Sheet positioning member, sheet storage device including sheet positioning member, and image processing apparatus including sheet storage device
11247856 ยท 2022-02-15
Assignee
Inventors
Cpc classification
B65H1/04
PERFORMING OPERATIONS; TRANSPORTING
B65H2407/20
PERFORMING OPERATIONS; TRANSPORTING
B65H1/266
PERFORMING OPERATIONS; TRANSPORTING
B65H2220/01
PERFORMING OPERATIONS; TRANSPORTING
B65H2402/60
PERFORMING OPERATIONS; TRANSPORTING
B65H2220/04
PERFORMING OPERATIONS; TRANSPORTING
B65H2220/01
PERFORMING OPERATIONS; TRANSPORTING
B65H2801/06
PERFORMING OPERATIONS; TRANSPORTING
B65H2220/04
PERFORMING OPERATIONS; TRANSPORTING
B65H9/004
PERFORMING OPERATIONS; TRANSPORTING
B65H7/10
PERFORMING OPERATIONS; TRANSPORTING
International classification
B65H1/04
PERFORMING OPERATIONS; TRANSPORTING
B65H7/10
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A sheet positioning member is provided on a sheet placing surface in such a way as to be movable in a predetermined first direction. The sheet positioning member includes a moving body, an abutting portion, an operation member, and a cam portion. The moving body moves in the first direction on the sheet placing surface. The abutting portion has an abutting surface that abuts on the side end portion when the sheet positioning member positions the sheet. The operation member is supported by the moving body so as to be pivotable around a support shaft that extends in the first direction, on a side of a back surface of the abutting portion. The cam portion displaces the abutting portion toward the side end portion by being pressed by the operation member in response to a pivoting operation of the operation member.
Claims
1. A sheet positioning member that is provided on a sheet placing surface in such a way as to be movable in a predetermined first direction, and positions a sheet placed on the sheet placing surface by abutting on a side end portion of the sheet at a side in the first direction, the sheet positioning member comprising: a moving body configured to move in the first direction on the sheet placing surface; an abutting portion supported by the moving body and having an abutting surface that abuts on the side end portion of the sheet when the sheet positioning member positions the sheet; an operation member supported by the moving body so as to be pivotable around a support shaft that extends in the first direction, on a side of a back surface of the abutting portion, the back surface being opposite to the abutting surface; a cam portion configured to displace the abutting portion toward the side end portion of the sheet by being pressed by the operation member in response to a pivoting operation of the operation member; and a biasing member configured to bias the abutting portion with respect to the moving body in a direction opposite to the side end portion of the sheet, wherein the cam portion displaces the abutting portion toward the side end portion of the sheet against a biasing force of the biasing member, a lower end portion of the abutting portion is pivotably supported by the moving body via a pivot shaft that extends perpendicular to the first direction, and the biasing member is an elastic member attached to the pivot shaft, and has an elastic force that causes the abutting portion to pivot in a direction of separating from the side end portion of the sheet.
2. A sheet storage device comprising: the sheet positioning member according to claim 1; and a sheet storage portion that includes the sheet placing surface, the sheet storage portion configured to store the sheet stacked on the sheet placing surface.
3. An image processing apparatus comprising: the sheet storage device according to claim 2; and an image processing portion configured to perform image processing on the sheet fed from the sheet storage device.
4. A sheet positioning member that is provided on a sheet placing surface in such a way as to be movable in a predetermined first direction, and positions a sheet placed on the sheet placing surface by abutting on a side end portion of the sheet at a side in the first direction, the sheet positioning member comprising: a moving body configured to move in the first direction on the sheet placing surface; an abutting portion supported by the moving body and having an abutting surface that abuts on the side end portion of the sheet when the sheet positioning member positions the sheet; an operation member supported by the moving body so as to be pivotable around a support shaft that extends in the first direction, on a side of a back surface of the abutting portion, the back surface being opposite to the abutting surface; and a cam portion configured to displace the abutting portion toward the side end portion of the sheet by being pressed by the operation member in response to a pivoting operation of the operation member, wherein the cam portion is provided above the support shaft on the back surface of the abutting portion and formed in a circular arc shape centering on the support shaft.
5. The sheet positioning member according to claim 4, wherein the cam portion is an inclined cam formed on the back surface of the abutting portion so as to incline from one end to the other.
6. The sheet positioning member according to claim 5, wherein the moving body includes: a support plate extending along the sheet placing surface in a direction perpendicular to the first direction in such a way as to support the side end portion of the sheet; a vertical plate provided on the side of the back surface of the abutting portion to extend upward from the support plate; and the support shaft that projects from the vertical plate, and the operation member includes: a disk-shaped rotor pivotally supported by the support shaft; an arm portion projecting from an outer peripheral portion of the rotor; and an inclined portion provided on the outer peripheral portion of the rotor in such a way as to abut on the inclined cam.
7. A sheet storage device comprising: the sheet positioning member according to claim 4; and a sheet storage portion that includes the sheet placing surface, the sheet storage portion configured to store the sheet stacked on the sheet placing surface.
8. An image processing apparatus comprising: the sheet storage device according to claim 7; and an image processing portion configured to perform image processing on the sheet fed from the sheet storage device.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
(15) The following describes an embodiment of the present disclosure with reference to the accompanying drawings. It should be noted that the following embodiment is an example of a specific embodiment of the present disclosure and should not limit the technical scope of the present disclosure. It is noted that, for the sake of explanation, an up-down direction D1, a front-rear direction D2, and a left-right direction D3 are defined with respect to a state where an image forming apparatus 10 is usably installed (the state shown in
(16) The following describes, with reference to
(17) The image forming apparatus 10 is a multifunction peripheral having a plurality of functions such as a print function, a copy function, a scan function, and a facsimile function.
(18) The present embodiment describes, as one example, the image forming apparatus 10 including the image reading device 11. However, the present disclosure is not limited to the configuration. For example, the present disclosure is applicable to an image processing apparatus such as: a printer (an image forming apparatus) that includes the paper cassette 17, and has only the print function; and a scanner (an image reading device) that includes a document sheet tray 14, and has only the scan function. It is noted that in this case, the paper cassette 17 and the document sheet tray 14 are each an example of the sheet storage device of the present disclosure.
(19) The image forming portion 15 executes a color or monochrome image forming process (an example of image processing of the present disclosure) by an electrophotographic method based on image data read by the image reading device 11, or image data input from an information processing apparatus such as an external personal computer. The image forming portion 15 includes an image forming unit, an exposure device, an intermediate transfer belt, a secondary transfer roller, and a fixing device. The image forming unit includes a photoconductor drum, a charging device, a developing device, a primary transfer roller, and a cleaning device (all of these components are not shown). These components are disposed in a housing 19 that constitutes a frame or the like of the image forming portion 15.
(20) The present embodiment describes, as one example, the image forming portion 15 adopting the electrophotographic method. However, the method of the image forming portion 15 is not limited to the electrophotographic method, but may be an inkjet recording method or any other recording or printing method.
(21) The ADF 13 is provided in the image reading device 11. The image reading device 11 includes the document sheet tray 14. One or more document sheets (an example of a sheet of the present disclosure) that are the reading target, are placed on the document sheet tray 14. The ADF 13 picks up the document sheets one by one from the document sheet tray 14, and feeds them in succession to a predetermined reading position. Here, the image reading device 11 reads an image from a document sheet at the reading position, and a reading unit irradiates light to the reading position.
(22) The document sheet tray 14 includes a cursor 14A for positioning the document sheets placed on the document sheet tray 14 to a predetermined position in the front-rear direction D2. The cursor 14A is provided on an upper surface (sheet placing surface) of the document sheet tray 14. The cursor 14A extends in a width direction (the left-right direction D3) of the document sheet tray 14 and is configured to move frontward from a rear end portion on the upper surface of the document sheet tray 14. The cursor 14A abuts on a rear end portion of a stack of document sheets placed on the document sheet tray 14, and position the stack of document sheets to the predetermined position.
(23) The image reading device 11 is attached to an upper portion of the image forming apparatus 10. The image reading device 11 includes a reading unit, a contact member, a document sheet pressing 11A, and a housing 11B. The above-mentioned components are stored in the housing 11B of the image reading device 11. The image reading device 11 executes an image reading process (an example of the image processing of the present disclosure) of reading image data from a document sheet. For example, the image reading device 11 executes a process of reading an image from a document sheet that has been fed by the ADF 13 and is moving, and a process of reading an image from a document sheet placed still on the contact member.
(24) The following describes the paper cassette 17 in detail.
(25)
(26) The housing 19 supports the paper cassette 17 such that the paper cassette 17 can be slid in and out the housing 19 in the front-rear direction D2 through a front surface of the image forming apparatus 10. As shown in
(27) A reinforcement frame 23 is provided on the front side of a lower portion of the housing 19. The reinforcement frame 23 is disposed more on the front side than the front support frame 21, and separated upward from the front support frame 21 by a certain interval. The paper cassette 17 can be inserted through an opening which is surrounded by the reinforcement frame 23, the front support frame 21, and the side frames 19A and 19B. It is noted that the certain interval is a size determined to allow for insertion of the paper cassette 17.
(28)
(29) The sheet storage portion 41 includes: a handle portion 35 on the front side thereof, a pair of side walls 36A and 36B on the left and right sides thereof; and a regulating member 37 for regulating the rear end of the sheets, on the rear side thereof. In addition, a guide member 38 is provided between the bottom plate 46 and the handle portion 35, wherein the guide member 38 has a guide surface that guides a front end of a print sheet diagonally upward when a sheet feed mechanism (not shown) feeds the print sheet frontward from the sheet storage portion 41.
(30) The lift plate 45 is attached to an upper surface (bottom surface) of the bottom plate 46 of the sheet storage portion 41, with an elastic member (not shown) in between. The elastic member is, for example, a coil spring or a plate spring. The lift plate 45 is always biased upward by the elastic member. With this configuration, a top sheet of the print sheets stacked on the lift plate 45 is always in contact with a pickup roller of the sheet feed mechanism.
(31) In addition, as shown in
(32)
(33) In the present embodiment, the left cursor 51 is provided on the bottom plate 46, in the vicinity of the left side wall 36A. The left cursor 51 abuts on the left side end of the sheet stack stored in the sheet storage portion 41 positions the sheet stack to the predetermined position. The left cursor 51 is supported by the bottom plate 46 in such a way as to slide in the width direction.
(34) The pair of cursors 51 and 52 are configured to move in conjunction with each other in the width direction on the bottom plate 46. For example, a rack-pinion mechanism composed of rack gears 53 (see
(35) As shown in
(36) The operation lever 69 is configured to be displaced between a lock position and an unlock position, wherein the lock position is indicated by the solid line in
(37) A lock claw 78 (an example of a lock piece) projecting downward is provided in a lower end portion of the operation lever 69. The lock claw 78 is formed in the shape of a claw that has a downward acute angle. The lock claw 78 is used to fix the left cursor 51 to an arbitrary position in the width direction on the bottom plate 46 of the sheet storage portion 41. The lock claw 78 is displaced in the up-down direction D1 when the operation lever 69 is displaced between the lock position and the unlock position.
(38) An engaging portion 49 including a plurality of engaging grooves 49A formed at regular intervals in the width direction, is formed on the bottom plate 46 of the sheet storage portion 41. The engaging portion 49 is formed on the bottom plate 46 in a region in which the left cursor 51 moves. For example, the lock claw 78 is composed of gear teeth of a predetermined size, and the engaging portion 49 is a rack gear having gear teeth of the same size and the same pitch as those of the lock claw 78.
(39) In the present embodiment, in a state where the operation lever 69 is not operated, the operation lever 69 is located at the lock position, and in this state, the lock claw 78 enters the engaging grooves 49A of the engaging portion 49 and is engaged therewith in the width direction (see
(40) When the operation portion 75 is operated by the operator, and the operation lever 69 is displaced from the lock position to the unlock position, the lock claw 78 is displaced upward and released from the engaging grooves 49A of the engaging portion 49 (see the dotted line in
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(42) As shown in
(43) The moving body 54 includes a plate-like support plate 55 (an example of a support portion) and a plate-like vertical plate 56 (an example of a side plate portion), wherein the support plate 55 is slidably supported by the bottom plate 46, and the vertical plate 56 extends upward approximately in the vertical direction from the support plate 55. The moving body 54 is made of, for example, a synthetic resin, and the support plate 55 and the vertical plate 56 are integrally formed with each other. The support plate 55 extends in the front-rear direction D2 along the upper surface (bottom surface) of the bottom plate 46. An end portion (right end portion) of the sheet stack in the width direction is supported by an upper surface of the support plate 55. The vertical plate 56 is provided on a side of a back surface (right surface) of the abutting portion 57, and projects upward from a right end portion of the support plate 55 (see
(44) The abutting portion 57 is supported by the moving body 54. The abutting portion 57 includes a main body portion 571 that is formed in an approximately rectangular shape. An inner side surface of the main body portion 571 is referred to as an abutting surface 57A and abuts on the right side end portion of the sheet stack to position the sheet stack. The abutting portion 57 is a plate-like member extending in the up-down direction D1, and is supported by the moving body 54 such that the main body portion 571 faces an inner side surface 56B of the vertical plate 56.
(45) The abutting portion 57 is supported in such a way as to be displaced in the left-right direction D3 with respect to the vertical plate 56. Specifically, as shown in
(46) The right cursor 52 is provided with torsion coil springs 83 (elastic member) that bias the abutting portion 57 outward (rightward) in the width direction. The torsion coil springs 83 are an example of a biasing member of the present disclosure. In a state where the pivot shafts 80 are inserted through the torsion coil springs 83, one end of each of the torsion coil springs 83 is fixed to the pivot shaft 80 or the abutting portion 57, and the other end is fixed to the bearing 81. In the present embodiment, the torsion coil springs 83 are provided as one example of the biasing member. However, not limited to the torsion coil springs 83, other types of elastic member may be applied as far as they can bias the abutting portion 57 outward (rightward) in the width direction.
(47) The abutting portion 57 is biased outward (rightward) with respect to the vertical plate 56 by the torsion coil springs 83. As a result, in a state where no other external force is applied to the abutting portion 57, for example, in a state where the abutting portion 57 is not pressed by a circular arc cam 100 described below, the abutting portion 57 is separated rightward from the right side end portion of the sheet stack by the elastic force of the torsion coil springs 83, is in contact with a lever 90 described below at a non-regulating position (the position shown in
(48) As shown in
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(50) The circular arc cam 100 is formed on the outer side surface 57B, above the support shaft 84. The circular arc cam 100 extends in the front-rear direction D2, and is formed in a circular arc shape centering on the support shaft 84. The circular arc cam 100 is a circular-arc rib that projects from the outer side surface 57B outward. The circular arc cam 100 is what is called an inclined cam formed on the outer side surface 57B, and has a cam surface 103 (see
(51)
(52) Meanwhile, in a conventional technology, a spring member is used to bias a side surface of sheets. With such a configuration, however, there may be a case where the spring member becomes an obstacle and the user cannot store sheets in a paper cassette in a state where a positioning member is disposed at a position corresponding to a size of the sheets. In that case, the user needs to displace the positioning member outside in advance, store the sheets in the paper cassette, and then move the positioning member to a predetermined position corresponding to the size of the sheets. As understood from this, the paper setting method of the conventional technology is complicated, and the operability is not good in storing sheets in the paper cassette.
(53) In the present embodiment, as shown in
(54) In addition, as shown in
(55) In the above-described embodiment, the right cursor 52 includes the circular arc cam 100 and the lever 90. However, not limited to this configuration, for example, the circular arc cam 100 and the lever 90 may be provided in each of the left cursor 51 and the right cursor 52.
(56) In the above-described embodiment, the circular arc cam 100 is provided on the outer side surface 57B, and the rotor 91 of the lever 90 includes the inclined portion 94. However, the present disclosure is not limited to this configuration. For example, the outer side surface 57B may include the circular arc cam 100, and the lever 90 may include a projection portion (projection), such as a boss, that abuts on the circular arc cam 100. Alternatively, the lever 90 may include the inclined portion 94, and the outer side surface 57B may include a projection portion (projection), such as a boss, that abuts on the inclined portion 94. In this case, the inclined portion 94 has a role of a cam portion of the present disclosure.
(57) The shape of the circular arc cam 100 and the inclined portion 94 is not limited to the circular arc. In the above-described embodiment, a cam portion having a circular arc shape is described as one example. However, the cam portion may have any shape as far as it can displace the abutting portion 57 toward the sheet stack when it is pressed by the lever 90 in response to a pivoting of the lever 90.
(58) In the above-described embodiment, the present disclosure is applied to the right cursor 52 of the paper cassette 17. However, the present disclosure is not limited to the configuration. For example, the cursor 14A of the image reading device 11 may be configured similar to the right cursor 52.
(59) In the above-described embodiment, the abutting portion 57 pivots around the pivot shafts 80. However, the present disclosure is not limited to the configuration. For example, the abutting portion 57 may move approximately horizontally in the left-right direction D3 between the non-regulating position and the regulating position.
(60) It is to be understood that the embodiments herein are illustrative and not restrictive, since the scope of the disclosure is defined by the appended claims rather than by the description preceding them, and all changes that fall within metes and bounds of the claims, or equivalence of such metes and bounds thereof are therefore intended to be embraced by the claims.