Field of the Invention
The present invention relates to an image forming apparatus adapted to cool heat generating components in the image forming apparatus.
Description of the Related Art
Conventionally, as disclosed in Japanese Patent Application Laid-Open Nos. H11-084989 and 2003-076253, an image forming apparatus is provided with an air blowing unit adapted to cool heat generating components such as a process cartridge and power supply in the image forming apparatus by sending air into the image forming apparatus from outside the image forming apparatus. Such an image forming apparatus has a vent hole provided in a side face of the image forming apparatus in order for air to enter the image forming apparatus from outside the image forming apparatus. Also, a fan is provided in the neighborhood of the vent hole in the image forming apparatus to send air into the image forming apparatus from outside the image forming apparatus.
Then, the air sent into the image forming apparatus through the vent hole by the fan is guided toward heat generating components such as the process cartridge by a guide member. In this way, the heat generating components in the image forming apparatus are cooled. Here, an open/close door may be provided in a side face of the image forming apparatus to attach and detach the process cartridge to and from an apparatus body. Of the side faces of the image forming apparatus, the vent hole is often formed in a side face in which the open/close door is not provided.
However, depending on the environment in which the image forming apparatus is used, the image forming apparatus may be installed with side faces of the image forming apparatus placed in contact with walls. If the image forming apparatus is installed in such a way that the side face provided with the vent hole is placed in contact with a wall, the vent hole will be closed by the wall and volume of air entering the image forming apparatus might be reduced greatly. Consequently, the heat generating components in the image forming apparatus are not cooled sufficiently, and components of the image forming apparatus might be damaged. Also, if a convex portion is provided on the side face in which the vent hole is provided, a space can be provided between the side face and wall, but then the image forming apparatus get larger or installation space of the image forming apparatus might get larger.
It is a feature of the present invention to cool heat generating components in an image forming apparatus without increasing installation space of the image forming apparatus.
It is another feature of the present invention to provide an image forming apparatus which includes: a first cover configured to make up a first outside surface of the image forming apparatus; a second cover provided inside the image forming apparatus and configured to make up a second outside surface of the image forming apparatus different from the first outside surface, a vent hole being formed in the second cover; and a fan configured to take in ambient air through the vent hole and generate airflow to cool an inside of the image forming apparatus, wherein the second cover includes a third outside surface, at least part of which faces the first cover, and part of the vent hole is formed in the third outside surface.
Further features of the present invention will become apparent from the following description of exemplary embodiments with reference to the attached drawings.
An embodiment of the present invention will be illustrated below by way of example with reference to the drawings. However, the sizes, materials, shapes, and relative locations of the components described in the following embodiment are to be changed as required depending on the configuration and conditions of the apparatus to which the present invention is applied, and the scope of the present invention is not limited to the embodiment described below.
<Overall Schematic Configuration of Image Forming Apparatus>
Paper P serving as a recording medium and loaded in the feeding tray 20 is fed by the feeding roller 21 rotating clockwise in
The toner images formed on the photosensitive drums 2a to 2d are transferred to the intermediate transfer belt 8. To form a color image, toner images of different colors, i.e., yellow, magenta, cyan, and black toner images, are formed on the photosensitive drums 2a to 2d. Then, the toner images formed on the respective photosensitive drums 2a to 2d are transferred on top of another in sequence to the intermediate transfer belt 8. That is, the toner images formed on the respective photosensitive drums 2a to 2d are transferred in superimposition to the intermediate transfer belt 8 by a primary transfer unit.
Next, the toner images formed on the intermediate transfer belt 8 are transferred to paper P in the nip portion between the belt driven roller 11 and secondary transfer roller 12. When a voltage is applied to the secondary transfer roller 12 from a transfer power supply 25 connected to the secondary transfer roller 12, the toner images on the intermediate transfer belt 8 are transferred to the paper P. Now, to form a color image as described above, the toner images superimposed on the intermediate transfer belt 8 are transferred in a batch to the paper P by the secondary transfer unit.
Furthermore, the paper P to which the toner images have been transferred is sent to the nip portion between the fixing film 18 and pressure roller 19 and heated and pressurized, and consequently the toner images are fixed to the paper P. The paper P with the toner images fixed thereto is ejected onto a paper output tray 23 by a paper output roller pair 22. The photosensitive drums 2a to 2d according to the present embodiment are integrated with the charging rollers 3a to 3d and developing devices 4a to 4d serving as processing units acting on the photosensitive drums 2a to 2d into process cartridge 1Y to 1K. The plural process cartridge 1Y to 1K are designed to be attachable to and detachable from the image forming apparatus 100.
<Replacement of Process Cartridges>
To remove the process cartridges 1Y to 1K, as shown in
Then, with the front door 26 open, a tray 9 loaded with the process cartridges 1Y to 1K are pulled out from an opening in the direction of arrow as shown in
<Cooling Configuration in Image Forming Apparatus>
An internal configuration of image forming apparatus 100 will be described with reference to
Also, an air intake fan 30 and duct 31 are provided inside the side cover 28. Of the side cover 28, the outside surface C (third outside surface) in which the air intake inlet 29b is provided is installed at an angle to the outside surface A (second outside surface) in which the air intake inlet 29a is provided (see
At least part of the outside surface C of the side cover 28 faces the front door 26 when the front door 26 is at a closed position (predetermined position).
Also, the air intake inlet 29b is provided on a curved surface linking the side face in which the front door 26 is provided and the side face in which the air intake inlet 29a is provided.
Note that it is not strictly necessary that two vent holes be provided in the side cover 28. It is enough that at least part of the vent hole is open, facing a space between the grip portion 27 and side cover 28. Also, according to the present embodiment, in a posture in which the image forming apparatus 100 is used normally, the side cover 28 covers the right and left side faces of the image forming apparatus 100. Note that the posture in which the image forming apparatus 100 is used normally means a posture assumed by the image forming apparatus 100 when a surface on which the paper output tray 23 is provided is a top surface in
A concave portion is formed between the grip portion 27 of the front door 26 and the side cover 28. This makes it easy for a user to grip the grip portion 27 of the front door 26. According to the embodiment, when the front door 26 is closed, a space is formed between the side cover 28 and part of an edge portion of the front door 26, allowing the grip portion to be hooked by fingers. Note that according to the present embodiment, the side cover 28 includes a side face (second outside surface) in which an opening is provided and a side face (third outside surface) bent at a predetermined angle from the side face (second outside surface) via a corner portion. The space between the grip portion 27 of the front door 26 and the side cover 28 is formed between the corner portion and grip portion 27.
Here, according to the present embodiment, as shown in
Thus, according to the present embodiment, the air intake inlet 29b is provided in the side cover 28 at a position other than the side face in which the air intake inlet 29a is provided. This allows components in the image forming apparatus 100 to be cooled without increasing installation space of the image forming apparatus 100.
Note that according to the present embodiment, the air intake fan 30 faces toward the air intake inlet 29a. That is, a rotating shaft of the air intake fan 30 is orthogonal to a side face of the image forming apparatus 100. However, as shown in
Also, according to the present embodiment, as shown in
Also, in the present embodiment, it is not strictly necessary to provide the front door 26 in the side face of the image forming apparatus 100. For example, the front door 26 may be provided in the top surface of the image forming apparatus 100. Also, in the present embodiment, it is not strictly necessary to provide the air intake inlet 29b in the side face of the image forming apparatus 100. For example, the air intake inlet 29b may be provided in the top surface of the image forming apparatus 100.
While the present invention has been described with reference to exemplary embodiments, it is to be understood that the invention is not limited to the disclosed exemplary embodiments. The scope of the following claims is to be accorded the broadest interpretation so as to encompass all such modifications and equivalent structures and functions.
This application claims the benefit of Japanese Patent Application No. 2015-239387, filed Dec. 8, 2015, which is hereby incorporated by reference herein in its entirety.
Number | Date | Country | Kind |
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2015-239387 | Dec 2015 | JP | national |
Number | Name | Date | Kind |
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20140328606 | Katsuyama | Nov 2014 | A1 |
Number | Date | Country |
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H1184962 | Mar 1999 | JP |
H1184989 | Mar 1999 | JP |
2003076253 | Mar 2003 | JP |
2005084155 | Mar 2005 | JP |
2013088756 | May 2013 | JP |
Number | Date | Country | |
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20170160699 A1 | Jun 2017 | US |