Claims
- 1. A sheet-fed offset printing process, which comprises:altering flow relationships in an interior of a housing of a sheet delivery of a sheet-fed printing machine to prevent uncontrolled spread of powder in the housing by: at least one of: extracting powder-laden air from the housing on at least one point along an empty run of a sheet conveying device; and feeding air into the housing from outside the housing on at least one point along the empty run; channeling air flows inside the housing by feeding air not laden with powder into the housing and leading the air not laden with powder into an air flow path along the empty run downstream of the at least one point with respect to a direction of motion of the empty run to transport the air not laden with powder in a direction toward a printing unit of the printing machine by at least one of: a suction effect of the empty run; and at least impeding an inflow of powder-laden air from a region of at least one of a conveying run of the sheet conveying device and a powdering device into the flow path along the empty run.
- 2. The process according to claim 1, which further comprises feeding in the air not laden with powder from above the empty run into the air flow path along the empty run.
- 3. The process according to claim 1, which further comprises controlling an amount of air fed into the housing by at least one of a printing speed of the printing machine and a running speed of the sheet conveying device.
- 4. The process according to claim 1, which further comprises:providing at least some of the air fed into the housing at atmospheric pressure; and drawing the air into the housing with a vacuum generated in the housing.
- 5. The process according to claim 4, wherein the providing step is performed by providing the air from an air reservoir disposed on a top side of the housing.
- 6. The process according to claim 1, which further comprises blocking the inflow of powder-laden air from the region of at least one of the conveying run and the powdering device into a flow path of the empty run by deflecting at least some of the air fed in through the air flow path along the empty run in a downward direction past a side of the powdering device facing the printing machine towards sheets transported by the conveying run past the powdering device.
- 7. The process according to claim 1, which further comprises feeding cleaned surrounding air into the housing of the sheet delivery.
- 8. The process according to claim 1, which further comprises interrupting the air flow path running along the empty run of the sheet conveying device in the direction toward the printing unit by at least one of extracting the powder-laden air and feeding air into the housing from outside on at least one point between a free end of the housing and the printing unit.
- 9. The process according to claim 8, wherein the interrupting step is performed by interrupting the air flow path by at least one of:at least one row of brushes; and air flowing transversely with respect to the direction of motion of the empty run.
- 10. The process according to claim 1, which further comprises extracting at least one of the powder-laden air and the air not laden with powder fed into the housing from outside in a horizontal portion at a top side of the sheet delivery.
- 11. The process according to claim 1, which further comprises blocking the inflow of powder-laden air from the region of at least one of the conveying run of the sheet conveying device and the powdering device into a movement path of the empty run with a dividing wall disposed between the empty run and the conveying run.
- 12. A sheet-fed offset printing machine for printing sheets, comprising:at least one printing unit; a sheet conveying device having an empty run and a conveying run, said empty run having a motion direction, said sheet conveying device connected to said at least one printing unit; a sheet delivery having a housing defining an interior, said sheet delivery connected to said sheet conveying device; a powdering device disposed in said housing for powdering printed sheets; at least one of: air feed devices feeding air into said housing from outside said housing and disposed on at least one point along said empty run to prevent an uncontrolled spread of powder in said housing by altering flow relationships inside said housing; and air extraction devices for extracting powder-laden air from said housing and disposed on at least one point along said empty run to prevent an uncontrolled spread of powder in said housing by altering flow relationships inside said housing; and channeling devices at least one of: leading air not laden with powder, fed into said interior of said housing downstream of said at least one of said air extraction devices and said air feed devices in said motion direction, into an air flow path along said empty run to transport the air not laden with powder in a direction of said at least one printing unit by suction; and at least impeding an inflow of powder-laden air from a region of at least one of said conveying run and said powdering device into an air glow path along said empty run.
- 13. The sheet-fed offset printing machine according to claim 12, wherein said channeling devices include at least one air opening in said housing.
- 14. The sheet-fed offset printing machine according to claim 13, wherein:said housing has a top side; and said at least one air opening is disposed on said top side of said housing above said empty run.
- 15. The sheet-fed offset printing machine according to claim 13, including a delivery drum connected to said sheet conveying device, said at least one air opening being disposed between said delivery drum and said at least one of said air extraction devices and said air feed devices.
- 16. The sheet-fed offset printing machine according to claim 13, wherein air fed in through said at least one air opening is at atmospheric pressure.
- 17. The sheet-fed offset printing machine according to claim 13, wherein said powdering device has a side facing said at least one printing unit and another side facing away from said at least one printing unit, andan air diverter is disposed under said at least one air opening dividing air fed into said housing from outside said housing into two partial-flows, a first of said two partial-flows directed along said side of said powdering device facing said at least one printing unit and a second of said two partial-flows directed along said another side facing away from said at least one printing unit in a direction of sheets passing underneath said powdering device.
- 18. The sheet-fed offset printing machine according to claim 13, wherein an amount of air fed into said housing is to be controlled by altering one of a printing speed of the printing machine and a running speed of said sheet conveying device.
- 19. The sheet-fed offset printing machine according to claim 13, wherein said at least one air opening at least one of opens into said housing in a vicinity of said empty run and communicates with said interior of said housing.
- 20. The sheet-fed offset printing machine according to claim 12, wherein said channeling devices include at least one air reservoir communicating with said interior of said housing.
- 21. The sheet-fed offset printing machine according to claim 20, wherein said at least one air reservoir at least one of opens into said housing in a vicinity of said empty run and communicates with said interior of said housing.
- 22. The sheet-fed offset printing machine according to claim 20, wherein:said housing has a top side; and said at least one air reservoir is disposed on said top side of said housing above said empty run.
- 23. The sheet-fed offset printing machine according to claim 20, including a delivery drum connected to said sheet conveying device, said at least one air reservoir being disposed between said delivery drum and said at least one of said air extraction devices and said air feed devices.
- 24. The sheet-fed offset printing machine according to claim 20, wherein air fed in through said at least one air reservoir is at atmospheric pressure.
- 25. The sheet-fed offset printing machine according to claim 20, wherein said powdering device has a side facing said at least one printing unit and another side facing away from said at least one printing unit, andan air diverter is disposed under said at least one reservoir dividing air fed into said housing from outside said housing into two partial-flows, a first of said two partial-flows directed along said side of said powdering device facing said at least one printing unit and a second of said two partial-flows directed along said another side facing away from said at least one printing unit in a direction of sheets passing underneath said powdering device.
- 26. The sheet-fed offset printing machine according to claim 20, wherein an amount of air fed into said housing is to be controlled by altering one of a printing speed of the printing machine and a running speed of said sheet conveying device.
- 27. The sheet-fed offset printing machine according to claim 12, including air cleaning devices for cleaning air fed into said housing.
- 28. The sheet-fed offset printing machine according to claim 12, wherein:said sheet delivery has a length; and said channeling devices include a dividing wall disposed over a part of said length between said empty run and said conveying run.
- 29. The sheet-fed offset printing machine according to claim 28, wherein said dividing wall extends into a vicinity of said at least one printing unit.
- 30. The sheet-fed offset printing machine according to claim 28, wherein said dividing wall extends from said at least one of said air feed devices and said air extraction devices into a vicinity of said at least one printing unit.
- 31. The sheet-fed offset printing machine according to claim 12, wherein:said sheet delivery has an upper horizontal portion; and some of said at least one of said air feed devices and said air extraction devices are disposed in said upper horizontal portion.
- 32. The sheet-fed offset printing machine according to claim 12, wherein said at least one of said air feed devices and said air extraction devices produce an air flow passing through said empty run transversely with respect to said motion direction of said empty run to interrupt a powder-laden air flow running along said empty run in a direction towards said at least one printing unit.
- 33. The sheet-fed offset printing machine according to claim 12, including at least one brush configuration at least partly blocking said air flow path along said empty run.
- 34. A sheet-fed offset printing process, which comprises:altering flow relationships in an interior of a housing of a sheet delivery of a sheet-fed printing machine to prevent uncontrolled spread of powder in the housing by: moving air at a point along an empty run of a sheet conveying device; and channeling air flows inside the housing by feeding air not laden with powder into the housing and leading the air not laden with powder into an air flow path along the empty run downstream of the point with respect to a direction of motion of the empty run to transport the air not laden with powder in a direction toward a printing unit of the printing machine.
- 35. The process according to claim 34, which further comprises performing the moving air step by extracting powder-laden air from the housing at the point along an empty run of a sheet conveying device.
- 36. The process according to claim 34, which further comprises performing the moving air step by feeding air into the housing from outside the housing at the point along the empty run.
- 37. The process according to claim 34, which further comprises performing the moving air step by:extracting powder-laden air from the housing at the point along an empty run of a sheet conveying device; and feeding air into the housing from outside the housing at another point along the empty run.
- 38. The process according to claim 34, which further comprises performing the channeling step by transporting the air not laden with powder by a suction effect of the empty run.
- 39. The process according to claim 34, which further comprises performing the channeling step by transporting the air not laden with powder by at least impeding an inflow of powder-laden air from a region of at least one of a conveying run of the sheet conveying device and a powdering device into the flow path along the empty run.
- 40. The process according to claim 34, which further comprises performing the channeling step by transporting the air not laden with powder by:a suction effect of the empty run; and at least impeding an inflow of powder-laden air from a region of at least one of a conveying run of the sheet conveying device and a powdering device into the flow path along the empty run.
- 41. A sheet-fed offset printing machine for printing sheets, comprising:at least one printing unit; a sheet conveying device having an empty run and a conveying run, said empty run having a motion direction, said sheet conveying device connected to said at least one printing unit; a sheet delivery having a housing defining an interior, said sheet delivery connected to said sheet conveying device; a powdering device disposed in said housing for powdering printed sheets; an air flow device disposed at a point along said empty run to prevent an uncontrolled spread of powder in said housing by altering flow relationships inside said housing a channeling device leading air not laden with powder, fed into said interior of said housing downstream of said air flow device in said motion direction, into an air flow path along said empty run to transport the air not laden with powder in a direction of said at least one printing unit by suction.
- 42. The sheet-fed offset printing machine according to claim 41, wherein said air flow device includes at least one air feed device feeding air into said housing from outside said housing.
- 43. The sheet-fed offset printing machine according to claim 41, wherein said air flow device includes at least one air extraction device for extracting powder-laden air from said housing.
- 44. The sheet-fed offset printing machine according to claim 41, wherein said air flow device includes:at least one air feed device feeding air into said housing from outside said housing; and at least one air extraction device for extracting powder-laden air from said housing.
- 45. The sheet-fed offset printing machine according to claim 41, wherein said channeling device at least impedes an inflow of powder-laden air from a region of at least one of said conveying run and said powdering device into said air flow path along said empty run.
- 46. The sheet-fed offset printing machine according to claim 41, said channeling device leads air not laden with powder, fed into said interior of said housing downstream of said air flow devices in said motion direction, into an air flow path along said empty run to transport the air not laden with powder in a direction of said at least one printing unit by suction and at least impedes an inflow of powder-laden air from a region of at least one of said conveying run and said powdering device into said air flow path along said empty run.
Priority Claims (1)
| Number |
Date |
Country |
Kind |
| 198 52 714 |
Nov 1998 |
DE |
|
CROSS-REFERENCE TO RELATED APPLICATION
This application is a continuation of copending International Application No. PCT/EP99/08552, filed Nov. 8, 1999, which designated the United States.
US Referenced Citations (9)
Non-Patent Literature Citations (2)
| Entry |
| Patent Abstracts of Japan No. 09-057945 (Kenichi), dated Mar. 4, 1997. |
| Patent Abstracts of Japan No. 04-043038 (Yoshifumi), dated Feb. 13, 1992. |
Continuations (1)
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Number |
Date |
Country |
| Parent |
PCT/EP99/08552 |
Nov 1999 |
US |
| Child |
09/863923 |
|
US |