Patent · US6353724B1 · B1 · US
Edge-reinforced seamed belts
- (11) Publication number
- US6353724B1
- (21) Application number
- 09/676,691
- (22) Filing date
- 2000-09-29
- (30) Priority date
- 2000-09-29
- (43) Publication date
- 2002-03-05
- (45) Date of grant
- 2002-03-05
- (51) IPC
- B29C 65/00; F16G 3/00; F16G 3/10; G03G 15/16
- (52) CPC
- B29C Shaping or joining of plastics; shaping of material in a plastic state, not otherwise provided for; after-treatment of the shaped products, e.g. repairing: 65/56, 65/48, 65/4815, 65/483, 65/4845, 65/4855, 65/4865, 65/4885, 65/489, 66/1142, 66/2272, 66/244, 66/2442, 66/4322, 66/4324, 66/49, 66/71, 66/855
- B29L Indexing scheme associated with subclass B29C, relating to particular articles: 2031/709, 2031/7092
- F16G Belts, cables, or ropes, predominantly used for driving purposes; chains; fittings predominantly used therefor: 3/00, 3/10
- G03G Electrography; electrophotography; magnetography: 15/162, 2215/0119
- (73) Assignee
- Xerox Corp
- (72) Inventors
- Constance J. Thornton; T. Edwin Freeman; Theodore Lovallo; Edward L. Schlueter, Jr.; Joseph A. Swift; Xiaoying (Elizabeth) Yuan
- (54) Title
- Edge-reinforced seamed belts
- (57) Abstract
Seamed belts, in particular puzzle-cut imageable seam intermediate transfer belts and electrophotographic printing machines that use such transfer belts, that are resistant to unzipping. The seamed belts include a first substrate having a first end and a second end that mate to form a first seam that runs across the first substrate. Along at least one side edge of each end of the first substrate is a cut-out. With the first end and the second end mated to form the first seam the cut-outs align to form a larger cut-out. A second substrate is then fitted into the larger cut-out along a second seam. Beneficially, an adhesive is disposed over the first seam and the second seam. Imageable seam intermediate transfer belts have first and second substrates that are beneficially semiconductive and puzzle-cut seams.
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Claims (19)
- A seamed belt, comprising: a first substrate having a first end and a second end that mate to form a first seam that runs across said first substrate, said first substrate further including a cut-out along at least one side edge at each end of said first substrate, wherein said first end and said second end are mated to form said first seam, and wherein said cut-outs align to form a larger cut-out; and a second substrate fitted into said larger cut-out to form a second seam.
- A seamed belt according to claim 1, wherein an adhesive is disposed over said first seam and said second seam.
- A seamed belt according to claim 1, wherein said first and second substrates are semiconductive.
- A seamed belt according to claim 1, wherein said first end and said second end are puzzle-cut.
- A seamed belt according to claim 1, wherein said second seam is puzzle-cut.
- A seamed belt according to claim 1, wherein said first substrate further includes a cut-out along both side edges at each end of said first substrate, wherein said cut-outs on a first side mate to form a first larger cut-out, wherein said cut-outs on a second side mate to form a second larger cut-out, and further including a third substrate fitted into said second larger cut-out along a third seam.
- A seamed belt according to claim 6, wherein said third seam is puzzle-cut.
- An imageable seam intermediate transfer belt, comprising: a first semiconductive substrate having a first end and a second end that mate to form a first seam that runs across said first semiconductive substrate, said first semiconductive substrate further including a cut-out along at least one side edge at each end of said first semiconductive substrate, wherein said first end and said second end are mated to form said first seam, and wherein said cut-outs align to form a larger cut-out; and a second semiconductive substrate fitted into said larger cut-out to form a second seam.
- An imageable seam intermediate transfer belt according to claim 8, wherein an adhesive is disposed over said first seam and said second seam.
- An imageable seam intermediate transfer belt according to claim 8, wherein said first end and said second end are puzzle-cut.
- An imageable seam intermediate transfer belt according to claim 8, wherein said second seam is puzzle-cut.
- An imageable seam intermediate transfer belt according to claim 8, wherein said first semiconductive substrate includes a cut-out along both side edges at each end of said first semiconductive substrate, wherein said cut-outs on a first side mate to form a first larger cut-out, wherein said cut-outs on a second side mate to form a second larger cut-out, and further including a third semiconductive substrate fitted into said second larger cut-out along a third seam.
- An imageable seam intermediate transfer belt according to claim 12, wherein said third seam is puzzle-cut.
- A marking machine, comprising: a moving photoreceptor belt; a charging station for charging said photoreceptor belt; an imaging station for exposing said charged photoreceptor belt so as to produce a latent image; a developer for depositing toner on said latent image; a transfer station for transferring said deposited toner onto a substrate, said transfer station including an intermediate transfer belt that receives toner from said charging station; a fuser having a fusing member for receiving toner from said intermediate transfer belt and for fusing said transferred toner to said substrate; and a cleaning station for cleaning said photoreceptor; wherein said intermediate transfer belt comprises: a first semiconductive substrate having a first end and a second end that mate to form a first seam that runs across said first semiconductive substrate, said first semiconductive substrate further including a cut-out along at least one side edge at each end of said first semiconductive substrate, wherein said first end and said second end are mated to form said first seam, and wherein said cut-outs align to form a larger cut-out; and a second semiconductive substrate fitted into said larger cut-out to form a second seam.
- A marking machine according to claim 14, wherein an adhesive is disposed over said first seam and said second seam.
- A marking machine according to claim 14, wherein said first end and said second end are puzzle-cut.
- A marking machine according to claim 14, wherein said second seam is puzzle-cut.
- A marking machine according to claim 14, wherein said first semiconductive substrate includes a cut-out along both side edges at each end of said first semiconductive substrate, wherein said cut-outs on a first side mate to form a first larger cut-out, wherein said cut-outs on a second side mate to form a second larger cut-out, and further including a third semiconductive substrate fitted into said second larger cut-out along a third seam.
- A marking machine according to claim 18, wherein said third seam is puzzle-cut.
Description
This invention relates to seamed belts.
Electrophotographic printing is a well-known and commonly used method of copying or printing documents. Electrophotographic printing is performed by exposing a light image representation of a desired document onto a substantially uniformly charged photoreceptor. In response to that light image the photoreceptor discharges, creating an electrostatic latent image of the desired document on the photoreceptor's surface. Toner is then deposited onto that latent image, forming a toner image. The toner image is then transferred from the photoreceptor onto a receiving substrate such as a sheet of paper. The transferred toner image is then fused with the substrate, usually using heat and/or pressure. The surface of the photoreceptor is then cleaned of residual developing material and recharged in preparation for the production of another image.
The foregoing generally describes black and white electrophotographic printing machines. Electrophotographic printing can also produce color images by repeating the above process for each color of toner that is used to make the color image. For example, the photoreceptive surface may be exposed to a light image that represents a first color, say black. The resultant electrostatic latent image can then be developed with black toner particles to produce a black toner layer that is subsequently transferred onto a receiving substrate. The process can then be repeated for a second color, say yellow, then for a third color, say magenta, and finally for a fourth color, say cyan.
Citations (9)
- JPH04303870A
- US5487707A
- US5514436A
- US5549193A
- US5721032A
- US5997974A
- US6002902A
- US6245402B1
- US6261659B1
Record as JSON
{
"publication_number": "US6353724B1",
"country": "US",
"kind": "B1",
"title": "Edge-reinforced seamed belts",
"abstract": "Seamed belts, in particular puzzle-cut imageable seam intermediate transfer belts and electrophotographic printing machines that use such transfer belts, that are resistant to unzipping. The seamed belts include a first substrate having a first end and a second end that mate to form a first seam that runs across the first substrate. Along at least one side edge of each end of the first substrate is a cut-out. With the first end and the second end mated to form the first seam the cut-outs align to form a larger cut-out. A second substrate is then fitted into the larger cut-out along a second seam. Beneficially, an adhesive is disposed over the first seam and the second seam. Imageable seam intermediate transfer belts have first and second substrates that are beneficially semiconductive and puzzle-cut seams.",
"claims": [
"1. A seamed belt, comprising: a first substrate having a first end and a second end that mate to form a first seam that runs across said first substrate, said first substrate further including a cut-out along at least one side edge at each end of said first substrate, wherein said first end and said second end are mated to form said first seam, and wherein said cut-outs align to form a larger cut-out; and a second substrate fitted into said larger cut-out to form a second seam.",
"2. A seamed belt according to claim 1, wherein an adhesive is disposed over said first seam and said second seam.",
"3. A seamed belt according to claim 1, wherein said first and second substrates are semiconductive.",
"4. A seamed belt according to claim 1, wherein said first end and said second end are puzzle-cut.",
"5. A seamed belt according to claim 1, wherein said second seam is puzzle-cut.",
"6. A seamed belt according to claim 1, wherein said first substrate further includes a cut-out along both side edges at each end of said first substrate, wherein said cut-outs on a first side mate to form a first larger cut-out, wherein said cut-outs on a second side mate to form a second larger cut-out, and further including a third substrate fitted into said second larger cut-out along a third seam.",
"7. A seamed belt according to claim 6, wherein said third seam is puzzle-cut.",
"8. An imageable seam intermediate transfer belt, comprising: a first semiconductive substrate having a first end and a second end that mate to form a first seam that runs across said first semiconductive substrate, said first semiconductive substrate further including a cut-out along at least one side edge at each end of said first semiconductive substrate, wherein said first end and said second end are mated to form said first seam, and wherein said cut-outs align to form a larger cut-out; and a second semiconductive substrate fitted into said larger cut-out to form a second seam.",
"9. An imageable seam intermediate transfer belt according to claim 8, wherein an adhesive is disposed over said first seam and said second seam.",
"10. An imageable seam intermediate transfer belt according to claim 8, wherein said first end and said second end are puzzle-cut.",
"11. An imageable seam intermediate transfer belt according to claim 8, wherein said second seam is puzzle-cut.",
"12. An imageable seam intermediate transfer belt according to claim 8, wherein said first semiconductive substrate includes a cut-out along both side edges at each end of said first semiconductive substrate, wherein said cut-outs on a first side mate to form a first larger cut-out, wherein said cut-outs on a second side mate to form a second larger cut-out, and further including a third semiconductive substrate fitted into said second larger cut-out along a third seam.",
"13. An imageable seam intermediate transfer belt according to claim 12, wherein said third seam is puzzle-cut.",
"14. A marking machine, comprising: a moving photoreceptor belt; a charging station for charging said photoreceptor belt; an imaging station for exposing said charged photoreceptor belt so as to produce a latent image; a developer for depositing toner on said latent image; a transfer station for transferring said deposited toner onto a substrate, said transfer station including an intermediate transfer belt that receives toner from said charging station; a fuser having a fusing member for receiving toner from said intermediate transfer belt and for fusing said transferred toner to said substrate; and a cleaning station for cleaning said photoreceptor; wherein said intermediate transfer belt comprises: a first semiconductive substrate having a first end and a second end that mate to form a first seam that runs across said first semiconductive substrate, said first semiconductive substrate further including a cut-out along at least one side edge at each end of said first semiconductive substrate, wherein said first end and said second end are mated to form said first seam, and wherein said cut-outs align to form a larger cut-out; and a second semiconductive substrate fitted into said larger cut-out to form a second seam.",
"15. A marking machine according to claim 14, wherein an adhesive is disposed over said first seam and said second seam.",
"16. A marking machine according to claim 14, wherein said first end and said second end are puzzle-cut.",
"17. A marking machine according to claim 14, wherein said second seam is puzzle-cut.",
"18. A marking machine according to claim 14, wherein said first semiconductive substrate includes a cut-out along both side edges at each end of said first semiconductive substrate, wherein said cut-outs on a first side mate to form a first larger cut-out, wherein said cut-outs on a second side mate to form a second larger cut-out, and further including a third semiconductive substrate fitted into said second larger cut-out along a third seam.",
"19. A marking machine according to claim 18, wherein said third seam is puzzle-cut."
],
"description_excerpt": "This invention relates to seamed belts.\n\nElectrophotographic printing is a well-known and commonly used method of copying or printing documents. Electrophotographic printing is performed by exposing a light image representation of a desired document onto a substantially uniformly charged photoreceptor. In response to that light image the photoreceptor discharges, creating an electrostatic latent image of the desired document on the photoreceptor's surface. Toner is then deposited onto that latent image, forming a toner image. The toner image is then transferred from the photoreceptor onto a receiving substrate such as a sheet of paper. The transferred toner image is then fused with the substrate, usually using heat and/or pressure. The surface of the photoreceptor is then cleaned of residual developing material and recharged in preparation for the production of another image.\n\nThe foregoing generally describes black and white electrophotographic printing machines. Electrophotographic printing can also produce color images by repeating the above process for each color of toner that is used to make the color image. For example, the photoreceptive surface may be exposed to a light image that represents a first color, say black. The resultant electrostatic latent image can then be developed with black toner particles to produce a black toner layer that is subsequently transferred onto a receiving substrate. The process can then be repeated for a second color, say yellow, then for a third color, say magenta, and finally for a fourth color, say cyan.",
"cpc": [
"B29C 65/56",
"B29C 65/48",
"B29C 65/4815",
"B29C 65/483",
"B29C 65/4845",
"B29C 65/4855",
"B29C 65/4865",
"B29C 65/4885",
"B29C 65/489",
"B29C 66/1142",
"B29C 66/2272",
"B29C 66/244",
"B29C 66/2442",
"B29C 66/4322",
"B29C 66/4324",
"B29C 66/49",
"B29C 66/71",
"B29C 66/855",
"B29L 2031/709",
"B29L 2031/7092",
"F16G 3/00",
"F16G 3/10",
"G03G 15/162",
"G03G 2215/0119"
],
"ipc": [
"B29C 65/00",
"F16G 3/00",
"F16G 3/10",
"G03G 15/16"
],
"assignees": [
"Xerox Corp"
],
"inventors": [
"Constance J. Thornton",
"T. Edwin Freeman",
"Theodore Lovallo",
"Edward L. Schlueter, Jr.",
"Joseph A. Swift",
"Xiaoying (Elizabeth) Yuan"
],
"filing_date": "2000-09-29",
"publication_date": "2002-03-05",
"grant_date": "2002-03-05",
"priority_date": "2000-09-29",
"application_number": "US-67669100-A",
"family_id": "24715564",
"cited_by_count": 2,
"citations": [
"JPH04303870A",
"US5487707A",
"US5514436A",
"US5549193A",
"US5721032A",
"US5997974A",
"US6002902A",
"US6245402B1",
"US6261659B1"
]
}
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