Nozzle separator bowl
10507473 ยท 2019-12-17
Assignee
Inventors
- Daniele Casa (Schio, IT)
- Robert Chaffiotte (Madison, CT, US)
- Damon Cecchellero (Schio, IT)
- Ivan Holzer (Graz, AT)
- Valeria Motterle (Schio, IT)
- Diego Accelli (Schio, IT)
Cpc classification
International classification
Abstract
The invention relates to a centrifugal separator bowl (4) for a nozzle separator (1). It is primarily characterized in that the bowl (4) is manufactured from one single piece and has an interior comprising pyramidal wall openings (12) pointing to openings (10) for the nozzles (11). The invention further relates to a centrifugal separator (1) using such centrifugal separator bowl (4). With such design a treatment of suspensions with high specific gravity, including of up to 2.0 and beyond is possible.
Claims
1. Centrifugal nozzle separator, comprising a bowl (4) manufactured from one single piece and defining pyramidal openings (12) pointing to openings (10) for nozzles (11), wherein the bowl (4) with pyramidal openings (12) further defines a path from an inlet for a suspension into the bowl (4) through each pyramidal opening (12) to the openings (10) for the nozzles (11) that is free from lips and free from an intervening structure, configured to allow flow of a suspension with solid particles from the bowl (4) through the pyramidal openings (12) to the nozzles (11) with minimized turbulence and without passing through an intervening structure that removes solids from the suspension.
2. Centrifugal nozzle separator according to claim 1, wherein each of the openings (10) for the nozzles (11) has a recess at the outside of the bowl (4), which recess is arranged on a trailing side of the opening (10) seen in rotation direction of the bowl (4).
3. Centrifugal nozzle separator according to claim 1, wherein the bowl (4) is manufactured from martensitic material.
4. Centrifugal nozzle separator according to claim 1, wherein the bowl (4) is cast from one piece.
5. Centrifugal nozzle separator according to claim 1, wherein the bowl (4) is forged from one piece.
6. A centrifugal nozzle separator, comprising: a bowl comprising an interior wall; and a plurality of radially outward extending pyramidal wall openings (12), each wall opening defined by smoothly converging portions of the interior wall to an apex configured to direct fluid flow to a respective nozzle opening (10) radially terminal to the respective pyramidal section in the bowl; wherein the bowl (4) is manufactured as a single piece and defines a path from an inlet for a suspension into the bowl (4) through each pyramidal opening (12) to the respective nozzle (11) that is free from lips and free from an intervening structure, thereby allowing a flow of suspension with solid particles from the inlet through the pyramidal openings (12) to the nozzles (11) with minimized turbulence and without passing through an intervening structure that removes solids from the suspension.
7. Centrifugal nozzle separator according to claim 6, wherein each of the nozzle openings (10) further comprises a recess at the periphery of the bowl (4), and each recess is oriented on a trailing side of a respective nozzle opening (10) in relation to the rotation direction of the bowl (4).
8. Centrifugal nozzle separator according to claim 6, wherein the bowl (4) is manufactured from a martensitic material.
9. Centrifugal nozzle separator according to claim 6, wherein each of the nozzle openings (10) further comprises a recess at the periphery of the bowl (4), and each recess is oriented on a trailing side of a respective nozzle opening (10) in relation to the rotation direction of the bowl (4).
10. Centrifugal nozzle separator of claim 1, wherein the bowl defines a solid section (17) circumferentially between each nozzle (11).
11. Centrifugal nozzle separator of claim 6, wherein the bowl defines a solid section (17) circumferentially between each nozzle (11).
12. A centrifugal nozzle separator, comprising: a feed pipe (2) defining an axis; at least one rotatable accelerator disc (3) coaxial to and circumscribing the feed pipe (2); and a rotatable bowl (4) coaxial to the feed pipe (2) and the at least one accelerator disc (3), the bowl (4) comprising an interior wall with outwardly converging wall sections, the converging wall sections defining a plurality of pyramidal openings (12) with a radially terminal nozzle opening (10), the pyramidal openings (12) circumferentially aligned around the bowl, the bowl (4) with pyramidal openings (12) being made from a single piece, wherein a path is defined for direction of a flow of suspension with solid particles from the feed pipe through each pyramidal opening (12) to a respective nozzle opening (10), the path being free from lips and free from an intervening structure that removes solids from the suspension, thereby minimizing turbulence of the suspension with solid particles through each pyramidal opening (12) to the respective nozzle opening (10).
Description
BRIEF DESCRIPTION OF THE DRAWING
(1) The invention is now disclosed in detail with reference to an exemplary embodiment shown in the accompanying drawing, where:
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DETAILED DESCRIPTION
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(10) As shown in