Dual-fraction cyclones (with mesh)
Dust cyclone for plastics fi 470
Cyclone designed for separation of dust and plastic milling. Dust is separated from the coarser fraction through a mesh with a mesh of 3 mm (side outlet to which the filter bag and collection container, which are not included in the product, must be connected). Diameter of the inlet stub: from fi 100 mm to fi 160 mm.
4 512,80 zł brutto
3 668,94 zł netto
Dust cyclone for plastics fi 570
Cyclone designed for separation of dust and plastic milling. Dust is separated from the coarser fraction through a mesh with a mesh of 3 mm (side outlet to which the filter bag and collection container, which are not included in the product, must be connected). Diameter of the inlet stub: from fi 100 mm to fi 200 mm.
5 624,35 zł brutto
4 572,64 zł netto
Dust cyclone for plastics fi 800
Cyclone designed for separation of dust and plastic milling. Dust is separated from the coarser fraction through a mesh with a mesh of 3 mm (side outlet to which the filter bag and collection container, which are not included in the product, must be connected). Diameter of the inlet stub: from fi 160 mm to 250 mm.
8 805,24 zł brutto
7 158,73 zł netto
Dust collection system for plastic milling
We offer complete sets for separating dust (shatter, fine fraction) from ground plastics, based on two-fraction cyclones and fans manufactured by us. Sets are priced individually on the basis of established customer needs.
Two-fraction cyclones with mesh (dust separators) are specialized devices used in dust collection and pneumatic transport installations, which allow simultaneous separation of two different fractions of material. Thanks to the appropriately designed system and the built-in separation grid (perforated sheet), it is possible to separate heavier particles from lighter ones already at the stage of cyclone operation. Such a solution is used wherever we want to obtain cleaner material or prepare it for further processing. In our designs, we take care of the proper selection of body proportions and inlet diameter to ensure a stable air stream and maximum separation efficiency. We make double-fraction cyclones from durable steel and, if necessary, also in a stainless steel version, which ensures abrasion resistance and long-term operation in demanding conditions.
The design of a two-fraction cyclone is based on the classic principle of using centrifugal force, but an additional element here is a special perforated sheet placed in the appropriate place in the system. Its task is to retain finer particles, which in a traditional cyclone are mostly released through the central lower outlet. Thanks to this, we get two streams of material from one device - a heavier one, discharged through the lower central outlet, and a lighter one, retained and discharged through a separate side channel. Such a solution is particularly useful in plants processing raw materials of varying granulation, where it is necessary to quickly separate fractions. When selecting a cyclone for a specific plant, we take into account, among other things, the density of the material, the speed of air flow, the diameter of the cyclone and the type of filter mesh to ensure maximum efficiency and purity of the recovered material. Note - some fine material may escape through the central outlet, even though the particle size is smaller than the size of the hole in the perforated sheet.
Double-fraction cyclones with mesh are widely used in the wood, agricultural, recycling and food industries. They are most often used for separating the actual raw material (e.g., granules, milling, fertilizer) from fine dust (grindings), The possibility of using double-fraction cyclones with mesh in various configurations allows us to create installations tailored to individual technological processes. We offer both compact units for operation on single machines and components integrated into large extraction systems. This provides our customers with a device that increases separation efficiency, reduces filter load and improves the economics of the entire process.