Sheet conveying device, image forming apparatus

The sheet conveying device and image forming apparatus facilitate easy installation and removal of rotating body units through a mounting unit and auxiliary tool, addressing the complexity of existing multi-directional operations with a simplified, intuitive design.

JP7725908B2Active Publication Date: 2025-08-20KYOCERA DOCUMENT SOLUTIONS INC
View PDF 3 Cites 0 Cited by

Patent Information

Application Number
JP2021120286
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Filing Date
2021-07-21
Publication Date
2025-08-20
Estimated Expiration
2041-07-21

AI Technical Summary

Technical Problem

The removal of rotating body units, such as pickup and feed rollers, from an image forming apparatus requires complex multi-directional operations that necessitate user understanding of detailed instructions, making it cumbersome and unintuitive.

Method used

A sheet conveying device and image forming apparatus are designed with a mounting unit and auxiliary tool that allow the rotating body unit to be mounted and removed by simple, intuitive operations, utilizing a pair of bearing support members that move between support and retracted positions and engage with an auxiliary tool for easy attachment and detachment.

Benefits of technology

Enables the rotating body unit to be easily installed and removed with minimal user effort, simplifying maintenance and reducing the need for complex instructions.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure 0007725908000001
    Figure 0007725908000001
  • Figure 0007725908000002
    Figure 0007725908000002
  • Figure 0007725908000003
    Figure 0007725908000003
Patent Text Reader

Abstract

To remove a rotating body unit from a body with a very easy operation.SOLUTION: A rotating body unit 5 has a pair of bearing parts 51 and a first engagement part 55. A pair of bearing support members 62 supports the pair of bearing parts 51 at a support position and releases the pair of bearing parts 51 supported thereby at a retreat position. An auxiliary tool 7 has a pair of arm parts 71 and a second engagement part 72. When the auxiliary tool 7 is moved close to an attachment part 6, the pair of arm parts 71 contacts with the pair of bearing support members 62 to move the pair of bearing support members 62 from the support position to the retreat position. After the pair of bearing support members 62 is moved to the retreat position, the second engagement part 72 engages with the first engagement part 55. When the second engagement part 72 engages with the first engagement part 55, the auxiliary tool 7 is drawn and separated from the attachment part 6 to draw out the rotating body unit 5 from an attachment space.SELECTED DRAWING: Figure 14
Need to check novelty before this filing date? Find Prior Art

Description

[Technical Field]

[0001] The present invention relates to a sheet conveying device and an image forming apparatus that include a rotating body unit having a rotating body that conveys a sheet to a conveying path. [Background technology]

[0002] The image forming apparatus includes a sheet transport device and a printing device. The sheet transport device transports a sheet placed on a sheet loading section to a transport path within the main body and further transports the sheet along the transport path. The printing device forms an image on the sheet transported along the transport path.

[0003] The sheet transport device includes a pickup roller and a feed roller that rotate in contact with the sheet, and the pickup roller and the feed roller transport the sheet placed on the sheet placement unit to the transport path.

[0004] The pickup roller and the feed roller are consumables that deteriorate due to the adhesion of paper dust or wear, so it is desirable that the user be able to detach and attach the pickup roller and the feed roller to and from the main body.

[0005] For example, the pickup roller and the feed roller may be provided as a rotating unit that is removably attached to the main body (see, for example, Patent Document 1).

[0006] The rotating unit includes the pickup roller, the feed roller, and a frame that rotatably supports the pickup roller and the feed roller. [Prior art documents] [Patent documents]

[0007] [Patent Document 1] Japanese Patent Application Laid-Open No. 2019-59559 Summary of the Invention [Problem to be solved by the invention]

[0008] However, the operation of removing the rotating body unit from the main body may involve moving the rotating body unit in multiple directions, and in this case, the user needs to understand in advance the procedure for moving the rotating body unit in multiple directions by reading the instruction manual, etc.

[0009] On the other hand, it is desirable that the removal operation be as simple as possible. For example, the removal operation may involve simply moving a predetermined member toward the main body and away from the main body. In this case, the user can remove the rotating body unit from the main body by an intuitive operation.

[0010] SUMMARY OF THE INVENTION An object of the present invention is to provide a sheet conveying device and an image forming apparatus having a configuration in which a rotating body unit can be removed from the main body with as simple an operation as possible. [Means for solving the problem]

[0011] A sheet transport device according to one aspect of the present invention includes a housing, a sheet feeding unit, and an auxiliary tool. The sheet feeding unit is provided in the housing and feeds sheets placed on a sheet placing unit to a transport path. The sheet feeding unit includes a mounting unit and a rotating body unit. The mounting unit is provided in the housing. The rotating body unit is mountable to the mounting unit and includes a rotating body and a frame body that supports the rotating body. The frame body has a pair of bearing units and a first engagement unit. The pair of bearing units rotatably support a rotation shaft of the rotating body and are formed to protrude outward on both sides in a width direction along the rotation shaft. The first engagement unit is engageable with a part of the auxiliary tool. The mounting unit has a pair of opposing walls, a pair of bearing support members, and a biasing member. The pair of opposing walls face each other in the width direction along the rotation shaft, across a mounting space in which the rotating body unit is disposed. The pair of bearing support members are supported by the pair of opposing walls so as to be movable between a support position located inside the pair of opposing walls in the width direction and a retracted position located outside the support position in the width direction. The pair of bearing support members support the pair of bearing portions at the support position and release support for the pair of bearing portions at the retracted position. The biasing member biases the pair of bearing support members toward the support position. The auxiliary tool has a base, a pair of arm portions, and a second engaging portion. The pair of arm portions extend from the base and are formed in parallel at a distance corresponding to the distance between the pair of bearing support members. The second engaging portion is engageable with the first engaging portion. When the auxiliary tool is moved toward the mounting part in a direction intersecting the width direction, the pair of arm portions abut against the pair of bearing support members, moving the pair of bearing support members from the support position to the retracted position. After the pair of bearing support members move to the retracted position, the second engaging portion engages with the first engaging portion. When the second engagement portion is engaged with the first engagement portion, the assisting tool is pulled away from the mounting portion along the intersecting direction, whereby the rotating body unit is pulled out from the mounting space.

[0012] An image forming apparatus according to another aspect of the present invention includes the sheet transporting device and a printing device, wherein the printing device forms an image on a sheet transported by the sheet transporting device. [Effects of the Invention]

[0013] According to the present invention, it is possible to provide a sheet conveying device and an image forming apparatus having a configuration in which the rotating body unit can be removed from the main body with the simplest possible operation. [Brief explanation of the drawings]

[0014] [Figure 1] FIG. 1 is a diagram showing the configuration of an image forming apparatus including a sheet conveying device according to the first embodiment. [Figure 2] FIG. 2 is a diagram showing the image forming apparatus when the rear cover is open. [Figure 3] FIG. 3 is a perspective view of a roller unit and a mounting portion in the sheet conveying device according to the first embodiment. [Figure 4] FIG. 4 is a first perspective view of the roller unit in the sheet conveying device according to the first embodiment. [Figure 5] FIG. 5 is a second perspective view of the roller unit in the sheet conveying device according to the first embodiment. [Figure 6] FIG. 6 is a perspective view of the mounting portion and the surrounding area of the mounting portion in the sheet conveying device according to the first embodiment. [Figure 7] FIG. 7 is an exploded perspective view of a mounting portion in the sheet conveying device according to the first embodiment. [Figure 8] FIG. 8 is a plan sectional view of the mounting portion in the sheet conveying device according to the first embodiment. [Figure 9] FIG. 9 is a plan cross-sectional view of the roller unit and the mounting portion in the sheet conveying device according to the first embodiment (the roller unit is in a state when mounting has started). [Figure 10]FIG. 10 is a plan cross-sectional view of the roller unit and the mounting portion in the sheet conveying device according to the first embodiment (the roller unit is in a state before mounting is completed). [Figure 11] FIG. 11 is a plan cross-sectional view of the roller unit and the mounting portion in the sheet conveying device according to the first embodiment (the roller unit is mounted). [Figure 12] FIG. 12 is a perspective view of an auxiliary tool provided as an accessory to the sheet conveying device according to the first embodiment. [Figure 13] FIG. 13 is a perspective view of a main part of a mounting unit in the sheet conveying device according to the first embodiment. [Figure 14] FIG. 14 is a perspective view of the roller unit, the attachment portion, and the auxiliary tool in the sheet conveying device according to the first embodiment (the auxiliary tool is in a state before being pushed toward the attachment portion). [Figure 15] FIG. 15 is a perspective view of the roller unit, the mounting portion, and the auxiliary tool in the sheet conveying device according to the first embodiment (the auxiliary tool is pressed toward the mounting portion). [Figure 16] FIG. 16 is a perspective view of the roller unit, the mounting portion, and the auxiliary tool in the sheet conveying device according to the first embodiment (the roller unit is in a state where it has been pulled out of the mounting space together with the auxiliary tool). [Figure 17] FIG. 17 is a perspective view of a roller unit in a sheet conveying device according to the second embodiment. [Figure 18] FIG. 18 is a perspective view of a roller unit, a mounting portion, and an auxiliary tool in a sheet conveying device according to the second embodiment (the auxiliary tool is in a state before being pushed toward the mounting portion). [Figure 19] FIG. 19 is a perspective view of a roller unit, a mounting portion, and an auxiliary tool in a sheet conveying device according to the second embodiment (the auxiliary tool is pressed toward the mounting portion). [Figure 20] FIG. 20 is a perspective view of a roller unit, a mounting portion, and an auxiliary tool in a sheet conveying device according to the second embodiment (the roller unit is in a state where it has been pulled out of the mounting space together with the auxiliary tool). DETAILED DESCRIPTION OF THE INVENTION

[0015] Hereinafter, an embodiment of the present invention will be described with reference to the drawings. Note that the following embodiment is an example of the present invention, and does not limit the technical scope of the present invention.

[0016] [First embodiment: configuration of image forming apparatus 10] As shown in FIG. 1, a sheet conveying device 3 according to the first embodiment constitutes a part of an image forming apparatus 10.

[0017] The image forming apparatus 10 includes a sheet storage unit 2, a sheet transport device 3, and a printing device 4. The sheet transport device 3 and the printing device 4 are housed in a main body 1. The main body 1 is a housing that houses the sheet transport device 3 and the printing device 4.

[0018] The sheet storage unit 2 includes a sheet placement unit 20 on which a plurality of sheets are stacked. The sheet transport device 3 transports the sheets placed on the sheet placement unit 20 to a transport path 300 inside the main body 1. Furthermore, the sheet transport device 3 transports the sheets along the transport path 300.

[0019] The sheet transport device 3 includes a sheet feeding section 30 and a plurality of pairs of transport rollers 34 provided in the main body 1. The sheet feeding section 30 feeds the sheet placed on the sheet placing section 20 to a transport path 300.

[0020] The sheet feeding section 30 includes a pickup roller 31, a feeding roller 32, and a separation roller 33. The plurality of conveying roller pairs 34 includes a pull-in roller pair 340.

[0021] The pickup roller 31 rotates while being in contact with the upper surface of the sheet placed on the sheet placement unit 20. In this way, the pickup roller 31 feeds the sheet from the sheet placement unit 20 to the feed roller 32.

[0022] The feed roller 32 is in contact with the separation roller 33. While rotating, the feed roller 32 comes into contact with the upper surface of the sheet fed by the pickup roller 31. As a result, the feed roller 32 feeds the sheet to the conveying path 300.

[0023] When multiple sheets are fed by the pickup roller 31, the separation roller 33 blocks one or more of the multiple sheets that are not in contact with the feed roller 32. As a result, the pickup roller 31, the feed roller 32, and the separation roller 33 feed the sheets placed on the sheet placement unit 20 to the conveyance path 300 one by one.

[0024] The pickup roller 31 and the feed roller 32 are examples of a rotating body that transports the sheet placed on the sheet placement unit 20 to the transport path 300 inside the main body 1.

[0025] The plurality of pairs of conveying rollers 34 rotate to convey the sheet along the conveying path 300. The pair of pull-in rollers 340 takes over the conveyance of the sheet from the feed roller 32. The pair of pull-in rollers 340 includes a first pull-in roller 341 and a second pull-in roller 342 (see FIGS. 1 and 2).

[0026] The printing device 4 performs a printing process to form an image on the sheet conveyed by the sheet conveying device 3. In the example shown in Fig. 1, the printing device 4 performs the printing process by an electrophotographic method.

[0027] Therefore, the printing device 4 includes an image forming device 41, a transfer device 42, and a fixing device 43. The image forming device 41 forms a toner image. The transfer device 42 transfers the toner image to the sheet. The fixing device 43 fixes the toner image to the sheet by applying heat and pressure to the toner image on the sheet.

[0028] The printing device 4 may be a device that executes the printing process using another method, such as an inkjet method.

[0029] Pickup roller 31 and feed roller 32 are consumables that deteriorate due to the adhesion of paper dust or wear. Therefore, it is desirable that the user be able to detach and attach pickup roller 31 and feed roller 32 to and from main body 1.

[0030] In the sheet transport device 3, the pickup roller 31 and the feed roller 32 are provided as a roller unit 5. The roller unit 5 is removably attached to the main body 1. The roller unit 5 is an example of a rotating body unit.

[0031] The sheet feeding section 30 includes a mounting section 6 and a roller unit 5. The mounting section 6 is provided in the main body 1. The roller unit 5 is mounted in the mounting section 6 (see FIGS. 1 to 3).

[0032] 4 and 5, the roller unit 5 includes a pickup roller 31, a feed roller 32, and a frame 50. The frame 50 rotatably supports the pickup roller 31 and the feed roller 32. For example, the frame 50 is a member made of synthetic resin.

[0033] The image forming apparatus 10 also includes a rear cover 1x that can open and close an opening 1y formed on the rear surface of the main body 1 (see FIGS. 1 and 2). When the rear cover 1x is open, the roller unit 5 is exposed through the opening 1y of the main body 1.

[0034] With the rear cover 1x open, the roller unit 5 can be attached to the attachment portion 6 and removed from the attachment portion 6.

[0035] 2, the first pull-in roller 341 is supported by the main body 1, and the second pull-in roller 342 is supported by the rear cover 1x. Therefore, when the rear cover 1x is opened, the second pull-in roller 342 moves away from the first pull-in roller 341.

[0036] Incidentally, the operation of attaching the roller unit 5 to the main body 1 may involve moving the roller unit 5 in multiple directions. In this case, the user needs to understand in advance the procedure for moving the roller unit 5 in multiple directions, for example by reading the instruction manual.

[0037] On the other hand, it is desirable that the attachment operation be as simple as possible. For example, the attachment operation may consist of simply moving the roller unit 5 in one direction toward the main body 1. In this case, the user can attach the roller unit 5 to the main body 1 by an intuitive operation.

[0038] In the sheet conveying device 3, the roller unit 5 and the mounting portion 6 have a structure that allows the roller unit 5 to be mounted to the main body 1 with as simple an operation as possible. The structure will be described below.

[0039] In each drawing, the width direction D1 is a direction along the rotation axes of the pickup roller 31 and the feed roller 32. The width direction D1 is also a direction along the rotation axes of the plurality of transport roller pairs 34. In each drawing, the intersecting direction D2 is a predetermined direction that intersects with the width direction D1.

[0040] The roller unit 5 is mounted to the mounting portion 6 along the cross direction D2. Furthermore, the roller unit 5 is removed from the mounting portion 6 along the cross direction D2.

[0041] In each drawing, the mounting direction D21 is a direction along the cross direction D2 from the outside to the inside of the main body 1. In each drawing, the removal direction D22 is a direction along the cross direction D2 from the inside to the outside of the main body 1.

[0042] The frame 50 of the roller unit 5 has a pair of bearing portions 51. Furthermore, the frame 50 has a pair of flange portions 52.

[0043] The pair of bearing portions 51 are formed to protrude outward on both sides in the width direction D1, and support the rotation shaft 32x of the feed roller 32 so that the rotation shaft 32x can rotate.

[0044] A through hole 51a penetrating in the width direction D1 is formed in the specific bearing portion 511, which is one of the pair of bearing portions 51 (see FIG. 5). One end of the rotating shaft 32x is inserted into the through hole 51a of the specific bearing portion 511.

[0045] The pair of flanges 52 protrude outward on both sides in the width direction D1 and are formed along the cross direction D2 (see FIGS. 4 and 5).

[0046] The roller unit 5 further includes a rotation transmission mechanism 53 and a biasing mechanism 54 (see FIG. 4).

[0047] The rotation transmission mechanism 53 transmits the rotational force of the feed roller 32 to the pickup roller 31. For example, the rotation transmission mechanism 53 is a gear mechanism. Note that the rotation transmission mechanism 53 may also be a mechanism that transmits the rotational force by an endless belt.

[0048] The biasing mechanism 54 biases the pickup roller 31 against the upper surface of the sheet placed on the sheet placing section 20. In this embodiment, the biasing mechanism 54 has a spring 54a that is arranged between a part of the mounting section 6 and the upper surface of the sheet placed on the sheet placing section 20.

[0049] The biasing mechanism 54 biases the frame body 50 downward by the elastic force of the spring 54a, thereby biasing the pickup roller 31 against the upper surface of the sheet on the sheet placement unit 20.

[0050] On the other hand, the mounting portion 6 includes a base member 61, a pair of bearing support members 62, and a biasing mechanism 65. The base member 61 is fixed inside the main body 1. For example, the base member 61 is a member made of synthetic resin.

[0051] The base member 61 has a pair of opposing walls 611 (see FIGS. 6 and 7). The pair of opposing walls 611 are formed opposite each other in the width direction D1 across the mounting space 60. The roller unit 5 is disposed in the mounting space 60.

[0052] The pair of opposing walls 611 respectively support the pair of bearing support members 62 movably along the width direction D1. The pair of bearing support members 62 are disposed opposite each other in the width direction D1 with the mounting space 60 between them.

[0053] The pair of bearing support members 62 are supported so as to be movable outward in the width direction D1 from respective predetermined support positions. Figures 8 and 9 show the pair of bearing support members 62 in the support positions.

[0054] The pair of bearing support members 62 face each other across the mounting space 60 in the width direction D1. The pair of bearing support members 62 are supported by a pair of opposing walls 611 so as to be movable between the support position and the retracted position. The support position is located inside the pair of opposing walls 611 in the width direction D1. The pair of bearing support members 62 support the pair of bearing portions 51 at the support position.

[0055] In the retracted position, the pair of bearing support members 62 face each other at a distance that allows insertion of the pair of bearing portions 51. In other words, the pair of bearing support members 62 release support for the pair of bearing portions 51 in the retracted position.

[0056] Each bearing support member 62 has a locking portion 62c (see FIG. 7). The locking portion 62c catches on a part of the base member 61, thereby restricting the bearing support member 62 from moving inward in the width direction D1 beyond the support position.

[0057] Each bearing support member 62 has a hole 62a and a guide surface 62b (see FIGS. 6 to 8). Each bearing portion 51 of the roller unit 5 is fitted into the hole 62a of each bearing support member 62. In this way, the pair of bearing support members 62 support the pair of bearing portions 51, respectively.

[0058] The roller unit 5 is supported by a pair of bearing support members 62 so as to be swingable in the up and down direction.

[0059] One of the pair of bearing support members 62 is a specific support member 620 (see FIGS. 6 to 8) that supports the specific bearing portion 511. The hole 62a of the specific support member 620 is a through-hole that penetrates in the width direction D1.

[0060] The guide surface 62b is formed adjacent to the hole 62a in the cross direction D2 (see FIGS. 6 to 8). Specifically, the guide surface 62b is formed adjacent to the hole 62a in the removal direction D22.

[0061] The guide surfaces 62b are formed at an angle with respect to the intersecting direction D2. The guide surfaces 62b of the pair of bearing support members 62 are formed at an inclination such that the distance between them in the width direction D1 gradually narrows toward the mounting direction D21 (see FIG. 8). In other words, the guide surfaces 62b are formed at an inclination inward in the width direction D1 toward the mounting direction D21.

[0062] The biasing mechanism 65 biases the pair of bearing support members 62 toward the support position. In this embodiment, the biasing mechanism 65 includes a first spring 65a and a second spring 65b (see FIGS. 6 to 8). The first spring 65a and the second spring 65b are examples of biasing members.

[0063] The first spring 65a biases the specific support member 620, which is one of the pair of bearing support members 62, toward the support position. The second spring 65b biases the other of the pair of bearing support members 62 toward the support position.

[0064] The mounting portion 6 further includes a drive shaft 63, a drive gear 64, and a slide support portion 612 (see FIGS. 6 to 8). The base member 61 has the slide support portion 612.

[0065] The drive shaft 63 engages with one end of the rotation shaft 32x of the feed roller 32. When the drive shaft 63 receives an external force and rotates, it transmits a rotational force to the rotation shaft 32x.

[0066] 7, the drive shaft 63 is configured by combining a shaft member 631 and a connecting member 632. One end of the shaft member 631 is an engaging portion 63a that engages with one end of the rotation shaft 32x of the feed roller 32. The connecting member 632 is assembled to the other end of the shaft member 631.

[0067] The engagement portion 63a of the drive shaft 63 is inserted into the hole 62a of the specific support member 620. The engagement portion 63a engages with one end of the rotation shaft 32x of the feed roller 32 in the hole 62a of the specific support member 620.

[0068] The first spring 65a biases the connecting member 632 inward in the width direction D1. The connecting member 632 is connected to the drive gear 64. The rotational force of the drive gear 64 is transmitted to the shaft member 631 via the connecting member 632.

[0069] The drive shaft 63 may be configured as a single member having portions corresponding to the shaft member 631 and the connecting member 632, respectively.

[0070] The slide support portion 612 supports the drive shaft 63 so as to be movable along the width direction D1. The drive shaft 63 is supported so as to be movable along the width direction D1 in conjunction with the specific support member 620.

[0071] The first spring 65a biases the drive shaft 63 along the width direction D1 toward the mounting space 60. As a result, the first spring 65a biases the specific support member 620 via the drive shaft 63 toward the support position.

[0072] The drive gear 64 is connected to the outer end of the drive shaft 63 in the width direction D1. In this embodiment, the connecting member 632 is the outer end of the drive shaft 63 in the width direction D1. The drive gear 64 is rotated by being driven by a motor and a gear mechanism (not shown).

[0073] The drive shaft 63 rotates together with the drive gear 64. As a result, the drive shaft 63 transmits a rotational force to the rotation shaft 32x of the feed roller 32.

[0074] [Installing Roller Unit 5] Hereinafter, the operation of each part of roller unit 5 and mounting portion 6 when roller unit 5 is mounted in mounting portion 6 will be described.

[0075] As shown in FIGS. 9 and 10, the roller unit 5 is inserted into the mounting space 60 by being brought closer to the main body 1 along the cross direction D2.

[0076] The base member 61 further has a pair of guide support portions 613 (see FIGS. 6 and 8 to 10). The pair of guide support portions 613 face each other across the mounting space 60 in the width direction D1 and are formed along the intersecting direction D2.

[0077] The pair of guide support portions 613 support the pair of flange portions 52 of the roller unit 5. When the roller unit 5 is inserted into the mounting space 60 in the mounting direction D21, the pair of flange portions 52 slide on the pair of guide support portions 613. As a result, the pair of bearing portions 51 of the roller unit 5 are guided onto the guide surfaces 62b of the pair of bearing support members 62 (see FIG. 9).

[0078] Furthermore, when the roller unit 5 is inserted into the mounting space 60 in the mounting direction D21, the pair of bearing portions 51 abut against the guide surfaces 62b of the pair of bearing support members 62, and move the pair of bearing support members 62 from the support position to the retracted position (see Figure 10).

[0079] Furthermore, the guide surfaces 62b of the pair of bearing support members 62 guide the pair of bearing portions 51 into the holes 62a of the pair of bearing support members 62. When the pair of bearing portions 51 pass through the guide surfaces 62b of the pair of bearing support members 62, the pair of bearing support members 62 move inward in the width direction D1 due to the action of the biasing mechanism 65 (see FIG. 11).

[0080] As the pair of bearing support members 62 move inward in the width direction D1, the pair of bearing portions 51 fit into the holes 62a of the pair of bearing support members 62 (see FIG. 11). As a result, the roller unit 5 is supported by the pair of bearing support members 62 so as to be able to swing.

[0081] That is, after the pair of bearing support members 62 move to the retracted position, the pair of bearing support members 62 move from the retracted position to the support position by the biasing force of the biasing mechanism 65 and support the pair of bearing portions 51. As a result, the attachment of the roller unit 5 to the attachment portion 6 is completed.

[0082] As described above, the installation operation for roller unit 5 is simply to move roller unit 5 in installation direction D21. In this case, the user can install roller unit 5 in installation portion 6 of main body 1 with an intuitive and simple operation.

[0083] Incidentally, the operation of removing roller unit 5 from main body 1 may involve moving roller unit 5 in multiple directions. In this case, the user needs to understand in advance the procedure for moving roller unit 5 in multiple directions, for example by reading the instruction manual.

[0084] On the other hand, it is desirable that the removal operation be as simple as possible. For example, the removal operation may involve simply moving a specific member toward and away from the main body 1. In this case, the user can remove the roller unit 5 from the main body 1 by intuitive operations.

[0085] The sheet conveying device 3 has a configuration that allows the roller unit 5 to be removed from the main body 1 with as simple an operation as possible. The configuration will be described below.

[0086] The sheet conveying device 3 further includes an auxiliary tool 7 that is separate from the mounting portion 6 and the roller unit 5 (see FIG. 12). The auxiliary tool 7 is a tool used to remove the roller unit 5.

[0087] For example, the auxiliary tool 7 is stored in an empty space in the main body 1 or the sheet storage section 2 when not in use.

[0088] Furthermore, the frame body 50 of the roller unit 5 has a first engagement portion 55 that can engage with a part of the auxiliary tool 7 (see FIGS. 3 to 5). In this embodiment, the first engagement portion 55 is an opening formed in the frame body 50.

[0089] The auxiliary tool 7 has a base 70, a pair of arms 71, and a second engagement part 72 (see FIG. 12). The base 70 has a handle 70a that can be held with fingers. When the roller unit 5 is to be removed, the auxiliary tool 7 is used by holding the handle 70a with the fingers.

[0090] The pair of arm portions 71 are formed to extend from the base portion 70. The pair of arm portions 71 are formed in parallel at a distance corresponding to the distance between the pair of bearing support members 62. The second engagement portion 72 is a portion that can engage with the first engagement portion 55 of the roller unit 5.

[0091] The second engagement portion 72 is formed in a portion of the base portion 70 between the pair of arm portions 71. The base portion 70 has a handle portion 70a on the side opposite to the direction in which the pair of arm portions 71 extend.

[0092] In this embodiment, the auxiliary tool 7 further has one or more hook portions 73 formed by extending from the base portion 70. For example, the auxiliary tool 7 has two hook portions 73. The hook portions 73 are portions that can be hooked onto the rotation shaft 341x of the first pull-in roller 341 (see FIG. 14).

[0093] The rotation shaft 341x of the first retraction roller 341 is an example of an auxiliary support portion on which a part of the auxiliary tool 7 is hooked. The rotation shaft 341x of the first retraction roller 341 is provided above the attachment portion 6 of the main body 1.

[0094] The sheet conveying device 3 also includes a target portion 66 provided on the main body 1 and having a first mark 67. In this embodiment, the target portion 66 is a part of a member that guides the sheet conveyed by the pull-in roller pair 340.

[0095] Meanwhile, a second mark 74 corresponding to the first mark 67 is marked on the hook portion 73 of the assisting tool 7 (see FIG. 12). The hook portion 73 is an example of a positioning portion on which the second mark 74 is marked.

[0096] 13, each bearing support member 62 has an inclined surface 62d formed at an angle with respect to the intersecting direction D2. In this embodiment, the inclined surface 62d is formed adjacent to and above the hole 62a. The inclined surfaces 62d of the pair of bearing support members 62 are formed so as to be inclined such that the distance between them in the width direction D1 gradually narrows toward the mounting direction D21. In other words, the inclined surfaces 62d are formed so as to be inclined inward in the width direction D1 toward the mounting direction D21.

[0097] [Removing Roller Unit 5] The following describes the actions of the auxiliary tool 7, roller unit 5, and mounting portion 6 when the roller unit 5 is removed from the mounting portion 6.

[0098] First, the second mark 74 of the assisting tool 7 is placed at a position corresponding to the first mark 67 of the target portion 66 (see FIG. 14). As a result, the hook portion 73 of the assisting tool 7 is hooked onto the rotation shaft 341x of the first pull-in roller 341.

[0099] The hook portion 73 is hooked onto the rotation shaft 341x, so that the assisting tool 7 is supported by the rotation shaft 341x so as to be swingable.

[0100] With the hook portions 73 of the auxiliary tool 7 hooked onto the rotation shaft 341x, the tip portions of the pair of arm portions 71 of the auxiliary tool 7 come into contact with the inclined surfaces 62d of the pair of bearing support members 62. With the hook portions 73 hooked onto the rotation shaft 341x, the auxiliary tool 7 is supported by the rotation shaft 341x via the hook portions 73.

[0101] With the hook portion 73 of the auxiliary tool 7 hooked onto the rotation shaft 341x, the base portion 70 is pushed toward the attachment portion 6 (see FIG. 15). That is, with the second mark 74 positioned at a position corresponding to the first mark 67, the auxiliary tool 7 is moved toward the attachment portion 6.

[0102] When the base 70 is pushed toward the mounting portion 6, the tip ends of the pair of arm portions 71 slide along the inclined surfaces 62d of the pair of bearing support members 62, moving the pair of bearing support members 62 outward in the width direction D1 (see Figure 15).

[0103] When the base 70 is pushed toward the mounting portion 6, the pair of arms 71 move the pair of bearing support members 62 outward in the width direction D1 until the pair of bearing portions 51 of the roller unit 5 are disengaged from the holes 62a of the pair of bearing support members 62. Figure 15 shows a state in which the pair of bearing portions 51 are disengaged from the holes 62a of the pair of bearing support members 62.

[0104] That is, the pair of arm portions 71 moves the pair of bearing support members 62 , causing the pair of bearing portions 51 to come out of the holes 62 a of the pair of bearing support members 62 .

[0105] As described above, when the auxiliary device 7 is brought closer to the mounting portion 6 along the intersecting direction D2, the pair of arm portions 71 abut against the pair of bearing support members 62, moving the pair of bearing support members 62 from the support position to the retracted position.

[0106] In this embodiment, the auxiliary tool 7 is moved toward the mounting part 6 while being supported by the rotation shaft 341x via the hook part 73. When the auxiliary tool 7 is moved toward the mounting part 6, the pair of arm parts 71 come into contact with the pair of bearing support members 62, moving the pair of bearing support members 62 from the support position to the retracted position.

[0107] Furthermore, when the pair of bearing portions 51 are disengaged from the holes 62a of the pair of bearing support members 62, the second engagement portion 72 of the auxiliary tool 7 engages with the first engagement portion 55 of the roller unit 5. That is, after the pair of bearing support members 62 move to the retracted position, the second engagement portion 72 engages with the first engagement portion 55.

[0108] When the second engagement portion 72 is engaged with the first engagement portion 55, the auxiliary tool 7 is pulled away from the mounting portion 6 along the intersecting direction D2 (see FIG. 16). That is, when the second engagement portion 72 is engaged with the first engagement portion 55, the base 70 of the auxiliary tool 7 is pulled in the removal direction D22.

[0109] When the auxiliary tool 7 is pulled away from the mounting part 6, the roller unit 5 is pulled out from the mounting space 60 (see FIG. 16). That is, because the second engagement part 72 is engaged with the first engagement part 55, the roller unit 5 is pulled away from the mounting part 6 together with the auxiliary tool 7.

[0110] Furthermore, when the roller unit 5 is pulled out from the mounting space 60, the pair of flanges 52 slide on the pair of guide supports 613. This reduces the load applied from the roller unit 5 to the assisting tool 7.

[0111] As described above, the operation of removing the roller unit 5 from the attachment part 6 is a very simple operation of simply moving the assistive device 7 in a direction toward the main body 1 and in a direction away from the main body 1. This allows the user to remove the roller unit 5 from the main body 1 with an intuitive operation.

[0112] [Second embodiment] Next, a sheet conveying device 3A according to a second embodiment will be described with reference to Figures 17 to 20. The sheet conveying device 3A can be applied to the image forming apparatus 10 in place of the sheet conveying device 3.

[0113] 17 to 20, the same components as those shown in Figures 1 to 16 are denoted by the same reference numerals. Below, differences between sheet conveying device 3A and sheet conveying device 3 will be described.

[0114] The sheet transporting device 3A includes a roller unit 5A and an auxiliary device 7A instead of the roller unit 5 and the auxiliary device 7 (see FIGS. 17 and 18).

[0115] The roller unit 5A has a configuration in which the first engagement portion 55 in the roller unit 5 is replaced with a first engagement portion 55a (see FIG. 17). The first engagement portion 55a is a recess formed on the edge of the frame body 50. The first engagement portion 55a is engageable with the second engagement portion 72 of the assisting tool 7A.

[0116] The sheet conveying device 3A has a plurality of recesses 68 provided in the main body 1 (see FIG. 18). In the example shown in FIG. 18, the sheet conveying device 3A has two recesses 68. The recesses 68 are open in the removal direction D22.

[0117] The two recesses 68 are formed in a frame member 69 provided on the main body 1. Two first marks 67 pointing to the two recesses 68 are also marked on the frame member 69. The portion of the frame member 69 where the first marks 67 are marked is an example of a target portion.

[0118] The auxiliary tool 7A has a plurality of protrusions 76 provided on the base 70 instead of the hook portion 73. In the example shown in Fig. 18, the auxiliary tool 7A has two protrusions 76. The plurality of protrusions 76 are provided corresponding to the plurality of recesses 68.

[0119] The two protrusions 76 are formed to protrude from the base 70 in the same direction as the pair of arm portions 71. The two protrusions 76 can be fitted into the two recesses 68.

[0120] In this embodiment, the base 70 has two protruding portions 70b that protrude outward on both sides (see FIG. 18). The two protruding portions 76 are formed to protrude from the two protruding portions 70b.

[0121] In the auxiliary tool 7A, two second marks 74 are marked on the two protruding portions 70b, respectively. In the auxiliary tool 7A, the two protruding portions 70b are an example of a positioning portion.

[0122] When the roller unit 5A is removed, the second mark 74 of the auxiliary tool 7A is placed at a position corresponding to the first mark 67. As a result, the two protrusions 76 face the two recesses 68.

[0123] When the base 70 is pushed toward the attachment part 6 with the second mark 74 positioned at a position corresponding to the first mark 67, the two protrusions 76 of the auxiliary device 7A are fitted into the two recesses 68 (see Figure 19).

[0124] When the two protrusions 76 of the auxiliary tool 7A are fitted into the two recesses 68, the tip ends of the pair of arms 71 of the auxiliary tool 7A slide along the inclined surfaces 62d of the pair of bearing support members 62, moving the pair of bearing support members 62 outward in the width direction D1. This causes the pair of bearings 51 of the roller unit 5A to come out of the holes 62a of the pair of bearing support members 62.

[0125] FIG. 19 shows a state in which the pair of bearing portions 51 are disengaged from the holes 62 a of the pair of bearing support members 62 .

[0126] That is, the pair of arm portions 71 move the pair of bearing support members 62, causing the pair of bearing portions 51 to come out of the holes 62a of the pair of bearing support members 62. When the pair of bearing portions 51 come out of the holes 62a of the pair of bearing support members 62, the second engagement portion 72 of the auxiliary tool 7A engages with the first engagement portion 55 of the roller unit 5A.

[0127] When the second engagement portion 72 is engaged with the first engagement portion 55, the auxiliary tool 7A is pulled away from the attachment portion 6 (see FIG. 20). That is, when the second engagement portion 72 is engaged with the first engagement portion 55, the base portion 70 of the auxiliary tool 7A is pulled in the removal direction D22.

[0128] When the auxiliary tool 7A is pulled away from the mounting part 6, the roller unit 5A is pulled out from the mounting space 60 (see FIG. 20).

[0129] When the sheet conveying device 3A is employed, the same effects as when the sheet conveying device 3 is employed can be obtained. [Explanation of symbols]

[0130] 1: Main unit 3: Sheet transport device 5: Roller unit 6: Mounting part 10: Image forming device 20: Sheet stacking section 30: Sheet feeding section 31: Pickup roller 32: Feed roller 32x: Rotation axis 50: Frame 51: Bearing part 52: Tsuba section 60: Mounting space 61: Base member 62: Bearing support member 62a: Hole 62b: Guide surface 62c: Locking part 63: Drive shaft 63a: Engagement part 64: Drive gear 65: Biasing mechanism 66: Target section 67: First mark 68: Recess 69: Frame member 70: Base 70a: Handle 70b: Overhang 71: Arm part 72: Second engagement portion 73: Hook part 74: Second mark 76: Convex part 300: Transport path 340: Retraction roller pair 511: Specific bearings 611: Opposite wall 612: Slide support part 613: Guide support part 620: Specific support member D1: Width direction D2: Cross direction

Claims

1. The housing and a sheet feeding section provided in the housing and configured to feed a sheet placed on a sheet placing section to a conveyance path; and an assistive device; The sheet feeding unit a mounting portion provided on the housing; a rotating body unit that can be attached to the attachment portion and has a rotating body that conveys the sheet and a frame body that supports the rotating body, The frame body rotatably supports a rotation shaft of the rotating body, and a pair of bearing portions formed to protrude outward on both sides in a width direction along the rotation shaft; a first engaging portion engageable with a part of the assisting tool; The mounting portion is a pair of opposing walls that face each other across an installation space in which the rotating body unit is disposed in a width direction along the rotation axis; a pair of bearing support members that are supported by the pair of opposing walls so as to be movable between a support position that is on the inner side of the pair of opposing walls in the width direction and a retracted position that is on the outer side of the support positions in the width direction, and that support the pair of bearing portions at the support positions and release support for the pair of bearing portions at the retracted positions; a biasing member that biases the pair of bearing support members toward the support position, The auxiliary tool is A base and a pair of arm portions extending from the base and arranged in parallel at a distance corresponding to the distance between the pair of bearing support members; a second engaging portion engageable with the first engaging portion, When the assisting tool is brought closer to the mounting portion along a direction intersecting the width direction, the pair of arm portions come into contact with the pair of bearing support members, and move the pair of bearing support members from the support position to the retracted position, After the pair of bearing support members move to the retracted position, the second engaging portion engages with the first engaging portion, A sheet conveying device in which, when the second engagement portion is engaged with the first engagement portion, the auxiliary tool is pulled away from the mounting portion along the intersecting direction, thereby pulling the rotating body unit out of the mounting space.

2. the pair of bearing support members have guide surfaces that are inclined inward in the width direction toward a predetermined mounting direction along the intersecting direction, 2. The sheet conveying device according to claim 1, wherein when the rotating body unit is inserted into the mounting space in the mounting direction, the pair of bearing portions abut against the guide surfaces of the pair of bearing support members and move the pair of bearing support members from the support position to the retracted position, and further the pair of bearing support members move from the retracted position to the support position due to the biasing force of the biasing member, supporting the pair of bearing portions.

3. an auxiliary support portion provided on the housing and on which a part of the assisting tool is hooked; the auxiliary tool has a hook portion formed to extend from the base portion and capable of being hooked onto the auxiliary support portion, When the hook portion is hooked onto the auxiliary support portion, the auxiliary tool is supported by the auxiliary support portion so as to be swingable, When the auxiliary tool is moved toward the attachment part while being supported by the auxiliary support part via the hook part, the pair of arm parts come into contact with the pair of bearing support members, and the pair of arm parts come into contact with the pair of bearing support members.

3. The sheet transport device according to claim 1, wherein the pair of bearing support members are moved from the support position to the retracted position.

4. The mounting portion includes a plurality of recesses, the assisting tool has a plurality of protrusions formed to protrude from the base in the same direction as the pair of arm portions and capable of being fitted into the plurality of recesses, 3. The sheet conveying device according to claim 1, wherein when the plurality of convex portions are fitted into the plurality of concave portions, the pair of arm portions abut against the pair of bearing support members, thereby moving the pair of bearing support members to the retracted position.

5. a target portion provided on the housing and having a first mark thereon; the assisting tool has an alignment portion on which a second mark corresponding to the first mark is marked, 5. A sheet conveying device according to claim 1, wherein when the base is pushed toward the mounting portion with the second mark positioned at a position corresponding to the first mark, the pair of arm portions abut against the pair of bearing support members, moving the pair of bearing support members to the retracted position.

6. The sheet conveying device according to claim 1 , wherein the base portion has a handle portion on a side opposite to a direction in which the pair of arms extend.

7. Each of the pair of bearing support members has an inclined surface formed obliquely with respect to the intersecting direction, 7. The sheet conveying device according to claim 1, wherein when the auxiliary tool is brought closer to the mounting portion along the intersecting direction, the pair of arm portions slide along the inclined surfaces of the pair of bearing support members, thereby moving the pair of bearing support members from the support position to the retracted position.

8. the sheet feeding unit further includes a drive shaft that engages with one end of the rotation shaft of the rotating body and transmits a rotational force to the rotation shaft when the drive shaft rotates under an external force; the drive shaft is supported so as to be movable along the width direction in conjunction with one of the pair of bearing support members, 8. The sheet conveying device according to claim 1, wherein the biasing member biases the drive shaft toward the mounting space along the width direction, thereby biasing one of the pair of bearing support members toward the support position via the drive shaft.

9. The frame body has a pair of flanges that protrude outward in both width directions and are formed along the intersecting direction, the mounting portion has a pair of guide support portions that face each other across the mounting space in the width direction and support the pair of flange portions, 9. The sheet transport device according to claim 1, wherein the pair of flanges slide on the pair of guide support portions when the rotating body unit is pulled out of the installation space.

10. The sheet conveying device according to any one of claims 1 to 9, a printing device that forms an image on the sheet transported by the sheet transport device.

Citation Information

Patent Citations

  • Paper feeding device and recording device

    JP2006027746A

  • Paper feeder and image forming apparatus

    JP2009280397A

  • Sheet transportation device and image formation device

    JP2019059559A