The present application is based on Japanese Patent Application No. 2015-14217 filed on Jan. 28, 2015, the contents of which are hereby incorporated by reference.
The present disclosure relates to a sheet loading apparatus in which a sheet is loaded and an image forming apparatus that includes the sheet loading apparatus.
Conventionally, as a sheet loading apparatus in which a sheet is loaded, a sheet loading apparatus is known which is provided in an image forming apparatus. A sheet loading apparatus includes a sheet storing portion and a cursor that limits a sheet position. The sheet loading portion is loaded with sheets of various sizes. Accordingly, the cursor is slidable in the sheet storing portion.
According the above technology, to deal with a nonstandard-size sheet, the cursor is fixable at an arbitrary position. Besides, to deal with a standard-size sheet, the cursor is also fixable at a predetermined position. Because of this, a fixing mechanism for fixing the cursor becomes complicated.
A sheet loading apparatus according to an aspect of the present disclosure is a sheet loading apparatus that includes a sheet loading portion and a regulating mechanism. The sheet loading portion includes a bottom portion on which a sheet is loaded. The regulating mechanism is disposed in the sheet loading portion and butts an end edge of the sheet extending in a first direction to limit a position of the sheet in a second direction which intersects the first direction perpendicularly. The regulating mechanism includes: a guide portion that is formed on the bottom portion to extend in the second direction; and a limiting member that is slidable along the guide portion in the second direction and abuts the end edge of the sheet. The guide portion includes: a plurality of first engaged portions that are formed at predetermined intervals along the second direction; and a second engaged portion that is formed continuously along the second direction. The limiting member includes: a pair of engaging portions that are composed of: a first engagement portion able to engage with any one of the plurality of first engaged portions because of sliding of the limiting member; and a second engagement portion which engages with the second engaged portion and whose position of the engagement with the second engaged portion changes because of the sliding of the limiting member.
Still other objects of the present disclosure and specific advantages obtained by the present disclosure will become more apparent from the following detailed description of a preferred embodiment.
Hereinafter, with reference to the drawings, an embodiment of the present disclosure is described.
The image forming apparatus 1 includes a main housing 2 that has a substantially rectangular parallelepiped shape. The main housing 2 includes a lower housing 21 (housing) that has a substantially rectangular parallelepiped shape, an upper housing 22 that is disposed over the lower housing 21 and has a substantially rectangular parallelepiped shape, and a connecting housing 23 that connects the lower housing 21 and the upper housing 22 to each other. The connecting housing 23 extends along a right edge and rear edge of the main housing 2. A sheet after undergoing a printing process is ejected into an ejecting space 24 enclosed by the lower housing 21, the upper housing 22, and the connecting housing 23. Especially, in the present embodiment, a sheet is ejected onto a sheet ejecting portion 241 disposed on an upper surface of the lower housing 21 or onto a sheet ejecting tray 242 disposed over the sheet ejecting portion 241. The upper housing 22 houses an image reading portion for mainly reading an image of a document, and an electronic circuit responsible for whole control of the image forming apparatus 1.
The image forming apparatus 1 includes a sheet feeding cassette 110 (sheet loading portion), a sheet feeding portion 11, a registration roller pair 116, and an image forming portion 120. The sheet feeding portion 11 includes a pickup roller 112 and a sheet feeding roller 113. The sheet feeding portion 11 supplies a sheet P in a right direction (conveying direction) from the sheet feeding cassette 110 to a sheet conveying path PP. The sheet conveying path PP is a conveying path that is disposed from the sheet feeding portion 11, passes through the registration roller pair 116, and passes through a transfer position TP disposed in the image forming portion 120.
The sheet feeding cassette 110 is loaded therein with the sheet P. The sheet feeding cassette 110 is drawable from the lower housing 21 in a front direction (direction facing a point over the paper surface of
The pickup roller 112 is disposed over the tip end edge of the sheet P that is pushed up by the lifting plate 111. When the pickup roller 112 rotates, the sheet P is pulled out from the sheet feeding cassette 110.
The sheet feeding roller 113 is disposed on a downstream side of the pickup roller 112 in the sheet conveying direction. The sheet feeding roller 113 sends further the sheet P downstream in the sheet conveying direction. In the meantime, the lower housing 21, the sheet feeding portion 11, the sheet feeding cassette 110, and a limiting mechanism 110T described later compose the sheet loading apparatus 1A (
A sheet hits a nip portion of the registration roller pair 116, whereby inclination of the sheet with respect to the sheet conveying direction is corrected. The registration roller pair 116 conveys the sheet P to the image forming portion 120 in accordance with a timing when a toner image is transferred to the sheet P.
The image forming portion 120 includes a photosensitive drum 121, an electrifier 122, a light exposing device 123, a developing device 124, a toner container 125, a transfer roller 126, and a cleaning device 127.
On a more downstream side than the image forming portion 120 in the conveying direction, the image forming apparatus 1 further includes a fixing device 130 that fixes a toner image on the sheet P. The fixing device 130 includes a heat roller 131 that melts the toner on the sheet P and a pressure roller 132 that presses the sheet P against the heat roller 131. When the sheet P passes through between the heat roller 131 and the pressure roller 132, the toner image is fixed onto the sheet P.
The image forming apparatus 1 includes further a conveying roller pair 133 that is disposed downstream from the fixing device 130, a switching portion 70 that is disposed downstream from the conveying roller pair 133, lower ejecting rollers 134, upper ejecting rollers 135, and ejects the sheet P onto the ejecting tray 242 that is disposed over the sheet ejecting portion 241.
Next, the sheet loading apparatus 1A according to the present embodiment is described further in more detail.
Referring to
The sheet loading apparatus 1A includes the limiting mechanism 110T and a size indicating portion 60. The limiting mechanism 110T includes the rear end limiting portion 50 (limiting member) and a guide concave portion 110H. The rear end limiting portion 50 is disposed on the bottom portion 110B of the sheet feeding cassette 110 and butts an end edge of the sheet P extending in a front-rear direction (first direction), which is a width direction of the sheet P, to limit a position of the sheet P. In the meantime, in the present embodiment, the sheet P loaded in the sheet feeding cassette 110 is conveyed rightward by the pickup roller 112. In other words, the limiting mechanism 110T limits a rear end edge of the sheet P in the conveying direction. Besides, both side edges of the sheet P stored in the sheet feeding cassette 110, which extend in a left-right direction (second direction) that is the conveying direction of the sheet P, are limited by a width limiting member 40 (see
Referring to
The size indicating portion 60 abuts a front side of the guide concave portion 110H and is disposed to extend in the left-right direction. The size indicating portion 60 indicate a plurality of kinds of sizes of the sheet P. Referring to
The guide groove 61 is a concave portion that is formed along the left-right direction at a substantially central portion of the guide concave portion 110H in the front-rear direction (width direction). A guide piece 511 of the rear end limiting portion 50 described later is inserted into the guide groove 61.
The guide bottom surface 62 is a pair of flat portions that extend in the left-right direction across the guide groove 61 and a bottom surface of the guide concave portion 110H. The rear end limiting portion 50 slides on the guide bottom surface 62. The first engagement surface 63 is a pair of wall surfaces that are formed upright from end portions of the pair of guide bottom surfaces 62 in the front-rear direction. The pair of first engagement surfaces 63 is disposed to oppose each other across an interval in the front-rear direction, and each extend in the left-right direction. The second engagement surface 64 is a pair of wall portions that are formed upright outside the pair of first engagement surfaces 63 in the front-rear direction. The second engagement surface 64 is disposed at a position higher than the first engagement surface 63. These first engagement surface 63 and second engagement surface 64 correspond to a side surface of the guide concave portion 110H. And, the side surface of the guide concave portion 110H is formed into a step shape by the first engagement surface 63 and the second engagement surface 64.
The first engagement surface 63 is provided with an engagement hole 63H (first engaged portion). A plurality of the engagement holes 63H are disposed on the first engagement surface 63 in the left-right direction at predetermined intervals. The engagement hole 63H is a concave portion that is formed in the first engagement surface 63 and has an arc shape in a top view. The engagement holes 63H are disposed in pairs in the pair of first engagement surfaces 63 in the front-rear direction to interpose the rear end limiting portion 50. In the meantime, in
The second engagement surface 64 includes engagement gear teeth 64H (second engaged portion). The engagement gear teeth 64H are rack gears that are formed on the pair of second engagement surfaces 64 to interpose the rear end limiting portion 50. In other words, the engagement gear teeth 64H are disposed in pairs across an interval in the front-rear direction of the guide concave portion 110H. And, the engagement gear teeth 64H are formed continuously along the left-right direction of each of the second engagement surfaces 64.
In the meantime, describing, in other words, shapes of the first engagement surface 63 provided with the engagement holes 63H and the second engagement surface 64 provided with the engagement gear teeth 64H, the pair of first engagement surfaces 63 are formed, on the bottom portion 110B of the sheet feeding cassette 110, below the second engagement surface 64 and at an interval narrower than the interval of the pair of second engagement surfaces 64 in the front-rear direction (see
In the present embodiment, a plurality of the engagement holes 63H are formed at predetermined intervals along the left-right direction in accordance with lengths of a plurality of kinds of standard sizes of the sheet P in the left-right direction (conveying direction) (see
The rear end limiting portion 50 is slidable in the left-right direction along the guide concave portion 110H and butts a rear end edge of the sheet P. The rear end limiting portion 50 is a member that is formed of a resin material and formed integrally by molding with a die. In a case of seeing from the front-rear direction, the rear end limiting portion 50 has a substantially L shape. The rear end limiting portion 50 includes a horizontal portion (base portion) 51 and a vertical portion 52 (
The horizontal portion 51 corresponds to a lower portion of the rear end limiting portion 50 and includes a function of moving along the guide concave portion 110H. Besides, the horizontal portion 51 is disposed to oppose the lowermost surface of the sheet P loaded in the sheet feeding cassette 110. Referring to
The base portion 510 is disposed at a substantially central portion of the horizontal portion 51. The base portion 510 is disposed along the bottom portion 110B and has a hollow rectangular shape. The guided piece 511 is a protrusion member that is formed to protrude from a right end edge of the base portion 510. As shown in
Referring to
The connecting piece 512A is formed to protrude from end edges of the base portion in the front-rear direction. The first extending portion 512B is formed to extend in the right direction from a tip end portion of the connecting piece 512A. Besides, the second extending portion 512C is formed to extend from the tip end portion of the connecting piece 512A in the left direction, that is, in a direction opposite to the first extending portion 512B in the left-right direction. A tip end portion (left end portion) of the second extending portion 512C is connected to a lower end portion of the outside rib 522 described later.
Each of the pair of first extending portions 512B includes a standard-size engagement portion 513 (first engagement portion). The standard-size engagement portion 513 is a protrusion that is formed to protrude from a tip end portion of the first extending portion 512B toward outside in the front-rear direction. As shown in
Besides, each of the pair of second extending portions 512C includes an arbitrary-size engagement portion 514 (second engagement portion). The arbitrary-size engagement portion 514 is an engagement piece that is formed to protrude from the tip end portion of the second extending portion 512C toward outside in the front-rear direction. As shown in
Besides, in a cross-sectional view (
The vertical portion 52 corresponds to a vertical portion of the rear end limiting portion 50 and is formed vertically from the horizontal portion 51. The vertical portion 52 has a function of butting a rear end edge of the sheet P to limit the rear end of the sheet P. Referring to
The inside ribs 521 are a pair of ribs that are a main body portion of the vertical portion 52 and formed to extend in the vertical direction. Besides, a lower portion of the inside rib 521 is provided with an inside arch portion 521R that is partially bent in an arch shape when seeing from the left-right direction. The inside arch portion 521R has a convex shape that is bent to approach the outside rib 522. Further, a lower end portion of the inside rib 521 is connected to a left end edge of the base portion 510 of the horizontal portion 51. Rigidity of the vertical portion 52 is maintained by the inside rib 521.
The outside ribs 522 (holding portion) are a pair of ribs that are formed to extend in the vertical direction at outside portions from the inside ribs 521 in the front-rear direction. The outside ribs 522 constitute end portions of the vertical portion 52 in the front-rear direction. A lower portion of the outside rib 522 is provided with an outside arch portion 522R that is partially bent into an arch shape. In the meantime, as shown in
In the meantime, referring to
Besides, the indicator 50 G (
In the present embodiment, as described above, the rear end limiting portion 50 is a resin member that is formed by one-piece molding. Accordingly, the standard-size engagement portion 513 and the arbitrary-size engagement portion 514 are each composed of a one-piece member.
In
In a case where the user slides the rear end limiting portion 50 from the state shown in
When the outside arch portion 522R is held and the rear end limiting portion 50 is slid with the second extending portion 512C deformed elastically inward from the state shown in
On the other hand, in a case where the rear end limiting portion 50 is moved to a limiting position of the A4 size from the state shown in
As described above, in the present embodiment, the rear end limiting portion 50 includes the standard-size engagement portion 513 and the arbitrary-size engagement portion 514, and the guide concave portion 110H includes the engagement hole 63H and the engagement gear teeth 64H. Because of this, by sliding the rear end limiting portion 50, it is possible to easily limit the positions of the standard-size and nonstandard-size sheets P. Especially, by using the elastic deformation of the first extending portion 512B and outside rib 522 of the rear end limiting portion 50 that is a single member, the engagement and disengagement of the standard-size engagement portion 513 and arbitrary-size engagement portion 514 are achieved. Accordingly, it is possible to perform the position adjustment of the rear end limiting portion 50 without using a complicated link mechanism and a spring member.
Besides, the standard-size engagement portion 513 and the arbitrary-size engagement portion 514 are formed integrally by the resin molding. Accordingly, it is possible to limit the rear end positions of the sheets P of various sizes by means of a simpler structure. Besides, the rear end limiting portion 50 includes the pair of first extending portions 512B that are disposed at an interval in the front-rear direction (first direction) and extend in the left-right direction (second direction), and the standard-size engagement portions 513 are formed to protrude from the tip ends of the pair of first extending portions 512B toward the engagement hole 63H. Accordingly, the engagement and disengagement between the standard-size engagement portion 513 and the engagement hole 63H is achieved by the elastic deformation of the first extending portion 512B. Further, each of the pair of outside arch portions 522R is held by the user to be elastically deformed inward, whereby the sliding of the rear end limiting portion 50 is easily achieved.
Further, in the present embodiment, the first extending portion 512B is connected to the second extending portion 512C, and the first extending portion 512B and the second extending portion 512C are supported by the connecting piece 512A. And, the arbitrary-size engagement portion 514 is fixed to the lower end portion of the outside rib 522, that is, the tip end portion (left end portion) of the second extending portion 512C. Because of this, in the case where the rear end limiting portion 50 is disposed at the limiting position for the nonstandard size, force is given to the second extending portion 512C by the restoring force due to th elastic deformation of the first extending portion 512B in such a way that the arbitrary-size engagement portion 514 comes into tight engagement with the engagement gear teeth 64H. Because of this, at the limiting position of the nonstandard size, the limiting position of the rear end limiting portion 50 is prevented from deviating.
In other words, at the limiting position of the standard-size sheet, the rear end limiting portion 50 is fixed stably by the standard-size engagement portion 513 and the arbitrary-size engagement portion 514. Besides, at the limiting position of the nonstandard-size sheet, the engagement between the arbitrary-size engagement portion 514 and the engagement gear teeth 64H is strongly maintained by the elastic deformation of the first extending portion 512B. Besides, the engagement and disengagement between the standard-size engagement portion 513 and the engagement hole 63H are smoothly achieved by the arc shape of the engagement hole 63H.
Besides, in the present embodiment, the rear end limiting portion 50 limits the rear end edge of the sheet P. Because of this, when the tip end side of the sheet P is pushed up by the lifting plate 111, a load is prone to act on the rear end limiting portion 50 because of weight of the sheet P. Even in such a case, as shown in
Further, in the present embodiment, as shown in
Hereinbefore, the sheet loading apparatus 1A and image forming apparatus 1 according to the embodiment of the present disclosure are described, but the present disclosure is not limited to this, and for example, it is possible to employ modifications described below.
(1) In the above embodiment, the form is described, in which the arbitrary-size engagement portion 514 and the first extending portion 512B are connected to each other by the second extending portion 512C, but the present disclosure is not limited to this. In another modification, a form may be employed, in which the rear end limiting portion 50 does not include the second extending portion 512C; the arbitrary-size engagement portion 514 is disposed on the lower end portion of the outside rib 522 and the standard-size engagement portion 513 is disposed on the tip end portion of the first extending portion 512B. Besides, the positions of the standard-size engagement portion 513 and arbitrary-size engagement portion 514 are not limited to the tip end portions of the first extending portion 512B and second extending portion 512C, respectively.
(2) Besides, in the above embodiment, the form is described, in which the rear end limiting portion 50 limits the rear end edge of the sheet P, but the present disclosure is not limited to this. The limiting member of the present disclosure may limit the width direction of the sheet P.
The present disclosure provides a sheet loading apparatus in which the positions of standard-size and nonstandard-size sheets are limitable with a simple structure and an image forming apparatus that includes the sheet loading apparatus.
Number | Date | Country | Kind |
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2015-014217 | Jan 2015 | JP | national |
Number | Name | Date | Kind |
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8052141 | Yamagishi | Nov 2011 | B2 |
9199808 | Shiokawa | Dec 2015 | B2 |
20060222434 | Kitamura | Oct 2006 | A1 |
20080298873 | Yamagishi | Dec 2008 | A1 |
20100270735 | Allwright | Oct 2010 | A1 |
20110210501 | Shiokawa | Sep 2011 | A1 |
Number | Date | Country |
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H 6-127707 | May 1994 | JP |
Number | Date | Country | |
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20160214810 A1 | Jul 2016 | US |