The present application claims priority under 35 U.S.C. § 119 to Japanese Patent Application No. 2017-240655, filed on Dec. 15, 2017. The contents of this application are incorporated herein by reference in their entirety.
The present disclosure relates to a feeding device and an image forming apparatus.
An image forming apparatus includes an image forming apparatus main body and a feeding unit. The image forming apparatus main body includes a latch target member. The feeding unit includes a paper feed cassette and a latching member. The latching member is configured to operate in association with a setting operation of the paper feed cassette. The setting operation refers to an operation for setting the paper feed cassette to a position where paper can be fed from the paper feed cassette. That is, the latching member engages with the latch target member of the image forming apparatus main body when the setting operation of the paper feed cassette is performed. Another feeding unit is provided in a lower part of the image forming apparatus main body. That is, the feeding unit (second feeding unit) can be fixed to the image forming apparatus main body by fixing the feeding unit (second feeding unit) to the other feeding unit (first feeding unit) included in the image forming apparatus main body.
A feeding device according to an aspect of the present disclosure includes a first feeding unit, a second feeding unit, and a fixing structure. The first feeding unit feeds a first recording medium. The second feeding unit is located below the first feeding unit and feeds a second recording medium differing from the first recording medium. The fixing structure takes a first posture or a second posture differing from the first posture. The fixing structure fixes the second feeding unit to the first feeding unit when the fixing structure is in the first posture. The fixing structure fixes the second feeding unit to the first feeding unit by fixing a frame member of the second feeding unit to a frame member of the first feeding unit. When the fixing structure is in the second posture, the fixing structure releases linkage between the second feeding unit and the first feeding unit.
An image forming apparatus according to another aspect of the present disclosure includes an image forming device, a first feeding unit, a second feeding unit, and a fixing structure. The image forming device forms an image on a recording medium. The recording medium is either a first recording medium or a second recording medium differing from the first recording medium. The first feeding unit feeds the first recording medium to the image forming device. The second feeding unit is located below the first feeding unit and feeds the second recording medium to the image forming device. The fixing structure takes a first posture or a second posture differing from the first posture. The fixing structure fixes the second feeding unit to the first feeding unit when the fixing structure is in the first posture. The fixing structure fixes the second feeding unit to the first feeding unit by fixing a frame member of the second feeding unit to a frame member of the first feeding unit. When the fixing structure is in the second posture, the fixing structure releases linkage between the second feeding unit and the first feeding unit.
The following describes an embodiment of the present disclosure with reference to the drawings (
The following first describes an image forming apparatus 100 according to the embodiment of the present disclosure with reference to
The image forming unit 1 forms an image on a sheet P. The image reading unit 2 reads an image formed on a document R to generate read image data. The document conveyance unit 3 conveys the document R to the image reading unit 2. The operation display section 4 receives an operation performed by a user. The controller 5 controls operation of the image forming apparatus 100.
The image forming unit 1 includes a casing 10, a feeding device 200, an image forming device 14, a fixing device 15, an ejection roller pair 16, and an exit tray 17. The feeding device 200 includes a first feeding unit 11 and a second feeding unit 6. The casing 10 accommodates the first feeding unit 11, the image forming device 14, the fixing device 15, and the ejection roller pair 16.
The first feeding unit 11 includes a first feeding cassette 111, a pickup roller 112, and a conveyance roller pair 113. The second feeding unit 6 is located below the first feeding unit 11. The second feeding unit 6 includes a casing 60, a second feeding cassette 61, a pickup roller 62, and a conveyance roller pair 63. The casing 60 accommodates the second feeding cassette 61, the pickup roller 62, and the conveyance roller pair 63. The first feeding cassette 111 accommodates a sheet P1. The second feeding cassette 61 accommodates a sheet P2. The sheet P1 is equivalent to an example of a “first recording medium” and the sheet P2 is equivalent to an example of a “second recording medium”. In the following description, each of the sheet P1 and the sheet P2 may be referred to as a sheet P.
The sheet P1 picked up from the first feeding cassette 111 by the pickup roller 112 is conveyed by the conveyance roller pair 113 to the image forming device 14. The sheet P2 picked up from the second feeding cassette 61 by the pickup roller 62 is conveyed by the conveyance roller pair 63 to the image forming device 14 via the conveyance roller pair 113. The image forming device 14 forms an image on each of the sheet P1 and the sheet P2.
The sheet P with the image formed thereon is conveyed to the fixing device 15. The fixing device 15 applies heat and pressure to the sheet P, thus fixing the image formed on the sheet P to the sheet P. The sheet P with the image fixed thereto is ejected to the exit tray 17 by the ejection roller pair 16.
The operation display section 4 includes a touch panel 41. The touch panel 41 includes for example a liquid crystal display (LCD) and displays various images. The touch panel 41 further includes a touch sensor and receives the operation performed by the user.
The controller 5 includes a processor 51 and storage 52. The processor 51 includes a central processing unit (CPU), for example. The storage 52 includes memory such as a semiconductor memory, and may further include a hard disk drive (HDD). The storage 52 stores a control program therein.
As illustrated in
The casing 60 and the casing 10 are separate from each other. Side surfaces of the casing 60 are flush with corresponding side surfaces of the casing 10.
The following describes a location of a fixing structure 7 according to the embodiment of the present disclosure with reference to
The following describes a configuration of the fixing structure 7 with reference to
The cylindrical member 73 has a cylindrical shape and is inserted through an “insertion hole” formed in the first frame member 601. The first frame member 601 is located at an upper end of the casing 60 and rotatably supports the cylindrical member 73. The fixing member 72 is connected with the cylindrical member 73 via the base 71. Specifically, the base 71, the fixing member 72, and the cylindrical member 73 are formed integrally with one another. That is, the first frame member 601 rotatably supports the fixing structure 7. The insertion hole will be described later in detail with reference to
The fixing structure 7 takes a first posture or a second posture through rotation about the cylindrical member 73. When the fixing structure 7 is in the first posture, the fixing member 72 fixes the second feeding unit 6 to the first feeding unit 11. When the fixing structure 7 is in the second posture, the fixing structure 7 releases linkage between the second feeding unit 6 and the first feeding unit 11. The fixing structure 7 illustrated in
The fixing member 72 includes a first protruding member 721 and a handle member 725. The first protruding member 721 protrudes to the front.
The handle member 725 is held by the user when the user changes the posture of the fixing structure 7. Specifically, the user changes the posture of the fixing structure 7 by holding the handle member 725 and rotating the fixing structure 7 about the cylindrical member 73. For example, the user changes the posture of the fixing structure 7 from the first posture to the second posture. The user can release linkage between the second feeding unit 6 and the first feeding unit 11 by changing the posture of the fixing structure 7 from the first posture to the second posture. Alternatively, the user changes the posture of the fixing structure 7 from the second posture to the first posture. The user can fix the second feeding unit 6 to the first feeding unit 11 by changing the posture of the fixing structure 7 from the second posture to the first posture.
As described above with reference to
The posture of the fixing structure 7 is changed between the first posture and the second posture through rotation of the fixing structure 7 about the cylindrical member 73. Therefore, the fixing structure 7 can have a simple configuration.
The following further describes the configuration of the fixing structure 7 with reference to
The first engagement member 74 is inserted through the insertion hole formed in the first frame member 601. In a state where the cylindrical member 73 is inserted through the insertion hole, the first engagement member 74 engages with the first frame member 601. The state where the cylindrical member 73 is inserted through the insertion hole refers to a state where the fixing structure 7 is mounted to the second feeding unit 6. The insertion hole will be described later in detail with reference to
The base 71 has the shape of a flat plate. The cylindrical member 73 and the first engagement member 74 project from a lower surface of the base 71. The lower surface of the base 71 is a surface of the base 71 facing toward a negative side of the Z axis (i.e., a side opposite to a side indicated by an arrow of the Z axis) in the state where the fixing structure 7 is mounted to the second feeding unit 6.
When the fixing structure 7 is in the first posture, the first protrusion 722 engages with a “second frame member” of the first feeding unit 11. The second frame member will be described later in detail with reference to
When the fixing structure 7 is in the first posture, the second protrusion 723 engages with a “third frame member” of the second feeding unit 6. The third frame member will be described later in detail with reference to
The following describes the first posture and the second posture of the fixing structure 7 with reference to
As illustrated in
When the fixing structure 7 is rotated by 90 degrees clockwise as indicated by an arrow R1 in
When the fixing structure 7 is in the first posture as illustrated in
As described above with reference to
The following further describes the configuration of the fixing structure 7 with reference to
The casing 60 further includes a third frame member 602. The second protrusion 723 of the fixing member 72 of the fixing structure 7 engages with the third frame member 602 of the second feeding unit 6. Specifically, an upper surface of the second protrusion 723 is in contact with a lower surface of the third frame member 602.
A bottom surface of the fixing member 72 is in contact with an upper surface of the first frame member 601. The bottom surface of the fixing member 72 is a surface of the fixing member 72 facing toward the negative side of the Z axis. That is, the second protrusion 723 is located between the upper surface of the first frame member 601 and the lower surface of the third frame member 602.
As described above with reference to
The following further describes the configuration of the fixing structure 7 with reference to
The cylindrical member 73 and the first engagement member 74 of the fixing structure 7 are inserted through the insertion hole 603. The first engagement member 74 engages with the first frame member 601. The first engagement member 74 includes an engagement portion 741 at a lower end thereof. The engagement portion 741 protrudes toward the positive side of the X axis. An upper surface of the engagement portion 741 of the first engagement member 74 is in contact with a lower surface of the first frame member 601.
As described above with reference to
The following further describes the configuration of the fixing structure 7 with reference to
The detector 64 includes a detection switch SW and a rod-like member 641. The detection switch SW is a press button switch, for example. The detection switch SW detects the fixing structure 7 taking the first posture when the detection switch SW is pressed by the rod-like member 641.
The rod-like member 641 is disposed in the second feeding cassette 61 such that a longitudinal direction of the rod-like member 641 substantially coincides with the Y axis direction. The plate-like member 611 of the second feeding cassette 61 has an opening 611A. The opening 611A has a rectangular shape. The rod-like member 641 is inserted through the opening 611A and is projectable and retractable relative to the plate-like member 611. The rod-like member 641 is urged by an unillustrated urging member so as to protrude toward the positive side of the Y axis relative to the plate-like member 611.
As described above with reference to
Also, the detector 64 detects the fixing structure 7 taking the first posture when the rod-like member 641 is retracted. Therefore, the fixing structure 7 taking the first posture can be detected with a simple configuration.
Although the detector 64 is provided on the second feeding cassette 61 in the embodiment of the present disclosure, the present disclosure is not limited to this configuration. It is only required that the detector 64 be included in the second feeding unit 6. For example, the detector 64 may be provided inside the casing 60 of the second feeding unit 6.
Although the detector 64 includes the detection switch SW and the rod-like member 641 in the embodiment of the present disclosure, the present disclosure is not limited to this configuration. It is only required that the detector 64 detect the fixing structure 7 taking the first posture. For example, the detector 64 may include a proximity sensor and detect the first protruding member 721 located within a specific distance from the detector 64. The specific distance is for example 5 mm.
The following describes processing performed by the controller 5 with reference to
As illustrated in
When the controller 5 determines that the fixing structure 7 is in the first posture (YES at Step S101), the routine returns to the start. When the controller 5 determines that the fixing structure 7 is not in the first posture (NO at Step S101), the routine proceeds to Step S103.
At Step S103, the controller 5 causes the touch panel 41 to give a notification indicating that the second feeding unit 6 is not fixed to the first feeding unit 11.
At Step S105, the controller 5 forbids operation of the image forming device 14, and the routine then returns to the start.
As described above with reference to
Also, the controller 5 forbids operation of the image forming device 14 when the fixing structure 7 is not in the first posture. Therefore, the image forming device 14 can be prevented from being operated in an unstable state where the second feeding unit 6 is not fixed to the first feeding unit 11.
Although the controller 5 causes the touch panel 41 to give the notification indicating that the second feeding unit 6 is not fixed to the first feeding unit 11 in the embodiment of the present disclosure, the present disclosure is not limited to this configuration. It is only required that the controller 5 give a notification of the result of detection by the detector 64. For example, the image forming apparatus 100 may include a speaker, and the controller 5 may output voice sound that gives the notification of the result of detection by the detector 64 through the speaker.
The following describes a variation of the feeding device with reference to
In other words, the fixing structure 7 illustrated in
The first feeding unit 6A has the same configuration as that of the second feeding unit 6. The first feeding unit 6A includes a casing 60A.
That is, the casing 60A includes a second frame member (not illustrated) located at a lower end of the first feeding unit 6A, and the casing 60 includes the third frame member 602 (see
As described above with reference to
The embodiment of the present disclosure has been described with reference to the drawings. However, the present disclosure is not limited to the above embodiment and can be practiced in various forms (for example, as described below in (1) and (2)) within a scope not departing from the gist of the present disclosure. The drawings schematically illustrate elements of configuration to facilitate understanding. Properties such as the thickness and the length, and the numbers of the elements of configuration illustrated in the drawings may differ from actual ones thereof to facilitate preparation of the drawings. Also, the shape, dimensions, and the like of elements of configuration described in the above embodiment are merely examples and should not be taken as specific limitations. Various alterations can be made within a scope not substantially departing from the configuration of the present disclosure.
(1) As described with reference to
(2) As described with reference to
Number | Date | Country | Kind |
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2017-240655 | Dec 2017 | JP | national |
Number | Name | Date | Kind |
---|---|---|---|
8833757 | Piening | Sep 2014 | B1 |
10146166 | Takai | Dec 2018 | B2 |
20040251597 | Ito | Dec 2004 | A1 |
20090302521 | Kondo | Dec 2009 | A1 |
20180111784 | Matsumoto | Apr 2018 | A1 |
Number | Date | Country |
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H09-110194 | Apr 1997 | JP |
Number | Date | Country | |
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20190185279 A1 | Jun 2019 | US |