Claims
- 1. A grain separator to separate and remove contaminants from grain comprising an intermediate separator housing including a grain inlet to receive grain to be scoured from an external source and a grain outlet to feed scoured grain to an external collector, a lower contaminants enclosure having a first contaminants discharge to discharge heavier contaminants removed from the grain to a first external receptacle, said intermediate separator housing having a mechanical separator and transport assembly disposed therein to receive the grain and contaminants from said grain inlet and to separate the contaminants from the grain and to move the grain from said grain inlet to said grain outlet for collection in the external collector, a first contaminants transport assembly disposed to receive the heavier contaminants from said mechanical separator and transport assembly and to move the heavier contaminants to the first contaminants discharge for collection in the first external receptacle, said mechanical separator and transport assembly comprises a hollow stationary drum including a wall having a plurality of perforations formed therethrough and a rotor rotatably disposed within said hollow stationary drum, said rotor operatively supporting a plurality of separator members, each said separate member including an outer end disposed adjacent said wall, each said separator member comprises an uninterrupted helical configuration extending from the proximal end to the distal end of said hollow stationary drum to cooperatively form grain receiving zones between adjacent separator members to receive a portion of the grain to be scoured therein such that grain received in each said grain receiving zone is retained therein and isolated from adjacent grain receiving zones as the grain is transported from said proximal end to said distal end of said hollow stationary drum.
- 2. The grain separator of claim 1 wherein said separator member comprises a plurality of flexible brush elements held together with a retainer element pressed fitted into a corresponding channel formed in said rotor.
- 3. The grain separator of claim 1 wherein said intermediate separator or housing comprises a top wall having said grain inlet formed on the proximal end thereof, a pair of substantially parallel upper side walls extending downwardly from said top wall, a pair of lower side walls inclined inwardly from the lower edge of said corresponding upper side wall, said grain outlet being formed on the distal end of said intermediate separator housing, an elongated contaminants opening cooperatively formed by the lower edges of said inwardly inclined lower side walls to direct heavier contaminants from said mechanical separator and transport assembly to said first contaminants transport assembly and a pair of end walls extending between said top wall, said upper side walls and said lower side walls.
- 4. The grain separator of claim 1 wherein said first contaminants transport assembly comprises a screw conveyor disposed within said lower contaminants enclosure to receive the heavier contaminants from said mechanical separator and transport assembly as the grain is separated from the contaminants within said mechanical separator and transport assembly.
- 5. A grain separator to separate and remove contaminants from grain comprising an intermediate separator housing including a grain inlet to receive grain to be scoured from an external source and a grain outlet to feed scoured grain to an external collector, a lower contaminants enclosure having a first contaminants discharge to discharge heavier contaminants removed from the grain to a first external receptacle, said intermediate separator housing having a mechanical separator and transport assembly disposed therein to receive the grain and contaminants from said grain inlet and to separate the contaminants from the grain and to move the grain from said grain inlet to said grain outlet for collection in the external collector, a first contaminants transport assembly disposed to receive the heavier contaminants from said mechanical separator and transport assembly and to -move the heavier contaminants to the first contaminants discharge for collection in the first external receptacle, said mechanical separator and transport assembly comprises a hollow stationary drum having a plurality of perforations formed therethrough and a rotor operatively supporting at least one continuous separator member cooperatively form at least two zones extending substantially the length of said rotor and rotationally disposed within said hollow stationary drum wherein grain fed into each zone is retained in that particular zone when transported through said grain separator and a second contaminants discharge to discharge lighter contaminants removed from the grain to a second external receptacle and a second contaminants transport assembly disposed to receive the lighter contaminants from said mechanical separator and transport assembly and to move the lighter contaminants to the second contaminants discharge for collection in the second external receptacle wherein said second contaminants transport assembly comprises an air blower and at least one primary air flow control means formed on one of said lower side walls of said intermediate separator housing to control the flow of the lighter contaminants from said mechanical separator and transport assembly to said second contaminants discharge.
- 6. The grain separator of claim 5 wherein said separator member comprises a plurality of flexible brush elements held together with a retainer element pressed fitted into a corresponding channel formed in said rotor.
- 7. The grain separator of claim 5 wherein each said separator member forms a helical configuration from the proximal end to the distal end of said mechanical separator and transport assembly.
- 8. The grain separator of claim 5 wherein a grain feed aperture is formed in said hollow stationary drum beneath said grain inlet to feed unprocessed grain from an external source to the interior of said hollow stationary drum.
- 9. The grain separator of claim 5 wherein said intermediate separator or housing comprises a top wall having said grain inlet formed on the proximal end thereof, a pair of substantially parallel upper side walls extending downwardly from said top wall, a pair of lower side walls inclined inwardly from the lower edge of said corresponding upper side wall, said grain outlet being formed on the distal end of said intermediate separator housing, an elongated contaminants opening cooperatively formed by the lower edges of said inwardly inclined lower side walls to direct heavier contaminants from said mechanical separator and transport assembly to said first contaminants transport assembly and a pair of end walls extending between said top wall, said upper side walls and said lower side walls.
- 10. The grain separator of claim 9 wherein the distal end of said mechanical separator and transport assembly is disposed in spaced relationship relative to the distal end wall to cooperatively form a discharge chamber in open communication with said grain outlet.
- 11. The grain separator of claim 10 wherein said grain inlet comprises a grain inlet duct disposed in surrounding relationship relative to a grain inlet port formed in said top wall to direct unprocessed grain from the external source to the proximal end of said mechanical separator and transport assembly and said grain outlet comprises a grain outlet port formed adjacent the distal end of said mechanical separator and transport assembly having a grain outlet duct disposed in surrounding relationship relative thereto to direct processed grain from said discharge chamber to the external collector for collection.
- 12. The grain separator of claim 5 wherein said first contaminants transport assembly comprises a screw conveyor disposed within said lower contaminants enclosure to receive the heavier contaminants from said mechanical separator and transport assembly as the grain is separated from the contaminants within said mechanical separator and transport assembly.
- 13. The grain separator of claim 12 wherein said screw conveyor comprises a continuous helical member formed on a screw conveyor shaft.
- 14. The grain separator of claim 12 wherein said lower contaminants enclosure comprises a side wall extending downwardly from each side of said intermediate separator housing, a lower arcuate bottom extending between the lower edges of said side walls having said first contaminants discharge formed thereon and a pair of end walls.
- 15. The grain separator of claim 14 wherein said first contaminants discharge comprises a first contaminants discharge duct disposed in surrounding relationship relative to a first contaminants discharge port formed in said lower arcuate bottom.
- 16. The grain separator of claim 5 wherein said primary air flow control means comprises an air flow aperture formed in said intermediate separator housing beneath said mechanical separator and transport assembly to draw air therebetween and a flow rate panel movable between an open and closed position disposed adjacent said air flow aperture to control the volume of air flow therethrough to draw smaller light contaminants from said hollow stationary drum to said second contaminants for discharge to the second external receptacle.
- 17. The grain separator of claim 16 further includes an adjustable positioning means to selectively position the flow rate panel relative to said air flow aperture to selectively control the volume of air flow therethrough.
- 18. The grain separator of claim 17 wherein said second contaminants transport assembly also comprises a secondary air flow control means formed on said intermediate separator housing formed adjacent said discharge chamber to draw larger contaminants expelled from the distal end of said mechanical separator and transport assembly to said second contaminants discharge for discharge to the second external receptacle.
- 19. The grain separator of claim 18 wherein said secondary air flow control means comprises an air flow control housing having at least one air flow aperture formed therethrough and a flow rate plate having at least one air flow control aperture formed therethrough rotatably mounted on said air flow control housing such that rotation of said flow rate plate relative to said air flow control housing selectively opens and closes said air flow aperture to control the volume of air flowing therethrough.
- 20. The grain separator of claim 5 including an elongated opening formed between said intermediate separator housing and said lower contaminants enclosure to feed heavier contaminants separated from the processed grain from said intermediate separator housing to said lower contaminants enclosure.
- 21. A grain separator to separate and remove contaminants from grain comprising an intermediate separator housing including a grain inlet to receive grain to be scoured from an external source and a grain outlet to feed scoured grain to an external collector, a lower contaminants enclosure having a first contaminants discharge to discharge heavier contaminants removed from the grain to a first external receptacle, said intermediate separator housing having a mechanical separator and transport assembly disposed therein to receive the grain and contaminants from said grain inlet and to separate the contaminants from the grain and to move the grain from said grain inlet to said grain outlet for collection in the external collector, a first contaminants transport assembly disposed to receive the heavier contaminants from said mechanical separator and transport assembly and to move the heavier contaminants to the first contaminants discharge for collection in the first external receptacle, said mechanical separator and transport assembly comprises a hollow stationary drum having a plurality of perforations formed therethrough and a rotor operatively supporting a plurality of separator members cooperatively forming zones between adjacent separator members wherein each said separator member forms a helical configuration extending from the proximal end to the distal end of said mechanical separator and transport assembly rotationally disposed within said hollow stationary drum and a second contaminants discharge to discharge lighter contaminants removed from the grain to a second external receptacle and the second contaminants transport assembly disposed to receive the lighter contaminants from said mechanical separator and transport assembly and to move the lighter contaminants to the second contaminants discharge for collection in a second external receptacle wherein said second contaminants transport assembly comprises an air blower and at least one primary air flow control means formed on one of said lower side walls of said intermediate separator housing to control the flow of the lighter contaminants from said mechanical separator and transport assembly to said second contaminants discharge.
- 22. The grain separator of claim 21 wherein said separator member comprises a plurality of flexible brush elements held together with a retainer element pressed fitted into a corresponding channel formed in said rotor.
- 23. The grain separator of claim 21 wherein a grain feed aperture is formed in said hollow stationary drum beneath said grain inlet to feed unprocessed grain from an external source to the interior of said hollow stationary drum.
- 24. The grain separator of claim 21 wherein said intermediate separator or housing comprises a top wall having said grain inlet formed on the proximal end thereof, a pair of substantially parallel upper side walls extending downwardly from said top wall, a pair of lower side walls inclined inwardly from the lower edge of said corresponding upper side wall, said grain outlet being formed on the distal end of said intermediate separator housing, an elongated contaminants opening cooperatively formed by the lower edges of said inwardly inclined lower side walls to direct heavier contaminants from said mechanical separator and transport assembly to said first contaminants transport assembly and a pair of end walls extending between said top wall, said upper side walls and said lower side walls.
- 25. The grain separator of claim 24 wherein the distal end of said mechanical separator and transport assembly is disposed in spaced relationship relative to the distal end wall to cooperatively form a discharge chamber in open communication with said grain outlet.
- 26. The grain separator of claim 25 wherein said grain inlet comprises a grain inlet duct disposed in surrounding relationship relative to a grain inlet port formed in said top wall to direct unprocessed grain from the external source to the proximal end of said mechanical separator and transport assembly and said grain outlet comprises a grain outlet port formed adjacent the distal end of said mechanical separator and transport assembly having a grain outlet duct disposed in surrounding relationship relative thereto to direct processed grain from said discharge chamber to the external collector for collection.
- 27. The grain separator of claim 21 wherein said first contaminants transport assembly comprises a screw conveyor disposed within said lower contaminants enclosure to receive the heavier contaminants from said mechanical separator and transport assembly as the grain is separated from the contaminants within said mechanical separator and transport assembly.
- 28. The grain separator of claim 27 wherein said screw conveyor comprises a continuous helical member formed on a screw conveyor shaft.
- 29. The grain separator of claim 27 wherein said lower contaminants enclosure comprises a side wall extending downwardly from each side of said intermediate separator housing, a lower arcuate bottom extending between the lower edges of said side walls having said first contaminants discharge formed thereon and a pair of end walls.
- 30. The grain separator of claim 29 wherein said first contaminants discharge comprises a first contaminants discharge duct disposed in surrounding relationship relative to a first contaminants discharge port formed in said lower arcuate bottom.
- 31. The grain separator of claim 21 wherein said primary air flow control means comprises an air flow aperture formed in said intermediate separator housing beneath said mechanical separator and transport assembly to draw air therebetween and a flow rate panel movable between an open and closed position disposed adjacent said air flow aperture to control the volume of air flow therethrough to draw smaller light contaminants from said hollow stationary drum to said second contaminants for discharge to the second external receptacle.
- 32. The grain separator of claim 31 further includes an adjustable positioning means to selectively position the flow rate panel relative to said air flow aperture to selectively control the volume of air flow therethrough.
- 33. The grain separator of claim 32 wherein said second contaminants transport assembly also comprises a secondary air flow control means formed on said intermediate separator housing formed adjacent said discharge chamber to draw larger contaminants expelled from the distal end of said mechanical separator and transport assembly to said second contaminants discharge for discharge to the second external receptacle.
- 34. The grain separator of claim 33 wherein said secondary air flow control means comprises an air flow control housing having at least one air flow aperture formed therethrough and a flow rate plate having at least one air flow control aperture formed therethrough rotatably mounted on said air flow control housing such that rotation of said flow rate plate relative to said air flow control housing selectively opens and closes said air flow aperture to control the volume of air flowing therethrough.
- 35. The grain separator of claim 21 including an elongated opening formed between said intermediate separator housing and said lower contaminants enclosure to feed heavier contaminants separated from the processed grain from said intermediate separator housing to said lower contaminants enclosure.
CO-PENDING APPLICATION
This application is a continuation application of application Ser. No. 08/366,616, filed Dec. 30, 1994 now U.S. Pat. No. 5,597,076.
US Referenced Citations (6)
Foreign Referenced Citations (1)
Number |
Date |
Country |
5246572 |
Apr 1977 |
JPX |
Continuations (1)
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Number |
Date |
Country |
Parent |
366616 |
Dec 1994 |
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