Claims
- 1. A reproduction apparatus comprising:
- a primary image forming member for forming a marking particle image;
- a moving intermediate image transfer member operatively associated with said primary image forming member for transfer of the marking, particle image from the primary image forming member to the intermediate image transfer member;
- means for electrostatically transferring a marking particle image formed on said primary image forming member from said primary image forming member to said intermediate image transfer member;
- a moving, web supported in nip relation with said intermediate image transfer member for supporting a receiver member in a nip between the web and the intermediate image transfer member;
- means for establishing an electrical transfer field in said nip for electrostatically transferring a marking particle image to the receiver member brought into intimate contact with said intermediate image transfer member in said nip; and
- wherein a wrap of the web about the intermediate image transfer member exceeds by at least 1 mm the nip at each of entrance and exit sides of the nip.
- 2. The reproduction apparatus according to claim 1 wherein said web is an endless web and has a bulk resistivity greater than 1.times.10.sup.5 ohm-cm.
- 3. The reproduction apparatus according to claim 1 wherein said web is an endless web and is supported by a support roller which applies pressure to said web to urge said web into nip relation with said intermediate image transfer member, and wherein the means for establishing an electrical transfer field in said nip includes an electrical potential source connected to said support roller.
- 4. The reproduction apparatus according to claim 1 wherein said web is an endless web and is supported by first and second support members, and said source for establishing an electrical transfer field in said nip includes a corona charger in operative association with said intermediate image transfer member between the first and second support members.
- 5. The apparatus of claim 1 wherein said intermediate image transfer member includes a compliant layer having a Young's modulus in the range of between 0.1 MPa and 10 MPa and said web has a bulk resistivity greater than 1.times.10.sup.12 ohm-cm.
- 6. The reproduction apparatus according to claim 1 wherein said web is an endless web, the apparatus includes a first support roller and a second support roller, and said endless web is supported by the first and second support rollers so that the web is in nip relation with said intermediate image transfer member, and said means for establishing an electrical transfer field in said nip includes a corona charger in operative association with said intermediate image transfer member between the first and second support rollers.
- 7. The reproduction apparatus according to claim 6 wherein said second support roller is upstream of said first support roller relative to movement of said web and is connected to an electrical potential source to establish an electrical field to prevent pre-nip ionization.
- 8. The reproduction apparatus according to claim 1 wherein said web has a bulk resistivity greater than 1.times.10.sup.12 ohm-cm.
- 9. The reproduction apparatus according to claim 8 wherein a corona charger is provided for discharging any residual charge on the web remaining once the receiver member has been removed from the web.
- 10. The reproduction apparatus according to claim 1 and including a charging device positioned to charge the receiver member prior to entrance into the nip to attract the receiver member to the web.
- 11. A reproduction apparatus comprising:
- a primary image forming member for forming a marking particle image;
- a moving intermediate image transfer member operatively associated with said primary image forming member for transfer of the marking particle image from the primary image forming member to the intermediate image transfer member;
- means for electrostatically transferring a marking particle image formed on said primary image forming member from said primary image forming member to said intermediate image transfer member;
- a moving web supported in nip relation with said intermediate image transfer member for supporting a receiver member in a nip between the web and the intermediate image transfer member;
- means for establishing an electrical transfer field in said nip for electrostatically transferring a marking particle image to the receiver member brought into intimate contact with said intermediate image transfer member in said nip;
- wherein said web has a bulk resistivity greater than 1.times.10.sup.12 ohm-cm; and
- wherein there is a wrap of the web about the intermediate image transfer member and the wrap is at a pre-nip location so that the web engages the intermediate image transfer member at a location at least 1 mm before the nip.
- 12. A reproduction apparatus comprising:
- a primary image forming member for forming a marking particle image;
- a substantially cylindrical intermediate image transfer member operatively associated with said primary image forming member for transfer of the marking particle image from the primary image forming member to the intermediate image transfer member;
- means for electrostatically transferring a marking particle image formed on said primary image forming member from said primary image forming member to said intermediate image transfer member;
- an endless web arrangement including an endless web that is moving in a direction for advancing a receiver member through a transfer nip, a plurality of support members about which said endless web is entrained, the transfer nip being between said intermediate image transfer member and said endless web member, said plurality of support members for said endless web including a support roller, said endless web being supported by the support roller in nip relation with said intermediate image transfer member and means for establishing an electrical transfer field in said nip for electrostatically transferring a marking particle image to a receiver member brought into intimate contact with said intermediate image transfer member in said nip, said means for establishing an electrical transfer field in said nip including an electrical potential source coupled to said support roller;
- wherein said intermediate image transfer member includes a compliant layer that has a Young's Modulus in the range of between 0.1 MPa and 10 MPa and said compliant layer of said intermediate image transfer member is of a thickness in the range of between 2 mm and 15 m;
- wherein said support roller is located in substantial pressure contact with said intermediate image transfer member to compress said compliant layer of said intermediate image transfer member; and
- wherein said support roller has an outer surface with a Young's Modulus substantially greater than the Young's Modulus of said compliant layer of said intermediate image transfer member, and is of a relatively smaller diameter than said intermediate image transfer member.
- 13. The reproduction apparatus according to claim 12 wherein a wrap of the web about the intermediate image transfer member exceeds by at least 1 mm the nip at each of entrance and exit sides of the nip.
- 14. The reproduction apparatus according to claim 12 wherein said compliant layer of said intermediate image transfer member has a Young's Modulus in the range of between 1 MPa and 5 MPa.
- 15. The reproduction apparatus according to claim 12 wherein said endless web has a bulk resistivity greater than 1.times.10.sup.5 ohm-cm.
- 16. A reproduction apparatus comprising:
- a primary image forming member;
- a substantially cylindrical intermediate image transfer member engaged with said primary image forming member;
- means for electrostatically transferring a marking particle image formed on said primary image forming member from said primary image forming member to said intermediate image transfer member;
- an endless web arrangement including an endless web that is moving in a direction for advancing a receiver member through a transfer nip, a plurality of support members about which said endless web is entrained, the transfer nip being between said intermediate image transfer member and said endless web member, said plurality of support members for said endless web including a support roller, said endless web being supported by the support roller in nip relation with said intermediate image transfer member and means for establishing an electrical transfer field in said nip for electrostatically transferring a marking particle image to a receiver member brought into intimate contact with said intermediate image transfer member in said nip, said means for establishing an electrical transfer field in said nip including an electrical potential source coupled to said support roller;
- wherein said intermediate image transfer member includes a compliant layer having a Young's Modulus in the range of between 0.1 MPa and 10 MPa;
- wherein said endless web has a bulk resistivity greater than 1.times.10.sup.5 ohm-cm; and
- wherein said support roller has a layer which has a compliancy within the range of 0.1 MPa to 10 MPa.
- 17. The reproduction apparatus according to claim 16 wherein said support roller has an outer surface with a Young's Modulus substantially greater than the Young's Modulus of said compliant layer of said intermediate image transfer member, and is of a relatively smaller diameter than said intermediate image transfer member.
- 18. A reproduction apparatus comprising:
- a primary image forming member;
- a substantially cylindrical intermediate image transfer member operatively associated with said primary image forming member;
- means for electrostatically transferring a marking particle image formed on said primary image forming member from said primary image forming member to said intermediate image transfer member;
- an endless web arrangement including an endless web that is moving in a direction for advancing a receiver member through a transfer nip, a plurality of support members about which said endless web is entrained, the transfer nip being between said intermediate image transfer member and said endless web member, said plurality of support members for said endless web including a support roller, said endless web being supported by the support roller in nip relation with said intermediate image transfer member and means for establishing an electrical transfer field in said nip for electrostatically transferring a marking particle image to a receiver member brought into intimate contact with said intermediate image transfer member in said nip, said means for establishing an electrical transfer field in said nip including an electrical potential source coupled to said support roller; and
- wherein said support roller is a first support roller and said plurality of support members for said endless web further includes a second support roller, said endless web being supported by said second support roller in nip relation with said intermediate image transfer member, at a position upstream of said first support roller, and wherein an electrical potential source is connected to said second support roller to establish an electrical field to prevent pre-nip ionization, the position upstream being in relation to the direction of movement of the endless web.
- 19. A reproduction method comprising:
- forming a marking particle image on a primary image forming member;
- transferring the marking particle image formed on said primary image forming member from said primary image forming member to a cylindrical surface of an intermediate image transfer member;
- advancing a receiver member into a nip defined between an endless web and said intermediate image transfer member, and establishing an electrical transfer field in said nip for electrostatically transferring the marking particle image to the receiver member brought into intimate contact with said intermediate image transfer member in said nip; and
- supporting the web at supports that are at locations at or near an entrance portion and at or near an exit portion of the nip to provide wrap of the web about the intermediate transfer member that extends beyond the nip.
- 20. The reproduction method according to claim 19 wherein said intermediate image transfer member includes a compliant layer having a Young's Modulus in the range of between 0.1 MPa and 10 MPa.
- 21. The reproduction method according to claim 20 wherein the compliant layer of said intermediate image transfer member is of a thickness of greater than 1 mm.
- 22. The reproduction method according to claim 20 wherein said compliant layer of said intermediate image transfer member is of a thickness in the range of between 2 mm and 15 mm.
- 23. The reproduction method according to claim 19 wherein said endless web has a bulk resistivity greater than 1.times.10.sup.5 ohm-cm.
- 24. The reproduction method according to claim 19 wherein said endless web has a bulk resistivity greater than 1.times.10.sup.12 ohm-cm.
- 25. The reproduction method according to claim 24 wherein said endless web is supported in nip relation with said intermediate image transfer member by a support roller, and wherein an electric potential is established between said support roller and the intermediate image transfer member.
- 26. The reproduction method according to claim 19 wherein said intermediate image transfer member has a compliant layer with a Young's Modulus in the range between 1 MPa and 5 MPa.
- 27. The reproduction method according to claim 19 wherein a corona charger operates in establishing the electric transfer field in the nip and the charger applies charge on a backside portion of the web.
- 28. The reproduction method according to claim 27 wherein the web is held in engagement with the intermediate transfer member in the nip by a structure which engages the backside of the web at a location proximate to where the charger applies charge on the backside of the web.
- 29. The reproduction method according to claim 19 wherein the web is held in engagement with the intermediate transfer member in the nip by a structure which engages the backside of the web under pressure and the intermediate image transfer member deforms in the nip.
- 30. The reproduction method according to claim 29 wherein said intermediate image transfer member includes a compliant layer that has a Young's Modulus in the range of between 1 MPa and 5 MPa and said compliant layer of said intermediate image transfer member is of a thickness in the range of between 2 mm and 15 mm.
- 31. The reproduction method according to claim 19 and including serially transferring plural different marking particle images of respective plural different colors to said intermediate image transfer member in superposed registration on said intermediate image transfer member to form a multicolor image on the intermediate image transfer member.
- 32. The reproduction method according to claim 31 wherein said endless web has a bulk resistivity greater than 1.times.10.sup.12 ohm-cm.
- 33. A reproduction method comprising:
- forming a marking particle image on each of a plural number of primary image forming members, images on the plural number of members being in different respective colors;
- transferring the marking particle image formed on each of the primary image forming members to a surface of a respective intermediate image transfer member, each primary image forming member being associated with a respective different intermediate image transfer member;
- advancing a receiver member serially into respective nips defined between one endless web and the plural number of intermediate image transfer members;
- establishing electrical transfer fields in the nips for serially electrostatically transferring in superposed registration the marking particle images to the receiver member serially brought into intimate contact with the intermediate image transfer members in the nips; and
- wherein each intermediate image transfer member is cylindrical and the endless web is partially wrapped about each intermediate image transfer member.
- 34. The reproduction method according to claim 33 and supporting the web at supports that are at locations at or near an entrance portion and at or near an exit portion of each of the nips to provide wrap of the web about each respective intermediate transfer member that extends beyond each nip.
- 35. The reproduction method according to claim 33 wherein the endless web has a bulk resistivity greater than 1.times.10.sup.12 ohm-cm.
- 36. The reproduction method according to claim 35 wherein said endless web is supported in nip relation with each respective intermediate image transfer member by a respective support roller, and wherein a respective electrical potential is established between each respective support roller and each intermediate image transfer member.
- 37. The reproduction method according to claim 35 wherein at least one of said intermediate image transfer members includes a compliant layer having a Young's Modulus in the range of between 0.1 MPa and 10 MPa.
- 38. The reproduction method according to claim 37 wherein the compliant layer of said one intermediate image transfer member is of a thickness of greater than 1 mm.
- 39. The reproduction method according to claim 37 wherein said compliant layer of said one intermediate image transfer member is of a thickness in the range of between 2 mm and 15 mm.
- 40. The reproduction method according to claim 37 wherein said compliant layer of said one intermediate image transfer member has a Young's Modulus in the range of between 1 MPa and 5 MPa.
- 41. The method of claim 33 and wherein the web is supported between intermediate image transfer members, and a receiver member leaves contact with an intermediate image transfer member as the receiver member moves along a line substantially tangent to the intermediate image transfer member.
- 42. The method of claim 33 wherein the endless web is partially rapped about each intermediate image transfer member so that there is contact of the web with each intermediate image transfer member at a location at least 1 mm from the nip.
- 43. The reproduction method of claim 33 and wherein the web is supported between intermediate image transfer members, and a receiver member leaves contact with an intermediate image transfer member as the receiver member moves along a line substantially tangent to the intermediate image transfer member, and
- wherein the web is held in engagement with each respective intermediate image transfer member in each of the respective nips by a respective support structure which engages the backside of the web under pressure and each respective intermediate image transfer member has a compliant layer of a thickness in the range between 2 mm and 15 mm with a Young's Modulus in the range between 1 MPa and 5 MPa and deforms in each of the respective nips.
- 44. The reproduction method of claim 43 wherein the endless web is partially wrapped about each intermediate image transfer member so that there is contact of the web with each intermediate image transfer member at a location at least 1 mm from the nip.
- 45. The reproduction method according to claim 33 wherein at least one of said intermediate image transfer members includes a compliant layer that has a Young's Modulus in the range of between 1 MPa and 5 MPa and said compliant layer of said one intermediate image transfer member is of a thickness in the range of between 2 mm and 15 mm.
- 46. A reproduction apparatus comprising:
- a plural number of primary image forming members for forming respective marking particle images;
- a like number of plural intermediate image transfer members each member being associated with a respective different primary image-forming member to receive in transfer a respective marking particle image from an associated primary image forming member;
- an endless moving web which forms a transfer nip with each of the plural intermediate image transfer members for supporting a receiver member that moves with the web for serially electrostatically transferring in superposed registration the marking particle images to the receiver member; and
- wherein each intermediate image transfer member is cylindrical and the endless web is partially wrapped about each intermediate image transfer member.
- 47. The reproduction apparatus of claim 46 and wherein the web is held in engagement with each respective intermediate image transfer member in each of the respective nips by a respective support structure which engages the backside of the web under pressure and each respective intermediate image transfer member has a compliant layer of a thickness in the range between 2 mm and 15 mm with a Young's Modulus in the range between 0.1 MPa and 10 MPa and deforms in each of the respective nips.
- 48. The reproduction method of claim 47 wherein there is contact of the web with each intermediate image member at a location at least 1 mm from the nip.
- 49. A reproduction apparatus comprising:
- a primary image forming member;
- a moving intermediate image transfer member operatively associated with said primary image forming member;
- means for electrostatically transferring a marking particle image formed on said primary image forming member from said primary image forming member to said intermediate image transfer member;
- a moving web supported in nip relation with said intermediate image transfer member for supporting a receiver member in a nip between the web and the intermediate image transfer member; and
- means for establishing an electrical transfer field in said nip for electrostatically transferring a marking particle image to the receiver member brought into intimate contact with said intermediate image transfer member in said nip;
- wherein said web is an endless webs the apparatus includes a first support roller and a second support roller, and said endless web is supported by the first and second support rollers so that the web is in nip relation with said intermediate image transfer member, and said means for establishing an electrical transfer field in said nip includes a corona charger in operative association with said intermediate image transfer member between the first and second support rollers; and
- wherein said second support roller is upstream of said first support roller relative to movement of said web and is connected to an electrical potential source to establish an electrical field to prevent pre-nip ionization.
Parent Case Info
This application is a continuation-in-part of U.S. application Ser. No. 08/681,746, filed Jul. 29, 1996. This application is also related to U.S. application Ser. No. 08/681,637, filed Jul. 29, 1996 and now U.S. Pat. No. 5,710,964.
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Continuation in Parts (1)
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Number |
Date |
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Parent |
681746 |
Jul 1996 |
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