IMAGE FORMING APPARATUS
20230161290 ยท 2023-05-25
Assignee
Inventors
Cpc classification
G03G21/1835
PHYSICS
G03G15/0898
PHYSICS
International classification
Abstract
An image forming apparatus (1) includes a process unit (P) which is configured to be turned upward and then detached from an apparatus main body (3). The process unit (P) includes: a photosensitive drum (47); a developing device (51) which forms a developing nip area; a guide member (81) which comes into contact with an upper surface of a sheet and guides the sheet; and a seal member (91) supported between the developing device (51) and the guide member (81) in a turnable manner, wherein the seal member (91) opens a gap between the developing device (51) and the guide member (81) in a state where the process unit (P) is attached to the apparatus main body (3), and when the process unit (P) is turned upward, the seal member (91) is turned to close the gap between the developing device (51) and the guide member (81).
Claims
1. An image forming apparatus including a process unit which is configured to be turned upward around a turning shaft and then detached from an apparatus main body, wherein the process unit includes: a photosensitive drum rotating in a predetermined rotating direction; a developing device which faces a surface of the photosensitive drum to form a developing nip area; a guide member which comes into contact with an upper surface of a sheet and guides the sheet to a downstream side of the developing nip area in the rotating direction; and a seal member supported between the developing device and the guide member in a turnable manner, wherein the seal member opens a gap between the developing device and the guide member in a state where the process unit is attached to the apparatus main body, and when the process unit is turned upward when detached from the apparatus body, the seal member is turned to close the gap between the developing device and the guide member.
2. The image forming apparatus according to claim 1, wherein the sealing member includes: a shaft member rotatably supported with respect to the developing device; a weight provided so as to extend downwardly from the shaft member; and a sheet body supported by the shaft member, wherein the sheet body is supported by the weight in a posture separated from the guide member in the state where the process unit is attached to the apparatus main body, and when the process unit is turned upward when detached from the apparatus main body, the shaft member is rotated with respect to the developing device, and the sheet body comes into contact with the guide member.
3. The image forming apparatus according to claim 1, wherein a lower surface of the guide member is formed to be planar curved in an upward arc shape along the conveying direction.
4. The image forming apparatus according to claim 2, wherein the seal member is supported such that the sheet body is kept in a substantially horizontal posture in the state where the process unit is attached to the apparatus main body.
5. The image forming apparatus according to claim 1, wherein the developing device is disposed further away from the turning shaft than the photosensitive drum.
Description
BRIEF DESCRIPTION OF DRAWINGS
[0012]
[0013]
[0014]
[0015]
[0016]
[0017]
[0018]
[0019]
[0020]
EMBODIMENT FOR CARRYING OUT THE INVENTION
[0021] Hereinafter, with reference to the attached drawings, an image forming apparatus according to the present invention will be described.
[0022] First, with reference to
[0023] The image forming apparatus 1 includes an apparatus main body 3 having an approximately rectangular parallelepiped hollow part. On the top plate of the apparatus main body 3, a vertical rear wall 5 and a discharge tray 7 inclined upwardly from the lower end of the rear wall 5 are formed. An opening is formed on the top plate in front of the discharge tray 7. The opening is opened and closed by an upper cover 9. When the opening is opened by the upper cover 9, the hollow part of the apparatus main body 3 is exposed through the opening. A sheet discharge port 11 is formed on the upper portion of the rear wall 5.
[0024] In the lower portion of the front plate of the apparatus main body 3, a manual sheet feeding port 13 is formed. Further, a manual sheet feeding tray 15 is supported on the front plate of the apparatus main body 3 in a rotatable manner around a fulcrum below the manual sheet feeding port 13. An opening is formed in the front plate above the manual sheet feeding port 13. The opening is opened and closed by a front cover 17. When the opening is opened by the front cover 17, the hollow part of the apparatus main body 3 is exposed through the opening.
[0025] In the hollow part of the apparatus main body 3, a sheet feeding cassette 21, a sheet feeding part 23, an image forming part 25, and a fixing device 27 are housed. Further, a main conveying path 29, an inversion path 31, and a manual sheet feeding path 33 along which the sheet is conveyed are formed in the apparatus main body 3.
[0026] The sheet feeding cassette 21 is housed in the lower portion of the hollow part, and is detachable along the front-and-rear direction through the opening formed in the front plate of the apparatus main body 3. The sheet feeding cassette 21 includes a placement plate 37 on which the sheet S is placed, and a retard roller 39. The placement plate 37 is supported on the bottom plate of the sheet feeding cassette 21 so as to be turnable upward and downward around the rear end portion. The retard roller 39 is disposed in front of the placement plate 37.
[0027] The sheet feeding part 23 is disposed above the front end portion of the sheet feeding cassette 21, and includes a pickup roller 41 and a feed roller 43 arranged in front of the pickup roller 41. The pickup roller 41 is rotated in contact with the sheet S placed on the placement plate 37 turned upward, and sends the sheet S forward. The feed roller 43 comes into contact with the retard roller 39 to form a separation nip area between them.
[0028] The image forming part 25 is disposed above the sheet feeding cassette 21, and includes a photosensitive drum 47, a charger 49, a developing device 51, a transferring roller 53, a cleaning device 55, and an exposure device 57. The photosensitive drum 47 is supported so as to be rotatable in the counterclockwise direction of
[0029] The developing device 51 includes a developing housing 61, two agitating members 63, and a developing roller 65. The two agitating members 63 are housed in the developing housing 61 to agitate the developer. The developing roller 65 is arranged to face the photosensitive drum 47 through the opening of the developing housing 61, and forms a developing nip area between the developing roller 65 and the photosensitive drum 47. At the developing nip area, the toner moves from the developing roller 65 to the photosensitive drum 47. A toner container 67 is detachably connected to the developing housing 61.
[0030] The transferring roller 53 faces the photosensitive drum 47 from below and forms a transferring nip area between the photosensitive drum 47 and the transferring roller 53.
[0031] The fixing device 27 is disposed on the rear side of the image forming part 25, and includes a fixing roller and a pressing roller.
[0032] The main conveying path 29 is formed so as to curve upward from the separation nip area, extend rearward substantially horizontally through the transferring nip area and the fixing device 27, and curve upward from the fixing device 27 toward the discharge port 11. A direction along the main conveying path 29 is defined as a conveying direction of the sheet S, and the upstream side and the downstream side in the following description indicate the upstream side and the downstream side in the conveying direction of the sheet S. The inversion path 31 branches from the main conveying path 29 on the downstream side of the fixing device 27, and merges with the main conveying path 29 on the downstream side of the separation nip area. The manual sheet feeding path 33 merges with the main conveying path 29 on the downstream side of the separation nip area from the manual sheet feeding port 13.
[0033] On the main conveying path 29, an intermediate rollers pair 71, a registration rollers pair 73, a switchback path 75, and a discharge rollers pair 77 are provided in order from the upstream side. The intermediate rollers pair 71 is disposed on the downstream side of the junction of the inversion path 31, the manual sheet feeding path 33 and the main conveying path 29. The registration rollers pair 73 is disposed between the intermediate rollers pair 71 and the transferring nip area. The switchback path 75 is disposed on the downstream side of the fixing device 27. The discharge rollers pair 77 is disposed inside the discharge port 11.
[0034] The main conveying path 29 from the registration rollers pair 73 to the transferring nip area is formed between an upper guide member 81 and a lower guide member 83 below the developing device 51 along a substantially horizontal direction from the front side to the rear side. The upper guide member 81 is supported by the developing housing 61 of the developing device 51, and the lower guide member 83 is supported by the apparatus main body 3.
[0035] The upper guide member 81 has a width corresponding to the maximum size of the sheet and a predetermined length along the conveying direction. The lower surface of the upper guide member 81 is formed to be planner and is curved in an upward arc shape along the conveying direction.
[0036] The photosensitive drum 47, the charger 49, the developing device 51, the cleaning device 55, the toner container 67 and the upper guide member 81 are unitized as a process unit P. As described above, the charger 49 is disposed above the photosensitive drum 47, the developing device 51 and the upper guide member 81 are disposed in front of the photosensitive drum 47, and the cleaning device 55 is disposed on the rear side of the photosensitive drum 47. The process unit P has an end portion on the side of the cleaning device 55. The process unit P is positioned at a predetermined position with respect to the apparatus main body 3, and the end portion of the process unit P is turnably supported by a turning shaft 87 extending along the horizontal direction. That is, when the process unit P is attached at the predetermined position, the photosensitive drum 47 faces the transferring roller 53 to form the transferring nip area, and the upper guide member 81 faces the lower guide member 83 to form the main conveying path. Attachment/detachment of the process unit P will be described later.
[0037] A seal member 91 is provided in a gap G between the developing device 51 and the upper guide member 81. The seal member 91 will be described with reference to
[0038] As shown in
[0039] The shaft member 93 is an elongated member having a rectangular cross section, and has a length longer than the maximum width of the sheet S. A plurality of fixing pieces 93a having the same thickness as that of the shaft member 93 protrude from the rear surface of the shaft member 93 at predetermined intervals in the left-and-right direction. The sheet body 95 has a rectangular shape long in the left-and-right direction, and is made of flexible material. The front end portion of the sheet body 95 is fixed to the lower surfaces of the shaft member 93 and the fixing pieces 93a by adhesion or the like.
[0040] Each of the two weights 99 has a rectangular parallelepiped shape long in the upper-and-lower direction, and is made of material such as resin. The right and left end surfaces of the shaft member 93 are fixed to the upper portion of the inner surfaces of the weights 99, and the weights 99 extend downward from the shaft member 93. The boss 97 protrudes from the upper portion of the outer surface of each weight 99.
[0041] As shown in
[0042] The seal member 91 is supported by the weights 99 such that the sheet body 95 is kept in a substantially horizontal posture. Specifically, the weight of the weights 99 is set such that the sheet body 95 is kept in a substantially horizontal posture where a force in which the fixing piece 93a and the sheet body 95 rotate the shaft member 93 in the counterclockwise direction of
[0043] In such a state that the seal member 91 is supported in the equilibrium posture, the tip end portion of the sheet body 95 is separated upward from the upper guide member 81. That is, when the process unit P is attached to the apparatus main body 3, a gap G is formed between the developing housing 61 of the developing device 51 and the upper guide member 81.
[0044] Next, an image forming operation will be described. First, the charger 49 charges the photosensitive drum 47, and the exposure device 57 exposes the photosensitive drum 47 based on image data. Thus, an electrostatic latent image is carried on the photosensitive drum 47. The developing device 51 develops the electrostatic latent image into a toner image. On the other hand, the sheet S placed on the placement plate 37 of the sheet feeding cassette 21 is fed by the pickup roller 41, and after being separated at the separation nip area, is conveyed to the main conveying path 29. Thereafter, the sheet S is conveyed by the intermediate rollers pair 71, and after the conveying timing is adjusted by the registration rollers pair 73, the sheet S is conveyed to the transferring nip area.
[0045] The upper surface of the sheet S passed through the registration rollers pair 73 is conveyed along the lower surface of the upper guide member 81, and guided from the upper guide member 81 to the photosensitive drum 47 along the curved direction of the lower surface of the upper guide member 81. At this time, the leading end of the sheet S comes into contact with the surface of the photosensitive drum 47 from the upstream side in the rotating direction of the photosensitive drum 47, and enters the transferring nip area as the photosensitive drum 47 rotates.
[0046] At the transferring nip area, the toner image carried on the photosensitive drum 47 is transferred to the sheet S. Thereafter, the sheet S is conveyed to the fixing device 27. The fixing device 27 fixes the toner image to the sheet. The sheet on which the toner image is fixed is conveyed along the main conveying path 29 toward the discharge port 11, discharged through the discharge port 11 by the discharge rollers pair 77, and stacked on the discharge tray 7. The toner remaining on the photosensitive drum 47 after the toner image is transferred to the sheet is removed by the cleaning device 55.
[0047] Next, one example of the process unit P detaching method will be described with reference to
[0048] When the process unit P is detached from the apparatus main body 3, as shown in
[0049] With the turning of the process unit P, as shown in
[0050] Thereafter, as shown in
[0051] With reference to
[0052] On the other hand, in the present embodiment, as described above, the gap G is opened between the developing device 51 and the upper guide member 81, and the closed space as in the comparative example is not formed. Therefore, since the generation of air flow can be suppressed when the tip end of the sheet S moves toward the transferring nip area as the photosensitive drum 47 is rotated, so that no image defect is generated.
[0053] However, if the gap G is thus provided, the toner scattered through the gap G may be accumulated on the upper guide member 81. Then, if the process unit P is turned upward when the process unit P is detached from the apparatus main body 3, the toner T accumulated on the upper guide member 81 may fall through the gap G between the upper guide member 81 and the developing device 51.
[0054] However, in the present embodiment, if the process unit P is turned when the process unit P is detached from the apparatus main body 3, as shown in
[0055] Further, since the seal member 91 is rotated by its own weight to a posture of opening the gap between the upper guide member 81 and the developing device 51 and a posture of bringing the sheet body 95 into contact with the upper guide member 81 as the process unit P is turned, the configuration of rotating the seal member 91 becomes unnecessary.
[0056] Although the present invention has been described in connection with certain embodiments, the present invention is not limited to the above embodiments. Those skilled in the art will be able to modify the above embodiments without departing from the scope and spirit of the invention.