This application claims priority under 35 U.S.C. §119 from Japanese Patent Application No. 2014-056576 filed on Mar. 19, 2014. The entire subject matter of the application is incorporated herein by reference.
1. Technical Field
The present disclosures relate to a cover movement mechanism and an image forming apparatus provided with the cover movement mechanism. More particularly, the present disclosures relate to the cover movement mechanism with which a damage of a cover provided to the image forming apparatus or the like can be avoided.
2. Related Art
Conventionally, image forming apparatuses provided with openable covers have been known. In such an image forming apparatus, in order to prevent the cover from being damaged when a user attempts to open the same beyond an openable range thereof may be provided. One example of a conventional cover movement mechanism is configured such that a rotational shaft, which rotationally supports the cover, is provide. The rotation shaft is held by bearings, and shaft cover pieces which press-holds the rotational shaft in the respective bearings are provided. When the user attempts to open the cover beyond the openable range, the shaft covers elastically deform and allow the shaft to be released from the bearings. With such a configuration, in an exemplary conventional art, the damage of the cover can be prevented.
Even in the above-described configuration, if the user attempts to open the cover with a finger, a part of cloths or the like being sandwiched between a base part, to which the cover is attached, and the cover (i.e., with the finger or the like being nipped in the opening formed between the base part and the cover), an unexpected force may be applied to the cover, which may result in a damage of the cover.
According to aspects of the disclosure, there is provided a cover movement mechanism, which is provided with a cover configured to rotate, a base part to which the cover is rotatably attached, a holding part configured to contact the cover when the cover is in a first opened state in which the cover is rotated to open by a first angle with respect to a closed state of the cover, thereby holding the cover in the first opened state, two shafts having a common axis and provided to one of the cover and the base part, two bearings configured to receive the two shafts and provided to other one of the cover and the base part, and a releasing mechanism configured to allow at least one of the two shafts to be released from corresponding one of the two bearings when the cover is in a second state in which the cover is rotated to open by a second angle that is smaller than the first angle and an opposing force preventing a rotation of cover acts on the cover.
According to aspects of the disclosures, there is also provided an image forming apparatus, provided with a housing, a printing unit configured to form an image on a sheet, a sheet discharging unit configured to discharge the sheet on which the image is printed, and a cover movement mechanism. The cover movement mechanism includes a cover configured to rotate, a base part to which the cover is rotatably attached, a holding part configured to contact the cover when the cover is in a first opened state in which the cover is rotated to open by a first angle with respect to a closed state of the cover, thereby holding the cover in the first opened state, two shafts having a common axis and provided to one of the cover and the base part, two bearings configured to receive the two shafts and provided to other one of the cover and the base part, and a releasing mechanism configured to allow at least one of the two shafts to be released from corresponding one of the two bearings when the cover is in a second state in which the cover is rotated to open by a second angle that is smaller than the first angle and an opposing force preventing a rotation of cover acts on the cover. The cover in the first opened state serves as a printed sheet discharge tray configured to receive the sheet discharged by the sheet discharging unit.
Hereinafter, referring to the accompanying drawings, a printer according to aspects of illustrative embodiments will be described. In the following description, a printer 1 is described in detail as an example of an illustrative embodiment. According to the illustrative embodiment, the printer 1 is a monochromatic laser printer employing an electrophotographic image forming method. As shown in
On an upper part of the printer 1, a cover movement mechanism 20 is provided. The cover movement mechanism 20 includes a second cover 21.
As shown in
The second cover 21 is rotatable between a position where the second cover 21 closes the upper side of a discharge part 3C (i.e., in a closed state) and a position where the upper side of the discharge part 3C is exposed (i.e., in an open state). The discharge part 3C is a space arranged on an upper part of the housing 3. In the discharge part 3C, as shown in
When an image formation is executed, the user may rotate the first cover 3A and the second cover 21 frontward to open the same, and place a sheet on the opened first cover 3A. When the image formation process is started, the sheet placed on the first cover 3A is fed toward the printing unit 5 inside the housing 3, and an image is formed thereon by the printing unit 5. After the image is formed, the sheet is further conveyed and stacked on a discharge surface 3E, which is an upper surface of the discharged sheet tray 3D and on the second cover 21. That is, when the second cover 21 is in the open state, the surface of the second cover 21 is used as a part of the discharged sheet tray.
The printing unit 5 is configured to form (i.e., print) an image on a sheet such as a printing sheet. According to the illustrative embodiment, the printing unit 5 is an electrophotographic image forming unit, and includes a photosensitive drum 5A, a charging unit 5B, an exposing unit 5C, a transferring unit 5D and a fixing unit 5E. The discharge surface 3E is arranged on an upper side with respect to a rotational axis L1 of the photosensitive drum 5A.
The charging unit 5B charges the circumferential surface of the photosensitive drum 5A. The exposing unit 5C exposes the charged surface of the photosensitive drum 5A to form an electrostatic latent image thereon. Then, the developing agent (e.g., toner) is applied on the circumferential surface of the photosensitive drum 5A, and the developing agent is attracted by the electrostatic latent image, thereby a developed image is formed. The transferring unit transfers the developed image (e.g., a toner image) on the sheet.
The fixing unit 5E fixes the developing agent transferred on the sheet thereon. The sheet discharged from the developing unit 5E is discharged toward the discharge sheet tray 3D by a discharging roller 7A as the sheet on which an image has been formed. A pair of pressing rollers 7B are provided to urge the sheet toward the discharging roller 7A. With this configuration, the sheet is discharged while a curling tendency of the sheet is corrected.
A process casing 5F accommodating the photosensitive drum 5A and the exposing unit 5C, and the printing unit 5 including the fixing unit 5E and the like are assembled to a main body of the printer 20. The main body includes components which are not normally detached/attached or decomposed by the user in normal use, and includes the pair of frames 9 and the housing 3 shown in
The pair of frames 9 are plate-like components arranged on both sides of the printing unit 6 such as the process casing 5F. According to the illustrative embodiment, the pair of frames 9 are made of resin, and the printing unit 5 such as the process casing 5F is supported by the pair of frames 9.
The exposing unit 5C is held by the plate 9B shown in
As shown in
A feeder mechanism 12 is shown in
Among the pickup roller 12A, and the components configuring the separation unit 12B, and printing unit 5, rotating components such as the photosensitive drum 5A receive a driving force from a driving source (not shown) such as an electrical motor.
The pickup roller 12A is configured to contact a sheet on one side, in a stacking direction, of the plurality of sheets which are stacked, and rotate. If a plurality of sheets are fed by the pickup roller 12A, the separation unit 12B functions to separate the plurality of sheets and feed the same one by one toward the printing unit 5.
Further, as shown in
An outer surface of each of the bank parts 11 including the wall 11A is composed of the exterior cover 3J. The upper end portions of the pair of frames 9 are covered with the exterior cover 3J and located inside the bank parts 11, respectively.
A controller substrate 15 is a substrate on which a controller unit configured to control operations of the printing unit 5 and the driving source 8 and the like is provided. The controller substrate 15 is attached to a plate surface 9A which is a surface of one of the pair of frames (e.g., the right side frame) 9 opposite to a surface facing the printing unit 5, that is a surface 9A facing the exterior cover 3G.
Next, refereeing to
The cover movement mechanism 20 has, as shown in
The second cover 21 is formed to have a rectangular shape, when viewed from the above, as shown in
Each side plate 21B has, as shown in
On a front end part 21D, which corresponds to a longer side of the second cover 21, a contacting part 27 configured to contact a cover holding part 26 (described later) is formed. The front end part 21D defines an opened part 28 in association with the frames 9 when the second cover 21 is closed (see
On each plate spring part 26, a shaft 22 is provided. That is, the shaft 22 is provided to the front end part 21D of the second cover 21, at a position on a front side of the cover movement mechanism 20. According to the illustrative embodiment, each shaft 22 is protruded outward from the side plates 21B of the second cover 21. In other words, the shaft 22 is provided at a tip end portion on the movable end 26A side of the plate spring part 26, and protrudes outward, in an axial direction, from the side plate 21B of the second cover 21 (see
It is noted that the axial direction is a right-and-left direction indicated by an arrow in
Each shaft 22 has a hollow cylinder shape as shown in
As described above, according to the illustrative embodiment, the shafts 22 are formed to protrude outward from side pates 21B of the second cover 21, respectively. Accordingly, in comparison with a case where a truncated part is formed on the outer circumferential surface of a shaft protruding inward from the side plate 21B, it is relatively easy to form the truncated part 24.
It is noted that, according to the illustrative embodiment, the plate spring part 26 is defined by forming the slit 21C on each side plate 21B and the shaft 22 is formed on the plate spring part 26. However, aspects of the disclosures need not be limited to such a configuration. For example, the shaft 22 may be formed on each side plate 21B. In such case, it is preferable that each side plate 21B is formed of elastic resin. Further, the truncated part 24 may be formed on only one of the two shafts 22. Furthermore, the shape of the truncated part 24 may not be limited to the tapered shape.
The cover supporting frame 9D is formed as a part of the frame 9, as shown in
The cover holding parts 25 hold the second cover 21 to be in the first opened state with respect to the main body, as the holding parts 25 contact the contacting parts 27 of the second cover 21 when the second cover 21 is in the first opened state (see
Next, referring to
When the second cover 21 is in the closed state, as shown in
As shown in
When the finger or the like is nipped in the opening part 28, a downward component of the rotational force to rotate the second cover 21 is applied to the finger or the like. Then, from the finger or the like, a reactive force (i.e., opposing force) directed upward is generated. As the contacting part 27, which is the front part of the second cover 21, receives the reactive force, an upward opposing force works on the shafts 22. As the upward opposing force is applied, the truncated part 24 receives a downward opposing force (see
Although one of the two shafts 22 is shown in
As shown in
For example, when the second cover 21 is opened, when a finger is nipped in the opening part 28, the reactive force is applied to the shafts 22, and the truncated parts 24. Then, because of the configuration of the truncated parts 24 formed on the shafts 22 of the second cover 21, the shaft 22 is detached from the bearing 23, thereby the second cover 21 being detached from the bearing 23 and the second cover 21 being detached from the cover supporting frame 9D. With the above configuration, the damage of the second cover 21 when the second cover 21 is opened/closed can be suppressed.
Aspects of the present disclosures need not be limited to the above-described illustrative embodiment, and can be modified in various ways as described below.
In the illustrative embodiment described above, the two shafts 22 are provided to the second cover 21 and the bearings 23 are provided to the cover supporting frame 9D. Further, the truncated parts 24 are formed on the outer circumferential surfaces 22A of the shafts 22, respectively. Such a configuration may be modified such that, as shown in
In the illustrative embodiment and modification described above, the truncated parts 24 are formed, on the outer circumferential surfaces of the shafts 22 or the inner circumferential surface of the bearing 23, at positions corresponding to the first opened state of the second cover 21. However, the configuration need not be limited to such ones. As shown in
In the above-described embodiment and modifications, the truncated parts 24 are formed so that, when the opposing force acts in the vertical direction when the second cover 21 is in the second opened state, the second cover 21 is detached from the cover supporting frame 9D. The aspects of the disclosures need not be limited to such a configuration, and the truncated parts may be formed nay directions corresponding to the direction where the opposing force may act.
In the above-described illustrative embodiment and modifications, a releasing part is realized by forming the truncated parts 24. The aspects of the disclosures need not be limited to such a configuration. For example, as shown in
That is, as shown in
Number | Date | Country | Kind |
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2014-056576 | Mar 2014 | JP | national |