Claims
- 1. A device for controlling leakage of liquid from a conditioning assembly, comprising:a transfer roll, for applying liquid to a side of a sheet, the transfer roll having an outer cylindrical surface; a metering roll, having an outer cylindrical surface in contact with the transfer roll, to control the flow of liquid to the transfer roll, the transfer and metering rolls being aligned with respect to one another along their axes so as to define a nip between the outer cylindrical surfaces; a supply pump to supply liquid to the nip; and a nozzle positioned near an end of one of the transfer roll and metering roll, the nozzle generating an air pressure at the roll end.
- 2. The device according to claim 1, wherein the nozzle generates a negative air pressure.
- 3. The device according to claim 2, wherein the nozzle includes a vacuum hose connected to a vacuum pump.
- 4. The device according to claim 2, further comprising an outlet line connected to the supply pump and wherein one end of the nozzle is connected to the outlet line.
- 5. The device according to claim 1, further comprising a wick in contact with an end of the metering and transfer rolls to absorb liquid at the end of the rolls.
- 6. The device according to claim 1, wherein the nozzle generates a positive pressure.
- 7. The device according to claim 6, further comprising a vacuum hose generating negative pressure at a location remote from the roll end.
- 8. The device according to claim 7, wherein the supply pump further includes an outlet line and wherein the vacuum hose is connected to the outlet line.
- 9. A printing machine of the type wherein a sheet having indicia printed thereon advances through a conditioning system, the conditioning system comprising:a pair of generally cylindrical rolls, the rolls being aligned with respect to one another along their axes so as to define a conditioner nip between the outer cylindrical surfaces, the pair of generally cylindrical rolls including a first roll adapted to drive a sheet in a first direction through the conditioner nip and a second roll, adapted to apply a liquid to a side of the sheet opposite the side that contacts the first roll; a metering roll in contact with one roll of the pair of generally cylindrical rolls for forming a fluid nip therewith and controlling the amount of fluid supplied to the one of the pair of rolls; a supply pump to supply liquid to the fluid nip; and a nozzle, positioned near an end of the fluid nip, to generate a pressure differential between the end of the nip and an interior of the nip.
- 10. The printing machine of claim 9, wherein the nozzle generates a negative pressure at the end of the nip.
- 11. The printing machine of claim 10 further comprising a vacuum source connected to the nozzle.
- 12. The printing machine of claim 9, further comprising a wick in contact with an end of one of the metering and transfer rolls to absorb liquid at the roll end.
- 13. The printing machine of claim 9, wherein the nozzle generates a positive pressure.
- 14. The printing machine of claim 13, further comprising a vacuum hose generating negative pressure to remove liquid from within the nip.
- 15. A method of controlling the amount of liquid within a nip formed between a metering roll and a transfer roll, comprising:(a) supplying liquid to the nip; and (b) generating an air pressure at an end of the nip, the air pressure at the end of the nip being different than an air pressure at an interior of the nip.
- 16. The method of claim 15, wherein step (b) generates a positive pressure and further comprising:(c) generating negative pressure within the interior of the nip to remove excess liquid from within the nip.
- 17. The method of claim 15, wherein step (b) generates a positive pressure at both ends of the nip.
- 18. The method of claim 15, wherein step (b) generates a negative pressure at both ends of the nip.
- 19. In a system for supplying a measured amount of liquid to a transfer roll wherein the liquid is supplied to a fluid reservoir defined by the area of contact between the transfer roll and a metering device through a fluid supply hose, the metering device controlling the amount of fluid supplied to the transfer roll, the improvement comprising:a fluid sealing device for sealing the liquid within the fluid reservoir, said sealing device comprising a nozzle positioned at an end of the fluid reservoir, said nozzle generating a first pressure at the end of the fluid reservoir.
- 20. The system with a fluid sealing device of claim 19, wherein the nozzle generates a negative pressure at the end of the fluid reservoir.
- 21. The system with a fluid sealing device of claim 20, wherein an end of the nozzle is operatively connected to the fluid supply hose to generate the negative pressure.
- 22. The system with a fluid sealing device of claim 19, wherein the nozzle generates a positive pressure at the end of the fluid reservoir.
- 23. The system with a fluid sealing device of claim 19, further comprising a second nozzle, the second nozzle positioned at a location removed from the end of the fluid reservoir, the second nozzle generating a negative pressure.
Parent Case Info
Priority is claimed from Provisional Application No. 60/257,814, filed Dec. 21, 2000.
US Referenced Citations (5)
Provisional Applications (1)
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Number |
Date |
Country |
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60/257814 |
Dec 2000 |
US |