Claims
- 1. A positive displacement rotary pump, comprising
- (a) a pump chamber, said pump chamber having an interior chamber wall;
- (b) one or more impellers rotationally displaced within said pump chamber, each impeller comprising:
- a hub located substantially in the center of each impeller, wherein each of said hubs rotates around a central axis of each of said impellers;
- one or more lobes extending radially outward from each of said central axes, each of said lobes having a first end and a second end, said first end proximate to said chamber wall and said second end proximate to said central axis; and
- a substantially arcuate cut-out portion between each of said lobes on said impellers, each of said arcuate cut-out portions having a conjugate surface;
- (c) a wiper insert, interconnected to said first end of each of said lobes, wherein each of said wiper inserts operatively engages said interior chamber wall when each of said first ends of each of said lobes is proximate to said interior chamber wall and each of said conjugate surfaces when each of said first ends of each of said lobes is proximate to each of said conjugate surfaces, said wiper insert further having a blade having an edge and an inner end and an elongated portion having an outward end and an inward end, wherein said outward end is interconnected to said inner end of said blade and a retention means having a primary end and a secondary end wherein said primary end is interconnected to said inward end of said elongated portion; and
- (d) a biasing means interconnected to said secondary end of said retention means for providing a force to each of said wiper inserts in a direction radially outward from each of said central axes; and
- (e) a drive means interconnected to each of said hubs, wherein said drive means rotates each of said hubs and said impellers to operatively move fluid through said pump chamber.
- 2. The positive displacement rotary pump of claim 1, wherein said conjugate surface further comprises:
- a first end and a second end, wherein said wiper insert travels from said first end to said second end of said conjugate surface as said impeller rotates;
- an entry relief having a non-linear rounded surface interconnected to said first end of said conjugate surface; and
- an exit relief having a non-linear rounded surface interconnected to said second end of said conjugate surface, wherein said entry and exit relief substantially inhibit said wiper inserts from becoming damaged upon entry into said arcuate cut-out portion.
- 3. The positive displacement rotary pump claim 1, wherein said drive means is comprised of a motor or a manually driven hand crank.
- 4. An impeller capable of being rotated within a chamber of a rotary pump, said chamber having an interior chamber wall, said impeller comprising:
- at least one lobe extending radially outward from a hub interconnected to a drive shaft, each of said lobes having a first end and a second end, each of said first ends being proximate to said chamber wall and each of said second ends being proximate to said drive shaft;
- each of said first ends of each of said lobes having an interconnection means to operatively hold a wiper insert, said wiper inserts having a blade extending radially outward for operative engagement of said interior chamber wall, said blade having an edge and an inner end and an elongated portion having an outward end and an inward end, wherein said outward end is interconnected to said inner end of said blade, and a retention means having a primary end and a secondary end, wherein said primary end is interconnected to said inward end of said elongated portion; and
- a biasing means operatively interconnected to said lobe and providing force to push each of said wiper inserts in a direction radially outward from said hub, wherein said blade of said wiper insert operatively engages said interior chamber wall as said lobes rotate within said rotary pump.
- 5. The impeller of claim 4, wherein each of said wiper inserts comprises rubber, nitrile, viton, teflon, polymers, nylon based resins, or foam rubber.
- 6. The impeller of claim 4, wherein said biasing means is in operative contact with each of said wiper inserts.
- 7. The impeller of claim 4, wherein said biasing means is a spring.
- 8. The impeller of claim 4, wherein said interconnection means is a cavity operably sized to receive a portion of said wiper insert and having a general configuration which substantially impedes said wiper insert from becoming disengaged from said impeller.
- 9. The impeller of claim 4, wherein said interconnection means comprises a wiper insert stop, said wiper insert stop preventing said wiper insert from dislodging when said impeller rotates at a high rate of speed.
- 10. The impeller of claim 4, further comprising a substantially arcuate cut-out portion between each of said lobes, each of said arcuate cut-out portions having a conjugate surface, wherein each of said wiper inserts on a first impeller operatively engages a respective conjugate surface on a second impeller when each of said first ends of said lobes of said first impeller is proximate to said respective conjugate surface of said second impeller.
- 11. The impeller of claim 10, wherein said conjugate surface further comprises:
- a first end and a second end, wherein said blade of said wiper insert travels from said first end to said second end of said conjugate surface as said impeller rotates;
- an entry relief having a non-linear rounded surface interconnected to said first end of said conjugate surface; and
- an exit relief having a non-linear rounded surface interconnected to said second end of said conjugate surface, wherein said entry and exit relief substantially inhibit said blades of said wiper inserts from becoming damaged upon entry into said arcuate cut-out portion.
- 12. The impeller of claim 4, wherein said wiper insert is removably interconnected.
- 13. The impeller of claim 4, wherein said biasing means is a biasing element comprised of metal, plastic, rubber, or polymers with expansion properties.
- 14. A positive displacement rotary pump, comprising:
- an interior chamber wall;
- a first and second impeller located within said interior chamber wall, each of said first and said second impellers having one or more lobes and an equal amount of substantially arcuate cut-out portions, alternatively surrounding a hub, said hub substantially in the center of each of said impellers, said arcuate cut-out portions having a conjugate surface;
- a wiper insert interconnected to each of said lobes by a retention means, said wiper inserts comprising a blade having an edge and an inner end and an elongated portion having an outward end and an inward end, wherein said outward end is interconnected to said inner end of said blade, and a retention means having primary end and secondary ends wherein said primary end is interconnected to said inward end of said elongated portion; and
- a biasing means interconnected to said secondary end of said retention means which provides a force upon each of said wiper inserts in a direction which is outward from said hub; and
- a drive means operatively interconnected to said hub for rotating said first and said second impellers, wherein as said first and second impellers rotate said wiper inserts operatively engage said interior chamber wall to push a fluid through said rotary pump.
- 15. The positive displacement rotary pump of claim 14, wherein said wiper inserts interconnected to said lobes of said first impeller operatively engage said interior chamber wall or said conjugate surface of said second impeller, and said wiper inserts interconnected to said lobes of said second impeller operatively engage said interior chamber wall or said conjugate surface of said first impeller as said first and second impellers rotate.
- 16. The positive displacement rotary pump of claim 14, wherein said conjugate surface further comprises:
- a first end and a second end, wherein said wiper insert travels from said first end to said second end of said conjugate surface as said impeller rotates;
- an entry relief having a non-linear rounded surface interconnected to said first end of said conjugate surface; and
- an exit relief having a non-linear rounded surface interconnected to said second end of said conjugate surface, wherein said entry and exit relief substantially inhibit said wiper inserts from becoming damaged upon entry into said arcuate cut-out portion.
- 17. The positive displacement rotary pump of claim 14, wherein said wiper insert is removably interconnected.
- 18. A method for pumping fluid through a rotary pump, comprising the following steps:
- introducing a fluid into a pump chamber from a fluid inlet;
- rotating one or more impellers positioned within said pump chamber to impart mechanical energy to said fluid;
- contacting an interior chamber wall of said pump chamber with at least one wiper blade interconnected to a distal end of said impellers, said wiper blade comprising an edge and and an inner end, an elongated portion having an outward end and an inward end, wherein said outward end is interconnected to said inner end of said blade and a retention means having a primary end and a secondary end, wherein said primary end is interconnected to said inward end of said elongated portion; and
- a biasing means interconnected to said secondary end of said retention means for biasing said wiper blades in a direction away from said hub to provide substantially constant contact between said wiper blade and said interior chamber wall;
- wiping said interior chamber wall of said pump chamber as said wiper blade rotates about said hub, said wiping improving pumping efficiency of said rotary pump; and
- discharging said fluid from said pump chamber into a fluid outlet.
- 19. The method for pumping fluid of claim 18, wherein said wiper blade is biased with a spring.
RELATED APPLICATION
This application claims the benefit of U.S. Provisional patent application Ser. No. 60/032,046, filed on Nov. 26, 1996.
US Referenced Citations (4)