This application is based on and claims the benefit of priority from Japanese Patent application No. 2016-101449 filed on May 20, 2016, which is incorporated by reference in its entirety.
The present disclosure relates to an image forming apparatus including a sheet feeding unit which feeds a sheet.
In an image forming apparatus, such as a copying machine and a printer, a sheet is fed from a sheet feeding cassette to an image forming part by a sheet feeding unit. The sheet feeding unit includes a feed member and a separation member. The feed member feeds the sheet stored in the sheet feeding cassette. The separation member comes into pressure contact with the feed member to convey an uppermost sheet only.
The separation member is configured to apply friction resistance to the sheets other than the uppermost sheet and to prevent the stacked sheets to be conveyed (prevent the multiple feeding). If stick slip occurs between the separation member and the sheet when the sheet passes through a space between the feed member and the separation member, the separation member and the sheet are vibrated. Then, the vibration is transmitted to the sheet feeding cassette and the others to generate abnormal sound.
In order to prevent the generation of abnormal sound, in some cases, a weight member as a member to restrain the transmission of vibration is mounted to the sheet feeding cassette to which the separation member is attached.
However, although the weight member makes it possible to prevent the vibration of the sheet feeding cassette, it is not sufficient to restrain the transmission of vibration to the feed member which comes into contact with the separation member. If the vibration is transmitted to the feed member, the vibration may be transmitted to a holder which supports the feed member, a feed frame which supports the holder, and a side plate which supports the feed frame. Then, theses member are also vibrated to generate abnormal sound. In order to prevent the generation of abnormal sound, the holder, the feed frame and the side plate may be formed so as to have high rigidity. However, this causes increase in cost.
In addition, in order to restrain the vibration of a relatively large size member, such as the sheet feeding cassette, it is required to increase a weight of the weight member and to increase the number of the weight member. This causes increase in cost.
In accordance with an aspect of the present disclosure, an image forming apparatus includes a first side plate, a second side plate, a sheet feeding unit and an image forming part. The first side plate and the second side plate are opposite to each other. The sheet feeding unit is attached between the first side plate and the second side plate. The image forming part forms an image on a sheet fed by the sheet feeding unit. The sheet feeding unit has a feed frame, a pickup roller, a feed roller, a separation member and a weight member. The feed frame has a first side wall supported by the first side plate in a facing manner and a second side wall supported by the second side plate in a facing manner. The pickup roller is supported in the feed frame and configured to feed the sheet in a conveying direction. The feed roller is supported at a downstream side of the pickup roller in the conveying direction in the feed frame and configured to convey the fed sheet in the conveying direction. The separation member is configured to come into contact with the feed roller to form a nip and to separate the sheet at the nip. The weight member is disposed above the feed roller in the feed frame and configured to damp vibration of the feed frame.
The above and other objects, features, and advantages of the present disclosure will become more apparent from the following description when taken in conjunction with the accompanying drawings in which a preferred embodiment of the present disclosure is shown by way of illustrative example.
Hereinafter, with reference to the attached drawings, an image forming apparatus according to an embodiment of the present disclosure will be described.
With reference to
An apparatus main body la of the printer 1 includes a box-shaped casing 2. The casing 2 includes a pair of first and second side plates 2a and 2b opposing to each other in the left and right directions (refer to
The sheet S fed by the sheet feeding unit 5 is conveyed along the conveying path 9, formed with an image at the image forming part 6 and then ejected on the ejection tray 7 by the ejection device 8.
Next, with reference to
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On a center in the width direction of a lower face of the base plate 35, a pair of blocks are protruded at a predetermined interval in the width direction. Between the blocks, a lower storage recess 41 opened to a lower side is formed. On an upper face of the base plate 35, an upper storage recess 42 opened to an upper side is formed above a front half portion of the lower storage recess 41 (a downstream side position in the conveying direction). In the upper storage recess 42, a hook part 43 is formed so as to extend upward from the base plate 35. The hook part 43 is deformable forward around its lower end connected to the base plate 35.
The pickup roller 22 and the feed roller 23 are supported by a feed holder 51. The pickup roller 22 and the feed roller 23 are arranged in the order from the upstream side in the conveying direction, and both ends of their rotating shafts are rotatably supported by the holder 51. At one ends of the rotating shafts, gears (not shown) are fixed. An idle gear 52 which is meshed with the gears is rotatably supported by the feed holder 51.
The feed holder 51 is detachably attached to the lower storage recess 41. As shown in
When the drive shaft 54 is rotated, the feed roller 23 is rotated in the counterclockwise direction in
The weight member 24 is stored in the upper storage recess 42. The weight member 24 has a cuboid shape, and is made of metal, for example. The weight member 24 has a weight of 40 g, for example. By elastically deforming the hook part 43, the weight member 24 is detachably attached to the upper storage recess 42.
An intermediate roller 57 is rotatably attached to the front plate 36 of the main body 31 at the center in the width direction. Left and right end portions of a rotating shaft of the intermediate roller 57 are rotatably supported by the rib 38 and the second side wall 33 respectively.
As shown in
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In addition, as shown in
With reference to
In the sheet feeding unit 5 having an above described configuration, when the sheet is fed from the sheet feeding cassette 4, the pickup roller 22 feeds the uppermost sheet to the separation nip N. If one sheet S is fed, the sheet S is conveyed by friction resistance between the feed roller 23 and an upper face of the sheet S. In this time, friction force between the retard roller 25 and a lower face of the sheet S exceeds the predetermined value of the torque limiter, the retard roller 25 rotates as the sheet S is conveyed. Thereby, the sheet S is conveyed by the intermediate roller 57 to the image forming part 6.
If two or more sheets S are fed, the uppermost sheet S is conveyed by the feed roller 23. Because friction force between the uppermost sheet S and the lower sheet is smaller than the friction force between the feed roller 23 and the uppermost sheet S, the torque applied to the retard roller 25 does not exceed the predetermined value of the torque limiter. Thereby, the retard roller 25 is not rotated, and the lower sheet is not conveyed. In this way, the two or more sheets S is separated one by one and the uppermost sheet only is conveyed by the intermediate roller 57 to the image forming part 6.
When the sheet S fed by the pickup roller 22 passes through the separation nip N, if stick slip occurs between the retard roller 25 and the sheet S, the retard roller 25 is vibrated. The vibration of the retard roller 25 is transmitted to the feed roller 23 through the sheet S. Then, the vibration is transmitted to the first and second side plate 2a and 2b through the feed holder 51 and the feed frame 21. Here, because the weight member 24 is stored in the upper storage recess 42 of the feed frame 21, the vibration transmitted from the feed holder 51 to the feed frame 21 is damped. Especially, an amplitude of the vertical component among the vibration components can be made small. In addition, because a weight of the feed frame 21 increases, a specific frequency of the feed frame 21 shifts toward lower frequencies, and resonance of the feed frame 21 can be inhibited.
In addition, although the second side plate 2b and the second side wall 33 of the feed frame 21 are fastened with the screws B as shown in
As described above, according to the sheet feeding unit 5 of the present disclosure, because the weight member 24 is arranged above the feed roller 23 disposed adjacently the retard roller 25 as a vibration generating source, the vertical component among the vibration components of the feed roller 23 can be damped intensively. In addition, because the weight member 24 is arranged at the center in the width direction, the vibration damping effects can be improved. Accordingly, by using the small and light weight member 24, it makes possible to efficiently reduce the abnormal sound caused by the stick slip occurred between the retard roller 25 and the sheet S.
Because the weight member 24 can be detachably stored in the upper storage recess 42 opened to the upper face by the hook part 43, the weight of the weight member 24 can be easily adjusted.
The first side plate 2a and the first side wall 32 of the feed frame 21 are not fastened; but the positioning pins 61 of the first side wall 32 are loosely fitted into the positioning holes 71 of the first side plate 2a. In addition, between the first side plate 2a and the first side wall 32, the gap is formed. Thereby, the transmission of the vibration from the feed frame 21 to the first side plate 2a can be damped. Accordingly, the generation of abnormal sound can be prevented without increase in cost by heightening the rigidity of the feed frame 21 and the first and second side plate 2a and 2b. By supporting the first side wall 32 of the feed frame 21 to the first side plate 2a with the positioning pins 61 and the positioning holes 71, it becomes possible to make the first side wall 32 of the feed frame 21 to be supported by the first side plate 2a with the gap g.
In addition, by combining the damping of the vibration of the feed roller 23 by the weight member 24 and the prevention of the vibration transmission between the first side plate 2a and the first side wall 32 of the feed frame 21, a synergistic effect for the abnormal sound can be obtained, and the inexpensive sheet feeding unit 5 which hardly generates abnormal sound can be provided.
While the preferable embodiment and its modified example of the image forming apparatus of the present disclosure have been described above and various technically preferable configurations have been illustrated, a technical range of the disclosure is not to be restricted by the description and illustration of the embodiment. Further, the components in the embodiment of the disclosure may be suitably replaced with other components, or variously combined with the other components. The claims are not restricted by the description of the embodiment of the disclosure as mentioned above.
Number | Date | Country | Kind |
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2016-101449 | May 2016 | JP | national |
Number | Name | Date | Kind |
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7404555 | Yonemoto | Jul 2008 | B2 |
20060180980 | Yonemoto | Aug 2006 | A1 |
Number | Date | Country |
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2008-056462 | Mar 2008 | JP |
Number | Date | Country | |
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20170336746 A1 | Nov 2017 | US |