Claims
- 1. An apparatus for processing material, said apparatus comprising:
a cutting chamber having an interior portion and an exterior portion; a rotor shaft mounted in said interior portion of said cutting chamber, said rotor shaft having an axis running in a generally horizontal direction; a first plurality of cutters extending radially from said rotor shaft; a second plurality of cutters extending radially from said rotor shaft, each one of said second plurality of cutters extending radially from said rotor shaft a distance less than each one of said first plurality of cutters, wherein approximately a first half of said second plurality of cutters is positioned on said rotor shaft between a first one and a second one of said first plurality of cutters; and wherein approximately a second half of said second plurality of cutters is positioned on said rotor shaft between said second one and a third one of said first plurality of cutters.
- 2. The apparatus of claim 1, wherein said first plurality of cutters comprises at least one large cutter and at least one medium cutter.
- 3. The apparatus of claim 2, wherein said first plurality of cutter comprises two large cutters adjacent to one another approximately at a center of said rotor shaft and two medium cutters located at opposite ends of said rotor shaft from each other.
- 4. The apparatus of claim 3, wherein each of said two large cutters comprise at least two symmetrical blade portions.
- 5. The apparatus of claim 3, wherein each of said medium cutters comprise four symmetrical blade portions.
- 6. The apparatus of claim 1, wherein said second plurality of cutters comprises a plurality of small cutters.
- 7. The apparatus of claim 6, wherein a plurality of said small cutters are affixed to a multiple cutter assembly, said multiple cutter assembly being mountable onto said rotor shaft.
- 8. The apparatus of claim 6, wherein said second plurality of cutters comprises a plurality of cutter teeth formed on a peripheral surface of a cutter disc formed on said rotor shaft.
- 9. The apparatus of claim 6, wherein said second plurality of cutters comprises a plurality of cutter discs formed on said rotor shaft, each of said cutter discs having a plurality of cutter teeth formed on a peripheral surface.
- 10. The apparatus of claim 9, wherein each of said plurality of cutter discs contains at least ten of said cutter teeth formed on said peripheral surface.
- 11. The apparatus of claim 10, wherein each of said plurality of cutter discs contains eighteen cutter teeth formed on said peripheral surface.
- 12. The apparatus of claim 9, wherein each of said cutter teeth has a symmetrical shape.
- 13. The apparatus of claim 12, each of said cutter teeth are square shaped.
- 14. The apparatus of claim 9, wherein each of said cutter teeth has a saw-tooth shape.
- 15. The apparatus of claim 9, wherein at least one of said cutter discs formed on said rotor shaft comprises at least two portions.
- 16. The apparatus of claim 15, wherein said at least one cutter disc contains an interlocking feature on each of said at least two portions for interlocking when said cutter disc is formed onto said shaft.
- 17. The apparatus of claim 9, wherein said plurality of cutter discs are formed on said rotor shaft so as to form a staggered pattern of said cutter teeth.
- 18. The apparatus of claim 17, wherein each of said plurality of cutter discs are identical to one another and, wherein each cutter disc may be formed on said rotor shaft in at least three different orientations so as to enable said staggered pattern.
- 19. The apparatus of claim 18, wherein said rotor shaft is hexagonal in shape, and wherein each of said cutter discs contain a hexagonal-shaped inner peripheral surface.
- 20. The apparatus of claim 9, wherein each of said plurality of cutter teeth on said peripheral surface are less wide than said peripheral surface.
- 21. The apparatus of claim 1 further comprising at least one spacer mounted on said rotor shaft, said spacer creating a space between at least one of said first one and said second one of said first plurality of cutters and at least one of said first half and said second half of said second plurality of cutters.
- 22. The apparatus of claim 1, wherein each of said first plurality of cutters further comprises a fractional cutter portion, each of said fractional cutter portions being mountable onto said rotor shaft.
- 23. The apparatus of claim 22, wherein each of said fractional cutter portions comprise a cutter half portion.
- 24. The apparatus of claim 23, wherein said first plurality of cutter half portions comprises a plurality of large cutter half portions and a plurality of medium cutter half portions.
- 25. The apparatus of claim 24, wherein each of said large cutter half portions and medium cutter half portions contains at least one cutter blade portion.
- 26. The apparatus of claim 25, wherein each of said cutter blade portions are symmetrical.
- 27. The apparatus of claim 6, wherein each of said small cutters comprises cutting teeth.
- 28. The apparatus of claim 27, wherein each of said cutting teeth are symmetrical.
- 29. The apparatus of claim 1, wherein said first and second plurality of cutters are staggered along said rotor shaft.
- 30. The apparatus of claim 29, wherein at least one cutter of said first and second plurality of cutters is coupled to said rotor shaft via a keying device to ensure said cutter is positioned on said rotor shaft in a predetermined manner.
- 31. The apparatus of claim 1 further comprising a sidewall on either side of said rotor shaft, each sidewall being angled between approximately 10° and 20° with respect to a perpendicular of said axis.
- 32. The apparatus of claim 31, wherein at least one of said first plurality of cutters is in relatively close proximity to at least one of said angled sidewalls such that said angled sidewall assists in feeding a material to be crushed toward said at least one cutter without said material first contacting any of said second plurality of cutters.
- 33. A rotatable blade assembly, comprising:
a rotor shaft; a first plurality of cutters extending radially from said rotor shaft; a second plurality of cutters extending radially from said rotor shaft, each one of said second plurality of cutters extending radially from said rotor shaft a distance less than each one of said first plurality of cutters, wherein approximately a first half of said second plurality of cutters is positioned on said rotor shaft between a first one and a second one of said first plurality of cutters; and wherein approximately a second half of said second plurality of cutters is positioned on said rotor shaft between said second one and a third one of said first plurality of cutters.
- 34. The assembly of claim 33, wherein said first plurality of cutters comprises a plurality of large cutters and a plurality of medium cutters.
- 35. The assembly of claim 33, wherein said second plurality of cutters comprises a plurality of small cutters.
- 36. The assembly of claim 35, wherein a plurality of said small cutters are affixed to a multiple cutter assembly, said multiple cutter assembly being mountable onto said rotor shaft.
- 37. The assembly of claim 33, wherein each of said first plurality of cutters further comprises a fractional cutter portion, each of said fractional cutter portions being mountable onto said rotor shaft.
- 38. The assembly of claim 37, wherein each of said fractional cutter portions comprise a cutter half portion.
- 39. The assembly of 38, wherein said first plurality of cutter half portions comprises a plurality of large cutter half portions and a plurality of medium cutter half portions.
- 40. The assembly of claim 39, wherein each of said large cutter half portions and medium cutter half portions contains at least one cutter blade portion.
- 41. The assembly of claim 40, wherein each of said cutter blade portions are symmetrical.
- 42. The assembly of claim 36, wherein each of said small cutters comprises cutting teeth.
- 43. The assembly of claim 42, wherein each of said cutting teeth are symmetrical.
- 44. The assembly of claim 33, wherein said first and second plurality of cutters extend from said rotor shaft such that a staggered cutting action may result.
- 45. The assembly of claim 44, wherein at least one cutter of said first and second plurality of cutters is coupled to said rotor shaft via a keying device to ensure said cutter is positioned on said rotor shaft in a predetermined manner.
- 46. The assembly of claim 33, wherein said first plurality of cutters comprises at least one large cutter and at least one medium cutter.
- 47. The assembly of claim 46, wherein said first plurality of cutter comprises two large cutters adjacent to one another approximately at a center of said rotor shaft and two medium cutters located at opposite ends of said rotor shaft from each other.
- 48. The assembly of claim 47, wherein each of said two large cutters comprise at least two symmetrical blade portions.
- 49. The assembly of claim 47, wherein each of said medium cutters comprise four symmetrical blade portions.
- 50. The assembly of claim 35, wherein said second plurality of cutters comprises a plurality of cutter teeth formed on a peripheral surface of a cutter disc formed on said rotor shaft.
- 51. The assembly of claim 50, wherein said second plurality of cutters comprises a plurality of cutter discs formed on said rotor shaft, each of said cutter discs having a plurality of cutter teeth formed on a peripheral surface.
- 52. The assembly of claim 51, wherein each of said plurality of cutter discs contains at least ten of said cutter teeth formed on said peripheral surface.
- 53. The assembly of claim 52, wherein each of said plurality of cutter discs contains eighteen cutter teeth formed on said peripheral surface.
- 54. The assembly of claim 51, wherein each of said cutter teeth has a symmetrical shape.
- 55. The assembly of claim 54, each of said cutter teeth are square shaped.
- 56. The assembly of claim 52, wherein each of said cutter teeth has a saw-tooth shape.
- 57. The assembly of claim 51, wherein at least one of said cutter discs formed on said rotor shaft comprises at least two portions.
- 58. The assembly of claim 57, wherein said at least one cutter disc contains an interlocking feature on each of said at least two portions for interlocking when said cutter disc is formed onto said shaft.
- 59. The assembly of claim 51, wherein said plurality of cutter discs are formed on said rotor shaft so as to form a staggered pattern of said cutter teeth.
- 60. The assembly of claim 59, wherein each of said plurality of cutter discs are identical to one another, and wherein each cutter disc may be formed on said rotor shaft in at least three different orientations so as to enable said staggered pattern.
- 61. The assembly of claim 51, wherein said rotor shaft is hexagonal in shape, and wherein each of said cutter discs contain a hexagonal-shaped inner peripheral surface.
- 62. The assembly of claim 51, wherein each of said plurality of cutter teeth on said peripheral surface are less wide than said peripheral surface.
- 63. The assembly of claim 33 further comprising at least one spacer mounted on said rotor shaft, said spacer creating a space between at least one of said first one and said second one of said first plurality of cutters and at least one of said first half and said second half of said second plurality of cutters.
- 64. A cutter for use with a material crushing apparatus, said cutter comprising: a fractional cutter portion mountable onto a rotor shaft, said fractional cutter portion having at least one symmetrical cutting blade such that said material crushing apparatus may be run with said rotor shaft rotating in either direction.
- 65. The cutter of claim 64, wherein said fractional cutter portion comprises a cutter half portion.
- 66. The cutter of claim 64 further comprising at least one cutting ridge on both sides of said at least one symmetrical cutting blade.
- 67. The cutter of claim 64 further comprising an alignment portion for aligning said cutter onto said rotor shaft in a predetermined manner.
- 68. The cutter of claim 64, wherein said material crushing apparatus is a granulator apparatus.
- 69. A cutter for use with a material crushing apparatus, said cutter comprising: a plurality of symmetrical cutting teeth mounted onto a cutting tooth assembly, said cutting tooth assembly being mountable onto a rotor shaft such that said material crushing apparatus may be run with said rotor shaft rotating in either direction.
- 70. The cutter of claim 69, wherein said material crushing apparatus is a granulator apparatus.
- 71. A cutting chamber frame assembly for use with a material crushing apparatus, said assembly comprising:
a top chamber plate; a front chamber plate coupled to said top chamber plate; a rear chamber plate coupled to said top chamber plate; a left chamber plate coupled to said top, front and rear chamber plates; a right chamber plate coupled to said top, front and rear chamber plates, wherein said front, rear, left and right chamber plates are coupled to form a four-sided polygonal chamber, said top chamber plate being coupled to said four-sided polygonal chamber to form a cover on a top side thereof, and wherein said front, rear, left and right chamber plates are coupled together via a plurality of respective and corresponding mating slots.
- 72. The assembly of claim 71 further comprising at least one slanted sidewall coupled to at least one of said left and right chamber plates, said slanted sidewall forming an angle of approximately 10° to 20° with said at least one of said left and right chamber plates.
- 73. A cutting chamber for use with a granulator apparatus, the cutting chamber comprising:
a rotor shaft and blade assembly; and a mounting shaft mounted in a generally horizontal position for commonly mounting at least one cover member, wherein the cover member is configured to prevent granulated material from exiting the cutting chamber until said granulated material is in a predetermined state of granulation.
- 74. A cutter disc, comprising a plurality of cutting teeth on an outer peripheral surface, wherein a given 60° portion of said cutter disc contains a unique number of said cutting teeth and/or a unique position of said cutting teeth within said given 60° portion as compared with at least two other 60° portions immediately preceding and immediately following said given 60° portion.
- 75. A method of replacing a defective cutter in a granulator apparatus, the method comprising:
decoupling at least one fractional cutter portion containing a defective cutter blade from a rotor shaft and blade assembly; and coupling a replacement fractional cutter portion to said rotor shaft and blade assembly, wherein only said fractional cutter portion need be removed from said rotor shaft and blade assembly.
- 76. The method of claim 75, wherein said act of decoupling comprises decoupling at least one cutter half portion.
- 77. A method of operating a granulator apparatus, the method comprising:
running a rotor shaft and blade assembly in a first rotational direction; and running said rotor shaft and blade assembly in a rotational direction opposite said first rotational direction without removing and without reconfiguring a blade of said rotor shaft and blade assembly.
Parent Case Info
[0001] This application claims the benefit of U.S. Provisional Patent Application Ser. No. 60/210,907, filed on Jun. 12, 2000, the entire contents of which are incorporated herein by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60210907 |
Jun 2000 |
US |