度要小心控制,以保持较高的切削性能,尽管随着硅粉积聚在浆液中往往会变高。浆料的切削性能随着硅粉量的增加而降低。然而,研磨剂仍然具有足以切割硅晶片的性能。发现线锯的铁片附着在SiC磨料上。铁片段在机械化学过程中将磨料磁化,从而降低了磨料的切削性能。由于铁段的存在,切削性能差的磨料可通过超导磁选机从泥浆中分离出来。磁分离后,使用离心分离器分离硅粉。已经证实,超导磁分离适用于该实际应用。

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