Claims
- 1. A conformable roller for use in a fusing station of an electrostatographic machine, said fusing station being provided with a pressure roller and a fuser roller for fusing a toner image on a receiver, said fuser roller made from a plurality of layers surrounding an axis of rotation, said conformable roller comprising:a rigid cylindrically symmetric core member; a flexible replaceable removable compliant sleeve member in the form of a tubular belt surrounding and removably contacting the core member, said sleeve member including a compliant base cushion layer formed on a tubular strengthening band, a barrier layer coated on the base cushion layer and, an outer layer on the barrier layer; and said fusing station including an external heat source for said fuser roller, at least one of said plurality of layers being thermally resistive.
- 2. The conformable roller according to claim 1 being said fuser roller.
- 3. The conformable roller according to claim 1 being said pressure roller.
- 4. The conformable roller according to claim 1 being both said fuser roller and said pressure roller.
- 5. The conformable roller according to claim 1 wherein said sleeve member comprises:a compliant base cushion layer formed on a tubular strengthening band; a stiffening layer in intimate contact with and surrounding the base cushion layer; and, an outer layer on the stiffening layer.
- 6. The conformable roller according to claim 1 further comprising an indicia located on an outer surface of said core member, said indicia being provided on said core member to indicate a parameter relative to said core member that may be read, sensed or detected by an indicia detector, either visually, mechanically, optically, magnetically, or by a radio frequency.
- 7. The conformable roller according to claim 1 further comprising an indicia located on an outer surface of said sleeve member, said indicia being provided on said sleeve member to indicate a parameter relative to said sleeve member that may be read, sensed or detected by an indicia detector, either visually, mechanically, optically, magnetically, or by a radio frequency.
- 8. A sleeve member, included in a conformable roller of a fusing station of an electrostatographic machine, said fusing station being provided with a pressure roller and a fuser roller for fusing a toner image on a receiver, said fuser roller being provided with an external heat source, said conformable roller including both a core member and a sleeve member, said sleeve member comprising:a tubular strengthening band; a compliant base cushion layer formed on the strengthening band; an optional barrier layer coated on said base cushion layer; an outer layer coated on the barrier layer; wherein said sleeve member has the form of a tubular belt surrounding and nonadhesively intimately contacting said core member.
- 9. A method of making a sleeve member of claim 8, including the steps of:providing a cylindrical mandrill; mounting on said mandrill said strengthening band by sliding said strengthening band over said mandrel to a suitable position, the sliding being accomplished by making an inner diameter of said strengthening band temporarily larger during the sliding than an outer diameter of said mandrel; forming said base cushion layer on said strengthening band; uniformly coating said base cushion layer by said barrier layer; uniformly coating said barrier layer by said outer layer to form a completed sleeve member; and, sliding said completed sleeve member off said mandrill, the sliding being accomplished by making an inner diameter of said sleeve member temporarily larger during the sliding than an outer diameter of said mandrill.
- 10. A sleeve member, included in a conformable roller of a fusing station of an electrostatographic machine, said fusing station being provided with a pressure roller and a fuser roller for fusing a toner image on a receiver, said fuser roller being provided with an external heat source, said conformable roller including both a core member and a sleeve member, said sleeve member comprising:a tubular strengthening band; a compliant base cushion layer formed on the strengthening band; a stiffening layer in intimate contact with and surrounding the base cushion layer; an outer layer on the stiffening layer; wherein said sleeve member has the form of a tubular belt surrounding and nonadhesively intimately contacting said core member.
- 11. A method of making a sleeve member of claim 10, including the steps of:providing a cylindrical mandrill; mounting on said mandrill said strengthening band by sliding said strengthening band over said mandrel to a suitable position, the sliding being accomplished by making an inner diameter of said strengthening band temporarily larger during the sliding than an outer diameter of said mandrel; forming said base cushion layer on said strengthening band; providing said stiffening layer in the shape of a seamless metal tube; sliding said metal tube over an outer surface of said base cushion layer, the metal tube having, prior to said sliding of said metal tube, an inner diameter smaller than-an outside diameter of said base cushion layer formed on said strengthening band, the sliding being accomplished by making said inner diameter of said metal tube temporarily larger during the sliding than the outside diameter of said base cushion layer; uniformly coating said metal tube by said compliant release layer to form a completed sleeve member; and sliding said completed sleeve member off said mandrill, the sliding being accomplished by making an inner diameter of said sleeve member temporarily larger during the sliding than an outer diameter of said mandrill.
- 12. An inner sleeve member, included in a double-sleeved conformable, roller of a fusing station of an electrostatographic machine, said fusing station being provided with a pressure roller and a fuser roller for fusing a toner image on a receiver, said fuser roller being provided with an external heat source, said conformable roller including a core member and an inner sleeve member and an outer sleeve member, said inner sleeve member comprising:a tubular strengthening band; a compliant base cushion layer formed on the strengthening band; an optional protective layer coated on the base cushion layer; wherein said inner sleeve member has the form of a tubular belt surrounding and nonadhesively intimately contacting said core member.
- 13. A method of making an inner sleeve member of claim 12, including the steps of:providing a cylindrical mandrill; mounting on said mandrill said strengthening band by sliding said strengthening band over said mandrel to a suitable position, the sliding being accomplished by making an inner diameter of said strengthening band temporarily larger during the sliding than an outer diameter of said mandrel; forming said base cushion layer on said strengthening band; optionally coating said base cushion layer with a protective layer to form a completed inner sleeve member; and sliding said completed inner sleeve member off said mandrill, the sliding being accomplished by making an inner diameter of said inner sleeve member temporarily larger during the sliding than an outer diameter of said mandrill.
- 14. An outer sleeve member, included in a double-sleeved conformable roller of a fusing station of an electrostatographic machine, said fusing station being provided with a pressure roller and a fuser roller for fusing a toner image on a receiver, said fuser roller being provided with an external heat source, said conformable roller including a core member and an inner sleeve member and an outer sleeve member, the inner sleeve member including a tubular strengthening band, a compliant base cushion layer formed on the strengthening band, and an optional protective layer coated on the base cushion layer, said outer sleeve member comprising:a stiffening layer in intimate contact with and surrounding the base cushion layer; an outer layer on the stiffening layer; wherein said outer sleeve member has the form of a tubular belt surrounding and nonadhesively intimately contacting said inner sleeve member.
- 15. The outer sleeve member according to claim 14, further comprising an indicia located on an outer surface of said outer sleeve member, said indicia being provided on said outer sleeve member to indicate a parameter relative to said outer sleeve member that may be read, sensed or detected by an indicia detector, either visually, mechanically, optically, magnetically, or by a radio frequency.
- 16. A method of making an outer sleeve member of claim 14, including the steps of:providing a cylindrical mandrill; mounting on said mandrill said stiffening layer by sliding said stiffening layer over said mandrel to a suitable position, the sliding being accomplished by making an inner diameter of said stiffening layer temporarily larger during the sliding than an outer diameter of said mandrel; coating said stiffening layer by said outer layer to form a completed outer sleeve member; and sliding said completed outer sleeve member off said mandrill, the sliding being accomplished by making an inner diameter of said outer sleeve member temporarily larger during the sliding than an outer diameter of said mandrill.
- 17. A fusing station of an electrostatographic machine comprising:a rotating externally heated compliant fuser roller, said compliant fuser roller including a compliant removable replaceable sleeve member surrounding and nonadhesively intimately contacting a rigid cylindrical core member, said sleeve member including (a), (b), (c) and (d), wherein (a) is a tubular strengthening band, (b) is a base cushion layer formed on the strengthening band, (c) is a stiffening layer surrounding and in intimate contact with said base cushion layer, said stiffening layer having a Young's modulus in a range of approximately 0.1 GPa to 500 GPa and a thickness less than about 500 micrometers, (d) is an outer layer on said stiffening layer; and a counter-rotating hard pressure roller engaged to form a fusing nip with the compliant fuser roller.
- 18. A fusing station according to claim 17 wherein said base cushion layer has a Poisson's ratio in a range between approximately 0.2 and 0.5, and said outer layer has a Poisson's ratio in a range of between approximately 0.4 and 0.5.
- 19. A fusing station according to claim 17 wherein further:said strengthening band of the sleeve member of said fuser roller has a Young's modulus in a range of approximately between 100 MPa-500 GPa and a thickness in a range of approximately between 20 micrometers to 500 micrometers; said compliant base cushion layer of the sleeve member of the fuser roller includes an elastomer, the base cushion layer containing 3 to 30 volume percent of a particulate filler having a particle size in a range of approximately between 0.1 micrometer to 100 micrometers, the base cushion layer having a thickness in a range of approximately 0.25 mm to 25 mm, the base cushion layer having a thermal conductivity in a range of approximately 0.08 BTU/hr/ft/° F. to 0.3 BTU/hr/ft/° F., the base cushion layer having a Poisson's ratio in a range between approximately 0.2 and 0.5, the base cushion layer having a Young's modulus in a range of approximately 0.05 MPa to 10 MPa; said stiffening layer of the sleeve member of the fuser roller includes a seamless belt having a thickness in a range of approximately between 75 micrometers to 250 micrometers, the stiffening layer having a Young's modulus in a range of approximately between 10 GPa and 350 GPa; and said outer layer of the sleeve member of the fuser roller includes an elastomer containing 5 to 50 volume percent of a particulate filler having a particle size in a range of approximately 0.1 micrometer to 100 micrometers, the outer layer having a thickness less than about 1 millimeter, the outer layer having a thermal conductivity in a range of approximately 0.2 BTU/hr/ft/° F. to 0.5 BTU/hr/ft/° F., the outer layer having a Poisson's ratio in a range between approximately 0.4 and 0.5, and, the outer layer having a Young's modulus in a range of approximately 0.05 MPa to 10 MPa.
- 20. A toner fusing method, for use in an electrostatographic machine having a fusing station according to claim 17, said toner fusing method comprising the steps of:forming a fusing nip by engaging said rotating compliant fuser roller having an external source of heat and said counter-rotating hard pressure roller, one of the rollers being a driven roller and the other frictionally driven by pressure contact in the nip; forming an unfused toner image on a surface of a receiver sheet; feeding the leading edge of the receiver into the nip and allowing the unfused toner image on the receiver sheet to pass through the fusing nip with the unfused toner image facing the fuser roller; and wherein a compliancy of said compliant fuser roller in combination with said stiffening layer together provide a reduced wear rate of said fuser roller and an improved quality of a toner image fused on said receiver sheet by said fusing station.
- 21. A fusing station of an electrostatographic machine comprising:a rotating externally heated compliant fuser roller, the compliant fuser roller including a compliant removable replaceable sleeve member surrounding and nonadhesively intimately contacting a rigid cylindrical core member, said sleeve member including (a), (b), (c) and (d), wherein (a) is a tubular strengthening band, (b) is a base cushion layer formed on the strengthening band, (c) is an optional barrier layer on said base cushion layer, (d) is an outer layer on said barrier layer; and a counter-rotating hard pressure roller engaged to form a fusing nip with the compliant fuser roller.
- 22. A fusing station according to claim 21 wherein said base cushion layer has a Poisson's ratio in a range between approximately 0.2 and 0.5, and said outer layer has a Poisson's ratio in a range of between approximately 0.4 and 0.5.
- 23. A fusing station according to claim 21 wherein further:said strengthening band of said sleeve member of said fuser roller has a Young's modulus in a range of approximately between 100 MPa-500 GPa and a thickness in a range of approximately between 20 micrometers to 500 micrometers; said compliant base cushion layer of the sleeve member of the fuser roller includes an elastomer, the base cushion layer containing 3 to 30 volume percent of a particulate filler having a particle size in a range of approximately between 0.1 micrometer to 100 micrometers, the base cushion layer having a thickness in a range of approximately 0.25 mm to 25 mm, the base cushion layer having a thermal conductivity in a range of approximately 0.08 BTU/hr/ft/° F. to 0.3 BTU/hr/ft/° F., the base cushion layer having a Poisson's ratio between approximately 0.2 and 0.5, the base cushion layer having a Young's modulus in a range of approximately 0.05 MPa to 10 MPa; said barrier layer of the sleeve member of the fuser roller includes a fluoroelastomer plus 20 to 40 volume percent of a particulate filler; and said outer layer of the sleeve member of the fuser roller includes an elastomer and contains 5 to 50 volume percent of a particulate filler having a particle size in a range of approximately 0.1 micrometer to 100 micrometers, the outer layer having a thickness less than about 1 millimeter, the outer layer having a thermal conductivity in a range of approximately 0.2 BTU/hr/ft/° F. to 0.5 BTU/hr/ft/° F., the outer layer having a Poisson's ratio in a range between approximately 0.4 and 0.5, the outer layer having a Young's modulus in a range of approximately 0.05 MPa to 10 MPa.
- 24. A toner fusing method, for use in an electrostatographic machine having a fusing station according to claim 21, said toner fusing method comprising the steps of:forming a fusing nip by engaging said rotating compliant fuser roller having an external source of heat and said counter-rotating hard pressure roller, one of the rollers being a driven roller and the other frictionally driven by pressure contact in the nip; forming an unfused toner image on a surface of a receiver sheet; feeding the leading edge of the receiver into the nip and allowing the unfused toner image on the receiver sheet to pass through the fusing nip with the unfused toner image facing the fuser roller; and wherein a low cost of ownership of said fusing station is provided by use of said replaceable removable sleeve member.
- 25. A fusing station of an electrostatographic machine, comprising:a rotating externally heated compliant fuser roller, said compliant fuser roller including a compliant removable replaceable sleeve member surrounding and nonadhesively intimately contacting a rigid cylindrical core member, said sleeve member including (a), (b), (c) and (d), wherein (a) is a tubular strengthening band, (b) is a base cushion layer formed on the strengthening band, (c) is a stiffening layer surrounding and in intimate contact with said base cushion layer, the stiffening layer having a Young's modulus in a range of approximately 0.1 GPa to 500 GPa and a thickness less than about 500 micrometers, (d) is an outer layer on said stiffening layer; and a counter-rotating compliant pressure roller engaged to form a fusing nip with said compliant fuser roller, the compliant pressure roller including a compliant removable replaceable sleeve member surrounding and nonadhesively intimately contacting a rigid cylindrical core member, said sleeve member including (a), (b), (c) and (d), wherein (a) is a tubular strengthening band, (b) is a base cushion layer formed on the strengthening band, (c) is a stiffening layer surrounding and in intimate contact with said base cushion layer, the stiffening layer having a Young's modulus in a range of approximately 0.1 GPa to 500 GPa and a thickness less than about 500 micrometers, (d) is an outer layer on said stiffening layer.
- 26. A fusing station according to claim 25 wherein said base cushion layer of said compliant fuser roller has a Poisson's ratio in a range between approximately 0.2 and 0.5, said outer layer of said compliant fuser roller has a Poisson's ratio in a range of between approximately 0.4 and 0.5, said base cushion layer of said compliant pressure roller has a Poisson's ratio in a range between approximately 0.2 and 0.5, and said outer layer of said compliant pressure roller has a Poisson's ratio in a range of between approximately 0.4 and 0.5.
- 27. A fusing station of an electrostatographic machine comprising:a rotating compliant pressure roller including a compliant removable replaceable sleeve member surrounding and nonadhesively intimately contacting a rigid cylindrical core member, said sleeve member including (a), (b), (c) and (d), wherein (a) is a tubular strengthening band, (b) is a base cushion layer formed on the strengthening band, (c) is a stiffening layer surrounding and in intimate contact with said base cushion layer, said stiffening layer having a Young's modulus in a range of approximately 0.1 GPa to 500 GPa and a thickness less than about 500 micrometers, (d) is an outer layer on said stiffening layer; and a counter-rotating externally heated hard fuser roller engaged to form a fusing nip with said compliant pressure roller.
- 28. A fusing station according to claim 27 wherein said base cushion layer has a Poisson's ratio in a range between approximately 0.2 and 0.5, and said outer layer has a Poisson's ratio in a range of between approximately 0.4 and 0.5.
- 29. A fusing station of an electrostatographic machine comprising:a rotating first heated fuser roller; a counter-rotating second heated fuser roller engaged to form a pressure fusing nip with the first fuser roller; wherein at least one of said first and second heated fuser rollers further includes a compliant removable replaceable sleeve member surrounding and nonadhesively intimately contacting a rigid cylindrical core member, said sleeve member including (a), (b), (c) and (d), wherein (a) is a tubular strengthening band, (b) is a base cushion layer formed on the strengthening band, (c) is a stiffening layer surrounding and in intimate contact with said base cushion layer, said stiffening layer having a Young's modulus in a range of approximately 0.1 GPa to 500 GPa and a thickness less than about 500 micrometers, (d) is an outer layer on said stiffening layer; and wherein at least one of said first and second heated fuser rollers is heated by an external source of heat.
CROSS REFERENCE TO RELATED APPLICATIONS
Reference is made to the commonly assigned U.S. Patent Applications, the disclosures of which are incorporated herein by reference.
U.S. patent application Ser. No. 09/679,113, filed Oct. 4, 2000, in the names of Robert Charlebois et al, entitled INTERMEDIATE TRANSFER MEMBER HAVING A STIFFENING LAYER AND METHOD OF USING.
U.S. patent application Ser. No. 09/679,177, filed Oct. 4, 2000, in the names of Muhammed Aslam et al, entitled SLEEVED ROLLERS FOR USE IN A FUSING STATION EMPLOYING AN INTERNALLY HEATED FUSER ROLLER.
U.S. patent application Ser. No. 09/679,345, filed Oct. 4, 2000, in the names of Jiann-Hsing Chen et al, entitled EXTERNALLY HEATED DEFORMABLE FUSER ROLLER.
U.S. patent application Ser. No. 09/680,133, filed Oct. 4, 2000, in the names of Arun Chowdry et al, entitled SLEEVED PHOTOCONDUCTIVE MEMBER AND METHOD OF MAKING. U.S. patent application Ser. No. 09/680,135, filed Oct. 4, 2000, in the names of Jiann-Hsing Chen et al, entitled TONER FUSING STATION HAVING AN INTERNALLY HEATED FUSER ROLLER.
U.S. patent application Ser. No. 09/680,139, filed Oct. 4, 2000, in the names of Robert Charlebois et al, entitled INTERMEDIATE TRANSFER MEMBER WITH A REPLACEABLE SLEEVE AND METHOD OF USING SAME.
U.S. patent application Ser. No. 09/680,136, filed Oct. 4, 2000, in the names of Akin Chowdry et al, entitled IMPROVED INTERMEDIATE TRANSFER MEMBER.
U.S. patent application Ser. No. 09/680,138, filed Oct. 4, 2000, in the names of Jiann-Hsing Chen et al, entitled TONER FUSING STATION HAVING AN EXTERNALLY HEATED FUSER ROLLER.
U.S. patent application Ser. No. 09/679,016, filed Oct. 4, 2000, in the names of Arun Chowdry et al, entitled DOUBLE-SLEEVED ELECTROSTATOGRAPHIC ROLLER AND METHOD OF USING.
US Referenced Citations (27)
Foreign Referenced Citations (3)
Number |
Date |
Country |
0 246 627 |
Nov 1987 |
EP |
0 590 924 |
Apr 1994 |
EP |
61-004089 |
Jan 1986 |
JP |