1. Field of the Invention
The present invention relates to an image forming apparatus which is capable of switching an opening angle of a cover which opens/closes a sheet conveyance path in multiple levels.
2. Description of the Related Art
In an image forming apparatus of the related art, a paper jam (hereinafter, referred to as a “jam”) occurs in a sheet conveyance path so that the conveyance path is configured to be an openable and closable cover. Further, the cover is opened/closed not only when the jammed sheet is removed but also when a component such as an intermediate transfer belt, a fixing device, or a conveying roller, which is disposed in the conveyance path, is attached/detached or exchanged.
Japanese Patent Laid-Open No. 10-26922 discloses a configuration including an opening angle setting portion which sets an opening angle of the cover in multiple levels. According to the above configuration, a space which is required to open and close the cover may be desirably adjusted. For example, when the opening angle is set in two levels, the opening angle at the time of jam recovery is set to be small so that a processing space required for the jam recovery may be reduced. Further, the opening angle is switched to be large so that convenience of attaching/detaching a component is ensured.
As a configuration which switches the opening angle of the cover, a double action system in which a cover is lifted to a point which switches the opening angle and maintained in the lifted status and a member which supports the cover is manipulated to switch the opening angle is suggested. Further, there is a method that switches the opening angle by releasing a fixing member which fixes the cover at a predetermined opening angle.
However, a readiness for exchanging a consumable part or a response to a problem which occurs in a part is required so that a chance that a user attaches/detaches or exchanges a spare part is increased, without a service man going to an actual place to attach/detach or exchange a part. In this case, when the user attaches/detaches the part, if a method that switches the opening angle of the cover is complex, it is difficult to switch the opening angle as planned, so that the part may not be easily attached/detached.
Further, when the fixing member is released while fixing the cover at a small opening angle, if the cover is unpredictably opened in a position at a large opening angle in such a way that the cover is dropped with a momentum, the part is likely to be broken.
It is desirable to provide an image forming apparatus which is capable of increasing job efficiency and certainly switching the opening angle by simplifying a job of switching the opening angle of the cover in a mechanism which is capable of setting the opening angle of the cover in multi-levels.
An image forming apparatus which forms an image on a recording medium includes a cover which is rotatably supported to a main body of the apparatus; and a supporting member which is rotatably supported to the main body of the apparatus and supports the cover at a plurality of predetermined opening angles. Any one of the cover and the supporting member includes a connecting portion which connects the cover to the supporting member and the other one of the cover and the supporting member has a first path which guides the connecting portion and a second path which is bifurcated from the first path. When the connecting portion is located at an end of the first path, the cover is supported at a first opening angle, and when the connecting portion is located at an end of the second path, the cover is supported at a second opening angle which is larger than the first opening angle. The first path and the second path are formed such that when the supporting member upwardly rotates from a state where the cover is supported at the first opening angle, the cover rotates so as to interwork with the rotation of the supporting member and if the connecting portion reaches the bifurcating point of the first path and the second path, the connecting portion moves from the first path to the second path by its own weight of the cover.
Further features of the present invention will become apparent from the following description of exemplary embodiments with reference to the attached drawings.
Hereinafter, exemplary embodiments of the present invention will be described in detail with reference to the drawings.
An entire configuration of an image forming apparatus according to an exemplary embodiment of the present invention will be described.
The image forming apparatus 100 includes process cartridges Pa, Pb, Pc, and Pd which form a toner image. The process cartridges use toners of different colors, that is, yellow, magenta, cyan, and black, respectively, but other configurations of each of the process cartridges are same.
In
Primary transfer bias rollers 5a, 5b, 5c, and 5d and transfer cleaning device 4 are in contact with the intermediate transfer belt 2. Further, the intermediate transfer belt 2 is stretched by a secondary transfer inner roller 1, a tension roller 3, and a secondary transfer upstream roller 8 which serve to transmit a driving force to the intermediate transfer belt 2 and is an endless belt which is conveyed and driven in a counterclockwise direction in the drawing.
The primary transfer bias rollers 5a, 5b, 5c, and 5d nip the intermediate transfer belt 2 between the primary transfer bias rollers 5a, 5b, 5c, and 5d and the photosensitive members 6a, 6b, 6c, and 6d to form a primary transfer nip. An image forming process is performed at timing when an upstream color toner image which is primarily transferred is overlaid on the intermediate transfer belt 2 by sequentially passing through the primary transfer nip according to conveyance driving of the intermediate transfer belt 2. Therefore, four color toner images are formed on the intermediate transfer belt 2 and then conveyed to a secondary transfer portion T2.
A recording sheet S (recording medium) which is loaded and accommodated in a recording sheet storage case 11 is fed by a feeding roller 12 one by one and a skew feeding thereof is corrected by a registration roller 13 so that the recording sheet is sent to the secondary transfer portion T2 at an appropriate timing. In the secondary transfer portion T2, the intermediate transfer belt 2 is nipped between the secondary transfer inner roller 1 and a secondary transfer outer roller 14 to form a nip and a four color toner image which is formed on the intermediate transfer belt 2 are secondarily transferred onto the recording sheet S.
The recording sheet S which has been secondarily transferred is conveyed to the fixing device 15, a toner image on the recording sheet S is fixed, the recording sheet S is discharged outside the apparatus by a pair of discharge rollers 16 and sequentially loaded in a stack portion 17.
Configuration of Opening/Closing Mechanism
The recording sheet S may be jammed in a conveyance path from the registration roller 13 to the fixing device 15 so that a cover 10 which opens and closes the conveyance path is provided at a right side of the image forming apparatus 100. The cover 10 is rotatably supported around a horizontal axis in a longitudinal direction by a shaft 18 provided in the main body 100A of the apparatus. The right side on which the cover 10 illustrated in
A cover supporting member 20a which is capable of supporting the opening angle of the cover 10 in two levels (at a plurality of predetermined angles), a shaft 21 (connecting portion) which connects the cover supporting member 20a and the cover 10, and a shaft 22 which connects the cover supporting member 20a and the main body 100A of the apparatus are provided between the cover 10 and the main body 100A of the apparatus. The cover supporting member 20a is supported to the main body 100A of the apparatus so as to rotate around the shaft 22 as a rotation center.
Further, a groove 50 which guides (leads) the shaft 21 is provided in the cover 10. The groove 50 includes two paths, that is, a first path 23 and a second path 24 and the first path 23 and the second path 24 are connected to each other at a bifurcating point A. In other words, the second path 24 is bifurcated from the bifurcating point A of the first path 23. An intermediate portion of the first path 23 (a first groove) and the second path 24 (a second groove) communicate with each other by the bifurcating point A which is a communicating portion.
When the jam recovery is performed by an operator, as illustrated in
In this case, a left end (one end) of the first path 23 is located in a position of the shaft 21 so that the cover 10 is fixed at the first opening angle. Here, the bifurcating point A is disposed on a surface which is opposite to a surface 25 onto which the shaft 21 is in contact with the first path 23 so as to be lean against the first path 23 by its own weight of the cover supporting member 20a during the opening/closing operation of the cover 10. In other words, during the opening/closing operation of the cover 10, the shaft 21 is in contact with a surface 25 which is an opposite side of the bifurcating point A in the first path 23 by its own weight of the cover supporting member 20a. By doing this, unless the cover supporting member 20a is lifted up on purpose so that the shaft 21 passes through the bifurcating point A and is inserted into the second path 24, when the opening/closing operation is simply performed by the cover 10, the cover 10 is not opened wider than an angle of the first level where the opening angle is set to be small.
Further, when a component of the fixing device 15 or the intermediate transfer belt 2 is attached/detached or exchanged, as illustrated in
In this case, a left end (one end) of the second path 24 is located in a position of the shaft 21 so that the cover 10 is fixed at the second opening angle (see
As illustrated in
In other words, when the cover supporting member 20a rotates upwardly from a status where the cover 10 is supported at the first opening angle, the cover 10 rotates so as to interwork with the rotation of the cover supporting member 20a. Therefore, the first path 23 and the second path 24 are formed such that if the shaft 21 reaches the bifurcating point A of the first path 23 and the second path 24, the shaft 21 moves from the first path 23 to the second path 24 by its own weight of the cover 10.
Further, when the cover 10 is closed from the opening angle of the second level, if the cover 10 is closed by the operator, the shaft 21 leans against a surface facing the bifurcating point A of the second path 24 by its own weight so that the shaft 21 is switched into the first path 23 without requiring a special operation and may return to a predetermined waiting position when the cover 10 is closed.
In other words, when the cover 10 rotates upwardly from a status where the cover 10 is supported at the second opening angle, the cover supporting member 20a rotates so as to interwork with the rotation of the cover. Therefore, the first path 23 and the second path 24 are formed such that when the shaft 21 reaches the bifurcating point A, the shaft 21 moves from the second path 24 to the first path 23 by its own weight of the cover supporting member 20a. That is, a lower edge (a second guiding portion) 92 of the second path 24 between the left end of the second path 24 and the bifurcating point A guides the shaft 21 to the bifurcating point A according to the operation of lifting up the cover 10.
As described above, in the opening/closing mechanism 200, an operation of switching from the opening angle at the first level to the opening angle at the second level is performed by a simple one action which just lifts up the cover supporting member 20a. Therefore, the operator does not need to hold the cover 10 separately from the cover supporting member 20a in order to match the shaft 21 with the bifurcating point A, but job efficiency is improved.
Further, when the switching operation is performed, the cover supporting member 20a is embraced by hands of the operator so that the cover 10 is not unpredictably opened from the opening angle of the first level to the opening angle of the second level with a momentum, which prevents the part from being broken due to an impact. Further, if the cover 10 returns to a status where the cover 10 is closed from the opening angle of the second level, the cover 10 may return to a predetermined waiting position without requiring a specific operation. Further, unless the operator operates on purpose, the cover 10 is not opened from the closed status to the opening angle of the second level with a momentum, which may prevent the part from being broken due to an impact.
(Configuration of Handle Portion)
In the opening/closing mechanism illustrated in
The hole shape 26 is provided so as to serve as a handle when the cover supporting member 20b is lifted up. Therefore, it is possible to help the operator to understand the operation and transfer the operating force without wasting the operating force, which increases job efficiency. Further, the hole shape 26 which serves as the handle portion may be a protrusion shape which is grasped by hands. The hole shape 26 is not limited to the hole if it is grasped by hands.
An image forming apparatus according to another exemplary embodiment of the present invention will be described. Same or similar configurations as the image forming apparatus according to the first exemplary embodiment are denoted by the same reference numerals and redundant description will not be provided.
In the opening/closing mechanism 200 of the image forming apparatus according to the first exemplary embodiment, the cover 10 includes the first path 23 and the second path 24. In this exemplary embodiment, an opening/closing mechanism 300 as illustrated in
The opening/closing mechanism 300 includes a cover supporting member 30 which is capable of supporting an opening angle of the cover 10 in two levels (at a plurality of predetermined angles), a shaft 31 (connecting portion) which connects the cover supporting member 30 and the cover 10, and a shaft 22 which connects the cover supporting member 30 and the main body 100A of the apparatus, between the cover 10 and the main body 100A of the apparatus. The cover supporting member 30 is supported to the main body 100A of the apparatus so as to rotate around the shaft 22 as a rotation center. Further, a groove 60 which is guided (led) by the shaft 31 is provided in the cover supporting member 30. The groove 60 includes two paths, that is, a first path 33 and a second path 34 and the first path 33 and the second path 34 are connected to each other at a bifurcating point B. An intermediate portion of the first path 33 (a first groove) and the second path 34 (a second groove) communicate with each other by the bifurcating point B which is a communicating portion.
When the jam recovery is performed, as illustrated in
Similarly to the opening/closing mechanism 200, when the components of the fixing device 15 or the intermediate transfer belt 2 are attached/detached or exchanged, the cover 10 needs to be opened at the second level where the opening angle of the cover 10 is set to be large. In this case, as illustrated in
That is, according to the first and second exemplary embodiments, any one of the cover and the cover supporting member has a shaft which connects the cover and the cover supporting member and the other one has a first path which guides the shaft and a second path which is bifurcated from the first path.
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 modifications, equivalent structures and functions.
This application claims the benefit of Japanese Patent Application No. 2012-156121, filed Jul. 12, 2012, which is hereby incorporated by reference herein in its entirety.
Number | Date | Country | Kind |
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2012-156121 | Jul 2012 | JP | national |