The present disclosure relates to an image forming apparatus including a lock mechanism for an opening/closing member.
Conventionally, an image forming apparatus such as a copier or a laser beam printer is provided with, in general, an opening/closing member that opens the apparatus main body for jam clearance and replacement of a process cartridge, and the opening/closing member is held in a closed position by a lock mechanism during normal printing. In many cases, such a lock mechanism is provided at two or more positions near both ends of a pivot-type opening/closing member, in order to ensure locking. However, for example, in a case where locks are provided at two position at the right and left ends of the opening/closing member, one-side tightening (one-side latching) in which only one of the locks engages while the other does not engage can occur. This tends to occur, in particular, in a case where it is difficult to ensure sufficient torsional rigidity of an opening/closing member, in a product with an opening/closing member having a wide width such as an A3 machine, or a product with an opening/closing member having a minimum thickness for downsizing.
To address such an issue, there is discussed a configuration including an opening/closing member having a connection shaft connecting a first hook at one end and a second hook at the other end, and an apparatus main body with a hook detection member that detects the position of the first hook (Japanese Patent Application Laid-Open No. 2005-181453). In this configuration, the first hook and the second hook can be engaged with a pair of lock pins disposed in the apparatus main body, and the opening/closing member is locked with respect to the apparatus main body when the first hook and the second hook are engaged with the respective lock pins in the respective lock positions. In this configuration, a hook detection member can detect the first hook not being in the lock position in which the first hook is engaged with the lock pin. In a case where the second hook is not in the lock position in which the second hook is engaged with the lock pin, the first hook is not in the lock position either due to the connection axis. Therefore, the hook detection member can indirectly detect the second hook not being in the lock position.
However, in a case where the opening/closing member being closed is detected based on the position of the hook, it may be desirable that the detection member be disposed in proximity to the hook located near an end portion of the apparatus. Therefore, there may be such an issue that flexibility of the layout of the detection member is limited.
According to an aspect of the present disclosure, an image forming apparatus includes an apparatus main body configured to form an image, an opening/closing member configured to pivot on an axis with respect to the apparatus main body between a closed position to close an opening of the apparatus main body and an open position to open the opening, a lock mechanism configured to hold the opening/closing member in the closed position, and a detection member configured to detect a position of the opening/closing member. The lock mechanism includes a first engaging portion at one end of the apparatus main body in an axial direction of the axis, a second engaging portion at another end of the apparatus main body in the axial direction of the axis, a connection portion connecting the first engaging portion and the second engaging portion, a first engaged portion at one end of the opening/closing member in the axial direction of the axis, and a second engaged portion at another end of the opening/closing member in the axial direction of the axis. An engagement width for the first engaging portion and the first engaged portion is less than, an engagement width for the second engaging portion and the second engaged portion, in a state where the opening/closing member is in the closed position and locked by the lock mechanism, and the detection member is located closer to the second engaging portion, than the first engaging portion, in the axial direction of the axis.
Further features of the present disclosure will become apparent from the following description of exemplary embodiments with reference to the attached drawings.
An image forming apparatus according to a first exemplary embodiment in the present disclosure will be described below.
(Image Forming Apparatus)
The image forming unit 100A includes stations that form toner images of four colors of yellow, magenta, cyan, and black. The image forming unit 100A further includes an intermediate transfer belt 102A to which the toner images formed in the respective stations are sequentially transferred. Each of the stations includes a photosensitive drum 101 (101Y, 101M, 101C, 101B), and a development unit 104 (104Y, 104M, 104C, 104B) that includes a development roller for developing an electrostatic latent image formed on the photosensitive drum 101. The stations have similar configurations, and configurations for forming the toner images of the respective colors of yellow, magenta, cyan, and black are provided with Y, M, C, and B representing yellow, magenta, cyan, and black, and the description of the configuration for each color will be omitted.
The intermediate transfer belt 102A is an endless belt, and is stretched by a tension roller 102B, a drive roller 102C for rotating the intermediate transfer belt 102A, and a turn roller 102D. The intermediate transfer belt 102A is in contact with the photosensitive drum 101 in each of the stations with pressure from a primary transfer roller 106 (106Y, 106M, 106C, 106B), so that a primary transfer nip is formed. Further, the intermediate transfer belt 102A is in contact with a secondary transfer roller 105 with pressure from the drive roller 102C, so that a secondary transfer nip is formed.
When image forming operation begins in the image forming unit 100A, a laser scanner 103 irradiates each of the photosensitive drums 101 with light corresponding to an image signal, so that an electrostatic latent image is formed on each of the photosensitive drums 101. Subsequently, each of the development units 104 develops the electrostatic latent image using a color (yellow, magenta, cyan, or black) toner contained therein, so that a toner image (a visible image) is formed on the surface of the corresponding photosensitive drum 101. The toner image formed on the surface of each of the photosensitive drums 101 is sequentially subjected to the primary transfer to the surface of the intermediate transfer belt 102A, so that a toner image with the four color toners is formed, and this toner image is conveyed to the secondary transfer nip by the intermediate transfer belt 102A.
In parallel with such toner image forming operation, the sheets S are fed from a sheet containing unit 107 one by one by a pickup roller 108. The fed sheet S is conveyed to the secondary transfer nip formed by the intermediate transfer belt 102A and the secondary transfer roller 105, by a feed roller 109 and a registration roller 110 that corrects skew of the sheet S. Here, to align the position of the sheet S in a sheet conveyance direction with the position of the toner image formed on the intermediate transfer belt 102A, timing for the sheet S is adjusted by controlling the conveyance speed of the registration roller 110 and the feed roller 109. Subsequently, the toner image is transferred from the intermediate transfer belt 102A to the sheet S by application of a bias to the secondary transfer roller 105 at the secondary transfer nip. The sheet S to which the toner image is transferred is conveyed to the fixing unit 111, and the fixing unit 111 fixes the toner image to the sheet S by applying heat and pressure. After the toner image is fixed, a discharge roller 112 discharges the sheet S to a discharge portion 113 located in an upper part of an apparatus main body 100B.
(Opening/Closing Member)
The opening/closing member 1 is disposed at a front surface of the apparatus main body 100B that includes the image forming unit 100A and can form an image. The opening/closing member 1 can pivot on a pivot axis extending in a horizontal direction at a vertically lower portion. In a case where the opening/closing member 1 changes from a closed state where the opening/closing member 1 is closed to an open state where the inside of the apparatus main body 100B is exposed, the vertically upper side of the opening/closing member 1 moves away from the apparatus main body 100B. In a case where the opening/closing member 1 is in the open state, the opening/closing member 1 extends in the horizontal direction, so that the photosensitive drum 101 and the development unit 104 can be replaced through an exposed opening portion. In a case where the opening/closing member 1 is in the closed state, the opening/closing member 1 is locked with respect to the apparatus main body 100B by a lock mechanism 2.
A configuration of the opening/closing member 1 will be described in detail with reference to
The opening/closing member 1 is configured as a door by fastening an outer casing 4 (
Further, as illustrated in
Next, the lock mechanism 2 for locking the opening/closing member 1 with respect to the apparatus main body 100B will be described with reference to
Next, operation of interlock between the handle 9 of the opening/closing member 1 and the latch unit 19 of the apparatus main body 100B when the opening/closing member 1 is in the closed state with respect to the apparatus main body 100B will be described with reference to
The latch unit 19 includes a latch shaft (a connection shaft) 22, the latch 20 assembled to one end of the latch shaft 22, the latch 21 assembled to the other end of the latch shaft 22, and a latch spring 23. In the latch unit 19, the latch shaft 22 that can move is urged by an urging force of the latch spring 23 in an arrow-R direction in
Here, the apparatus main body 100B is provided with a detection member 3 in order to detect an open/closed state of the opening/closing member 1 that can be opened and closed with respect to the apparatus main body 100B. The detection member 3 detects the position of the opening/closing member 1 to prevent execution of image formation when the opening/closing member 1 is in the open position, i.e., when the opening/closing member 1 is not in the closed position. In the present exemplary embodiment, a push switch for detecting opening/closing of the opening/closing member 1 is disposed on the front surface of the apparatus main body 100B, and this push switch is used as the detection member 3. The detection member 3 detects the opening/closing member 1 being in the closed position, when the detection member 3 is pressed by a protrusion 29 (an acting portion) by a predetermined amount X1 serving as a threshold from a detection position. The protrusion 29 (the acting portion) is a part of the frame 5 of the opening/closing member 1 to act on the detection member 3.
In the present exemplary embodiment, there is adopted such a configuration (
Here, a case where the opening/closing member 1 is closed by pressing a portion near the latch locking portion 8b in the opening/closing member 1 to bring the latch 21 into contact with the latch locking portion 8b will be described with reference to
Pressing the portion near the latch locking portion 8b further therefrom causes a slope 21a of the latch 21 to abut a first slope 26b of the latch locking portion 8b and move to a top 27b of the latch locking portion 8b along the first slope 26b, as illustrated in
Next, a case where the opening/closing member 1 is closed by pressing a portion near the latch locking portion 8a in the opening/closing member 1 to bring the latch 20 into contact with the latch locking portion 8a will be described with reference to
Pressing the portion near the latch locking portion 8a further therefrom causes the latch 20 to advance beyond the top 27a as illustrated in
When the state of the one-side tightening thus occurs, the latch locking portion 8b of the opening/closing member 1 is pushed out by the latch 21 to a position for opening the opening/closing member 1 in an opening direction of the opening/closing member 1, by a predetermined amount X2. At this moment, the detection member 3 comes in contact with the protrusion 29 of the opening/closing member 1, and is pushed out to a position away, by a distance X3, from a position P in which the detection member 3 is pressed by the predetermined press amount in the closed state. Therefore, in the present exemplary embodiment, the detection member 3 detects the open state in the state of the one-side tightening, so that the image forming apparatus does not execute the image forming operation at the time of the one-side tightening of the opening/closing member 1. Specifically, the distance X3 from a position of the protrusion 29 during the one-side tightening to a position of the protrusion 29 when the opening/closing member 1 is in the closed position is large with respect to the distance X1 from a position of the protrusion 29 for enabling the detection member 3 to detect the closed state to the position of the protrusion 29 when the opening/closing member 1 is in the closed position. Because the distance X3 is large with respect to the distance X1, a condition for an installation position in a product width direction (the axial direction of the pivot axis of the opening/closing member 1) of the detection member 3 is as follows.
L2>X1/X2×L1
L2: A distance from the latch 20 to the detection member 3 in the axial direction of the pivot axis of the opening/closing member 1
L1: A distance from the latch 20 to the latch 21 in the axial direction of the pivot axis of the opening/closing member 1
X1: The distance from the position of the protrusion 29 for enabling the detection member 3 to detect the closed state to the position of the protrusion 29 when the opening/closing member 1 is in the closed position
X2: The distance between the engaging surface 21b of the latch 21 and the engaged surface 8b1 of the latch locking portion 8b in the pivot direction of the opening/closing member 1
Further, because the distance X3 is large with respect to the distance X1, a condition for an installation position in a product height direction (a direction intersecting the axial direction of the pivot axis of the opening/closing member 1, i.e., a vertical direction) is as follows (
H2>X1/X2×H1
H2: A distance from the pivot axis of the opening/closing member 1 to the protrusion 29 in the direction intersecting the axial direction of the pivot axis of the opening/closing member 1
H: A distance from the pivot axis of the opening/closing member 1 to the latch 21 in the direction intersecting the axial direction of the pivot axis of the opening/closing member 1
X1: The distance from the position of the protrusion 29 for enabling the detection member 3 to detect the closed state to the position of the protrusion 29 when the opening/closing member 1 is in the closed position
X2: The distance between the engaging surface 21b of the latch 21 and the engaged surface 8b1 of the latch locking portion 8b in the pivot direction of the opening/closing member 1
The detection member 3 thus disposed can thereby detect the opening/closing member 1 being in the open state, and stop the operation of the apparatus main body 100B, at the time of the one-side tightening in which the latch 21 is not locked. The one-side latching is thus detected using the detection member 3, so that the configuration can be achieved using a small number of members. Moreover, in the configuration of the present exemplary embodiment, the latch being set in the lock position is not directly detected, so that the placement of the detection member is not restricted by the installation position of each of the latch and the latch locking portion, and thus the image forming apparatus can be downsized.
Next, a second exemplary embodiment in the present disclosure will be described. Configurations similar to those of the first exemplary embodiment are assigned the same reference numerals as the first exemplary embodiment and will not be described.
In the first exemplary embodiment, the latches 20 and 21 connected via the latch shaft 22 slide in the axial direction, but this is not limitative. In the present exemplary embodiment, a configuration in which latches 30 and 31 are connected via a latch shaft 32 and each pivot on the latch shaft 32 will be described. Due to this change in configuration, although the latch locking portion 8a and the latch locking portion 8b in the opening/closing member 1 are each shaped to open toward one end in the axial direction of the pivot axis in the first exemplary embodiment, the latch locking portion 8a and the latch locking portion 8b in the second exemplary embodiment are each shaped to open in a direction away from the pivot axis (a vertically upward direction).
Next, a case where the opening/closing member 1 is closed by pressing a portion near the latch locking portion 8a in the opening/closing member 1 to bring the latch 31 into contact with the latch locking portion 8a will be described with reference to
Pressing the portion near the latch locking portion 8b brings the opening/closing member 1 into a state where the latch locking portion 8b abuts the latch unit 19 prior to the latch locking portion 8a, so that the opening/closing member 1 tilts. Pressing the portion near the latch locking portion 8b further therefrom causes the latch 31 to abut the latch locking portion 8b, the latch 31 rotates in the V-direction opposite to the W-direction at a latch abutment portion 40b, and the latch locking portion 8b moves to the top 27b (
Next, a case where the opening/closing member 1 is closed by pressing a portion near the latch locking portion 8a in the opening/closing member 1 to bring the latch 30 into contact with the latch locking portion 8a will be described with reference to
Pressing the portion near the latch locking portion 8a brings the opening/closing member 1 into a state where the latch locking portion 8a abuts the latch unit 19 prior to the latch locking portion 8b, so that the opening/closing member 1 tilts. Pressing the portion near the latch locking portion 8a further therefrom causes the latch 30 to advance beyond the top 27a as illustrated in
When the state of the one-side tightening thus occurs, the latch locking portion 8b of the opening/closing member 1 is pressed by the latch 31 to a position for opening the opening/closing member 1 in an opening direction of the opening/closing member 1, by a predetermined amount X2. At this moment, the protrusion 39 of the opening/closing member 1 dose not sufficiently enter a photo-interrupter disposed in the apparatus main body 100B as the detection member 3, and light traveling from a light emitting unit of an optical sensor to a light receiving unit is not blocked, so that the opening/closing member 1 is detected to be in the open state. Therefore, in the present exemplary embodiment, the detection member 3 detects the open state, so that the image forming apparatus does not execute the image forming operation at the time of the one-side tightening of the opening/closing member 1. Specifically, a distance X3 from a position of the protrusion 39 during the one-side tightening to a position of the protrusion 39 when the opening/closing member 1 is in the closed position is large with respect to a distance X1 from a position of the protrusion 39 for enabling the detection member 3 to detect the closed state to the position of the protrusion 39 when the opening/closing member 1 is in the closed position. Because the distance X3 is large with respect to the distance X1, a condition for an installation position in a product width direction (the axial direction of the pivot axis of the opening/closing member 1) of the detection member 3 is as follows.
L2>X1/X2×L1
L2: A distance from the latch 30 to the detection member 3 in the axial direction of the pivot axis of the opening/closing member 1
L1: A distance from the latch 30 to the latch 31 in the axial direction of the pivot axis of the opening/closing member 1
X1: The distance from the position of the protrusion 39 for enabling the detection member 3 to detect the closed state to the position of the protrusion 39 when the opening/closing member 1 is in the closed position
X2: The distance between the engaging surface 31b of the latch 31 and the engaged surface 8b1 of the latch locking portion 8b in the pivot direction of the opening/closing member 1
Further, because the distance X3 is large with respect to the distance X1, a condition for an installation position in a product height direction (a direction intersecting the axial direction of the pivot axis of the opening/closing member 1, i.e., a vertical direction) is as follows (
H2>X1/X2×H1
H2: A distance from the pivot axis of the opening/closing member 1 to the protrusion 39 in the direction intersecting the axial direction of the pivot axis of the opening/closing member 1
H1: A distance from the pivot axis of the opening/closing member 1 to the latch 31 in the direction intersecting the axial direction of the pivot axis of the opening/closing member 1
X1: The distance from the position of the protrusion 39 for enabling the detection member 3 to detect the closed state to the position of the protrusion 39 when the opening/closing member 1 is in the closed position
X2: The distance between the engaging surface 31b of the latch 31 and the engaged surface 8b1 of the latch locking portion 8b in the pivot direction of the opening/closing member 1
The detection member 3 thus disposed can thereby detect the opening/closing member 1 being in the open state, and stop the operation of the apparatus main body 100B, at the time of the one-side tightening in which the latch 31 is not locked. The one-side latching is thus detected using the detection member 3, so that the configuration can be achieved using a small number of members. Moreover, in the configuration of the present exemplary embodiment, the latch being set in the lock position is not directly detected, so that the placement of the detection member is not restricted by the installation position of each of the latch and the latch locking portion, and thus the image forming apparatus can be downsized.
While the present disclosure has been described with reference to exemplary embodiments, it is to be understood that the disclosure is not limited to the disclosed exemplary embodiments. The scope of the following claims is to be accorded the broadest interpretation so as to encompass all such modifications and equivalent structures and functions.
This application claims the benefit of priority from Japanese Patent Application No. 2019-121946, filed Jun. 28, 2019, which is hereby incorporated by reference herein in its entirety.
Number | Date | Country | Kind |
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2019-121946 | Jun 2019 | JP | national |
Number | Name | Date | Kind |
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6540268 | Pauser | Apr 2003 | B2 |
20130243475 | Lee | Sep 2013 | A1 |
Number | Date | Country |
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2005-181453 | Jul 2005 | JP |
Number | Date | Country | |
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20200409302 A1 | Dec 2020 | US |