Claims
- 1. An article aligning conveyor for aligning articles in a generally in line manner as they are conveyed along a conveyor, said article aligning conveyor comprising:
an input conveyor having a discharge end; an output conveyor having an input end and being laterally offset from said input conveyor; an angled conveyor positioned between said discharge end of said input conveyor and said input end of said output conveyor, said angled conveyor having a downstream side and being operable to convey articles in a same direction of conveyance as said input and output conveyors from said input conveyor generally toward said downstream side and onto said output conveyor; a vertically oriented conveyor positioned along said downstream side of said angled conveyor, said vertically oriented conveyor defining a generally vertical conveying surface along said downstream side of said angled conveyor; and aligning means for aligning articles such that they are discharged in a generally in line manner onto said output conveyor.
- 2. The aligning conveyor of claim 1, wherein said angled conveyor comprises a roller conveyor having a plurality of rollers.
- 3. The aligning conveyor of claim 2, wherein said plurality of rollers are rotatable about axes generally normal to a direction of conveyance of at least one of said input and output conveyors.
- 4. The aligning conveyor of claim 1, wherein said aligning means comprises at least one of an arcuate conveyor section and an arcuate vertically oriented conveyor section.
- 5. The aligning conveyor of claim 4, wherein said aligning means comprises said arcuate conveyor section, said angled conveyor including an angled portion positioned at and angled with respect to said discharge end of said input conveyor and an aligned portion aligned with said input end of said output conveyor, said arcuate conveyor section providing a generally smooth transition between said angled portion and said aligned portion.
- 6. The aligning conveyor of claim 5, wherein said angled conveyor comprises a roller conveyor having a plurality of rollers.
- 7. The aligning conveyor of claim 6, wherein said plurality of rollers are rotatable about axes generally normal to a direction of conveyance of at least one of said input and output conveyors.
- 8. The aligning conveyor of claim 7, wherein said aligning means further includes said arcuate vertically oriented conveyor which provides a curved conveying surface along said downstream side of said roller conveyor.
- 9. The aligning conveyor of claim 8, wherein said vertically oriented conveyor comprises a belt conveyor having an endless conveyor belt guided along a curved plate at said downstream side of said roller conveyor.
- 10. The aligning conveyor of claim 9, wherein said endless conveyor belt is positioned such that a lower edge of said belt is positioned below a conveying surface defined by said plurality of rollers.
- 11. The aligning conveyor of claim 9, wherein said vertically oriented conveyor is operable at a first speed and said roller conveyor is operable at a second speed, said second speed being different from said first speed.
- 12. The aligning conveyor of claim 11, wherein said second speed is greater than said first speed.
- 13. The aligning conveyor of claim 1, wherein said vertically oriented conveyor comprises a belt conveyor having an endless conveyor belt guided along said downstream side of said angled conveyor.
- 14. The aligning conveyor of claim 13, wherein said endless conveyor belt is positioned such that a lower edge of said belt is positioned below a conveying surface defined by said angled conveyor.
- 15. The aligning conveyor of claim 14, wherein said aligning means comprises an arcuate vertically oriented belt conveyor which is curved to provide a smooth transition between an angled portion at said input conveyor and angled with respect thereto and an aligned portion at said output conveyor and generally aligned with respect thereto.
- 16. The aligning conveyor of claim 13, wherein said vertically oriented conveyor is operable at a first speed and said angled conveyor is operable at a second speed, said second speed being different from said first speed.
- 17. The aligning conveyor of claim 16, wherein said second speed is greater than said first speed.
- 18. The aligning conveyor of claim 1, wherein said aligning means comprises a second conveyor positioned between a downstream end of said angled conveyor and said input end of said output conveyor, said second conveyor being generally aligned with said output conveyor and including a plurality of second rollers rotatable about second axes skewed with respect to a direction generally normal to the direction of conveyance of said output conveyor, said second rollers being skewed to convey articles downstream toward said output conveyor and toward a first side of said second conveyor, said first side being adjacent to said downstream side of said angled conveyor.
- 19. The aligning conveyor of claim 18, wherein said angled conveyor comprises a roller conveyor including a plurality of rollers which are rotatable about first axes generally normal to the direction of conveyance of at least one of said input and output conveyors.
- 20. An article side by side eliminating conveyor positioned along at least one conveying surface, said side by side eliminating conveyor including at least one generally rigid redirecting member and being operable to redirect and arrange articles in a generally in line and unstacked manner while said at least one conveying surface is operable to continuously convey the articles therealong.
- 21. The side by side eliminating conveyor of claim 20, wherein said at least one generally rigid redirecting member comprises:
a first redirecting member extending from a first side of said at least one conveying surface and positioned at least partially across said at least one conveying surface; and a second redirecting member extending from an opposite second side of said at least one conveying surface and positioned at least partially across said at least one conveying surface, wherein articles are redirected by said first and second redirecting members as the articles are continuously conveyed along said at least one conveying surface.
- 22. The side by side eliminating conveyor of claim 21, wherein said first and second redirecting members are rigidly positioned at an angle at least partially across said at least one conveying surface.
- 23. The side by side eliminating conveyor of claim 21, wherein said at least one conveying surface comprises an upstream conveying surface and a downstream conveying surface, said first redirecting member being positioned at said upstream conveying surface and said second redirecting member being positioned at said downstream conveying surface.
- 24. The side by side eliminating conveyor of claim 23, wherein said downstream conveying surface is operable at a higher rate of speed than said upstream conveying surface.
- 25. The side by side eliminating conveyor of claim 21, wherein said at least one conveying surface comprises an upstream conveying surface, a side conveying surface and a downstream conveying surface, said first redirecting member being positioned at said upstream conveying surface and said second redirecting member being positioned at said side conveying surface.
- 26. The side by side eliminating conveyor of claim 25, wherein said first redirecting member is operable to redirect articles from said upstream conveying surface to said side conveying surface and said second redirecting member is operable to redirect articles from said side conveying surface to said downstream conveying surface.
- 27. The side by side eliminating conveyor of claim 26, wherein said upstream conveying surface is at a first height and an upstream end of said side conveying surface is at a second height, said first height being greater than said second height.
- 28. The side by side eliminating conveyor of claim 27, wherein a downstream end of said side conveying surface is at a third height and said downstream conveying surface is at a fourth height, said third height being greater than said fourth height.
- 29. The side by side eliminating conveyor of claim 28 further including at least one transition plate positioned between at least one of said upstream and side conveyors and said side and downstream conveyors.
- 30. The side by side eliminating conveyor of claim 28, wherein said side conveying surface is inclined to convey articles upward therealong.
- 31. The side by side eliminating conveyor of claim 28, wherein said upstream conveying surface is operable at a first speed and said side conveying surface is operable at a second speed, said second speed being greater than said first speed.
- 32. The side by side eliminating conveyor of claim 31, wherein said downstream conveying surface is operable at a third speed, said third speed being greater than said second speed.
- 33. The side by side eliminating conveyor of claim 26, wherein said upstream conveying surface is operable at a first speed and said side conveying surface is operable at a second speed, said second speed being greater than said first speed.
- 34. The side by side eliminating conveyor of claim 33, wherein said downstream conveying surface is operable at a third speed, said third speed being greater than said second speed.
- 35. The side by side eliminating conveyor of claim 26, wherein said side conveying surface is operable at a first speed and said downstream conveying surface is operable at a second speed, said second speed being greater than said first speed.
- 36. The side by side eliminating conveyor of claim 26, wherein at least one of said upstream conveying surface and said side conveying surface has a first coefficient of friction and said downstream conveying surface has a second coefficient of friction, said second coefficient of friction being greater than said first coefficient of friction.
- 37. The side by side eliminating conveyor of claim 21, wherein said at least one conveying surface comprises at least one of a continuous belt surface and a powered roller surface.
- 38. An article destacking conveyor for separating and destacking articles as they are conveyed therealong, said destacking conveyor comprising:
an input conveyor; a first conveyor operated at a first speed, at least a portion of said first conveyor being inclined and having an output end; a second conveyor operated at a second speed, at least a portion of said second conveyor being inclined, said second conveyor having an input end proximate to and at a height at least partially below a height of said output end of said first conveyor, said second conveyor being positioned generally orthogonal to said first conveyor, said first and second conveyors being continuously operable to convey articles along said article destacking conveyor, said second speed being greater than said first speed; and an output conveyor generally aligned with a direction of conveyance of said input conveyor, said conveyors of said article destacking conveyor being arranged to define a generally circular loop.
- 39. The article destacking conveyor of claim 38, wherein said at least a portion of said first and second conveyors are upwardly sloped such that said output end of said first conveyor is above an input end of said input conveyor and an output end of said second conveyor is above said input end of said second conveyor.
- 40. The article destacking conveyor of claim 39, wherein said first conveyor includes a first generally horizontal conveying portion having an input end, a first chute and a first inclined conveyor portion, said first chute being configured to guide articles from said first horizontal conveying surface onto an input end of said first inclined conveyor portion, said input end of said first inclined conveyor portion being at a highest below said output end
- 41. The article destacking conveyor of claim 40, wherein said second conveyor includes a second generally horizontal conveying portion having an input end, a second chute and a second inclined conveyor portion, said second chute being configured to guide articles from said second horizontal conveying surface onto an input end of said second inclined conveyor portion, said input end of said second inclined conveyor portion being at a highest below said output end.
- 42. The article destacking conveyor of claim 41, wherein said chutes are angled to direct articles sidewardly toward one side of a respective one of said first and second conveyors as the articles move down along said chutes.
- 43. The article destacking conveyor of claim 42, wherein said first inclined conveyor portion is operable at a greater speed than said first horizontal conveyor portion, said second inclined conveyor portion being operable at a greater speed than said second horizontal conveyor portion.
- 44. The article destacking conveyor of claim 43, wherein said second horizontal conveyor portion is operable at a greater speed than said first inclined conveyor portion.
- 45. The article destacking conveyor of claim 44 further including at least one gap sensor at at least one of said first and second conveyors, said gap sensor being operable to detect an amount of separation between articles being conveyed along said article destacking conveyor.
- 46. The article destacking conveyor of claim 45, wherein said speeds of said conveyor portions are adjustable in response to said gap sensor.
- 47. The article destacking conveyor of claim 46, wherein said speeds of said conveyor portions are proportionate to one another, said speeds being adjustable in response to said gap sensor such that said speeds of said conveyor portions remain at substantially the same proportions to one another after the adjustment.
- 48. The article destacking conveyor of claim 38 further including at least one gap sensor at at least one of said first and second conveyors, said gap sensor being operable to detect an amount of separation between articles being conveyed along said article destacking conveyor.
- 49. The article destacking conveyor of claim 48, wherein said speeds of said conveyor portions are adjustable in response to said gap sensor.
- 50. The article destacking conveyor of claim 49, wherein said speeds of said conveyor portions are proportionate to one another, said speeds being adjustable in response to said gap sensor such that said speeds of said conveyor portions remain at substantially the same proportions to one another after the adjustment.
- 51. The article destacking conveyor of claim 37 further including a third conveyor operated at a third speed, at least a portion of said third conveyor being inclined and having an output end, said first conveyor being positioned generally orthogonal to said input conveyor and receiving articles therefrom, said third conveyor being positioned generally orthogonal to said second conveyor and receiving articles therefrom, said output conveyor being positioned generally orthogonal to said third conveyor and receiving articles therefrom.
- 52. The article destacking conveyor of claim 51, wherein said first, second and third conveyors include upwardly inclined portions such that said output conveyor is positioned generally above said input conveyor.
- 53. The article destacking conveyor of claim 51, wherein said first, second and third conveyors include downwardly inclined portions such that said output conveyor is positioned generally below said input conveyor.
- 54. An article separation conveyor system for separating and aligning articles as they are continuously conveyed therealong comprising:
a destacking conveyor including first and second inclined conveying portions which are continuously operable to convey articles upward and drop the articles onto an adjacent downstream conveying portion; a side by side eliminating conveyor including a third conveying portion and at least one generally rigid diverting member extending at least partially across said third conveying portion, said side by side eliminating conveyor being operable to arrange articles in a generally in line and unstacked manner while said third conveying portion is continuously operable to convey the articles therealong; and an aligning conveyor for aligning articles in a generally in line manner as they are continuously conveyed therealong, said aligning conveyor including:
an angled roller conveyor positioned between a discharge end of an input conveyor and an input end of an output conveyor, where the output conveyor is laterally offset from the input conveyor and downstream from said roller conveyor, said roller conveyor having a downstream side and a plurality of rollers operable to convey articles from said input conveyor generally toward said downstream side and onto said output conveyor; and a vertically oriented conveyor positioned along said downstream side of said roller conveyor; wherein said article separation conveyor is operable to continuously convey articles along said destacking conveyor, said side by side eliminating conveyor and said aligning conveyor to separate, destack and align the articles such that the articles are oriented in a generally separated and inline manner on the output conveyor.
- 55. The conveyor system of claim 54, wherein said second inclined conveying portion of said destacking conveyor is downstream from said first inclined conveying portion, said first inclined conveying portion being operable at a first speed and said second inclined conveying portion being operable at a second speed, said second speed being greater than said first speed.
- 56. The conveyor system of claim 55, wherein said first and second inclined portions are arranged generally orthogonal to one another.
- 57. The conveyor system of claim 55, wherein said first and second inclined portions are arranged generally in line with one another.
- 58. The conveyor system of claim 54, wherein said third conveying portion includes an upstream conveyor and a downstream conveyor, said at least one diverting member comprising first and second rigid diverting members, said first diverting member being positioned at an angle at least partially across said upstream conveyor and said second diverting member being positioned at an angle at least partially across said downstream conveyor.
- 59. The conveyor system of claim 58, wherein said downstream conveyor is operable at a higher rate of speed than said upstream conveyor.
- 60. The conveyor system of claim 54, wherein said third conveying portion comprises an upstream conveyor, a side conveyor and a downstream conveyor and said at least one diverting member comprises first and second diverting members, said first diverting member being positioned at said upstream conveyor and said second diverting member being positioned at said side conveyor.
- 61. The conveyor system of claim 54, wherein said angled roller conveyor comprises an arcuate roller conveyor section.
- 62. The conveyor system of claim 61, wherein said arcuate conveyor section includes an angled portion positioned at and angled with respect to a discharge end of the input conveyor and an aligned portion aligned with an input end of the output conveyor, said arcuate conveyor section providing a generally smooth transition between said angled portion and said aligned portion.
- 63. The conveyor system of claim 62, wherein said vertically oriented conveyor comprises a curved conveyor surface along said downstream side of said roller conveyor.
- 64. The conveyor system of claim 63, wherein said vertically oriented conveyor comprises a belt conveyor having an endless conveyor belt guided along a curved plate at said downstream side of said angled roller conveyor.
- 65. The conveyor system of claim 64, wherein said endless conveyor belt is positioned such that a lower edge of said belt is positioned below a conveying surface defined by said plurality of rollers.
- 66. The conveyor system of claim 64, wherein said vertically oriented conveyor is operable at a first speed and said roller conveyor is operable at a second speed, said second speed being different from said first speed.
- 67. The conveyor system of claim 54 including at least one gap sensor for determining an amount of gap between articles being conveyed along said conveyor system, said conveyor system being operable to adjust a speed of at least one of said first and second inclined conveying portions and said third conveying portion in response to the amount of gap detected by said gap sensor.
- 68. The conveyor system of claim 67, wherein the speeds of said conveying portions are proportional to one another, the speeds of said conveying portions being adjustable in response to said gap sensor such that the relative proportional speed of said conveying portions remains substantially the same before and after the adjustment.
- 69. A method of separating and aligning articles as they are conveyed along a conveyor comprising:
separating and destacking articles by conveying articles along at least two inclined conveyors which convey the articles up along inclined conveying surfaces and drop the articles onto an adjacent downstream conveyor; eliminating side by side positioning of articles by redirecting articles from one side of a conveyor to the other via at least one generally rigid diverting member; aligning articles in a generally in line manner by conveying articles along an angled roller conveyor between two laterally offset conveyor sections, said roller conveyor including rollers which are rotatable about axes generally normal to a direction of conveyance of the two laterally offset conveyor sections and operable to convey articles downstream toward a downstream side of said roller conveyor; and discharging the in line articles onto a downstream one of the two laterally offset conveyor sections.
- 70. The method of claim 69, wherein the step of aligning articles includes slowing articles along said downstream side of said roller conveyor via a vertically oriented conveyor belt which is operable at a slower speed than said angled roller conveyor.
- 71. The method of claim 70 including providing a smooth transition from said angled roller conveyor onto the downstream one of the two laterally offset conveyor sections via an arcuate section of said angled roller conveyor and said vertically oriented conveyor belt.
- 72. The method of claim 69, wherein the step of eliminating side by side positioning of articles includes redirecting articles from an upstream conveyor onto at least one adjacent downstream and laterally offset conveyor.
- 73. The method of claim 69, wherein the step of destacking articles includes conveying articles along inclined conveyors and at least one steering chute to guide and steer articles as they drop from at least one of said inclined conveyors onto an adjacent downstream conveyor.
- 74. The method of claim 73, wherein the step of destacking articles includes conveying articles along inclined conveyors which are positioned at least one of generally aligned with one another and generally orthogonal to one another.
- 75. The method of claim 69 including adjusting the speed of at least some of said conveyors in response to an amount of separation between articles being conveyed along said conveyors.
- 76. The method of claim 75 including adjusting the speed of said at least some of said conveyors such that the relative proportional speed of said at least some of said conveyors remains substantially the same before and after the adjustment.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application claims priority on U.S. Provisional applications, Ser. No. 60/200,043, filed Apr. 27, 2000 (Attorney Docket RAP04 P-602), Ser. No. 60/251,685, filed Dec. 5, 2000 (Attorney Docket RAP04 P-621), and Ser. No. 60/272,649, filed Mar. 1, 2001 (Attorney Docket RAP04 P-602A), which are hereby incorporated herein by reference.
Provisional Applications (3)
|
Number |
Date |
Country |
|
60200043 |
Apr 2000 |
US |
|
60251685 |
Dec 2000 |
US |
|
60272649 |
Mar 2001 |
US |