Claims
- 1. A rotary plate feeder for use in solids handling systems comprising:
an upper case having an upper portion and a lower portion and having a lower circumference extending about said lower portion said lower circumference having an inside and an outside; a lower case having an upper section and a lower section and having an upper circumference extending about said upper section said upper circumference having an inside and an outside; means for joining said upper case to said lower case at said lower and upper circumferences; an inlet port integrally centered within said upper case extending from above said upper portion towards said bottom portion thereof; a rotary plate having a circumference rotationally centered within said lower case near said upper portion thereof; means for rotating said rotary plate within said lower case; at least one discharge port located on said circumference extending about said upper section of said lower case said discharge port extending down and away from said upper section; a perimeter seal riding on said circumference of said rotary plate and sealing between said rotary plate and said inside of said lower circumference of said upper case; and, at least one radially moveable plow extending radially inwards from said lower circumference of said upper case collocated with one of said discharge ports and capable of perpendicularly riding on said rotary plate.
- 2. The rotary plate feeder of claim 1 further comprising:
a lower flange circumferentially attached to said outside of said lower circumference of said upper case; an upper flange circumferentially attached to said outside of said upper circumference of said lower case; and, wherein said means for joining said upper case and said lower case comprises attaching said upper and lower flanges to each other.
- 3. The rotary plate feeder of claim 1, wherein said rotary plate further has a center and a bottom side, further comprising:
a bearing case, having a top and a bottom, integrally centered within said lower case extending from near said upper section towards said bottom section thereof; a motor mounting means located at said bottom of said bearing case; a rotary plate shaft attached to said bottom side of said rotary plate and extending from said center of said plate through said bearing case towards said motor mounting means; and, wherein said means for rotating said plate comprises a motor attached to said motor mounting means said motor driving said rotary plate shaft.
- 4. The rotary plate feeder of claim 1, wherein said inlet port has a top and a bottom, further comprising:
a movable sleeve wherein said movable sleeve is axially located about said inlet port near said bottom of said inlet port capable of axial movement about said bottom of said inlet between said bottom and said rotary plate; and, means for controlling said axial movement of said sleeve.
- 5. The rotary plate feeder of claim 1 having at least two discharge ports and wherein one of said plows associated with one of said discharge ports has a gap between said plow and said rotary plate such that solids that are smaller than said gap will pass under said gap and such that solids that are larger than said gap will be discharged at said associated discharge port.
- 6. The rotary plate feeder of claim 1 further having means for controlling the position of each of said plows radially over said rotary plate.
- 7. The rotary plate feeder of claim 1, wherein said rotary plate further has a center and an upper side, further comprising:
an inlet cone attached to said upper side at said center of said rotary plate for the purpose of distributing solids across said rotary plate.
- 8. A rotary plate feeder for use in solids handling systems comprising:
an upper case having an upper portion and a lower portion and having a lower circumference extending about said lower portion said lower circumference having an inside and an outside; a lower case having an upper section and a lower section and having an upper circumference extending about said upper section said upper circumference having an outside; a lower flange circumferentially attached to said outside of said lower circumference of said upper case; an upper flange circumferentially attached to said outside of said upper circumference of said lower case; an inlet port integrally centered within said upper case extending from above said upper portion of said upper case towards said bottom portion of said upper case; a rotary plate having a circumference, a center, a top side, and a bottom side; a bearing case, having a top and a bottom, integrally centered within said lower case extending from near said upper section towards said bottom section thereof; a motor mounting means located at said bottom of said bearing case; a rotary plate shaft attached to said bottom side of said rotary plate and extending from said center of said plate through said bearing case towards said motor mounting means; a motor attached to said motor mounting means said motor driving said rotary plate shaft for rotating said rotary plate within said lower case; at least one discharge port located on said circumference extending about said upper section of said lower case said discharge port extending down and away from said upper section; a perimeter seal riding on said circumference of said rotary plate and sealing between said rotary plate and said inside of said lower circumference of said upper case; at least one radially moveable plow extending radially inwards from said lower circumference of said upper case collocated with one of said discharge ports and capable of perpendicularly riding on said rotary plate; and, wherein said upper case and said lower case are joined together at said upper and lower flanges.
- 9. The rotary plate feeder of claim 8, wherein said inlet port has a top and a bottom, further comprising:
a movable sleeve wherein said movable sleeve is axially located about said inlet near said bottom of said inlet port capable of axial movement about said bottom of said inlet between said bottom and said rotary plate; and, means for controlling said axial movement of said sleeve for regulating the deposition of solids on said rotary plate.
- 10. The rotary plate feeder of claim 8 further having means for controlling the position of each of said plows radially over said rotary plate.
- 11. The rotary plate feeder of claim 9 further having means for controlling the position of each of said plows radially over said rotary plate.
- 12. The rotary plate feeder of claim 8 having at least two discharge ports and wherein one of said plows associated with one of said discharge ports has a gap between said plow and said rotary plate such that solids that are smaller than said gap will pass under said gap and such that solids that are larger than said gap will be discharged at said associated discharge port.
- 13. The rotary plate feeder of claim 9 having at least two discharge ports and wherein one of said plows associated with one of said discharge ports has a gap between said plow and said rotary plate such that solids that are smaller than said gap will pass under said gap and such that solids that are larger than said gap will be discharged at said associated discharge port.
- 14. The rotary plate feeder of claim 12 further having means for controlling the position of each of said plows radially over said rotary plate.
- 15. The rotary plate feeder of claim 13 further having means for controlling the position of each of said plows radially over said rotary plate.
- 16. A rotary plate feeder for use in solids handling systems comprising:
an upper case having an upper portion and a lower portion and having a lower circumference extending about said lower portion said lower circumference having an inside and an outside; a lower case having an upper section and a lower section and having an upper circumference extending about said upper section said upper circumference having an outside; a lower flange circumferentially attached to said outside of said lower circumference of said upper case; an upper flange circumferentially attached to said outside of said upper circumference of said lower case; a rotary plate having a circumference, a center, a top side, and a bottom side; an inlet port integrally centered within said upper case extending from above said upper portion of said upper case towards said bottom portion of said upper case for depositing solids on said rotary plate; a bearing case, having a top and a bottom, integrally centered within said lower case extending from near said upper section towards said bottom section thereof, a motor mounting means located at said bottom of said bearing case; a rotary plate shaft attached to said bottom side of said rotary plate and extending from said center of said plate through said bearing case towards said motor mounting means; a motor attached to said motor mounting means said motor driving said rotary plate shaft for rotating said rotary plate within said lower case; a discharge port located on said circumference extending about said upper section of said lower case said discharge port extending down and away from said upper section; a perimeter seal riding on said circumference of said rotary plate and sealing between said rotary plate and said inside of said lower circumference of said upper case; a radially moveable plow extending radially inwards from said lower circumference of said upper case collocated with said discharge ports and capable of perpendicularly riding on said rotary plate; means for controlling the position of said plow for sweeping solids from said rotary plate into said discharge port; and, wherein said upper case and said lower case are bolted together at said upper and lower flanges.
- 17. The rotary plate feeder of claim 16, wherein said inlet port has a top and a bottom, further comprising:
a movable sleeve wherein said movable sleeve is axially located near said bottom of said inlet port capable of axial movement about said bottom of said inlet between said bottom and said rotary plate; and, means for controlling said axial movement of said sleeve for regulating the deposition of solids on said rotary plate.
- 18. The rotary plate feeder of claim 16, further comprising: an inlet cone attached to said upper side at said center of said rotary plate for the purpose of distributing solids across said rotary plate.
- 19. The rotary plate feeder of claim 17, further comprising:
an inlet cone attached to said upper side at said center of said rotary plate for the purpose of distributing solids across said rotary plate.
- 20. The rotary plate feeder of claim 16 further comprising means for controlling motor speed thereby controlling the rotation speed of said rotary plate.
Parent Case Info
[0001] This application claims the benefit of U.S. Provisional Application No. 60/179,312, filed on Jan. 31, 2000.
Provisional Applications (1)
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Number |
Date |
Country |
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60179312 |
Jan 2000 |
US |