MLchartDataset catalogue

Patent · US9031485B2 · B2 · US

Fixing device and endless belt assembly

(11) Publication number
US9031485B2
(21) Application number
13/746,691
(22) Filing date
2013-01-22
(30) Priority date
2012-01-24
(43) Publication date
2015-05-12
(45) Date of grant
2015-05-12
(51) IPC
B65G 45/02; G03G 15/20
(52) CPC
  • G03G Electrography; electrophotography; magnetography: 15/2025, 15/2053, 2215/2035
  • B65G Transport or storage devices, e.g. conveyors for loading or tipping, shop conveyor systems or pneumatic tube conveyors: 45/02
(73) Assignee
Ricoh Co Ltd
(72) Inventors
Kenji Ishii; Masahiko Satoh; Masaaki Yoshikawa; Hiroshi Yoshinaga; Takeshi Uchitani; Tadashi Ogawa; Hiromasa Takagi; Naoki Iwaya; Takuya Seshita; Takahiro Imada; Hajime Gotoh; Takamasa HASE; Kazuya Saito; Toshihiko Shimokawa; Shuutaroh Yuasa; Teppei Kawata; Arinobu YOSHIURA; Akira Suzuki
(54) Title
Fixing device and endless belt assembly
(57) Abstract

A fixing device includes an endless flexible belt, a stationary pad, a rotary pressure member, and a lubrication mechanism. The endless flexible belt is looped into a generally cylindrical configuration extending in an axial direction thereof for rotation in a rotational, circumferential direction thereof. The stationary pad is stationarily disposed inside the loop of the belt. The rotary pressure member is disposed parallel to the belt. The rotary pressure member presses against the stationary pad via the belt to form a nip therebetween, through which a recording medium is conveyed in a conveyance direction. The lubrication mechanism supplies lubricant between the stationary pad and the belt, and includes a first sheet of lubricant-impregnated material and a second sheet of lubricant-impregnated material.

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Claims (18)

  1. A fixing device comprising: an endless flexible belt extending in an axial direction thereof for rotation in a rotational, circumferential direction thereof; a stationary pad stationarily disposed inside the loop of the belt; a rotary pressure member disposed parallel to the belt, the rotary pressure member pressing against the stationary pad via the belt to form a nip therebetween, through which a recording medium is conveyed in a conveyance direction; and a lubrication mechanism to supply lubricant between the stationary pad and the belt, the mechanism including: a first sheet of lubricant-impregnated material surrounding the stationary pad to intervene between the stationary pad and the belt across the nip; and a second sheet of lubricant-impregnated material disposed in surface contact with the first sheet at a position outside the nip, wherein the first and second sheets are identical to each other in terms of sheet material, sheet thickness, and type of lubricant with which the sheet is impregnated.
  2. A fixing device comprising: an endless flexible belt extending in an axial direction thereof for rotation in a rotational, circumferential direction thereof; a stationary pad stationarily disposed inside the loop of the belt; a rotary pressure member disposed parallel to the belt, the rotary pressure member pressing against the stationary pad via the belt to form a nip therebetween, through which a recording medium is conveyed in a conveyance direction; and a lubrication mechanism to supply lubricant between the stationary pad and the belt, the mechanism including: a first sheet of lubricant-impregnated material surrounding the stationary pad to intervene between the stationary pad and the belt across the nip; and a second sheet of lubricant-impregnated material disposed in surface contact with the first sheet at a position outside the nip, wherein the material of the first and second sheets includes a web of fluorine resin.
  3. The fixing device according to claim 1, wherein the thickness of the first and second sheets falls in a range from 150 μm to 500 μm.
  4. The fixing device according to claim 1, wherein the first and second sheets are both impregnated with a lubricating agent that exhibits a kinematic viscosity ranging from 50 to 1,000 centistokes.
  5. The fixing device according to claim 1, wherein the first sheet wraps around the stationary pad.
  6. The fixing device according to claim 5, further comprising a reinforcing member stationarily disposed in contact with the stationary pad inside the loop of the belt for reinforcing the stationary pad, wherein the stationary pad includes one or more contact portions spaced apart from each other in the conveyance direction, each extending in the axial direction of the belt and protruding toward the reinforcing member to contact the reinforcing member, the first sheet has at least one perforation defined therein through which the contact portions are inserted to allow close fitting between the first sheet and the stationary pad except at the contact portions, and the second sheet is disposed between the contact portions of the stationary pad to establish surface contact with the first sheet.
  7. The fixing device according to claim 6, wherein the second sheet has at least one perforation defined therein in alignment with the perforation of the first sheet, through which the contact portions are inserted such that the second sheet contacts the first sheet between and around the contact portions.
  8. The fixing device according to claim 5, wherein the first sheet extends in the axial direction, which has a pair of opposed, longitudinal edges thereof overlapping each other as the first sheet wraps around the stationary pad, and the second sheet extends in the axial direction and narrower than the first sheet in the conveyance direction, which is positioned over and along the overlapping edges of the first sheet.
  9. The fixing device according to claim 6, further comprising one or more screws for fastening the lubrication mechanism onto the stationary pad, wherein the first sheet has one or more pairs of screw holes defined in the pair of opposed, longitudinal edges thereof, each paired screw holes being aligned with each other upon wrapping of the first sheet around the stationary pad, the second sheet has one or more screw holes defined therein, each being aligned with one pair of screw holes in the first sheet upon positioning of the second sheet on the first sheet, and each of the one or more screws passes through the aligned screw holes of the first and second sheets into the stationary pad to fasten the first and second sheets together onto the stationary pad.
  10. The fixing device according to claim 9, further comprising a securing plate disposed where the lubrication mechanism is screwed to secure the lubrication mechanism in place on the stationary pad.
  11. The fixing device according to claim 1, wherein the lubrication mechanism includes one or more third sheets of lubricant-impregnated material disposed in contact with the second sheet.
  12. The fixing device according to claim 1, wherein second and third sheets are identical to each other in terms of material, thickness, and type of lubricant with which the sheet is impregnated.
  13. The fixing device according to claim 1, further comprising a pair of retaining flanges, one connected to an axial end of the leaped-belt, to retain the belt in the substantially cylindrical configuration thereof.
  14. The fixing device according to claim 1, further comprising a radiant heater disposed inside the loop of the belt to radiate heat to the belt.
  15. The fixing device according to claim 1, further comprising an electromagnetic induction heater disposed outside the loop of the belt to heat the belt through electromagnetic induction.
  16. The fixing device according to claim 1, further comprising a planar resistance heater extending along and in contact with the belt in the circumferential direction thereof to generate heat for conduction to the belt.
  17. An image forming apparatus incorporating the fixing device according to claim 1.
  18. The fixing device according to claim 1, wherein the second sheet is affixed in a recess in the stationary pad.

Description

1. Technical Field

The present invention relates to a fixing device and an endless belt assembly, and more particularly, to a fixing device and an endless belt assembly for use in an image forming apparatus, such as a photocopier, facsimile machine, printer, plotter, or multifunctional machine incorporating several of these features.

2. Background Art

In electrophotographic image forming apparatuses, such as photocopiers, facsimile machines, printers, plotters, or multifunctional machines incorporating several of these features, an image is formed by attracting developer or toner particles to a photoconductive surface for subsequent transfer to a recording medium such as a sheet of paper. After transfer, the imaging process is followed by a fixing process using a fixing device, which permanently fixes the toner image in place on the recording medium with heat and pressure.

In general, a fixing device employed in electrophotographic image formation includes a pair of generally cylindrical looped belts or rollers, one being heated for fusing toner (“fuser member”) and the other being pressed against the heated one (“pressure member”), which together form a heated area of contact called a fixing nip. As a recording medium bearing a toner image thereupon enters the fixing nip, heat from the fuser member causes the toner particles to fuse and melt, while pressure between the fuser and pressure members causes the molten toner to set onto the recording medium.

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Record as JSON
{
  "publication_number": "US9031485B2",
  "country": "US",
  "kind": "B2",
  "title": "Fixing device and endless belt assembly",
  "abstract": "A fixing device includes an endless flexible belt, a stationary pad, a rotary pressure member, and a lubrication mechanism. The endless flexible belt is looped into a generally cylindrical configuration extending in an axial direction thereof for rotation in a rotational, circumferential direction thereof. The stationary pad is stationarily disposed inside the loop of the belt. The rotary pressure member is disposed parallel to the belt. The rotary pressure member presses against the stationary pad via the belt to form a nip therebetween, through which a recording medium is conveyed in a conveyance direction. The lubrication mechanism supplies lubricant between the stationary pad and the belt, and includes a first sheet of lubricant-impregnated material and a second sheet of lubricant-impregnated material.",
  "claims": [
    "1. A fixing device comprising: an endless flexible belt extending in an axial direction thereof for rotation in a rotational, circumferential direction thereof; a stationary pad stationarily disposed inside the loop of the belt; a rotary pressure member disposed parallel to the belt, the rotary pressure member pressing against the stationary pad via the belt to form a nip therebetween, through which a recording medium is conveyed in a conveyance direction; and a lubrication mechanism to supply lubricant between the stationary pad and the belt, the mechanism including: a first sheet of lubricant-impregnated material surrounding the stationary pad to intervene between the stationary pad and the belt across the nip; and a second sheet of lubricant-impregnated material disposed in surface contact with the first sheet at a position outside the nip, wherein the first and second sheets are identical to each other in terms of sheet material, sheet thickness, and type of lubricant with which the sheet is impregnated.",
    "2. A fixing device comprising: an endless flexible belt extending in an axial direction thereof for rotation in a rotational, circumferential direction thereof; a stationary pad stationarily disposed inside the loop of the belt; a rotary pressure member disposed parallel to the belt, the rotary pressure member pressing against the stationary pad via the belt to form a nip therebetween, through which a recording medium is conveyed in a conveyance direction; and a lubrication mechanism to supply lubricant between the stationary pad and the belt, the mechanism including: a first sheet of lubricant-impregnated material surrounding the stationary pad to intervene between the stationary pad and the belt across the nip; and a second sheet of lubricant-impregnated material disposed in surface contact with the first sheet at a position outside the nip, wherein the material of the first and second sheets includes a web of fluorine resin.",
    "3. The fixing device according to claim 1, wherein the thickness of the first and second sheets falls in a range from 150 μm to 500 μm.",
    "4. The fixing device according to claim 1, wherein the first and second sheets are both impregnated with a lubricating agent that exhibits a kinematic viscosity ranging from 50 to 1,000 centistokes.",
    "5. The fixing device according to claim 1, wherein the first sheet wraps around the stationary pad.",
    "6. The fixing device according to claim 5, further comprising a reinforcing member stationarily disposed in contact with the stationary pad inside the loop of the belt for reinforcing the stationary pad, wherein the stationary pad includes one or more contact portions spaced apart from each other in the conveyance direction, each extending in the axial direction of the belt and protruding toward the reinforcing member to contact the reinforcing member, the first sheet has at least one perforation defined therein through which the contact portions are inserted to allow close fitting between the first sheet and the stationary pad except at the contact portions, and the second sheet is disposed between the contact portions of the stationary pad to establish surface contact with the first sheet.",
    "7. The fixing device according to claim 6, wherein the second sheet has at least one perforation defined therein in alignment with the perforation of the first sheet, through which the contact portions are inserted such that the second sheet contacts the first sheet between and around the contact portions.",
    "8. The fixing device according to claim 5, wherein the first sheet extends in the axial direction, which has a pair of opposed, longitudinal edges thereof overlapping each other as the first sheet wraps around the stationary pad, and the second sheet extends in the axial direction and narrower than the first sheet in the conveyance direction, which is positioned over and along the overlapping edges of the first sheet.",
    "9. The fixing device according to claim 6, further comprising one or more screws for fastening the lubrication mechanism onto the stationary pad, wherein the first sheet has one or more pairs of screw holes defined in the pair of opposed, longitudinal edges thereof, each paired screw holes being aligned with each other upon wrapping of the first sheet around the stationary pad, the second sheet has one or more screw holes defined therein, each being aligned with one pair of screw holes in the first sheet upon positioning of the second sheet on the first sheet, and each of the one or more screws passes through the aligned screw holes of the first and second sheets into the stationary pad to fasten the first and second sheets together onto the stationary pad.",
    "10. The fixing device according to claim 9, further comprising a securing plate disposed where the lubrication mechanism is screwed to secure the lubrication mechanism in place on the stationary pad.",
    "11. The fixing device according to claim 1, wherein the lubrication mechanism includes one or more third sheets of lubricant-impregnated material disposed in contact with the second sheet.",
    "12. The fixing device according to claim 1, wherein second and third sheets are identical to each other in terms of material, thickness, and type of lubricant with which the sheet is impregnated.",
    "13. The fixing device according to claim 1, further comprising a pair of retaining flanges, one connected to an axial end of the leaped-belt, to retain the belt in the substantially cylindrical configuration thereof.",
    "14. The fixing device according to claim 1, further comprising a radiant heater disposed inside the loop of the belt to radiate heat to the belt.",
    "15. The fixing device according to claim 1, further comprising an electromagnetic induction heater disposed outside the loop of the belt to heat the belt through electromagnetic induction.",
    "16. The fixing device according to claim 1, further comprising a planar resistance heater extending along and in contact with the belt in the circumferential direction thereof to generate heat for conduction to the belt.",
    "17. An image forming apparatus incorporating the fixing device according to claim 1.",
    "18. The fixing device according to claim 1, wherein the second sheet is affixed in a recess in the stationary pad."
  ],
  "description_excerpt": "1. Technical Field\n\nThe present invention relates to a fixing device and an endless belt assembly, and more particularly, to a fixing device and an endless belt assembly for use in an image forming apparatus, such as a photocopier, facsimile machine, printer, plotter, or multifunctional machine incorporating several of these features.\n\n2. Background Art\n\nIn electrophotographic image forming apparatuses, such as photocopiers, facsimile machines, printers, plotters, or multifunctional machines incorporating several of these features, an image is formed by attracting developer or toner particles to a photoconductive surface for subsequent transfer to a recording medium such as a sheet of paper. After transfer, the imaging process is followed by a fixing process using a fixing device, which permanently fixes the toner image in place on the recording medium with heat and pressure.\n\nIn general, a fixing device employed in electrophotographic image formation includes a pair of generally cylindrical looped belts or rollers, one being heated for fusing toner (“fuser member”) and the other being pressed against the heated one (“pressure member”), which together form a heated area of contact called a fixing nip. As a recording medium bearing a toner image thereupon enters the fixing nip, heat from the fuser member causes the toner particles to fuse and melt, while pressure between the fuser and pressure members causes the molten toner to set onto the recording medium.",
  "cpc": [
    "G03G 15/2025",
    "B65G 45/02",
    "G03G 15/2053",
    "G03G 2215/2035"
  ],
  "ipc": [
    "B65G 45/02",
    "G03G 15/20"
  ],
  "assignees": [
    "Ricoh Co Ltd"
  ],
  "inventors": [
    "Kenji Ishii",
    "Masahiko Satoh",
    "Masaaki Yoshikawa",
    "Hiroshi Yoshinaga",
    "Takeshi Uchitani",
    "Tadashi Ogawa",
    "Hiromasa Takagi",
    "Naoki Iwaya",
    "Takuya Seshita",
    "Takahiro Imada",
    "Hajime Gotoh",
    "Takamasa HASE",
    "Kazuya Saito",
    "Toshihiko Shimokawa",
    "Shuutaroh Yuasa",
    "Teppei Kawata",
    "Arinobu YOSHIURA",
    "Akira Suzuki"
  ],
  "filing_date": "2013-01-22",
  "publication_date": "2015-05-12",
  "grant_date": "2015-05-12",
  "priority_date": "2012-01-24",
  "application_number": "US-201313746691-A",
  "family_id": "48797321",
  "cited_by_count": 2,
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}

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