Centrifugal separator having an improved flow and system comprising such a centrifugal separator

US11938489B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-11938489-B2
Application numberUS-202017762725-A
CountryUS
Kind codeB2
Filing dateNov 11, 2020
Priority dateNov 13, 2019
Publication dateMar 26, 2024
Grant dateMar 26, 2024

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A centrifuge (1) for separating intermixed particulate material of different specific gravity. The centrifuge (1) comprising a centrifuge bowl (10) having a plurality of annular recesses (19), a housing (30), an inlet (17), and means for rotating the centrifuge bowl (10) about the central axis (15). An annular cavity (31) is defined between the housing (30) and the centrifuge bowl (10). The annular cavity (31) is fluidly connected to the plurality of annular recesses (19) on the inner surface of the centrifuge bowl by a number of perforations in the centrifuge bowl wall (12). The annular cavity (19) has a fluid inlet to provide fluid into the annular cavity. The annular cavity (19) has an accumulated cross-sectional flow area (Aflow) at two different heights in the annular cavity that differs by at least a factor 10.

First claim

Opening claim text (preview).

The invention claimed is: 1. A centrifuge bowl ( 10 ) having a base, a circumferential wall surrounding a central axis and an open end substantially opposite of the base, said central axis passing through the base, the circumferential wall having an inner and outer surface, the inner surface ( 23 ) of the centrifuge bowl comprising a plurality of annular recesses ( 19 ) at axially spaced positions; wherein a first portion of the inner surface of the centrifuge bowl comprises one or more recesses having an angle with respect to the central axis ( 15 ) which is different than the angle of a second portion of the inner surface of the centrifuge bowl comprising one or more recesses; wherein the difference in inclination between the angles of the first portion of the inner surface and the second portion of the inner surface is at least 3 degrees to 5 degrees. 2. The centrifuge bowl ( 10 ) according to claim 1 , wherein the second portion of the inner surface is located closer to the centrifuge bowl base ( 11 ) than the first portion of the inner surface and that the angle of the second portion of the inner surface is greater than the angle of the first portion of the inner surface. 3. The centrifuge bowl ( 10 ) according to claim 1 , wherein the centrifuge bowl wall may substantially be shaped as a half sphere or a paraboloid. 4. The centrifuge bowl ( 10 ) according to claim 1 , wherein the difference in angles of the first portion of the inner surface and the second portion of the inner surface is between 5 degrees and 15 degrees. 5. The centrifuge bowl ( 10 ) according to claim 1 , wherein a recess distance between recesses, measured from an upper edge of an annular recess to a lower edge of the next recess, varies. 6. The centrifuge bowl ( 10 ) according to claim 1 , wherein a recess distance is varied by having different sized spacings between the recesses. 7. The centrifuge bowl ( 10 ) according to claim 1 , wherein a first lower portion of the inner surface comprises recesses that is more spaced than recesses in a second portion of the inner surface. 8. A centrifuge ( 1 ) for separating intermixed particulate material of different specific gravity comprising: a centrifuge bowl ( 10 ) having a base ( 11 ), a circumferential bowl wall ( 12 ) surrounding a central axis ( 15 ) and an open end substantially opposite of the base ( 11 ), said central axis ( 15 ) passing through the base ( 11 ), the circumferential bowl wall ( 12 ) having an inner and outer surface, said inner surface comprising a plurality of annular recesses ( 19 ); a housing ( 30 ) for accommodating the centrifuge bowl ( 10 ), said housing ( 30 ) having a base ( 34 ) located in the central axis ( 15 ) and a circumferential housing wall ( 33 ) surrounding the central axis ( 15 ); an inlet ( 17 ) configured to allow entry of a slurry into the centrifuge bowl ( 10 ), preferably arranged substantially in parallel with the central axis ( 15 ); means for rotating the centrifuge bowl ( 10 ) about the central axis ( 15 ); an upper portion of the housing wall ( 33 ) is connected to an upper portion of the bowl wall ( 46 ), and the base ( 11 ) of the centrifuge bowl is connected to the base ( 34 ) of the housing thereby defining an annular cavity ( 31 ) between the bowl wall ( 12 ) and the housing wall ( 33 ); the annular cavity ( 31 ) being fluidly connected to the plurality of annular recesses ( 19 ) on the inner surface of the centrifuge bowl by a number of perforations in the bowl wall ( 12 ); a fluid inlet fluidly connected to the annular cavity ( 31 ), wherein a first portion of the inner surface of the centrifuge bowl comprising one or more recesses has an angle with respect to the central axis ( 15 ) which is different than the angle of a second portion of the inner surface of the centrifuge bowl comprising one or more recesses; wherein the difference in inclination between the angles of the first portion of the inner surface and the second portion of the inner surface is at least 3 degrees to 5 degrees. 9. The centrifuge according to claim 8 , wherein the second portion of the inner surface of the centrifuge bowl is located closer to the centrifuge bowl base ( 11 ) than the first portion of the inner surface of the centrifuge bowl and that the angle of the second portion of the inner surface is greater than the angle of the first portion of the inner surface. 10. The centrifuge according to claim 8 , wherein the difference in angles of the first portion of the inner surface and the second portion of the inner surface is between 5 degrees and 15 degrees. 11. A centrifuge ( 1 ) for separating intermixed particulate material of different specific gravity comprising: a centrifuge bowl ( 10 ) having a base ( 11 ), a circumferential bowl wall ( 12 ) surrounding a central axis ( 15 ) and an open end substantially opposite of the base ( 11 ), said central axis ( 15 ) passing through the base ( 11 ), the circumferential bowl wall ( 12 ) having an inner and outer surface, said inner surface comprising a plurality of annular recesses ( 19 ); a housing ( 30 ) for accommodating the centrifuge bowl ( 10 ), said housing ( 30 ) having a base ( 34 ) located in the central axis ( 15 ) and a circumferential housing wall ( 33 ) surrounding the central axis ( 15 ); an inlet ( 17 ) configured to allow entry of a slurry into the centrifuge bowl ( 10 ), preferably arranged substantially in parallel with the central axis ( 15 ); means for rotating the centrifuge bowl ( 10 ) about the central axis ( 15 ); an upper portion of the housing wall ( 33 ) is connected to an upper portion of the bowl wall ( 46 ), and the base ( 11 ) of the centrifuge bowl is connected to the base ( 34 ) of the housing thereby defining an annular cavity ( 31 ) between the bowl wall ( 12 ) and the housing wall ( 33 ); the annular cavity ( 31 ) being fluidly connected to the plurality of annular recesses ( 19 ) on the inner surface of the centrifuge bowl by a number of perforations in the bowl wall ( 12 ); a fluid inlet fluidly connected to the annular cavity ( 31 ), wherein an accumulated cross-sectional flow area (A flow ) at two different heights in the annular cavity ( 31 ) differs by at least a factor of 10 , such that a first section of the annular cavity ( 52 ) is at least partially separated from a second section of the annular cavity ( 53 ). 12. The centrifuge ( 1 ) for separating intermixed particulate material according to claim 11 , wherein the A flow at two different heights in the annular cavity ( 31 ) differs by at least a factor of 100. 13. The centrifuge ( 1 ) for separating intermixed particulate material according to claim 11 , wherein the annular cavity ( 31 ) comprises at least one barrier member ( 50 ) adapted to at least partially separate the annular cavity ( 31 ) into at least a first and second section ( 52 , 53 ). 14. The centrifuge ( 1 ) for separating intermixed particulate material according to claim 13 , wherein the at least one barrier member ( 50 ) is integrated in the bowl wall ( 12 ) and/or the housing wall ( 33 ). 15. The centrifuge ( 1 ) for separating intermixed particulate material according to claim 14 , wherein the barrier member ( 50 ) comprising an orifice member ( 201 ). 16. The centrifuge ( 1 ) for separating intermixed particulate material according to claim 11 , wherein the centrifuge ( 1 ) is configured to have a pressure gradient in the annular cavity ( 31 ) along the outer surface of the centrifuge bowl wall that has a positive and a negative value. 17. The centrifuge ( 1 ) for separating intermixed particulate mat

Assignees

Inventors

Classifications

  • B03B5/32Primary

    using centrifugal force · CPC title

  • B04B1/08Primary

    of conical shape · CPC title

  • Rotary bowls (centrifugal casting machines B22D) · CPC title

  • B04B1/00Primary

    Centrifuges with rotary bowls provided with solid jackets for separating predominantly liquid mixtures with or without solid particles · CPC title

  • Centrifuges with rotary bowls in which solid particles or bodies become separated by centrifugal force and simultaneous sifting or filtering · CPC title

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What does patent US11938489B2 cover?
A centrifuge (1) for separating intermixed particulate material of different specific gravity. The centrifuge (1) comprising a centrifuge bowl (10) having a plurality of annular recesses (19), a housing (30), an inlet (17), and means for rotating the centrifuge bowl (10) about the central axis (15). An annular cavity (31) is defined between the housing (30) and the centrifuge bowl (10). The ann…
Who is the assignee on this patent?
Smidth As F L
What technology area does this patent fall under?
Primary CPC classification B03B5/32. Mapped technology areas include Operations & Transport.
When was this patent published?
Publication date Tue Mar 26 2024 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 1 related publication on this page (citations in our corpus or others sharing the same primary CPC).