This application is based upon and claims the benefit of priority from the corresponding Japanese Patent Application No. 2020-0090831 filed on May 25, 2020 the entire contents of which are incorporated herein by reference.
The present disclosure relates to an external cover.
There is known an image forming apparatus in which an optional device such as a paper feeding device or a post-processing device can be externally attached to a main body of the image forming apparatus. The paper feeding device stores a large amount of paper to feed into the main body of the image forming apparatus. The post-processing device performs post-processing (e.g., punching) on printed paper discharged from the main body of an image forming apparatus.
These optional devices may be coupled with a side of the main body of the image forming apparatus by a coupling mechanism, in a detachable manner. For example, the coupling mechanism is provided with a coupling band plate attached to a surface of the image forming apparatus, to which the post-processing device is to be attached.
The coupling band plate is supported by the image forming apparatus such that it can slide in a direction perpendicular to a direction of height. When the coupling band plate is slid in a state where the post-processing device is disposed to face the side of the image forming apparatus, an insertion portion formed on the coupling band plate is engaged with a recessed engaging portion of a pillar projecting from the post-processing device. There is known an image forming apparatus of this type in which the coupling mechanism is covered with an external cover to improve the exterior design.
An external cover of the present disclosure is a cover to cover a coupling mechanism. The coupling mechanism is disposed in a space between an image forming apparatus and an optional device that is disposed on a side of the image forming apparatus.
The exterior cover has an upper portion and a side portion. The upper portion extends in an apparatus front-back direction perpendicular to a direction in which the optional device and the image forming apparatus face each other; the upper portion covers an upper end part of the coupling mechanism. The side portion covers a front end part or a back end part of the coupling mechanism. The external cover is composed of a combination of multiple identically shaped cover members.
This Summary is provided to introduce a selection of concepts in a simplified form that are further described below in the Detailed Description with reference where appropriate to the accompanying drawings. This Summary is not intended to identify key features or essential features of the claimed subject matter, nor is it intended to be used to limit the scope of the claimed subject matter. Furthermore, the claimed subject matter is not limited to implementations that solve any or all disadvantages noted in any part of this disclosure.
Hereinafter, one or more embodiments of the present disclosure will be described in detail with reference to the drawings. The present disclosure should not be limited to any embodiment described below.
Hereinafter, “front” and “back” means the front and back of the image forming apparatus 1, and “right” and “left” means the right and left of the image forming apparatus 1 when viewed from the front, unless otherwise noted.
[Configuration of the Image Forming Apparatus 1]
The image forming apparatus 1 is a copier that is configured to internally discharge paper. The image forming apparatus 1 is provided with a main body 100, a scanner housing portion 200, and a coupling housing portion 150.
The scanner housing portion 200 is located above the main body 100. The scanner housing portion 200 is coupled with the main body 100 by the coupling housing portion 150.
An internal paper discharge space E is provided between the main body 100 and the scanner housing portion 200. The coupling housing portion 150 is provided with a back side fitting part (not shown) and a right side fitting portion 150a. The back side fitting part is attached to a back end part of the main body 100. The right side fitting part 150a is attached to a right end part of the main body 100.
The right side fitting portion 150a is provided with a vertical wall 155 that faces the internal paper discharge space E (see
In the internal paper discharge space E, a relay conveyance device 300 is installed in a detachable manner. After a sheet S is subjected to image forming and discharged from the lower discharge port 152, the relay conveyance device 300 delivers the sheet S to the post-processing device 400.
A contact glass plate 200a is provided on the top of the scanner housing portion 200. An upper surface of the contact glass plate 200a is closed by a document cover 202 such that it can be opened and again closed.
An automatic document feeding device 30 is integrally attached to the top of the document cover 202. A reading unit 201 is loaded inside the scanner housing portion 200.
The reading unit 201 optically reads an image on a document sheet G by a flatbed scanning method or a sheetfed scanning method to be described later. The reading unit 201 is provided with a CIS sensor that reads a document image by a photoelectric conversion; the reading unit 201 is configured to slide in a right-left direction.
The automatic document feeding device 30 is supported by a back end part of the scanner housing portion 200 with a pair of hinge mechanisms such that it can be turned. In the sheetfed scanning method, the automatic document feeding device 30 delivers the document sheet G to a document reading position R of an upper surface of the contact glass plate 200a.
Specifically, the automatic document feeding device 30 is provided with a document feed tray 31, a document output tray 32, a document conveyance path 33, multiple pairs of conveying rollers 34, and a casing 35.
The document output tray 32 is provided below the paper feed tray 31. The document conveyance path 33 is U-shaped, extending from the document feed tray 31 to the document output tray 32. The multiple pairs of the conveying rollers 34 are arranged along the document conveyance path 33. The multiple pairs of the conveying rollers 34 constitute an example of a paper conveyance mechanism that conveys the document sheet G through the document conveyance path 33. The casing 35 contains the multiple pairs of the conveying rollers 34.
The casing 35 has an opening part 35b for removing jammed paper; the opening part 35b extends from a top wall surface of the casing 35 to a side wall surface of the casing 35, which is adjacent to the post-processing device 400 (see
The reclosable cover 35a is supported by the casing 35. An end edge part of the reclosable cover 35a, which is adjacent to the post-processing device 400, is supported such that the reclosable cover 35a can be turned about an axis 36 extending in a front-back direction (see
The reclosable cover 35a is configured to turn about the axis 36, moving between a closed position at which the opening part 35b is closed and a wide-open position at a predetermined angle upward from the close position.
In a sheetfed scanning method, the automatic document feeding device 30 sends document sheets G set on the document feed tray 31 downstream one by one, with the multiple pairs of the conveying rollers 34. Subsequently, the automatic document feeding device 30 conveys the document sheet G to the document output tray 32 through the document reading position R. In the sheetfed scanning method, the reading unit 201 is disposed immediately below the document reading position R and reads an image on the document sheet G passing through the document reading position R.
In contrast, in the flatbed scanning method, the document cover 202 is turned up from a closed position with respect to the hinge mechanisms in a back end part of the document cover 202, prior to image reading. After the document sheet G is set on the upper surface of the contact glass plate 200a, the document cover 202 is returned to the closed position such that the document sheet G is kept in place on the upper surface of the contact glass plate 200a. In this state, the reading unit 201 performs photoelectric conversion of a reflection from the document sheet G by the ICS sensor provided in the reading unit 201 while sliding in a right-left direction, and thereby generates document image data.
[Configuration of the Main Body 100 of the Image Forming Apparatus 1]
The main body 100 is shaped in an approximately rectangular prim. Casters 102 for moving are attached to a bottom of the main body 100. An image forming portion 20 is provided in the main body 100. In the main body 100, a fixing portion 40 is provided above the image forming portion 20; two paper feed portions 10 are vertically arranged and disposed below and diagonally left to the image forming portion 20.
Each paper feed portion 10 is provided with: a paper cassette 10a that loads sheets S inside; and paper pickup rollers 10b. The paper pickup rollers 10b pick up the sheet S from the paper cassettes 10a and send it out. Being sent out from the paper cassette 10a, the sheet S is supplied to the image forming portion 20 by a pair of conveying rollers 11.
Furthermore, in the main body 100, large-capacity paper cassettes 15 are disposed side by side below the two paper feed portions 10. The sheet S loaded in the large-capacity paper cassettes 15 is picked up by paper pickup rollers (not shown) and sent out toward the image forming portion 20.
The image forming portion 20 is provided with a photoconductor drum 21, a charging device 23, an exposure device 25, a developing device 27, and a transfer device 29.
In the image forming portion 20, the charging device 23 charges a peripheral surface of the photoconductor drum 21, then the exposure device 25 forms an electrostatic image on the surface of the photoconductor drum 21 by emitting a laser light with reference to the document image data. The document image data is image data generated by the reading unit 201 from a document image.
The developing device 27 forms a toner image on the surface of the photoconductor drum 21 by developing the electrostatic image. The transfer device 29 transfers the toner image onto the sheet S supplied from the paper feed portion 10, then supplies the sheet S carrying the toner image to the fixing portion 40. The code 24 indicates a cleaner that removes toner remaining on the surface of the photoconductor drum 21.
The fixing portion 40 applies pressure and heat to the sheet S supplied from the image forming portion 20 while the sheet S passes through an interface between a fixing roller 40a and a pressure roller 40b. The fixing portion 40 thereby fixes the toner image onto the sheet S. Having the toner image fixed hereon by the fixing portion 40, the sheet S is conveyed upward by the fixing roller 40a and the pressure roller 40b.
The sheet S passes through a conveyance path that branches at a position above the fixing portion 40 into a first conveyance path T1 and a second conveyance path T2. Being conveyed by the fixing roller 40a and the pressure roller 40b, the sheet S passes through the first conveyance path T1 or the second conveyance path T2.
The first conveyance path T1 has a bend immediately above the fixing portion 40 and continues leftward to the lower discharge port 152. A pair of first discharge rollers 12 is disposed immediately upstream of the lower discharge port 152. The pair of the first discharge rollers 12 constitutes an example of a discharge mechanism.
The second conveyance path T2 has a bend above the fixing portion 40 and continues leftward to the upper discharge port 151. A pair of second discharge rollers 13 is disposed immediately upstream of the upper discharge port 151. The second conveyance path T2 further continues to a duplex-printing conveyance path T3. The duplex-printing conveyance path T3 is a conveyance path for duplex printing, through which the sheet S is turned upside down and resupplied to the image forming portion 20.
In a state not shown in the drawing, in which the relay conveyance device 300 is not installed in the internal paper discharge space E, the sheet S is discharged onto a sheet tray 101 from the lower discharge port 152. The upper discharge port 151 is used essentially for turning the sheet S upside down.
In contrast, in the state shown in
The relay conveyance device 300 is disposed on the sheet tray 101, which defines the bottom of the internal paper discharge space E. The relay conveyance device 300 is provided with a body case 303 that is shaped in an approximately rectangular prism.
The body case 303 has a sheet carrying-in port 301 on a right wall of the body case 303 itself; the sheet carrying-in port 301 communicates with the upper discharge port 151. The body case 303 has a sheet discharge port 302 on a left wall of the body case 303 itself; the sheet discharge port 302 communicates with a carrying-in port 401c of the post-processing device 400. The relay conveyance path T4 is provided in the relay conveyance device 300.
The relay conveyance path T4 extends from the sheet carrying-in port 301 to the sheet discharge port 302 in an approximately horizontal direction. Four pairs of conveying rollers 304 are arranged along the relay conveyance path T4. A paper discharge tray part 305 is formed on the top of the relay conveyance device 300; the paper discharge tray part 305 receives the sheet S from the upper discharge port 151.
[Configuration of the Front Region of the Main Body 100 of the Image Forming Apparatus 1]
Referring to
The front cover 103 is shaped in a rectangle that is horizontally long when viewed from the front. The front cover 103 has recessed handle portions 103a formed in a right end part and a left end part of the front cover 103 itself. Only one of the recessed handle portions 103a is shown in
The front cover 103 is attached to the main body 100 in a detachable manner. For maintenance, users can detach the front cover 103 therefrom by pulling the recessed handle portions 103a with the fingers frontward. The maintenance includes replacing toner containers (not shown), for example.
[Configuration of the Post-Processing Device 400]
The post-processing device 400 is attached to a left-side surface of the main body 100 in a detachable manner, with a coupling mechanism 500 to be described later.
The post-processing device 400 performs post-processing on the sheet S subjected to image forming. The post-processing is stapling, sorting, and center folding, for example. The sheet S subjected to image forming means a printed sheet.
Specifically, the post-processing device 400 is provided with a cabinet 401 that is long in an up-down direction as illustrated in
The cabinet 401 has the sheet carrying-in port 401c on a right-side surface of the cabinet 401 itself; the sheet carrying-in port 401c receives the sheet S having been printed from the image forming apparatus 1. The cabinet 401 has a discharge housing part 401a in a left end part of an upper region of the cabinet 401 itself; the discharge housing part 401a is shaped in a rectangular prism protruding upward.
The discharge housing part 401a has a first discharge port 401d on a right-side surface of the discharge housing part 401a itself. A part of a top region of the cabinet 401, adjacent to the right of the discharge housing part 401a is formed as a discharge tray part 401b on which the sheet S is stacked.
The cabinet 401 has a second discharge port 401e on a left-side surface of the cabinet 401 itself; the second discharge port 401e is disposed on an opposite side surface of the cabinet 401 to the sheet carrying-in port 401c. A lead-in conveyance path H0, a first discharge conveyance path H1, and a second discharge conveyance path H2 are provided in the cabinet 401.
The lead-in conveyance path H0 is a conveyance path extending from the sheet carrying-in port 401c to the post-processing mechanism 403. The first discharge conveyance path H1 is a conveyance path stretching from the post-processing mechanism 403 to the first discharge port 401d. The second discharge conveyance path H2 is a conveyance path stretching from the post-processing mechanism 403 to the second discharge port 401e. Multiple pairs of rollers are arranged along the conveyance paths H0, H1, and H2.
Referring to
The pair of the lead-in rollers 406 is disposed adjacent to the sheet carrying-in port 401c. The pair of the first discharge rollers 407 is disposed adjacent to the first discharge port 401d. The pair of the second discharge rollers 408 is disposed adjacent to the second discharge port 401e.
The pair of the first discharge rollers 407 is disposed in the discharge housing part 401a, discharging the sheet S from the first discharge port 401d in a direction X1 indicated in
The conveyance path of the sheet S subjected to post-processing by the post-processing mechanism 403 is controlled by a controller of the post-processing device 400. Specifically, the controller switches the position of a conveyance path switch (not shown) provided in the cabinet 401 according to a command from the image forming apparatus 1. The controller thereby switches the conveyance path of the sheet S subjected to post-processing between the first discharge conveyance path H1 and the second discharge conveyance path H2.
The first discharge conveyance path H1 serves to convey the sheet S subjected to post-processing from the first discharge port 401d to the discharge tray part 401b. The second discharge conveyance path H2 serves to convey the sheet S subjected to post-processing to another post-processing device (not shown) to be provided to the left of the cabinet 401. Alternatively, the second discharge conveyance path H2 serves to convey the sheet S to another discharge tray that is to be provided below the second discharge port 401e when the sheet S is a large sheet of paper relatively long in a conveyance direction.
[Configuration of the Coupling Mechanism 500]
Hereinafter, a configuration of the coupling mechanism 500 will be descried with reference to
Referring to
Referring to
A front end part and a back end part of the vertical plate portion 511 are respectively fixed to a front vertical frame 512 and a back vertical frame 513 that both extend in an up-down direction. The front vertical frame 512 and the back vertical frame 513 are fixed to a right-side surface of the cabinet 401 of the post-processing device 400 with screws, for example.
An upper part of the front vertical frame 512 and an upper part of the back vertical frame 513 are coupled with each other by a stay 514. A lead-in guide plate 515 is provided above the stay 514, which couples the upper part of the front vertical frame 512 and the upper part of the back vertical frame 513; the lead-in guide plate 515 guides the sheet S from the sheet discharge port 302 of the relay conveyance device 300 to the carrying-in port 401c of the post-processing device 400.
The lead-in guide plate 515 is a pair of sheet metal members placed one above the other, facing in-between space becoming wider toward the sheet discharge port 302.
The vertical plate portion 511 has a positioning hole 511a in the upper part of the vertical plate portion 511 itself (see
The recessed attachment member 510 is a sheet metal shaped by bending and extends in a front-back direction. The recessed attachment member 510 has a U-shaped fitting sliding portion 510a that fits in the upper part of the vertical plate portion 511 in a slidable manner.
A pair of rectangular aperture parts 510b and a pair of long holes 510e are formed in a plate part of the recessed attachment member 510, which faces the right-side surface of the vertical plate portion 511. The rectangular aperture parts 510b are arranged separately in a front-back direction. Each long hole 510e is disposed to the front of each rectangular aperture part 510b.
The long hole 510e is constituted by a slit-like hole extending in a front-back direction. The recessed attachment member 510 is fixed to the vertical plate portion 511 with screws 518 extending through the long holes 510e, such that the recessed attachment member 510 can slide in a front-back direction. A protruding plate part 510d protrudes to the right from an upper end edge of the rectangular aperture part 510b. Furthermore, a latching part 510c protrudes to the right from a front end edge of the rectangular aperture part 510b.
Referring to
A pair of protruding plate portions 520a protrudes from the left-side surface of the main body 100 to the left; the protruding plate portion 520a is shaped by bending. Each protruding plate portion 520a has a slit-like groove part 520b that extends in a front-back direction and is open to the front.
In this state, the latching part 510c of the recessed attachment member 510 is engaged with the groove part 520b of the protruding plate portion 520a of the protruding attachment member 520. The latching part 510c is formed at the front end edge of the rectangular aperture part 510b of the recessed attachment member 510. When the recessed attachment member 510 is slid back to the front until the detached position, the latching part 510c is released from the groove part 520b, and thereby the recessed attachment member 510 and the protruding attachment member 520 are disengaged from each other.
When the recessed attachment member 510 is slid again to the back until the attached position, the recessed attachment member 510 and the protruding attachment member 520 are again engaged with each other. Users can slide the recessed attachment member 510 manually.
Furthermore, after the recessed attachment member 510 and the protruding attachment member 520 are engaged with each other, a U-shaped frame portion 512a of the front vertical frame 512 is slid from the front and engaged with a latching part 510f of the recessed attachment member 510, and then fixed thereto with a screw 517 (see
[Configuration of the Front Vertical Frame 512 and the Back Vertical Frame 513]
Referring to
The flat frame portion 512b has a rectangular plate part 512c that is formed in the upper end part and is long in a right-left direction. The rectangular plate part 512c has a tapped hole 512d that is drilled across a thickness direction of the rectangular plate part 512. The tapped hole 512d is used for fixing the external cover U as to be described later.
The back vertical frame 513 is flat, facing to the flat frame portion 512b of the front vertical frame 512. Referring to
The tapped hole 513e is used for fixing the external cover U as to be described later. The back vertical frame 513 has a horizontal plate part 513a and a vertical plate part 513b that are formed in the lower end part. The horizontal plate part 513a extends to the front horizontally, and the vertical plate part 513b is connected to a front end edge of the horizontal plate part 513a. The vertical plate part 513b has a tapped hole 513c that is drilled across a thickness direction of the vertical plate part 513b. The tapped hole 513c is used for fixing the external cover U as to be described later.
[Detailed Configuration of the External Cover U]
Hereinafter, a configuration of the external cover U will be described with reference to
For a better understanding of the combined structure of the cover members 600, in these drawings, a character “A” is given to a first end part of the cover member 600, and a character “B” is given to a second end part of the cover member 600.
The external cover U includes an upper portion u1, a front portion u2, and a back portion u3. The upper portion u1 horizontally extends in a front-back direction of the image forming apparatus 1 and is disposed such that it covers an upper part of the coupling mechanism 500. The front portion u2 extends downward from a front end part of the upper portion u1 and is disposed such that it covers a front part of the coupling mechanism 500.
The back portion u3 extends downward from a back end part of the upper portion u1 and is disposed such that it covers a back part of the coupling mechanism 500. It is less necessary to cover the back part of the coupling mechanism 500 because it is in a blind spot for users standing to the front of the image forming apparatus 1. So, the back portion u3 of the external cover U includes only one cover member 600. The back portion u3 is shorter in length than the front portion u2 which is constituted by the two cover members 600 arranged in series.
Referring to
The cover member 600 has a long wall 601 that extends in a predetermined direction of the cover member 600. Referring to
A flat side wall 602 that extends to the back of the cover member 600 is connected to an end edge of the long wall 601 (see
The cover member 600 has a first fitting portion K1 at the first end and a second fitting portion K2 at the second end in an extension direction of the cover member 600 itself. Any two of the cover members 600 can be coupled with each other by the first fitting portion K1 of one of the two cover members 600 and the second fitting portion K2 of the other one of the two cover members 600, being coupled with each other.
In the present embodiment, any two of the cover members 600 are configured such that the first fitting portion K1 of one of the two cover members 600 and the second fitting portion K2 of the other one of the cover members 600 can be re-coupled to be in a linear fitting state or a right-angle fitting state selectively. In the linear fitting state, the two cover members 600 are coupled to form a line so that their extension directions are the same (see
As described above, any two of the cover members 600 are capable of being re-coupled to be in the linear fitting state or the right-angle fitting state. The external cover U thereby can be flexibly reshaped, not only into the shape illustrated in
[Configuration of the First Fitting Portion K1]
A configuration of the first fitting portion K1 will be described with reference to
The recessed part 604 is shaped by a base surface 604a and a side surface 604b. The base surface 604a is a flat surface that is perpendicular to a front-back direction of the cover member 600. The front-back direction of the cover member 600 is perpendicular to the surface of the sheet of
The base surface 604a has positioning holes 604c and 604d that are arranged in a traverse direction of the cover member 600. The base surface 604a further has a through hole 604e between the positioning holes 604c and 604d. The base surface 604a still further has a rectangular idle hole 604f that is long in a traverse direction of the cover member 600. The idle hole 604f is located toward the first end part of the cover member 600 in the extension direction from the positioning holes 604c and 604d.
Referring to
Referring to
[Configuration of the Second Fitting Portion K2]
Hereinafter, a configuration of the second fitting portion K2 will be described with reference to
Referring to
The base plate 610 has positioning projections 611 and 612 arranged in a traverse direction of the cover member 600. The positioning projections 611 and 612 are both cylindrically shaped. The base plate 610 further has a tapped hole 613 between the positioning projections 611 and 612.
The base plate 610 still further has a latching hook 614 that protrudes from the contact surface 610a to the back of the cover member 600. In
Referring to
[Description of the Linear Fitting State]
The two cover members 600 are thereby coupled in line with each other as illustrated in
[Description of the Right-Angle Fitting State]
Hereinafter, the right-angle fitting state of the first fitting portion K1 and the second fitting portion K2 will be described with reference to
The latching hook 614 of the second fitting portion K2 is engaged with the latching hole 604g of the side surface 604b of the first fitting portion K1. Specifically, the hook part of the latching hook 604 is engaged with an edge part of the latching hole 604g, and the two cover members 600 are thereby fixed to each other at a right angle. The latching hole 604g is an example of a catch part.
Furthermore, in the right-angle fitting state, although it is not shown, the positioning projection 611 shown in
[Configuration of the External Cover U being Fixed in Place]
Referring to
Specifically, a screw 651 is inserted through the through hole 604e formed in the base surface 604a of the first fitting portion K1. The base surface 604a of the first fitting portion K1 is in a back region of the cover member 600. The screw 651 is further tightened into the tapped hole 513e of the bent plate part 513d shown in
Specifically, a screw 652 is inserted through the through hole 604e of the first fitting portion K1 that is located in the upper end part of the upper cover member 600. The screw 652 is further tightened into the tapped hole 512d of the rectangular plate part 512c that is formed in the upper end part of the front vertical frame 512.
Specifically, a screw 653 is inserted through the through hole 604e of the first fitting portion K1 that is located at the lower end part of the cover member 600. The screw 653 is further tightened into the tapped hole 513c of the vertical plate part 513b that is formed in the lower end part of the back vertical frame 513 (see
[Positions of the External Cover U in Relation to the Image Forming Apparatus 1 and the Post-Processing Device 400]
The upper surface of the external cover U serves as an extension part of the discharge tray part 401b of the post-processing device 400 as illustrated in
The discharge tray part 401b has an inclined surface 401f and a flat surface 401g. The inclined surface 401f is inclined upward from the left to the right. The flat surface 401g horizontally extends from an upper end edge of the inclined surface 401f to the right.
The upper surface of the external cover U includes the outer surface 601a of the cover member 600 constituting the upper portion u1. Specifically, the upper surface of the external cover U includes the inclined surface 601c and the flat surface 601b. The inclined surface 601c is inclined upward from the left to the right at an angle of 45 degrees approximately. A lower end edge of the inclined surface 601c is located lower than the flat surface 401g of the discharge tray part 401b, and an upper end edge of the inclined surface 601c is located higher than the flat surface 401g of the discharge tray part 401b.
In the example of
Being discharged from the first discharge port 401d, the sheet S is smoothly delivered through the discharge tray part 401b to the upper surface of the external cover U without being interfered with the movement by the external cover U as illustrated in
Referring to
Referring to
A left end edge of the reclosable door 404 is supported by the cabinet 401 on an axis 405 extending in an up-down direction so that the reclosable door 404 can turn about the axis 405. For maintenance of the post-processing device 400, users can open the reclosable door 404 by turning the handle portions 404a about the axis 405 with the fingers frontward. An end edge part of the reclosable door 404, which is adjacent to the front portion u2 of the external cover U, includes an inclined surface that is inclined frontward as is closer to the image forming apparatus 1. The inclined surface is composed of: the inclined surface 603c of the end wall 603 of the cover member 600 constituting the upper portion u1 of the external cover U; and the inclined surface 601c of the outer surface 601a of the cover member 600 constituting the front portion u2 of the external cover U (see
The cover member 600 constituting the front portion u2 of the external cover U is located toward the back of the handle portion 103a of the front cover 103 of the main body 100 as illustrated in
The image forming apparatus 1 has a rectangular breather 100a in a back end part of a left-side surface of the image forming apparatus 1 as illustrated in
The cover member 600 constituting the back portion u3 of the external cover U is located toward the front of the breather 100a as illustrated in
As described above, in the present embodiment, the external cover U is provided with the upper portion u1, the front portion u2, and the back portion u3. The upper portion u1 extends in a front-back direction of the image forming apparatus 1, which is perpendicular to a direction in which the image forming apparatus 1 and the post-processing device 400 face each other, and covers an upper part of the coupling mechanism 500. The front portion u2 covers a front end part of the coupling mechanism 500, and the back portion u3 covers a back end part of the coupling mechanism 500. The external cover U is composed of a combination of the identically shaped cover members 600.
According to the configuration, the external cover U is composed of the multiple, identically shaped cover members 600; so, the external cover U can be reshaped easily by changing the arrangement or number of the cover members 600. Since the external cover U can be reshaped by changing the arrangement or number of the cover members 600, there is no need to redesign the external cover U specially for each model of the post-processing device 400. Since the external cover U can be flexibly reshaped depending on the model of the post-processing device 400, there is no need to reuse any existing cover. This will prevent the integrity of the exterior design of the external cover U from being impaired by the reuse of an existing cover.
Furthermore, in the present embodiment, any two of the cover members 600 can be coupled with each other by the first fitting portion K1 of one of the two cover members 600 and the second fitting portion K2 of the other one of the two cover members 600, being coupled with each other. Any two of the cover members 600 are further configured such that the first fitting portion K1 of one of the two cover members 600 and the second fitting portion K2 of the other one of the two cover members 600 can be re-coupled to be in the linear fitting state or the right-angle fitting state. In the linear fitting state, the two cover members 600 are coupled such that their extension directions are the same. In the right-angle fitting state, the two cover members 600 are coupled such that their extension directions are perpendicular to each other.
According to this configuration, the external cover U can be flexibly reshaped by combining the identically shaped cover members 600. So, there is no need to redesign the external cover U specially for each model of the post-processing device 400 to be attached to the image forming apparatus 1. This means, the production cost of the external cover U can be reduced.
Since there is no need to redesign the external cover U specially for a limited production model of the post-processing device 400, in particular, the production cost of the external covers U can be further reduced depending on the production volume of the model. Furthermore, since there is no need to reuse any existing cover or use sheet metal members, the exterior design of the limited production model of the external cover U will be improved.
Furthermore, in the present embodiment, the cover member 600 is a molding produced by injection molding.
This configuration will improve the exterior design of the cover members 600 with respect to the same when the cover member 600 is a sheet metal member. Furthermore, since the external cover U can be flexibly reshaped depending on the model of the post-processing device 400, only one metallic mold is needed for producing the cover members 600, and there is no need to build a new mold. This means, the cost of mold building can be reduced as much as possible.
Furthermore, in the present embodiment, when the first fitting portion K1 and the second fitting portion K2 are in the linear fitting state, the positioning hole 604c of either one of the coupling portions K1 and K2 is engaged with the positioning projection 611 of the other one of the coupling portions K1 and K2, the positioning hole 604d of either one of the coupling portions K1 and K2 is engaged with the positioning projection 612 of the other one of the coupling portions K1 and K2, and the first fitting portion K1 and the second fitting portion K2 are fixed to each other with the screw 650. In present example, the positioning projection 611 of the second fitting portion K2 is engaged with the positioning hole 604c of the first fitting portion K1, and the positioning projection 612 of the second fitting portion K2 is engaged with the positioning hole 604d of the first fitting portion K1.
When the first fitting portion K1 and the second fitting portion K2 are in the right-angle fitting state, the latching hook 614 of either one of the coupling portions K1 and K2 is engaged with the latching hole 604g of the other one of the coupling portions K1 and K2. In present example, the latching hook 614 of the second fitting portion K2 is engaged with the latching hole 604g of the first fitting portion K1.
According to this configuration, the first fitting portion K1 and the second fitting portion K2 can be easily re-coupled to be in the linear fitting state or the right-angle fitting state. The first fitting portion K1 and the second fitting portion K2 may be interchanged in position.
Furthermore, in the present embodiment, the positioning projections 611 and 612 and the latching hook 614 are provided to the second fitting portion K2 (see
The first fitting portion K1 has the recessed part 604, which is recessed from the outer surface 604a to the back of the cover member 600 and is open to an extension direction of the cover member 600. The recessed part 604 has: the base surface 604a which is perpendicular to a traverse direction of the cover member 600; and the side surface 604b which rises from an end edge of the base plate 604a in an extension direction of the cover member 600.
The base surface 604a has the positioning holes 604c and 604d and the idle hole 604f. In the linear fitting state, the positioning hole 604c is engaged with the positioning projection 611 of the second fitting portion K2, and the positioning hole 604d is engaged with the positioning projection 612 of the second fitting portion K2. In the linear fitting state, the idle hole 604f offers refuge for the latching hook 614. The side surface 604b has the latching hole 604f; in the right-angle fitting state, the latching hole 604g is engaged with the latching hook 614 of the second fitting portion K2.
According to this configuration, it is easy to form two different surfaces in the recessed part 604, which is recessed from the outer surface 601a of the cover member 600: a surface having the positioning holes 604c and 604d to be used in the linear fitting state; and another surface having the latching hole 604g to be used in the right-angle fitting state.
In the present embodiment, the second fitting portion K2 has the contact surface 610a to be in contact with the base surface 604a of the first fitting portion K1 in the linear fitting state. The positioning projections 611 and 612 and the latching hook 614 project from the contact surface 610a of the second fitting portion K2.
According to the configuration, projecting pieces are collectively provided to the second fitting portion K2, which will simplify the coupling structure of the first fitting portion K1 and the second fitting portion K2.
Furthermore, in the present embodiment, in the linear fitting state, the screw 650 is tightened in the tapped hole 613 of the second fitting portion K2 through the through hole 604e of the first fitting portion K1; with the screw 650, the first fitting portion K1 and the second fitting portion K2 are fixed to each other.
According to the configuration, the first fitting portion K1 and the second fitting portion K2 are tightly fixed to each other with the screw 650 to be in the linear fitting state.
Furthermore, in the present embodiment, the first fitting portion K1 and the second fitting portion K2 are configured not to be in the linear fitting state unless the side surface 604b of one of the two cover members 600 fits in the end wall 603 of the other one of the two cover members 600. This will prevent the two cover members 600 from being coupled improperly. The side surface 604b is an example of a shaped-to-fit part (see
Furthermore, in the present embodiment, the outer surface 601a of the cover member 600 is a designed surface extending in an extension direction of the cover member 600. The designed surfaces of any two of the cover members 600 are aligned to be approximately even with each other without a step when the first fitting portion K1 of one of the two cover members 600 and the second fitting portion K2 of the other one of the two cover members 600 are in the linear fitting state. Similarly, the designed surfaces of any two of the cover members 600 and the end wall 603 shown in
Furthermore, in the present embodiment, when the cover members 600 are combined to be the external cover U, the configuration can be described as follows: an upper surface of the upper portion u1 of the external cover U has an upper surface edge part adjacent to the discharge tray part 401b, and the upper surface edge part is inclined upward in a right-left direction, from the post-processing device 400 toward the image forming apparatus 1. In other words, the upper surface edge part of the external cover U is inclined upward from the post-processing apparatus 400 toward the image forming apparatus 1. In this case, the sheet S is not interfered with being discharged onto the discharge tray part 401b, by the upper surface edge part of the upper portion u1 of the external cover U, which is adjacent to the discharge tray part 401b.
This configuration will prevent the sheet S from being interfered and turned by the external cover U when the sheet S is discharged onto the discharge tray part 401b. Furthermore, the upper surface of the external cover U serves as an extension part of the discharge tray part 401b. So, even when the sheet S is a large sheet of paper, there is no need to convey the sheet S to another discharge tray or no need to upsize the cabinet 401 and make the discharge tray part 401b longer in a sheet discharge direction.
Furthermore, in the present embodiment, when the external cover U which is composed of a combination of the cover members 600 is installed, the configuration can be described as follows: an end edge part of the front portion u2 of the external cover U, which is adjacent to the reclosable door 404 of the post-processing device 400, is formed to be inclined frontward as is closer to the image forming apparatus 1 when viewed from the top.
This configuration allows users to open and close the reclosable door 404 easily without being interfered by the front portion u2 of the external cover U.
In the above-described embodiment, the external cover U has the front portion u2 covering a front end part of the coupling mechanism 500 and the back portion u3 covering a back end part of the coupling mechanism 500. However, the configuration of the external cover U should not be limited to the above-described embodiment. For example, the external cover U may have either of the front portion u2 and the back portion u3. As one example, the external cover U may have either of them depending on which end part of the coupling mechanism 500 is exposed more to users. The front region of the external cover U is exposed more to users in the above-described embodiment; the back region of the external cover U may be exposed more to users depending on the location of the image forming apparatus 1.
In the above-described embodiment, the post-processing device 400 is described as an example of an optional device to be attached to the image forming apparatus 1. Alternatively, a relay conveyance device, a paper feed device, or a sheet stacking device may be employed as an example of the optional device.
Although the image forming apparatus 1 is a copier in the above-described embodiment, it should not be limited thereto. Alternatively, the image forming apparatus 1 may be a printer, a facsimile, or a multifunctional peripheral (MFP), for example.
As described above, the present disclosure serves for an external cover to cover a coupling mechanism that attaches a post-processing device to an image forming apparatus, especially when the image forming apparatus is a printer, a facsimile, a copier, or a multifunctional peripheral (MFP).
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.
Number | Date | Country | Kind |
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JP2020-090831 | May 2020 | JP | national |
Number | Name | Date | Kind |
---|---|---|---|
9939774 | Agata | Apr 2018 | B2 |
20150251869 | Taguchi | Sep 2015 | A1 |
20170242391 | Koyanagi | Aug 2017 | A1 |
20190286047 | Ishimitsu | Sep 2019 | A1 |
20210309475 | Kakuta | Oct 2021 | A1 |
20210362974 | Kakuta | Nov 2021 | A1 |
Number | Date | Country |
---|---|---|
2004317847 | Nov 2004 | JP |
2012008460 | Jan 2012 | JP |
2017140753 | Aug 2017 | JP |
Number | Date | Country | |
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20210364978 A1 | Nov 2021 | US |