MLchartDataset catalogue

Patent · US9128420B2 · B2 · US

Belt unit and image forming apparatus

(11) Publication number
US9128420B2
(21) Application number
14/513,914
(22) Filing date
2014-10-14
(30) Priority date
2011-11-18
(43) Publication date
2015-09-08
(45) Date of grant
2015-09-08
(51) IPC
B65G 15/30; B65G 15/46; B65G 23/04; G03G 15/16; G03G 15/20
(52) CPC
  • G03G Electrography; electrophotography; magnetography: 15/16, 15/1615, 15/2053, 2215/00151, 2215/00168, 2215/0132
  • B65G Transport or storage devices, e.g. conveyors for loading or tipping, shop conveyor systems or pneumatic tube conveyors: 15/30, 15/46, 23/04
(73) Assignee
Sharp Corp
(72) Inventors
Fumito Mizoguchi; Masashi Hirai; Toshiki Takiguchi
(54) Title
Belt unit and image forming apparatus
(57) Abstract

A belt unit is provided with an endless belt, a driving roller, and a pair of guide ribs. The driving roller is disposed on an inner peripheral surface side of the endless belt and drives the endless belt. The pair of guide ribs is placed on each opposite widthwise end of the inner peripheral surface of the endless belt and contacts both end faces of the driving roller, thus preventing meandering of the endless belt. Additionally, the driving roller is equipped with a low friction region at both opposite lengthwise ends in a predetermined width and the low friction region is configured to have a friction coefficient that is lower than a friction coefficient of a region adjacent to the low friction region.

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Claims (13)

  1. A belt unit comprising: an endless belt; a driving roller comprising a cylindrical body that is disposed on an inner peripheral surface side of the endless belt and that drives the endless belt; and a pair of guide ribs that is placed on each opposite widthwise end of the inner peripheral surface of the endless belt and that contacts both end faces of the driving roller, thus preventing meandering of the endless belt, wherein the driving roller is equipped with: a low friction region at least at both opposite lengthwise ends of the cylindrical body in a predetermined width; and an adjacent region adjacent to the low friction region, the adjacent region being on an outer peripheral surface of the cylindrical body of the driving roller, the adjacent region being made of a different material which is different from a material of the low friction region, and wherein the adjacent region has a friction coefficient that is higher than a friction coefficient of the low friction region, the cylindrical body of the driving roller is made of the same material as the low friction region, the driving roller is equipped with an uneven level on an outer peripheral surface of the driving roller, the uneven level being placed at each boundary between the adjacent region and the low friction region; and a diameter of the adjacent region is set to be longer than a diameter of the low friction region in such a manner that the uneven level is formed.
  2. The belt unit according to claim 1, wherein the adjacent region is formed by winding the different material onto an outer peripheral surface of the cylindrical body of the driving roller.
  3. The belt unit according to claim 2, wherein the different material includes an elastic rubber.
  4. The belt unit according to claim 1, wherein: the adjacent region is formed by winding the different material onto the outer peripheral surface of the cylindrical body of the driving roller; and a diameter of the driving roller in the adjacent region becomes longer than a diameter of the driving roller in the low friction region by winding of the different material.
  5. The belt unit according to claim 4, wherein the different material includes an elastic rubber.
  6. The belt unit according to claim 1, wherein a width of the adjacent region is set to a width not less than a half of the predetermined width of the low friction region.
  7. The belt unit according to claim 1, wherein the driving roller is equipped with a second low friction region at a region except the opposite lengthwise ends.
  8. The belt unit according to claim 1, further comprising: a secondary transfer roller that is disposed as opposed to a primary transfer belt contacting the endless belt and having a surface on which a toner image is formed, wherein: the secondary transfer roller transfers the toner image that is formed on the primary transfer belt, onto a sheet that reaches a position in which the endless belt contacts the primary transfer belt.
  9. An image forming apparatus comprising: the belt unit according to claim 1; and a fixing unit that is disposed on a downstream side from the belt unit and fixes on a sheet a toner image that is transferred onto the sheet by the belt unit.
  10. The belt unit according to claim 2, further comprising: a secondary transfer roller that is disposed as opposed to a primary transfer belt contacting the endless belt and having a surface on which a toner image is formed, wherein: the secondary transfer roller transfers the toner image that is formed on the primary transfer belt, onto a sheet that reaches a position in which the endless belt contacts the primary transfer belt.
  11. An image forming apparatus comprising: the belt unit according to claim 2; and a fixing unit that is disposed on a downstream side from the belt unit and fixes on a sheet a toner image that is transferred onto the sheet by the belt unit.
  12. The belt unit according to claim 6, further comprising: a secondary transfer roller that is disposed as opposed to a primary transfer belt contacting the endless belt and having a surface on which a toner image is formed, wherein: the secondary transfer roller transfers the toner image that is formed on the primary transfer belt, onto a sheet that reaches a position in which the endless belt contacts the primary transfer belt.
  13. An image forming apparatus comprising: the belt unit according to claim 6; and a fixing unit that is disposed on a downstream side from the belt unit and fixes on a sheet a toner image that is transferred onto the sheet by the belt unit.

Description

The present invention relates to a belt unit capable of enhancing the meandering prevention of an endless belt and also to an image forming apparatus equipped with the belt unit.

Conventionally, as driving rollers that drive an endless belt used for equipment such as OA (Office Automation) equipment, for example, driving rollers that include a roller body and elastic rubber that wound around the surface of the roller body had been known.

In recent years, however, improvement in the speed and colorization of copying machines, laser beam printers (LBP), and the like has been developed, so that the above mentioned driving rollers with the endless belt, due to the variation in the speed of feeding the endless belt by the driving roller and the irregularities of the surface of the endless belt, have problems such as character skew, image stretch, and color deviation. Thus, the dimensional precision of the driving roller and the driving precision of the belt have been very crucial.

In an attempt to solve such problems, as the driving rollers for the OA equipment, driving rollers that include sponge-typed elastic rubber that is wound around the roller body have been disclosed (see Japanese Laid-Open Patent Publication 2010-152063, for example).

However, in Japanese Laid-Open Patent Publication 2010-152063, a guide rib disposed in the endless belt is likely to overrun on the driving roller for an extended time.

Citations (15)

  • JPH01300280A
  • US5017969A
  • JPH05134486A
  • US6160978A
  • JPH11282262A
  • US6733407B2
  • JP2004046199A
  • US7242897B2
  • US20070048014A1
  • US7136611B1
  • US7536144B2
  • US8032051B2
  • US20090263154A1
  • US7957684B2
  • JP2010152063A
Record as JSON
{
  "publication_number": "US9128420B2",
  "country": "US",
  "kind": "B2",
  "title": "Belt unit and image forming apparatus",
  "abstract": "A belt unit is provided with an endless belt, a driving roller, and a pair of guide ribs. The driving roller is disposed on an inner peripheral surface side of the endless belt and drives the endless belt. The pair of guide ribs is placed on each opposite widthwise end of the inner peripheral surface of the endless belt and contacts both end faces of the driving roller, thus preventing meandering of the endless belt. Additionally, the driving roller is equipped with a low friction region at both opposite lengthwise ends in a predetermined width and the low friction region is configured to have a friction coefficient that is lower than a friction coefficient of a region adjacent to the low friction region.",
  "claims": [
    "1. A belt unit comprising: an endless belt; a driving roller comprising a cylindrical body that is disposed on an inner peripheral surface side of the endless belt and that drives the endless belt; and a pair of guide ribs that is placed on each opposite widthwise end of the inner peripheral surface of the endless belt and that contacts both end faces of the driving roller, thus preventing meandering of the endless belt, wherein the driving roller is equipped with: a low friction region at least at both opposite lengthwise ends of the cylindrical body in a predetermined width; and an adjacent region adjacent to the low friction region, the adjacent region being on an outer peripheral surface of the cylindrical body of the driving roller, the adjacent region being made of a different material which is different from a material of the low friction region, and wherein the adjacent region has a friction coefficient that is higher than a friction coefficient of the low friction region, the cylindrical body of the driving roller is made of the same material as the low friction region, the driving roller is equipped with an uneven level on an outer peripheral surface of the driving roller, the uneven level being placed at each boundary between the adjacent region and the low friction region; and a diameter of the adjacent region is set to be longer than a diameter of the low friction region in such a manner that the uneven level is formed.",
    "2. The belt unit according to claim 1, wherein the adjacent region is formed by winding the different material onto an outer peripheral surface of the cylindrical body of the driving roller.",
    "3. The belt unit according to claim 2, wherein the different material includes an elastic rubber.",
    "4. The belt unit according to claim 1, wherein: the adjacent region is formed by winding the different material onto the outer peripheral surface of the cylindrical body of the driving roller; and a diameter of the driving roller in the adjacent region becomes longer than a diameter of the driving roller in the low friction region by winding of the different material.",
    "5. The belt unit according to claim 4, wherein the different material includes an elastic rubber.",
    "6. The belt unit according to claim 1, wherein a width of the adjacent region is set to a width not less than a half of the predetermined width of the low friction region.",
    "7. The belt unit according to claim 1, wherein the driving roller is equipped with a second low friction region at a region except the opposite lengthwise ends.",
    "8. The belt unit according to claim 1, further comprising: a secondary transfer roller that is disposed as opposed to a primary transfer belt contacting the endless belt and having a surface on which a toner image is formed, wherein: the secondary transfer roller transfers the toner image that is formed on the primary transfer belt, onto a sheet that reaches a position in which the endless belt contacts the primary transfer belt.",
    "9. An image forming apparatus comprising: the belt unit according to claim 1; and a fixing unit that is disposed on a downstream side from the belt unit and fixes on a sheet a toner image that is transferred onto the sheet by the belt unit.",
    "10. The belt unit according to claim 2, further comprising: a secondary transfer roller that is disposed as opposed to a primary transfer belt contacting the endless belt and having a surface on which a toner image is formed, wherein: the secondary transfer roller transfers the toner image that is formed on the primary transfer belt, onto a sheet that reaches a position in which the endless belt contacts the primary transfer belt.",
    "11. An image forming apparatus comprising: the belt unit according to claim 2; and a fixing unit that is disposed on a downstream side from the belt unit and fixes on a sheet a toner image that is transferred onto the sheet by the belt unit.",
    "12. The belt unit according to claim 6, further comprising: a secondary transfer roller that is disposed as opposed to a primary transfer belt contacting the endless belt and having a surface on which a toner image is formed, wherein: the secondary transfer roller transfers the toner image that is formed on the primary transfer belt, onto a sheet that reaches a position in which the endless belt contacts the primary transfer belt.",
    "13. An image forming apparatus comprising: the belt unit according to claim 6; and a fixing unit that is disposed on a downstream side from the belt unit and fixes on a sheet a toner image that is transferred onto the sheet by the belt unit."
  ],
  "description_excerpt": "The present invention relates to a belt unit capable of enhancing the meandering prevention of an endless belt and also to an image forming apparatus equipped with the belt unit.\n\nConventionally, as driving rollers that drive an endless belt used for equipment such as OA (Office Automation) equipment, for example, driving rollers that include a roller body and elastic rubber that wound around the surface of the roller body had been known.\n\nIn recent years, however, improvement in the speed and colorization of copying machines, laser beam printers (LBP), and the like has been developed, so that the above mentioned driving rollers with the endless belt, due to the variation in the speed of feeding the endless belt by the driving roller and the irregularities of the surface of the endless belt, have problems such as character skew, image stretch, and color deviation. Thus, the dimensional precision of the driving roller and the driving precision of the belt have been very crucial.\n\nIn an attempt to solve such problems, as the driving rollers for the OA equipment, driving rollers that include sponge-typed elastic rubber that is wound around the roller body have been disclosed (see Japanese Laid-Open Patent Publication 2010-152063, for example).\n\nHowever, in Japanese Laid-Open Patent Publication 2010-152063, a guide rib disposed in the endless belt is likely to overrun on the driving roller for an extended time.",
  "cpc": [
    "G03G 15/16",
    "B65G 15/30",
    "B65G 15/46",
    "B65G 23/04",
    "G03G 15/1615",
    "G03G 15/2053",
    "G03G 2215/00151",
    "G03G 2215/00168",
    "G03G 2215/0132"
  ],
  "ipc": [
    "B65G 15/30",
    "B65G 15/46",
    "B65G 23/04",
    "G03G 15/16",
    "G03G 15/20"
  ],
  "assignees": [
    "Sharp Corp"
  ],
  "inventors": [
    "Fumito Mizoguchi",
    "Masashi Hirai",
    "Toshiki Takiguchi"
  ],
  "filing_date": "2014-10-14",
  "publication_date": "2015-09-08",
  "grant_date": "2015-09-08",
  "priority_date": "2011-11-18",
  "application_number": "US-201414513914-A",
  "family_id": "48425741",
  "cited_by_count": 0,
  "citations": [
    "JPH01300280A",
    "US5017969A",
    "JPH05134486A",
    "US6160978A",
    "JPH11282262A",
    "US6733407B2",
    "JP2004046199A",
    "US7242897B2",
    "US20070048014A1",
    "US7136611B1",
    "US7536144B2",
    "US8032051B2",
    "US20090263154A1",
    "US7957684B2",
    "JP2010152063A"
  ]
}

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