This patent application is based on and claims priority pursuant to 35 U.S.C. § 119 to Japanese Patent Application No. 2019-167983, filed on Sep. 17, 2019 in the Japan Patent Office, the entire disclosure of which is hereby incorporated by reference herein.
This disclosure generally relates to an image forming apparatus such as a copier, a printer, a facsimile machine, or a multifunction peripheral (MFP) having at least two of such functions. The image forming apparatus includes a developing device to develop a latent image formed on a surface of an image bearer and may include a process cartridge including the developing device.
An image forming apparatus such as a copier or a printer includes a removable developing device. One type of developing device includes a rotatable developing device main portion including a developing roller as a developer bearer. The developing device main portion rotates between a developing position at which the developing roller is close to a photoconductor drum as an image bearer to form an image on the photoconductor drum and a retracted position at which the developing device is away from the photoconductor drum to remove the developing device from the image forming apparatus.
This specification describes an image forming apparatus that includes an image bearer configured to bear a latent image, a rotation shaft, a developing device, and a supply portion. The developing device is configured to be removably installed in the image forming apparatus and develop the latent image formed on the image bearer. The developing device includes a developing device main portion configured to rotate around the rotation shaft between a developing position and a retracted position. The developing device main portion includes a developer, a developer bearer configured to face the image bearer when the developing device main portion is at the developing position and be away from the image bearer when the developing device main portion is at the retracted position, a replenishment portion having a replenishment port with an opposite surface formed by an arc drawn around the rotation shaft and configured to replenish the developer, and a non-rotating portion. The supply portion has a supply port with an opposite surface formed by an arc drawn around the rotation shaft and facing the opposite surface of the replenishment port. The supply port is configured to communicate the replenishment port and supply the developer to the developing device main portion through the replenishment port.
The aforementioned and other aspects, features, and advantages of the present disclosure would be better understood by reference to the following detailed description when considered in connection with the accompanying drawings, wherein:
The accompanying drawings are intended to depict embodiments of the present disclosure and should not be interpreted to limit the scope thereof. The accompanying drawings are not to be considered as drawn to scale unless explicitly noted.
In describing embodiments illustrated in the drawings, specific terminology is employed for the sake of clarity. However, the disclosure of this specification is not intended to be limited to the specific terminology so selected and it is to be understood that each specific element includes all technical equivalents that have a similar function, operate in a similar manner, and achieve a similar result.
Although the embodiments are described with technical limitations with reference to the attached drawings, such description is not intended to limit the scope of the disclosure and all of the components or elements described in the embodiments of this disclosure are not necessarily indispensable.
Embodiments of the present disclosure are described in detail with reference to drawings. Identical reference numerals are assigned to identical components or equivalents and a description of those components is simplified or omitted.
A configuration and operation of an image forming apparatus 1 is described below with reference to
The image forming apparatus 1 according to the present embodiment is a tandem multicolor image forming apparatus in which process cartridges 20Y, 20M, 20C, and 20BK are arranged in parallel to each other, facing an intermediate transfer belt 40. In each of the process cartridges 20Y, 20M, 20C, and 20BK, a developing device 25 is installed to face a photoconductor drum 21 as illustrated in
In
In addition, the image forming apparatus 1 includes the process cartridges 20Y, 20M, 20C, and 20BK to form yellow, magenta, cyan, and black toner images on respective surfaces of the photoconductor drums 21, respectively, and an intermediate transfer belt 40 on which the yellow, magenta, cyan and black toner images are transferred and superimposed.
The image forming apparatus 1 further includes a sheet feeder 61 to accommodate sheets P such as paper sheets, a secondary transfer roller 65 to transfer the toner image formed on the intermediate transfer belt 40 onto the sheet P, a fixing device 66 to fix the unfixed toner image on the sheet P, and toner containers 70 to supply toners of respective colors to the developing devices 25 of the corresponding process cartridges 20Y, 20M, 20C, and 20BK.
Each of the process cartridges 20Y, 20M, 20C, and 20BK includes the photoconductor drum 21 as an image bearer, a charging device 22, and a cleaning device 23, which are united as a single unit as illustrated in
In each of the process cartridges 20Y, 20M, 20C, and 20BK, the developing device 25 is installed to face the photoconductor drum 21. The developing device 25 is expendable and replaced with a new one when depleted in the body of the image forming apparatus 1. An operator can independently perform an installation and removal operation of the developing device 25 with respect to the body of the image forming apparatus 1 and an installation and removal operation of the process cartridges 20Y, 20M, 20C, and 20BK with respect to the body of the image forming apparatus 1 as different operations. In the process cartridges 20Y, 20M, 20C, and 20BK, yellow, magenta, cyan, and black toner images are formed on the respective photoconductor drums 21 as the image bearers.
The following is a description of image forming processes in the image forming apparatus 1 to form a color toner image on a sheet P.
A conveyance roller of the document conveyance device 2 conveys a document on a document table onto a platen (exposure glass) of the scanner 3. The scanner 3 optically scans image data for the document on the platen.
The yellow, magenta, cyan, and black image data are transmitted to the exposure device 4. The exposure device 4 irradiates the photoconductor drums 21 (see
Each of the four photoconductor drums 21 rotates clockwise in
When the charged surface of the photoconductor drum 21 reaches a position to receive the laser beam L emitted from the exposure device 4, an electrostatic latent image based on the image data is formed on the surface of the photoconductor drum 21, which is referred to as an exposure process.
The laser beam L corresponding to the yellow image data is directed to the surface of photoconductor drum 21 in the process cartridge 20Y, which is the first from the left in
Similarly, the laser beam L corresponding to the cyan image data is directed to the surface of the photoconductor drum 21 in the second process cartridge 20C from the left in
Then, the surface of the photoconductor drum 21 having the electrostatic latent image reaches a position opposite the developing device main portion 26. The developing device main portion 26 deposits toner of each color onto the surface of the photoconductor drum 21 and develops the electrostatic latent image on the photoconductor drum 21 into a toner image, which is referred to as a development process.
After the development process, the surfaces of the photoconductor drums 21 reach positions facing the intermediate transfer belt 40. The primary transfer rollers 24 are disposed at the positions where the photoconductor drums 21 face the intermediate transfer belt 40 and in contact with an inner circumferential surface of the intermediate transfer belt 40, respectively. At the positions of the primary transfer rollers 24, the toner images on the photoconductor drums 21 are transferred to and superimposed on the intermediate transfer belt 40, forming a multicolor toner image thereon, which is referred to as a primary transfer process.
After the primary transfer process, the surface of the photoconductor drum 21 reaches a position opposite the cleaning device 23. The cleaning device 23 collects untransferred toner remaining on the photoconductor drum 21, which is referred to as a cleaning process.
Subsequently, a residual potential of the surface of the photoconductor drum 21 is removed at a position opposite the discharger, and a series of image forming processes performed on the photoconductor drum 21 is completed.
Meanwhile, the surface of the intermediate transfer belt 40, onto which the single-color toner images on the photoconductor drums 21 are superimposed, moves in the direction indicated by arrow A1 in
After the secondary transfer process, the surface of the intermediate transfer belt 40 reaches a position opposite a belt cleaning device. The belt cleaning device collects untransferred toner on the intermediate transfer belt 40 to complete a series of transfer processes on the intermediate transfer belt 40.
The sheet P is conveyed to the position of the secondary transfer roller 65, via the registration roller pair 64 from the sheet feeder 61.
Specifically, a sheet feed roller 62 feeds the sheet P from the top of multiple sheets P accommodated in the sheet feeder 61, and the sheet P is conveyed to a registration roller pair 64 through a sheet feed path. The sheet P that has reached the registration roller pair 64 is conveyed toward the position of the secondary transfer roller 65, timed to coincide with the arrival of the multicolor toner image on the intermediate transfer belt 40.
Subsequently, the sheet P, onto which the multicolor image is transferred, is conveyed to the fixing device 66. The fixing device 66 includes a fixing roller and a pressure roller pressing against each other. In a nip between the fixing roller and the pressure roller, the multicolor image is fixed on the sheet P.
After the above-described fixing process, an output roller pair 69 ejects the sheet P as an output image to the exterior of the image forming apparatus 1, and the ejected sheet P is stacked on an output tray 5 to complete a series of image forming processes.
Next, with reference to
The four image forming units in the body of the image forming apparatus 1 have a similar configuration except the color of the toner used in the image forming processes. Therefore, parts of the image forming unit such as the process cartridge and the developing device are illustrated without suffixes Y, M, C, and K, which denote the color of the toner, in the drawings.
As illustrated in
The charging device 22 is the charging roller including a conductive core and an elastic layer of moderate resistivity coated on the conductive core. A power supply applies a predetermined voltage to the charging device 22 that is the charging roller, and the charging device 22 uniformly charges the surface of the photoconductor drum 21 opposite the charging device 22.
The cleaning device 23 includes a cleaning blade 23a and a cleaning roller 23b that contact the photoconductor drum 21. For example, the cleaning blade 25a is made of rubber, such as urethane rubber, and contacts the surface of the photoconductor drum 21 at a predetermined angle with a predetermined pressure. The cleaning roller 25b is a brush roller in which brush bristles are provided around a core.
As illustrated in
The developing device main portion 26 mainly includes a developing roller 26a as a developer bearer, a first conveying screw 26b1 as a first conveyor facing the developing roller 26a, a partition 26e, a second conveying screw 26b2 as a second conveyor facing the first conveying screw 26b1 via the partition 26e, and a doctor blade 26c as a developer regulator facing the developing roller 26a to regulate an amount of developer borne on the developing roller 26a.
The developing device main portion 26 stores a two-component developer including carrier and toner.
The developing roller 26a is opposed to the photoconductor drum 21 with a small gap H as illustrated in
The first conveying screw 26b1 and the second conveying screw 26b2 as conveyors convey the developer stored in the developing device main portion 26 in the longitudinal direction of the developing device main portion 26, thereby establishing a circulation path indicated by the dashed arrow in
The first conveying screw 26b1 in the first conveyance path B1 is opposite the developing roller 26a, and the second conveying screw 26b2 in the second conveyance path B2 is opposite the first conveying screw 26b1 in the first conveyance path B1 via the partition 26e. The first conveying screw 26b1 supplies developer to the developing roller 26a and collects the developer that separates from the developing roller 26a after the development process while conveying the developer in the longitudinal direction of the developing device main portion 26.
After the development process, the second conveying screw 26b2 stirs and mixes the developer conveyed from the first conveyance path B1 with a fresh toner supplied from a replenishment port 26d1 while conveying the developer in the longitudinal direction of the developing device main portion 26.
In the present embodiment, the first and second conveying screws 26b1 and 26b2 as the conveyors are horizontally arranged in parallel. Each of the first and second conveying screws 26b1 and 26b2 includes a shaft and a screw blade wound around the shaft.
A further detailed description is given of the image forming processes described above, focusing on the development process.
The developing roller 26a rotates counterclockwise in
Stirring the developer causes the toner to be charged by friction with carrier in the developer and electrostatically attracted to the carrier. A magnetic force is generated on the developing roller 26a to scoop up the carrier. The magnetic force that is called as a developer scooping pole scoop up the carrier with the toner on the developing roller 26a. The developer borne on the developing roller 26a is conveyed in the counterclockwise direction indicated by arrow in
It is to be noted that, as the toner is consumed in the developing device main portion 26, the new toner contained in the toner container 70 is replenished appropriately to the developing device main portion 26 via the replenishment port 26d1 of a replenishment portion 26d. The toner consumption in the developing device main portion 26 is detected by a toner concentration sensor that magnetically detects a toner concentration in the developer (i.e., a ratio of toner to the developer) in the developing device main portion 26.
The replenishment port 26d1 is disposed above an end of the second conveying screw 26b2 in the second conveyance path B2 in the longitudinal direction that is the left and right direction in
The configuration and operation of the developing device 25 according to the present embodiment are described in further detail below.
As described above, the developing device 25 according to the present embodiment is installable in and removable from the body of the image forming apparatus 1. Specifically, the developing device 25 in the present embodiment is installed in and removed from the body of the image forming apparatus 1 in an installation and removal direction that is the longitudinal direction of the developing device 25, the direction perpendicular to the surface of the sheet on which
The developing device main portion 26 includes the developing roller 26a as the developer bearer facing the photoconductor drum 21 as the image bearer, the first conveying screw 26b1, the second conveying screw 26b2, and the doctor blade 26c. The developing device 25 is integrally configured by the developing device main portion 26, the two face plates 27 and 28, and the base 29 and installed in and removed from the body of the image forming apparatus 1. In the present embodiment, the developing device 25 is installed in and removed from the body of the image forming apparatus 1 in the installation and removal direction that is the longitudinal direction of the developing device 25. Specifically, the developing device 25 is installed in the image forming apparatus 1 in a direction indicated by arrow in
Both ends of the developing device main portion 26 in the longitudinal direction of the developing device main portion 26 is arranged between the two face plates 27 and 28 as positioners. The longitudinal direction is a direction substantially coincident with the rotation axis direction of the photoconductor drum 21, the lateral directions in
Specifically, the rear face plate 27 is disposed behind the developing device main portion 26 in a mounting direction of the developing device main portion 26 that is a left side in
The two face plates 27 and 28 are respectively positioned in the body of the image forming apparatus 1 not to rotate. That is, the two face plates 27 and 28 each function as a non-rotating portion in the developing device 25, that is, the non-rotating portion different from the rotatable developing device main portion 26. Specifically, with reference to
Similarly, when the developing device 25 is installed in the body of the image forming apparatus 1, two positioning pins 94 fixed to a front side plate 92 of the body of the image forming apparatus 1 and arranged side by side in a direction perpendicular to the sheet surface in
The base 29 are coupled to the two face plates 27 and 28 to bridge between the two face plates 27 and 28. Specifically, in the present embodiment, the base 29 and the two face plates 27, 28 are made of a resin material having high mechanical strength. A bottom portion of the rear face plate 27 is coupled to one end of the base 29 in the longitudinal direction of the base 29, and a bottom portion of the front face plate 28 is coupled to the other end of the base 29 in the longitudinal direction.
Providing the base 29 as described above can reduce trouble caused by twist in the two face plates 27 and 28 even when the developing device main portion 26 is configured to be rotatable between the two face plates 27 and 28 as described below. The two face plates 27 and 28 and the base 29 may be made as separate components and coupled by screw fastening. Alternatively, the two face plates 27 and 28 and the base 29 may be integrally formed as one component. The two face plates 27 and 28 and the base 29 integrally formed can reduce the number of parts and the man-hour for assembly and easily set the twist strength of the two face plates 27 and 28 stronger.
As illustrated in
Specifically, the developing device main portion 26 is interposed between the rear face plate 27 and the front face plate 28 and disposed to be rotatable around the rotation shaft 26r between a developing position at which the developing roller 26a as the developer bearer faces the photoconductor drum 21 as the image bearer with a predetermined gap H, that is, a rotational position illustrated in
The developing position (a first position) of the developing device main portion 26 illustrated in
In contrast, the retracted position (a second position) of the developing device main portion 26 illustrated in
In the present embodiment, as illustrated in
Referring to
In the present embodiment, when the developing device 25 is installed in the body of the image forming apparatus 1, a pushing mechanism (including cams 81 and a cam shaft 82 described below) set in the body of the image forming apparatus 1 pushes the developing device main portion 26 to rotate the developing device main portion 26 from the retracted position as illustrated in
Specifically, with reference to
Specifically, when the developing device main portion 26 is at the retracted position illustrated in
At the developing position, projections 26m disposed on a case of the developing device main portion 26 (see
In contrast, when the developing device main portion 26 is at the developing position illustrated in
When the pushing mechanism (including the cams 81 and the cam shaft 82) releases pushing the developing device main portion 26, the weight of the developing device main portion 26 rotates the developing device main portion 26 from the developing position to the retracted position. Specifically, the center of gravity of the developing device main portion 26 is farther from the photoconductor drum 21 than the rotation shaft 26r. The above-described configuration in which the weight of the developing device main portion 26 rotates the developing device main portion 26 to the retracted position when the pushing mechanism (including the cams 81 and the cam shaft 82) releases pushing the developing device main portion 26 can reduce the size and cost of the device as compared with a configuration including a component that rotates the developing device main portion to the retracted position.
In the present embodiment, the developing device main portion 26 contacts the base 29 to prevent the developing device main portion 26 from rotating too much in the counterclockwise direction in
The pushing mechanism (including the cams 81 and the cam shaft 82) configured and operating as described above is arranged so that the developing device 25 can be installed in and removed from the image forming apparatus 1.
In particular, in the present embodiment, the pushing mechanism (including the cams 81 and the cam shaft 82) is disposed below the developing device 25, as illustrated in
As illustrated in
Specifically, the base 29 has the two notches 29a corresponding to rotation areas when the two cams 81 rotate from the rotational position illustrated in
In the present embodiment, the above-described configuration including the developing device main portion 26 in the developing device 25 rotatable between the developing position and the retracted position prevents a disadvantage such as breakage caused by the interference between the developing device 25 and the photoconductor drum 21 (the process cartridge 20) when the developing device 25 or the photoconductor drum 21 (the process cartridge 20) is installed in and removed from the body of the image forming apparatus 1.
In addition, the image forming units in the present embodiment can reduce the size in the horizontal direction (see the size X in
The configuration in the present embodiment prevents the developing device from becoming large in size and high in cost because the pushing mechanism (including the cams 81 and the cam shaft 82) that rotates the developing device main portion 26 between the developing position and the retracted position is disposed in the body of the image forming apparatus 1 and not disposed in the developing device 25.
The following is a detailed description of operations when the operator installs the developing device 25 in the image forming apparatus 1 and removes the developing device 25 from the image forming apparatus 1.
When the operator installs the developing device 25 in the body of the image forming apparatus 1, firstly, the developing device 25 is placed so that the developing device main portion 26 is positioned at the retracted position illustrated in
After the two face plates 27 and 28 are positioned on the side plates 91 and 92 of the body of the image forming apparatus 1, the operation of the operation lever 83 causes the pushing mechanism (the cam 81) to push the developing device main portion 26 and rotate from the retracted position illustrated in
The cover of the image forming apparatus 1 is configured so that the operation lever 83 interferes the cover not to rotate from an open position to a closed position when the developing device main portion 26 is positioned at the retracted position. The above-described configuration can prevent a disadvantage caused by performing the developing process when the developing device main portion 26 is positioned at the retracted position.
In contrast, when the operator removes the developing device 25 from the image forming apparatus 1, firstly, the pushing mechanism (the cam 81) releases pushing the developing device main portion 26 to rotate the developing device main portion from the developing position to the retracted position. After the developing device main portion 26 rotates to the retracted position, the operator removes the developing device 25 from the body of the image forming apparatus 1 and completes the operation to remove the developing device 25 from the body of the image forming apparatus 1.
As described above with reference to
Specifically, the main body toner supply tube 71 as the supply portion for each color is coupled to the toner container 70 and the developing device main portion 26 for each color. The main body toner supply tube 71 as the supply portion is a supply passage to supply the toner as the developer ejected from the toner container 70 to the developing device main portion 26. The toner is ejected from the toner container 70 to the supply port 71a through the main body toner supply tube 71 as the supply portion. The ejected toner is supplied to the replenishment port 26d1 and replenished from the replenishment port 26d1 to the second conveyance path B2 inside the developing device main portion 26 via the replenishment portion 26d.
As illustrated in
A toner replenishing path as a developer replenishing path in the replenishment portion 26d is formed to extend in a substantially vertical direction. Specifically, the replenishment portion 26d has a toner replenishment path surrounded by an inner wall face to guide the toner (replenishment toner) supplied from the replenishment port 26d1 to the second conveyance path B2. The replenishment portion 26d having the toner replenishment path is formed to extend in a substantially vertical direction in the developing device main portion 26 that rotates to the developing position.
As illustrated by white arrows in
As illustrated in
Specifically, the opposite surface of the replenishment portion 26d is indicated by an alternate long and short dashes line in
Similarly, the opposite surface of the main body toner supply tube 71 as the supply portion is indicated by a dashed line in
In the above-described configuration, even when the developing device main portion 26 rotates around the rotation shaft 26r between the developing position illustrated in
Therefore, when the developing device main portion 26 rotates to the retracted position, the above-described configuration prevents the toner from leaking to the outside from the supply port 71a of the main body toner supply tube 71.
In particular, in the present embodiment, the above-described configuration is useful because it is difficult to design a space for providing a shutter that closes the supply port 71a in conjunction with the operation of the developing device main portion 26 rotating to the retracted position. Without providing such a shutter, the above-described configuration can reduce the toner leakage from the supply port 71a. Therefore, the above-described configuration prevents disadvantages such as limitation of rotation of the developing device main portion 26 by the shutter, increase of the size and cost of the device.
In the present embodiment, when the replenishment portion 26d faces the main body toner supply tube 71 as the supply portion (when the developing device 25 is set in the body of the image forming apparatus 1), the supply port 71a is configured to communicate with the replenishment port 26d1 without coming off from the opening area of the replenishment port 26d1 regardless of the rotational position of the developing device main portion 26.
That is, the replenishment port 26d1 communicates the supply port 71a even when the developing device main portion 26 is located at the developing position illustrated in
Specifically, referring to
Additionally, a length of the replenishment port 26d1 in a width direction that is a vertical direction in
Therefore, an opening of the supply port 71a is positioned within an opening of the replenishment port 26d1 even when the developing device main portion 26 is located at the developing position illustrated in
As described above, regardless of the rotational position of the developing device main portion 26, the supply port 71a located above the replenishment port 26d1 does not come off from the opening of the replenishment port 26d1. Therefore, toner leaks from the supply port 71a of the main body toner supply tube 71 to the outside is further reduced.
Particularly, when the developing device 25 is removed from the body of the image forming apparatus 1, the developing device main portion 26 rotates from the developing position illustrated in
Preferably, a seal is disposed at least one of a part of the opposite surface of the replenishment portion 26d indicated by the alternate long and short dashes line in
Specifically, in the present embodiment, as illustrated in
Since providing the seal 26w as described above prevents an occurrence of a gap between the replenishment portion 26d and the main body toner supply tube 71 as the supply portion, the toner leakage from the supply port 71a to the outside is further reduced.
As illustrated in
The shutter 26x opens the replenishment port 26d1 in conjunction with the operation to install the developing device 25 in the body of the image forming apparatus 1 and closes the replenishment port 26d1 in conjunction with the operation to remove the developing device 25 from the body of the image forming apparatus 1.
Specifically, the developing device main portion 26 holds the shutter 26x so that the shutter 26x can slide in the lateral direction in
When the operator moves the developing device 25 in a direction indicated by arrow in
At this time, as illustrated in
After the developing device 25 is installed in the image forming apparatus 1, as described above, the developing device main portion 26 is rotated from the retracted position to the developing position, which enables the developing device main portion 26 to perform the developing process.
In removal of the developing device 25 from the body of the image forming apparatus 1, the processes are performed in reverse.
Providing the shutter 26x configured as described above can prevent the toner leakage from the replenishment port 26d1 of the developing device 25 removed from the body of the image forming apparatus 1 to the outside of the developing device 25. As illustrated in
Next, a first variation is described.
As illustrated in
Specifically, a toner supply path 27b as a developer supply path from an inlet 27b1 to a supply port 27b2 is formed inside one of the two face plates 27 and 28, for example, the rear face plate 27, that functions as the supply portion. The toner supply path 27b as the developer supply path is a through hole extending in a substantially vertical direction in the rear face plate 27.
The body of the image forming apparatus 1 includes an outlet 71b that communicates the inlet 27b1 in the rear face plate 27 (as one of the two face plates) in conjunction with the operation to install the developing device 25 in the body of the image forming apparatus 1 and supplies the toner as the developer to the toner supply path 27b as the developer supply path in the rear face plate 27 through the inlet 27b1. That is, the toner ejected from the toner container 70 is ejected from the outlet 71b via the main body toner supply tube 71 and supplied from the replenishment port 26d1 to the inside of the developing device main portion 26 via the toner supply path 27b in the rear face plate 27. As illustrated by the white arrow in
As illustrated in
In addition, referring to
As a result, similar to the present embodiment, the first variation can also prevent the toner leakage from the replenishment port 26d1 of the developing device 25 removed from the body of the image forming apparatus 1 to the outside of the developing device 25.
Next, a second variation is described.
As illustrated in
In addition, in the second variation, the seal 26w is attached around the replenishment port 26d1. The seal 26w slides on the cover 71c and prevents toner from leaking from between the replenishment portion 26d and the main body toner supply tube 71 when the developing device main portion 26 rotates between the developing position and the retracted position.
Preferably, the cover 71c is designed to have not only the arc-shaped range drawn around the rotation shaft 26r (the length N3 of the arc) but also a range in a width direction of the replenishment port 26d1 that is the range perpendicular to the sheet surface in
In the second variation, when the developing device main portion 26 rotates from the developing position to the retracted position, the above-described configuration prevents the toner from leaking to the outside from the supply port 71a that communicates the replenishment port 26d1 of the developing device main portion 26.
As described above, the developing device 25 according to the present embodiment includes the developing device main portion 26 including the developing roller 26a as the developer bearer that faces or contacts the photoconductor drum 21 as the image bearer and the replenishment portion 26d in which the replenishment port 26d1 is formed to replenish the toner as the developer into the developing device 25. The developing device main portion 26 is configured to be rotatable about the rotation shaft 26r between the developing position at which the developing roller 26a faces or contacts the photoconductor drum 21 and the retracted position at which the developing roller 26a retracts from the photoconductor drum 21. The body of the image forming apparatus 1 (or the rear face plate 27 as the non-rotating portion in the developing device 25) includes the main body toner supply tube 71 as the supply portion having the supply port 71a that communicates the replenishment port 26d1 of the replenishment portion 26d to replenish the toner into the developing device main portion 26 through the replenishment port 26d1. The opposite surface of the replenishment portion 26d and the opposite surface of the main body toner supply tube 71 that face each other are curved surfaces formed by substantial arcs centering on the rotation shaft 26r.
The above-described configuration prevents the toner from leaking to the outside from the supply port 71a that communicates the replenishment port 26d1 of the developing device main portion 26 when the developing device main portion 26 rotates from the developing position to the retracted position.
In the present embodiment, the process cartridge 20 does not include the developing device 25, and the developing device 25 is a unit that can be independently installed in and removed from the body of the image forming apparatus 1. In contrast, the developing device 25 may be one of the constituent members of the process cartridge 20, and the process cartridge 20 may be configured to be integrally installed in and removed from the body of the image forming apparatus 1. In such a case, when the developing device main portion adopts a one-component developing system using the developing roller as the developer bearer that is a contact type configured to contact the photoconductor drum as the image bearer, the configuration of the present disclosure is very useful. That is, when the developing device main portion is at the developing position at which the developing roller faces the photoconductor drum, the developing roller contacts the photoconductor drum. When the process cartridge is removed from the body of the image forming apparatus and stored for a long period of time, permanent distortion may occur in the developing roller that continuously contacts the photoconductor drum. Therefore, separating the developing roller in the developing device main portion from the photoconductor drum, that is, moving the developing roller from the developing position to the retracted position as described in the above is very useful. In such a configuration, similar effects to those of the above-described embodiment and variations are also attained.
It is to be noted that the term “process cartridge” used in the present disclosure means a removable unit including an image bearer and at least one of a charging device to charge the image bearer, a developing device to develop latent images on the image bearer, and a cleaning device to clean the image bearer that are united together, and is designed to be removably installed as a united part in the body of the image forming apparatus.
In the present embodiment according to the present disclosure, the developing device main portion 26 includes two conveying screws 26b1 and 26b2 as the conveyors horizontally arranged in parallel and the doctor blade 26c disposed below the developing roller 26a. The configuration of the developing device to which the present disclosure is applied is not limited to the above-described configurations. The present disclosure may be applied to other developing devices such as a developing device in which three or more conveyors are arranged in parallel in the horizontal direction, a developing device in which multiple conveyors are arranged in parallel in the vertical direction, and a developing device in which the doctor blade is disposed above the developing roller.
In the present embodiment according to the present disclosure, the developing device main portion 26 includes the two-component developer including toner and carrier. Alternatively, the developing device to which the present disclosure is applied may include a one-component developer (i.e., toner, which may include additives).
In the developing device 25 of the present embodiment according to the present disclosure, the toner as the developer is supplied to the replenishment portion 26d of the developing device main portion 26 via the supply portion that is the main body toner supply tube 71. Of course, two-component developer including toner and carrier may be supplied to the replenishment portion of the developing device main portion in the developing device to which the present disclosure is applied via the supply portion. In the above case, a developer container containing the two-component developer is used instead of the toner container 70 in the present embodiment. In those cases, the image forming apparatus also attains advantages equivalent to the advantages described above. Note that the developer bearer may be in contact with the image bearer or separate from the image bearer by the predetermined gap when the developer bearer faces the image bearer.
The above-described embodiments are illustrative and do not limit the present disclosure. Thus, numerous additional modifications and variations are possible in light of the above teachings. It is therefore to be understood that within the scope of the present disclosure, the present disclosure may be practiced otherwise than as specifically described herein. Further, features of components of the embodiments, such as the number, the position, and the shape are not limited the embodiments and thus may be preferably set.
Number | Date | Country | Kind |
---|---|---|---|
JP2019-167983 | Sep 2019 | JP | national |
Number | Name | Date | Kind |
---|---|---|---|
20050002683 | Saito | Jan 2005 | A1 |
20160313673 | Eto | Oct 2016 | A1 |
20170168421 | Koshizuka et al. | Jun 2017 | A1 |
20170248870 | Kubota et al. | Aug 2017 | A1 |
20170261918 | Zensai | Sep 2017 | A1 |
20170293257 | Ohhira et al. | Oct 2017 | A1 |
20170351195 | Koshizuka et al. | Dec 2017 | A1 |
20180136586 | Tsuchiya et al. | May 2018 | A1 |
20180143568 | Ohhira et al. | May 2018 | A1 |
20180364620 | Kubota et al. | Dec 2018 | A1 |
20190094758 | Kubota et al. | Mar 2019 | A1 |
20190250533 | Kubota et al. | Aug 2019 | A1 |
20200103824 | Oshikawa et al. | Apr 2020 | A1 |
20200117119 | Mase et al. | Apr 2020 | A1 |
20200125005 | Kubota et al. | Apr 2020 | A1 |
20200174400 | Kawashima et al. | Jun 2020 | A1 |
Number | Date | Country |
---|---|---|
8-152784 | Jun 1996 | JP |
2000-221766 | Aug 2000 | JP |
2011-197071 | Oct 2011 | JP |
2018-081286 | May 2018 | JP |
Number | Date | Country | |
---|---|---|---|
20210080856 A1 | Mar 2021 | US |