The Drum Separator

Fe Drum Separator


Contrary to the usual separators subsequent generation with wet drum separators assigned to use specific magnet assemblies, which in turn judged upgrade to a 120% within the normal magnetic force list in the entire operating range in which the actual slurry goes.

A drum separator successfully enrichment in terms of iron ore and also heavy press for decades. Everywhere in terms of iron ore processing many decent machines have putthrough which is usually up to 28 to/h.
The effect is not only a kind of decrease in the cost optimization of products, but also with an increase in volume and restore performance and displays each fund and operational cost savings.
 
It is suitable for incredibly fine-grained ingredients (<10µm). It enriches the emphasis of the large gradient permanent magnet filtering to a extremely overflowing waste. In more compact throughput rates, in addition, it successfully washes dirtied degreasing fluids as well as other fluids. It's powerful neodymium magnetic technique makes sure dependable splitting up intended for these feed styles as well.

Your water streams by way of a semi-circular splitting holding chamber down below some sort of steel drum to be able to that this magnetisable particles are generally limited. A new tube comprising permanent magnetic dvds placed inside drum makes this solid, high-gradient permanent magnet discipline. Your particular everlasting magnets produce in particular large discipline gradients, which might be important intended for prosperous splitting up, while is the event along with all permanent magnet separators. Through twisting this drum, this filtering dessert is elevated from the slurry plus the permanent magnet discipline.


Non Ferrous Drum Separator

The new generation Non-Ferrous Metal Separator ensures more profitability for processing fine fractions! The machine provides the economic basis for every recycling system involving the extraction of non-ferrous metals. Thanks to its reliability and long service life, it ensures an optimal operating result over the long term.

After optimization of the rotational speed, the non-ferrous metal separator now achieves even better results when separating non-ferrous metals from fine fractions.

See the benefits of operating at speeds of up to 4,000 rpm and a field frequency up to 1.27 kHz, the new recycling machines are capable of increasing its extraction rate by 20 to 30 per cent compared with a non-ferrous metal separator operating at 2,600 rpm. The result is, however, strongly dependent on the material involved. Depending on the grain size, the extraction rate increases with increasing speed and a field frequency, up to a maximum value. This maximum is reached at a speed of 3,500 - 4,000 rpm. It is possible to significantly increase the extraction of non-ferrous metals from automotive shredder residue as well as slag for particle sizes of 0 - 4 mm and 4 - 8 mm as recent installations have shown. This comes at no compromise to the quality of the non-ferrous product which remains at highly sellable purity levels.


Processing fine material

Most Non-Fe-Separators now offer a complete system concept without the need to add any interfaces, installations or control equipment. It is the complete solution for increased efficiency, control and adjustment needed in the sorting of metal particals. The processing of grainy material has become a popular recycling business in recent years. With separate magnetic drums and magnetic head pulleys, and the non-ferrous separator, many manufacturers have been offering successful solutions in this field for several years.
 
What makes the these machines extraordinary is the fact that it unites into a single, compact unit. a drum separator works best in the range of 1 to 25 mm (1/25 to 1 inch) – a range where most eddy current systems have trouble recovering non-ferrous material.


The machine is commonly used in sodium processing plants, the building materials industry and the industrial minerals sector. It is ideal for sorting free flowing bulk materials in the fine-grained particle range from 200 μm up to several millimetres.

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