This application is based on and claims priority under 35 USC §119 from Japanese Patent Application No. 2007-39769 filed Feb. 20, 2007.
(i) Technical Field
The present invention relates to a cleaning device and a charging device, an image bearing unit and an image forming apparatus using the same.
(ii) Related Art
As a charging device used for the known image forming apparatus, for example, a wire member such as a discharging wire has been used.
According to an aspect of the invention, there is provided a cleaning device comprising:
three or more cleaning members for cleaning a wire member, the three or more cleaning members being separately disposed along a longitudinal direction of the wire member and including a pair of side cleaning members and an intermediate cleaning member, the intermediate cleaning member being disposed opposite to the pair of side cleaning members with respect to the wire member and disposed between the side cleaning members in the longitudinal direction of the wire member;
a first mechanism that moves at least one of the cleaning members so as to contact all of the cleaning members with the wire member or separate all of the cleaning members from the wire member; and
a second mechanism that moves all of the cleaning members along the longitudinal direction of the wire member in a state where all of the cleaning members are contacted with the wire member.
Exemplary Embodiments of the present invention will be described in detail based on the following figures, wherein:
Firstly, an overview of an exemplary embodiment according to the invention will be described.
In the same figures, an image forming apparatus has an image holding member 15 for holding an image visualized from a latent image by an image forming material and a charging device 10 for charging the image holding member 15.
The image holding member 15 may be any one of a photoreceptor and a dielectric, may have any one of a drum shape and a belt shape, and may be any one of a single and a plurality depending on an image (single-color image, plural-color image) formed by the image forming apparatus.
The charging device 10 has a charging container 12 having an opening opposed to the image holding member 15, a charging wire member 11 disposed in the charging container 12, and a cleaning device 1 for cleaning the charging wire member 11.
In order to desirably keep a uniform in charging, the charging device 10 preferably has a lattice-shaped electrode 13 in the opening of the charging container 12.
In the embodiment, as shown in
In such technical means, three or more cleaning members 2 may be provided and the cleaning members 2 may include side cleaning members 2a and 2b and at least one intermediate cleaning member 2c. In the same side as the intermediate cleaning member 2c, for example, other cleaning members may be provided in the outside of the side cleaning members 2a and 2b in the longitudinal direction of the charging wire member 11. The intermediate cleaning member 2c may be provided in any position (middle position) between the side cleaning members 2a and 2b, and plural intermediate cleaning members 2c may be provided.
The wire member contacting-separating mechanism 3 may move at least one of the cleaning members 2. However, it is required for the wire member contacting-separating mechanism 3 to contact or separate all of the cleaning members 2 with or from the charging wire member 11.
The cleaning movement mechanism 4 may move the cleaning members 2, which is contacted with the charging wire member 11 by the wire member contacting-separating mechanism 3, along the longitudinal direction of the charging wire member 11. The distance or direction may be appropriately determined.
In such a cleaning device 1, as an illustrative embodiment of the cleaning members 2, the cleaning members 2 may include an elastic member, a non-woven fabric is provided on a surface of the elastic member, and an abrasive (that is not limited to a layer shape and may include an aspect in which powder particles are applied) is provided on a surface of the non-woven fabric having an abrasion function.
To simplify the configuration of the cleaning member 1, the side cleaning members 2a and 2b and the intermediate cleaning member 2c may include a common configuration.
In order to further stabilize a moving posture of the side cleaning members 2a and 2b in different moving directions of the cleaning members 2, the intermediate cleaning member 2c may disposed in the center between the side cleaning members 2a and 2b in the longitudinal direction of the charging wire member 11.
The wire member contacting-separating mechanism 3 may movably hold the intermediate cleaning member 2c in a direction perpendicular to the longitudinal direction of the charging wire member 11 and may move the intermediate cleaning member 2c to contact or separate all of the side cleaning members 2a and 2b and the intermediate cleaning member 2c with or from the charging wire member 11.
To easily adjust the cleaning performance of the cleaning members 2, the intermediate cleaning member 2c may be moved to adjust oblique angles of the wire member, which is located between the intermediate cleaning member 2c and the side cleaning members 2a and 2b, with respect to the cleaning members 2.
A support member 5 for supporting the cleaning members 2 may be provided and the wire member contacting-separating mechanism 3 may be provided so that the side cleaning members 2a and 2b are fixedly attached to the support member 5, the intermediate cleaning member 2c is movably attached, and the charging wire member 11 is bent to bring the side cleaning members 2a and 2b and the charging wire member 11 in contact with each other when the intermediate cleaning member 2c comes in contact with the charging wire member 11.
As to the disposition relation between the side cleaning member 2a and 2b and the intermediate cleaning member 2c contacted with the charging wire member 11, k/d may be in the range of about 0.2 to about 0.7 where d denotes a distance between the intermediate cleaning member 2c and the side cleaning members 2a and 2b in the longitudinal direction of the charging wire member 11 and k denotes a biting distance corresponding to a relative difference between a position of the side cleaning members 2a and 2b contacted with the charging wire member 11 and a position of the intermediate cleaning member 2c contacted with the charging wire member 11.
The reason is that a pressing force of the cleaning members 2 to the charging wire member 11 is insufficient at the ratio smaller than 0.2, and the pressing force is excessive at the ratio larger than 0.7 and thus the cleaning members 2 may be rapidly damaged. The reason will be proved by examples to be described later.
To maintain the cleaning performance of the cleaning device 1, the cleaning movement mechanism 4 may reciprocate along the longitudinal direction of the charging wire member 11 in a state where all of the cleaning members 2 are contacted with the charging wire member 11 by the wire member contacting-separating mechanism 3.
In this case, when the movement direction is changed by the cleaning members 2, the contact to the charging wire member 11 may be kept. However, to sufficiently suppress the damage of the cleaning members 2, the cleaning members 2 may be temporally separated from the charging wire member 11 and then are contacted with the charging wire member 11 again when the movement direction is changed by the cleaning members 2.
To reliably maintain the charging performance of the charging device 10, any of the cleaning members 2 for the charging device 10 may clean the charging wire member 11 close to an image holding member 15 as a charging target.
To effectively prevent the cleaning device 1 from being dirtied due to foreign materials when the charging device 10 is disposed above the image holding member 15 as the charging target, the cleaning movement mechanism 4 of the cleaning device 1 may include a cleaning reception member 6 which is provided below the side cleaning members 2a and 2b and the intermediate cleaning member 2c so as to cover them and which moves together with all of the cleaning members 2.
To reliably maintain the charging performance of the charging device 10, the cleaning device 1 for the charging device 10 may include a cleaning-device waiting room where the cleaning device 1 waits at a non-cleaning time in the vicinity of an end portion of the charging wire member 11 in the longitudinal direction of the charging wire member 11 and deviated from an electrifiable area of a charging container 12, and may move the cleaning device 1 from the cleaning-device waiting room at a cleaning time.
Next, performance of the cleaning device used as the embodiment shown in
As shown in
As shown in
Meanwhile, in the side cleaning member 2b located on the side opposite to the going direction with the intermediate cleaning members 2c interposed therebetween, the charging wire member 11 moves relatively as the side cleaning member 2b moves, as shown in
On the other hand, as shown in
Meanwhile, in the side cleaning member 2a located on the side opposite to the coming direction with the intermediate cleaning member 2c interposed therebetween, the charging wire member 11 relatively moves as the side cleaning member 2a moves as shown in
As described above, when the cleaning members 2 move in the going and coming directions, the inclination direction of the side cleaning members 2a and 2b are opposite to each other. However, the forces for cleaning the charging wire member 11 by both side cleaning members 2a and 2b are added and thus become the same as each other. For the reason, even when the movement directions of the cleaning members 2 are different from each other, the cleaning powers of the side cleaning members 2a and 2b and the intermediate cleaning member 2c are kept be substantially equal. Accordingly, it is suppressed that the cleaning powers of the cleaning members 2 are dramatically reduced, due to the difference in the movement directions of the cleaning members 2.
The performance of the embodiment model is evaluated in comparison with the comparative embodiment shown in
In the comparative embodiment, it is assumed as follows. Two cleaning members 201 and 202 are disposed so that a charging wire member 211 is interposed therebetween. For example, the cleaning member 202 are disposed in a contacting-separating movement mechanism (not shown) so as to be contacted and separated. The other cleaning member 201 is fixedly disposed in a support member (not shown). The two cleaning members 201 and 202 move in going and coming directions indicated by arrows with the two cleaning members 201 and 202 contacted with the charging wire member 211.
When the two cleaning members 201 and 202 move in the going direction indicated by the arrow as shown in
Meanwhile, as shown in
In the comparative example as described above, when the cleaning members 201 and 202 move in the directions of the going and coming directions, the directions in which the cleaning member 202 is inclined to the charging wire member 211 are different from each other. Accordingly, a difference in cleaning power of the cleaning member 202 in the going and coming directions occurs, and thus the cleaning power may be insufficient in accordance with the movement directions of the cleaning members 201 and 202.
Hereinafter, the invention will be described in detail with reference to an exemplary embodiment shown in the accompanying drawings.
As the development device 23, any one of a 1-component developing method and a 2-component developing method may be appropriately selected. In the embodiment, the 2-component developing method is used (for example, a development roll 232 is disposed in a development container 231 receiving a 2-component developer, a mix-transport member 233 mixing and transporting the developer is disposed in the development container 231, the developer mixed and transported by the mix-transport member 233 is supplied to the development roll 232 using a developer supplying roll 234 or the like, a lay thickness of the developer on the development roll 232 is restricted by a layer-thickness restricting member 235, and the developer is supplied to a development area opposed to the photoreceptor 21).
The transfer device 24 is not limited to the device using the transfer roll as long as the transfer device 24 has a function for transferring the visual image on the photoreceptor 21 to the recording member or the intermediate transfer member, but may be a device using a discharge wire. In the embodiment, when the device using the discharge wire is employed, the configuration of the device using the discharge wire may be used as the charging device 22.
As the image cleaning device 25, a device cleaning the developer remaining on the photoreceptor 21 may be appropriately selected. In the embodiment, for example, there is used a device in which a plate-shaped cleaning blade 252 and a cleaning brush 253 are disposed in a cleaning container 251, and a uniformity transport member 254 allowing a recalled remaining developer to be uniform is disposed in the cleaning container 251.
In the embodiment, as shown in
The charging device 22 includes a substantially U-shaped charging container 41, a discharge wire 42 (see
The discharge wire 42 is provided between insulation members at both ends in the longitudinal direction of the charging container 41 with at least one tension-urging elastic spring 44 (see
As the discharge wire 42, for example, a wire with a diameter in the range of 30 μm to 40 μm made of tungsten, carbon tungsten, gold-coating tungsten, and the like with is used, and a tension force thereof is set substantially in the range of about 30 to about 80 gf (about 0.29 to about 0.78 N).
In the embodiment, the charging device 22 has a cleaning device 50 to regularly clean the discharge wire 42 as shown in
In the embodiment, the charging container 41 is formed to be longer than the maximum image forming area in the axial direction of the photoreceptor 21. A cleaning-device waiting room 45 where the cleaning device 50 waits is provided at one side of the charging container 41.
The cleaning device 50 has a cleaning tool 51 for cleaning the discharge wire 42 and a cleaning movement mechanism 90 for moving the cleaning tool 51 along the longitudinal direction of the charging container 41.
In the embodiment, the cleaning tool 51 has a movable table 52 which is movable along the longitudinal direction of the charging container 41, and three cleaning pads 60 (60a to 60c) disposed separately along the longitudinal direction of the discharge wire 42 is provided in the movable table 52.
The movable table 52 has a frame-shaped support frame 53 slid along the longitudinal direction of the charging container 41. The support frame 53 is provided with a cleaning reception member 54 covering the lower side of the cleaning pads 60 (60a to 60c) and an guide protrusion 55 slidably fitted to a guide groove 411 which is formed in the top portion of the charging and extends along the longitudinal direction.
In the embodiment, a pair of side cleaning pads 60a and 60b capable of coming in contact with the side of the photoreceptor 21 of the discharge wire 42 are fixedly disposed on the cleaning reception member 54. In the side opposite to the direction in which the discharge wire 42 is interposed and in the substantially central portion between the side cleaning pads 60a and 60b, an intermediate cleaning pad is disposed to move to the support frame 53 with the wire member contacting-separating mechanism 70 (see
In the embodiment, in the wire member contacting-separating mechanism 70, as shown in
The wire member contacting-separating mechanism 70 vibrates the vibration arm 72 by the urging force of the urging spring 75 to set the intermediate cleaning pad 60c to be at the cleaning position, and a part of the discharge wire 42 corresponding to the intermediate cleaning pad 60c is pressed down, thereby bring parts of the discharge wire 42 corresponding to the side cleaning pads 60a and 60b in contact with the side cleaning pads 60a and 60b.
In the embodiment, as shown in
Particularly, it is preferable to set k/d to be in the range of about 0.2 to about 0.7.
This will be supported by embodiments to be described later.
In the embodiment, sizes or dispositions of the cleaning pads 60 (60a to 60c) may be individually set. However, in order to reduce a difference in cleaning due to the movement direction of the cleaning tool 51, it is preferable that the cleaning pads 60 (60a to 60c) have the same configuration and the dispositions of the side cleaning pads 60a and 60b with the intermediate cleaning pad 60c interposed therebetween are set in the same manner.
In the embodiment, the cleaning pads 60 (60a to 60c) may be appropriately selected as long as the discharge wire 42 is cleaned. However, in consideration of the cleaning performance, the cleaning pads 60 (60a to 60c) have, for example, the same configuration as follows.
That is, as shown in
The non-woven fabric widely includes a thing formed by adhering a fiber or a thing related to the fabric.
In the embodiment, the wire member contacting-separating mechanism 70 has a retreat mechanism 80 to retreat the intermediate cleaning pad 60c to the retreat position at the time when the cleaning tool 51 is located at an initial position and at an end portion opposite to the charging container 41.
As shown in
In the embodiment, for example, when the cleaning tool 51 is located at the initial position, the intermediate cleaning pad 60c moves to the retreat position by vibrating the retreat vibration arm 82 so as to push the protruding portion 83 against the closing member 85 into the cleaning tool 51 (see
When the cleaning tool 51 moves from the initial position along the longitudinal direction of the charging container 41, as shown in
When the cleaning tool 51 reaches the initial position and the end portion opposite to the initial position of the charging container 41, the intermediate cleaning pad 60c moves to the retreat position by vibrating the retreat vibration arm 82 so as to push the other protruding portion 84 against the closing member 86 into the cleaning tool 51 (see
As shown in
As a control system for the cleaning device 50, for example, a configuration shown in
In the same figure, reference numeral 100, for example, denotes a controller constituted by a microcomputer having a cleaning processing program for the cleaning device 50. Reference numerals 101 and 102 denote a position sensor for sensing that the cleaning tool 51 of the cleaning device 50 reaches the initial position and the end portion opposite to the initial position of the charging container 41, and for example, a limit switch or the like is used.
Next, an operation of the image forming apparatus according to the embodiment will be described with respect to the cleaning device for the charging device.
In the embodiment, as shown in
The executing time of the cleaning processing program is not limited to the predetermined number of image formation, but may be appropriately selected, for example, at every cycle or in accordance with user's manipulation.
In such an operation process, the cleaning device 50 waits in the cleaning waiting room 45 of the charging container 41 at the non-cleaning time. Accordingly, the cleaning device 50 does not interfere with the charging operation of the charging device 22.
As shown in
Meanwhile, when the cleaning processing program is executed, the cleaning movement mechanism 90 moves the cleaning tool 51 from the initial position in the going direction based on the control signal from the controller 100.
Then, as shown in
In such a course, since the side cleaning pads 60a and 60b move so as to wipe a side of the discharge wire 42 close to the photoreceptor 21 and the intermediate cleaning pad 60c moves so as to wipe the opposite side thereof, the discharge products attached close to the photoreceptor 21 among the discharge products attached to the discharge wire 42 are completely cleaned. Accordingly, the cleaning performance for the discharge wire 42 is satisfactorily maintained.
Sine the discharge wire 42 is cleaned by the three cleaning pads 60 (60a to 60c), the cleaning area is wider, for example, than the cleaning area cleaned using two cleaning pads. Accordingly, the cleaning performance of the cleaning tool 51 is improved as much.
For example, in a case where the biting distance of the intermediate cleaning pad 60c is set to be small, the wiping performance of the cleaning pads 60 comes down. However, since the cleaning area of the cleaning tool 51 expands, it is easy to set the cleaning ability of the cleaning tool 51 to be in an appropriate extent by adjusting both of the performance and the area.
In the embodiment, when the cleaning tool 51 reaches the end portion opposite to the initial position of the charging container 41, the cleaning movement mechanism 90 moves the cleaning tool 51 in the coming direction based on the control signal from the controller 100 and the discharge wire 42 is cleaned.
As described with reference to
In the embodiment, the support frame 53 is provided with the cleaning reception member 54. Accordingly, even when the discharge products wiped from discharge wire 42 by the cleaning pad 60 drop down, the discharge products are received on the cleaning reception member 54. Therefore, the dropping of the charging products onto the lattice-shaped electrode 43 or the photoreceptor 21 does not have a bad influence on the charging performance of the charging device 22 or the formation of the latent image on the photoreceptor 21.
In the embodiment, when the cleaning tool 51 reaches the end portion opposite to the initial position of the charging container 41, the movement direction of the cleaning tool 51 is changed to the coming direction in the state where the cleaning pads 60 (60a to 60c) are separated from the discharge wire 42, and then the cleaning pads 60 is disposed so as to be contacted with the discharge wire 42 again.
For the reason, in the embodiment, the discharge wire 42 does not partially infiltrate into the cleaning pads 60 when the movement direction of the cleaning tool 51 is changed from the going direction to the coming direction. Consequently, the life of the cleaning pads 60 extends as much.
When the cleaning device 50 for the charging device 22 used in the embodiment is considered as Example 1 and the cleaning tool 51 is moved in the going and coming directions, the wire tension is measured. The result shown in
The condition in
Discharge Wire:
Cleaning Pad (see
In Comparative Example 1, the cleaning pad 60b in Example 1 is detached and two cleaning pads 60a and 60c (the same configuration as Example 1) is used to conduct a test under the condition described as follows. The result shown in
The condition in
Discharge Wire:
In Example, it can be appreciated from
On the contrary, according to
When the cleaning device 50 for the charging device 22 used in the embodiment is considered as Example 2 and the relation between biting distance/pad distance (k/d) and the wire tension is examined. The condition in Example 2 is the same as that in Example 1. Comparative Example 2 having the same configuration as Comparative Example 2 is used to conduct the same test as that in Example 2.
The result is shown in
In Example 2, it is confirmed from the same figure that the wire tension is in the range of about 30 to about 80 gf (about 0.29 to about 0.78 N) when k/d is in the range of about 0.2 to about 0.7 and the cleaning performance of the cleaning tool 51 is satisfactorily maintained.
The same test as Example 2 is conducted using materials other than the materials used in Example 2. As a result, the substantially same tendency as that shown in
In Comparative Example 2, when k/d is increased by 0.9 or more, the wire tension is in the range of about 30 to about 60 gf (about 0.29 to about 0.59 N). It can be seen that a design is complicated. For example, the biting distance increased to obtain the sufficient wire tension for cleaning or the distance between the cleaning pads decreased.
When the cleaning device 50 for the charging device 22 used in the embodiment is considered as Example 3, the relation between the number (where once reciprocation counts as once) of cleaning of the cleaning tool 51 and non-uniformity in discharge (corresponding to non-uniformity in charging of the charging device 22 in the longitudinal direction) is examined.
The condition in Example 3 is substantially the same as that in Example 1. The test is conducted in the same manner as Example 3 using Comparative Example 3 having the same configuration as Comparative Example 1.
The result is shown in
The following tendency can be seen from the same figure: the non-uniformity in discharge is suppressed by about 10% until the number of cleaning reaches 1000 times in Example 3, but the non-uniformity in discharge is increased as soon as the number of cleaning was over 100 times.
It can be appreciated from the tendency of change in
In Comparative Example 4 (the same as Comparative Example 1), the biting distance of the cleaning pad and the wire tension are examined. The result shown in
In Comparative Example 4, the biting distance of the cleaning pad and the non-uniformity in discharge current are examined. The result shown in
In Comparative Example 4, the relation between the wire tension and the non-uniformity in discharge current is examined with respect to
It can be appreciated from the results that the wire tension of 20 gf is required in Comparative Example 4 in order to suppress the non-uniformity in discharge current by 15% or less.
Therefore, it can be appreciated that the wire tension of 20 gf is required even in Example 4 (substantially the same as Example 1).
In Comparative Example 5 (substantially the same as Comparative Example 1), the diameter of the discharge wire is set to 30 μm and 40 μm to change the biting distance of the cleaning pad. The number of cleaning of the cleaning pad is examined with respect to tear of the cleaning pad. The result shown in
In Comparative Example 5, the following facts can be appreciated from
In Comparative Example 5, the following fact can be appreciated. When the wire diameter is 40 μm and the biting distance was 1.3 mm or less, the number of cleaning could be kept 1000 times. However, when the wire diameter is 30 μm and the biting distance is not 1.0 mm or less, the number of cleaning could not be kept 1000 times or more.
Accordingly, in Example 5 (substantially the same as Example 1), it is possible to set the diameter of the discharge wire 42 to be thin by 30 μm and to set the biting distance of the cleaning pad to be 1.0 mm or less. Consequently, in the embodiment, it can be appreciated that the cleaning performance of the cleaning tool 51 is satisfactorily maintained.
Number | Date | Country | Kind |
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P2007-039769 | Feb 2007 | JP | national |