Patent · US6467631B2 · B2 · US
Air sifting apparatus
- (11) Publication number
- US6467631B2
- (21) Application number
- 09/775,758
- (22) Filing date
- 2001-02-01
- (30) Priority date
- 2001-02-01
- (43) Publication date
- 2002-10-22
- (45) Date of grant
- 2002-10-22
- (51) IPC
- B03B 4/00; B03B 4/06; B07B 11/06; B07B 4/08
- (52) CPC
- B07B Separating solids from solids by sieving, screening, sifting or by using gas currents; separating by other dry methods applicable to bulk material, e.g. loose articles fit to be handled like bulk material: 11/06, 4/08
- B03B Separating solid materials using liquids or using pneumatic tables or jigs: 4/005, 4/065
- (73) Assignee
- allmineral LLC
- (72) Inventors
- Walter Strangalies; Walter Jungmann; Richard J. Snoby
- (54) Title
- Air sifting apparatus
- (57) Abstract
An air sifting apparatus is provided for preparatory concentration of raw material including coal, and includes a material feed-in device, a material bed support device, an air jig plenum, and a discharge control device. The material bed support device receives material from the material feed-in device and has a surface having a plurality of openings for a gaseous medium introduced from underneath the material bed support device, which is operable to transport material in coordination with the flow of gaseous medium through the openings to effect loosening and stratification of the material into a layer of relatively heavier material, and a layer of relatively lighter material on the heavier material. The air jig plenum communicates with the underside of the apparatus for guiding gaseous medium thereto and produces constant air flow through the openings of the support device and a pulsating air flow, overlaid on the constant air flow, for pulse impacting material on the support device. The discharge control device controls discharge of material from the support device such that relatively lighter material is directed to one location and relatively heavier material is directed to another location.
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Claims (26)
- An air sifting apparatus for preparatory concentration of raw material, comprising: a material feed-in device; a material bed support device disposed relative to the material feed-in device for receiving therefrom material to be prepared and having a surface on which the material is supported, the surface having a plurality of openings for passage therethrough of a gaseous medium introduced from underneath the material bed support device, the material bed support device being operable to transport the material along the surface in coordination with the flow of the gaseous medium through the openings into contact with the material so as to effect loosening of the material and stratification of the material into a layer of relatively heavier material on the surface and a layer of relatively lighter material on the layer of relatively heavier material; an air jig plenum communicated with the underside of the surface of the air sifting apparatus for guiding the gaseous drying medium thereto, the air jig plenum being operable to guide a constant gaseous medium flow constantly through the openings in the surface of the material bed support device into contact with the material on the surface of the material bed support device to promote loosening of the material and the air jig plenum being operable to guide a pulsating gaseous medium flow into contact with the material on the surface of the material bed support device at the same time that the air jig plenum guides the constant gaseous medium flow through the openings in the surface of the material bed support device into contact with the material, whereby the constant gaseous medium flow acts to loosen the material by lifting thereof while the pulsating gaseous medium flow acts contemporaneously during the lifting of the material to promote stratification of the material into a relatively heavier material layer and a relatively lighter material layer with the stratification being accomplished without the segregation into a location exteriorly of the material bed support device of any portion of the material from any other portion of the material; and a discharge control device for controlling the discharge of the material from the material bed support device after the material on the material bed support device has been simultaneously subjected to the continuous gaseous medium flow and the pulsating gaseous medium flow such that, for the first time in the handling of the material by the air sifting apparatus, a segregation into a location exteriorly of the material bed support device of a portion of the material from another portion of the material is effected, the discharge control device operating to direct the relatively lighter material to a relatively lighter material discharge location and to direct the relatively heavier material to another location separate from the relatively lighter material discharge location.
- An air sifting apparatus according to claim 1 wherein the air sifting apparatus is operable to prepare a preparatory concentration of coal.
- An air sifting apparatus according to claim 1, wherein the air jig plenum operates with pulsating gaseous medium flow at a pressure which is substantially the same as the pressure of the constant gaseous medium flow.
- An air sifting apparatus according to claim 1, wherein the air jig plenum is operated to convey the pulsating gaseous medium flow at a pressure which is greater than the pressure of the constant gaseous medium flow.
- An air sifting apparatus according to claim 1, wherein the air jig plenum is operated to convey the pulsating gaseous medium flow at a flow volume which is less than the flow volume of the constant gaseous medium flow.
- An air sifting apparatus according to claim 1, wherein the air jig plenum includes a first flow generator for producing the constant gaseous medium flow, and a second flow generator for producing the pulsating gaseous medium flow.
- An air sifting apparatus according to claim 1, wherein the air jig plenum includes a single flow generator for producing the constant gaseous medium flow and the pulsating gaseous medium flow, and a pressure regulator for adjusting the gaseous medium flows of said flow generator.
- An air sifting apparatus according to claim 1, wherein the surface of the material bed support device is formed by a plate having holes.
- An air sifting apparatus according to claim 1, wherein the surface of the material bed support device is formed by a screen.
- An air sifting apparatus according to claim 8, wherein the material bed support device shall cause a pressure drop, when measured from the plenum side versus the material bed side, that is at least 80% of a pressure drop measured through the material bed.
- An air sifting apparatus according to claim 9, wherein the material bed support device shall cause a pressure drop, when measured from the plenum side versus the material bed side, that is at least 80% of a pressure drop measured through the material bed.
- An air sifting apparatus according to claim 1, wherein the material feed-in device is operable to feed material to be prepared to the material bed support device at a substantially uniform feed dosage.
- An air sifting apparatus according to claim 12, wherein the material feed-in device is a star gate feeder.
- An air sifting apparatus according to claim 13, wherein the star gate feeder includes a housing, a drive shaft, and a plurality of vanes each having one end rigidedly secured to the drive shaft and an opposite end slidable along an inner wall of the housing as the vanes are rotatably driven by the drive shaft, the vanes being angularly spaced from one another such that adjacent vanes form pockets therebetween for receiving a dose of material to be fed onto the material bed support device, and wherein each vane is formed of a rubber material whose hardness grade or durometer or durometer varies along the height of the vane.
- An air sifting apparatus according to claim 14, wherein the opposite end of each vane has a relatively lower hardness grade or durometer than the one end of the vane.
- An air sifting apparatus according to claim 14, wherein each vane is formed over at least 5% of its total length as measured from its opposite end of the rubber material of the relatively lowest hardness grade or durometer.
- An air sifting apparatus according to claim 14, wherein each vane is formed over at least 25% of its total length as measured from its one end of the rubber material of the relatively highest hardness grade or durometer.
- An air sifting apparatus according to claim 14, wherein the opposite end of each vane is configured in a ball shape.
- An air sifting apparatus according to claim 1, wherein the discharge control device includes means for determining the position of the border between the relatively heavier material layer and the relatively lighter material layer.
- An air sifting apparatus according to claim 19, wherein the layer border determining means is a mechanical sensor for sensing the different thicknesses of the relatively heavier material and the relatively lighter material.
- An air sifting apparatus according to claim 19, wherein the layerborder determining means is a nuclear sensor for sensing the different densities of the relatively heavier material and the relatively lighter material.
- An air sifting apparatus according to claim 19, wherein the layer border determining means is an optical sensor for sensing the different colors of the relatively heavier material and the relatively lighter material.
- An air sifting apparatus according to claim 1, wherein the discharge control device includes a weir, for automatically controlling the discharge of the relatively lighter material, the height of which is adjustably settable as a function of the thickness of the relatively heavier material layer in its role as a sifting bed.
- An air sifting apparatus according to claim 1, wherein the material feed-in device is a star gate feeder having an adjustable rate of rotation.
- An air sifting apparatus according to claim 1, and further comprising a housing for enclosing the material bed support device in a manner which prevents the outward movement of dust.
- An air sifting apparatus according to claim 25, wherein the housing for enclosing the material bed support device is secured to the material bed support device via a seal.
Description
The present invention relates to an air sifting or settling apparatus for preparatory concentration of raw materials including, in particular, coal.
Known air sifting apparatus comprise a material feed device, a material bed support device with holes through which flows air guided by an air plenum disposed underneath the material bed support device, the inflowing air operating to loosen the material which has been fed onto the material bed support device in a manner by which the material on the material bed support device is stratified into layers of relatively lighter material on top of layers of relatively heavier material, and a usual discharge control device for controlling the separated discharge of the relatively lighter material and the relatively heavier material. An air sifting apparatus of this type is described, for example, in the publication Schubert “Aufbereitung fester mineralischer Rohstoffe”, Band II VEB Deutscher Verlag fuer Grundstoffindustrie, Leipzig, Pages 89 and 90.
In considering the known air sifting apparatus, it has typically been viewed as a disadvantage that, in comparison with wet sifting machines having the same operating principle, only a small separation distinction exists between the heavier material and the lighter material. In this regard, a satisfactory sorting result can be expected only if the density difference between the components of the material to be separated is sufficiently large and if the material is narrowly classified within a relatively narrow size range - that is, if it lies within a narrowly defined kernel or grain size range.
Citations (7)
- US2512422A
- US3007577A
- US3472379A
- US3539001A
- US3852168A
- SU1033235A2
- US5244099A
Record as JSON
{
"publication_number": "US6467631B2",
"country": "US",
"kind": "B2",
"title": "Air sifting apparatus",
"abstract": "An air sifting apparatus is provided for preparatory concentration of raw material including coal, and includes a material feed-in device, a material bed support device, an air jig plenum, and a discharge control device. The material bed support device receives material from the material feed-in device and has a surface having a plurality of openings for a gaseous medium introduced from underneath the material bed support device, which is operable to transport material in coordination with the flow of gaseous medium through the openings to effect loosening and stratification of the material into a layer of relatively heavier material, and a layer of relatively lighter material on the heavier material. The air jig plenum communicates with the underside of the apparatus for guiding gaseous medium thereto and produces constant air flow through the openings of the support device and a pulsating air flow, overlaid on the constant air flow, for pulse impacting material on the support device. The discharge control device controls discharge of material from the support device such that relatively lighter material is directed to one location and relatively heavier material is directed to another location.",
"claims": [
"1. An air sifting apparatus for preparatory concentration of raw material, comprising: a material feed-in device; a material bed support device disposed relative to the material feed-in device for receiving therefrom material to be prepared and having a surface on which the material is supported, the surface having a plurality of openings for passage therethrough of a gaseous medium introduced from underneath the material bed support device, the material bed support device being operable to transport the material along the surface in coordination with the flow of the gaseous medium through the openings into contact with the material so as to effect loosening of the material and stratification of the material into a layer of relatively heavier material on the surface and a layer of relatively lighter material on the layer of relatively heavier material; an air jig plenum communicated with the underside of the surface of the air sifting apparatus for guiding the gaseous drying medium thereto, the air jig plenum being operable to guide a constant gaseous medium flow constantly through the openings in the surface of the material bed support device into contact with the material on the surface of the material bed support device to promote loosening of the material and the air jig plenum being operable to guide a pulsating gaseous medium flow into contact with the material on the surface of the material bed support device at the same time that the air jig plenum guides the constant gaseous medium flow through the openings in the surface of the material bed support device into contact with the material, whereby the constant gaseous medium flow acts to loosen the material by lifting thereof while the pulsating gaseous medium flow acts contemporaneously during the lifting of the material to promote stratification of the material into a relatively heavier material layer and a relatively lighter material layer with the stratification being accomplished without the segregation into a location exteriorly of the material bed support device of any portion of the material from any other portion of the material; and a discharge control device for controlling the discharge of the material from the material bed support device after the material on the material bed support device has been simultaneously subjected to the continuous gaseous medium flow and the pulsating gaseous medium flow such that, for the first time in the handling of the material by the air sifting apparatus, a segregation into a location exteriorly of the material bed support device of a portion of the material from another portion of the material is effected, the discharge control device operating to direct the relatively lighter material to a relatively lighter material discharge location and to direct the relatively heavier material to another location separate from the relatively lighter material discharge location.",
"2. An air sifting apparatus according to claim 1 wherein the air sifting apparatus is operable to prepare a preparatory concentration of coal.",
"3. An air sifting apparatus according to claim 1, wherein the air jig plenum operates with pulsating gaseous medium flow at a pressure which is substantially the same as the pressure of the constant gaseous medium flow.",
"4. An air sifting apparatus according to claim 1, wherein the air jig plenum is operated to convey the pulsating gaseous medium flow at a pressure which is greater than the pressure of the constant gaseous medium flow.",
"5. An air sifting apparatus according to claim 1, wherein the air jig plenum is operated to convey the pulsating gaseous medium flow at a flow volume which is less than the flow volume of the constant gaseous medium flow.",
"6. An air sifting apparatus according to claim 1, wherein the air jig plenum includes a first flow generator for producing the constant gaseous medium flow, and a second flow generator for producing the pulsating gaseous medium flow.",
"7. An air sifting apparatus according to claim 1, wherein the air jig plenum includes a single flow generator for producing the constant gaseous medium flow and the pulsating gaseous medium flow, and a pressure regulator for adjusting the gaseous medium flows of said flow generator.",
"8. An air sifting apparatus according to claim 1, wherein the surface of the material bed support device is formed by a plate having holes.",
"9. An air sifting apparatus according to claim 1, wherein the surface of the material bed support device is formed by a screen.",
"10. An air sifting apparatus according to claim 8, wherein the material bed support device shall cause a pressure drop, when measured from the plenum side versus the material bed side, that is at least 80% of a pressure drop measured through the material bed.",
"11. An air sifting apparatus according to claim 9, wherein the material bed support device shall cause a pressure drop, when measured from the plenum side versus the material bed side, that is at least 80% of a pressure drop measured through the material bed.",
"12. An air sifting apparatus according to claim 1, wherein the material feed-in device is operable to feed material to be prepared to the material bed support device at a substantially uniform feed dosage.",
"13. An air sifting apparatus according to claim 12, wherein the material feed-in device is a star gate feeder.",
"14. An air sifting apparatus according to claim 13, wherein the star gate feeder includes a housing, a drive shaft, and a plurality of vanes each having one end rigidedly secured to the drive shaft and an opposite end slidable along an inner wall of the housing as the vanes are rotatably driven by the drive shaft, the vanes being angularly spaced from one another such that adjacent vanes form pockets therebetween for receiving a dose of material to be fed onto the material bed support device, and wherein each vane is formed of a rubber material whose hardness grade or durometer or durometer varies along the height of the vane.",
"15. An air sifting apparatus according to claim 14, wherein the opposite end of each vane has a relatively lower hardness grade or durometer than the one end of the vane.",
"16. An air sifting apparatus according to claim 14, wherein each vane is formed over at least 5% of its total length as measured from its opposite end of the rubber material of the relatively lowest hardness grade or durometer.",
"17. An air sifting apparatus according to claim 14, wherein each vane is formed over at least 25% of its total length as measured from its one end of the rubber material of the relatively highest hardness grade or durometer.",
"18. An air sifting apparatus according to claim 14, wherein the opposite end of each vane is configured in a ball shape.",
"19. An air sifting apparatus according to claim 1, wherein the discharge control device includes means for determining the position of the border between the relatively heavier material layer and the relatively lighter material layer.",
"20. An air sifting apparatus according to claim 19, wherein the layer border determining means is a mechanical sensor for sensing the different thicknesses of the relatively heavier material and the relatively lighter material.",
"21. An air sifting apparatus according to claim 19, wherein the layerborder determining means is a nuclear sensor for sensing the different densities of the relatively heavier material and the relatively lighter material.",
"22. An air sifting apparatus according to claim 19, wherein the layer border determining means is an optical sensor for sensing the different colors of the relatively heavier material and the relatively lighter material.",
"23. An air sifting apparatus according to claim 1, wherein the discharge control device includes a weir, for automatically controlling the discharge of the relatively lighter material, the height of which is adjustably settable as a function of the thickness of the relatively heavier material layer in its role as a sifting bed.",
"24. An air sifting apparatus according to claim 1, wherein the material feed-in device is a star gate feeder having an adjustable rate of rotation.",
"25. An air sifting apparatus according to claim 1, and further comprising a housing for enclosing the material bed support device in a manner which prevents the outward movement of dust.",
"26. An air sifting apparatus according to claim 25, wherein the housing for enclosing the material bed support device is secured to the material bed support device via a seal."
],
"description_excerpt": "The present invention relates to an air sifting or settling apparatus for preparatory concentration of raw materials including, in particular, coal.\n\nKnown air sifting apparatus comprise a material feed device, a material bed support device with holes through which flows air guided by an air plenum disposed underneath the material bed support device, the inflowing air operating to loosen the material which has been fed onto the material bed support device in a manner by which the material on the material bed support device is stratified into layers of relatively lighter material on top of layers of relatively heavier material, and a usual discharge control device for controlling the separated discharge of the relatively lighter material and the relatively heavier material. An air sifting apparatus of this type is described, for example, in the publication Schubert “Aufbereitung fester mineralischer Rohstoffe”, Band II VEB Deutscher Verlag fuer Grundstoffindustrie, Leipzig, Pages 89 and 90.\n\nIn considering the known air sifting apparatus, it has typically been viewed as a disadvantage that, in comparison with wet sifting machines having the same operating principle, only a small separation distinction exists between the heavier material and the lighter material. In this regard, a satisfactory sorting result can be expected only if the density difference between the components of the material to be separated is sufficiently large and if the material is narrowly classified within a relatively narrow size range - that is, if it lies within a narrowly defined kernel or grain size range.",
"cpc": [
"B07B 11/06",
"B03B 4/005",
"B03B 4/065",
"B07B 4/08"
],
"ipc": [
"B03B 4/00",
"B03B 4/06",
"B07B 11/06",
"B07B 4/08"
],
"assignees": [
"allmineral LLC"
],
"inventors": [
"Walter Strangalies",
"Walter Jungmann",
"Richard J. Snoby"
],
"filing_date": "2001-02-01",
"publication_date": "2002-10-22",
"grant_date": "2002-10-22",
"priority_date": "2001-02-01",
"application_number": "US-77575801-A",
"family_id": "25105402",
"cited_by_count": 14,
"citations": [
"US2512422A",
"US3007577A",
"US3472379A",
"US3539001A",
"US3852168A",
"SU1033235A2",
"US5244099A"
]
}
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