This application claims the benefit under 35 U.S.C. §119 of Korean Patent Application No. 2004-79784, filed Oct. 7, 2004, in the Korean Intellectual Property Office, the disclosure of which is incorporated herein in its entirety by reference.
1. Field of the Invention
The present general inventive concept relates to an image forming apparatus using a process cartridge, for example, a photocopier, a printer and a multi-function office machine, and more particularly, to a driving gear device to drive a photoconductive drum of the process cartridge.
2. Description of the Related Art
In a process cartridge, processing units, such as an electrifying device, a developing device and a cleaning device, are mounted together with a photoconductive medium as a cartridge to be detachably mounted into a main body of an electrophotographic image forming apparatus. Alternatively, the process cartridge may comprise the photoconductive medium together with at least one of the processing units, such as the electrifying device, the developing device and the cleaning device, as the cartridge for detachable connection to the main body of the electrophotographic image forming apparatus.
An image forming apparatus employing an electrophotographic process uses the process cartridge. Due to easy management and operation without requiring a dedicated skill, the image forming apparatus using the process cartridge has been widely spread.
A mounting rail 40 has a photoconductive drum center fixing part 41. By seating the shaft 21 in the photoconductive drum center fixing part 41, the process cartridge is mounted at a desired position in the main body of the image forming apparatus. The photoconductive drum driving gear 30 transmits power from a driving source (not shown) connected to the photoconductive drum driving gear 30 to the photoconductive drum gear 22 by meshing with the photoconductive drum gear 22.
When mounting the process cartridge into the image forming apparatus, the photoconductive drum driving gear 30 is at the certain angle (a) with respect to the vertical line C of the photoconductive drum center fixing part 41, and teeth of the photoconductive drum gear 22 mesh with teeth of the photoconductive drum driving gear 30. At this time, the photoconductive drum driving gear 30 is restrained from rotating due to connection with the driving source, such as a motor, and this may cause a problem in that the photoconductive drum gear 22 and the photoconductive drum driving gear 30 may not correctly mesh with each other. That is, the teeth of the photoconductive drum gear 22 and the teeth of the photoconductive drum driving gear 30 may not be properly aligned to mesh when the process cartridge is mounted into the image forming apparatus. Therefore, the teeth of the photoconductive drum gear 22 and the photoconductive drum driving gear 30 can be damaged, thereby deteriorating image quality in the image forming apparatus.
In addition, when the photoconductive drum gear 22 and the photoconductive drum driving gear 30 are incorrectly meshed, the photoconductive drum gear 22 and the photoconductive drum driving gear 30 may operate in a state in which the shaft 21 is deviated from the photoconductive drum center fixing part 41 of the mounting rail 40, as shown in
Accordingly, the present general inventive concept provides a photoconductive drum driving gear device that prevents inaccurate mounting of a process cartridge and damage to teeth of a photoconductive drum gear and a photoconductive drum driving gear.
The present general inventive concept also provides a driving gear device employable to transmit power in assorted electric and electronic appliances to prevent damage to teeth by absorbing an impact by a driven gear or an external impact.
Additional aspects and advantages of the present general inventive concept will be set forth in part in the description which follows and, in part, will be obvious from the description, or may be learned by practice of the general inventive concept.
The foregoing and/or other aspects and advantages of the present general inventive concept are achieved by providing a driving gear device comprising a driving shaft, a driving gear connected to the driving shaft to rotate with the driving shaft, and a connection unit to connect the driving gear and the driving shaft such that when an impact is applied to the driving gear with the driving shaft in a still state, the driving gear absorbs the impact by rotating by a predetermined angle with respect to the driving shaft.
The connection unit may comprise a plurality of connection projections formed at one of the driving shaft and the driving gear, a plurality of connection recesses formed at the other one of the driving shaft and the driving gear to correspond with the connection projections and having a greater width than the connection projections, and an elastic member to elastically bias the driving gear in a certain direction with respect to the driving shaft.
The elastic member may comprise a compressing coil spring interposed between at least one of the connection projections and at least one of the connection recesses.
The at least one connection recess may have a spring positioning projection part on a wall thereof, and the at least one connection projection may have a spring mounting part corresponding to the spring positioning projection part.
The driving gear device may further comprise four connection projections, four connection recesses and at least two compressing coil springs.
The foregoing and/or other aspects and advantages of the present general inventive concept are also achieved by providing a photoconductive drum driving gear device usable with an image forming apparatus, comprising a driving shaft, a driving gear to rotate with the driving shaft in connection with the driving shaft and meshed with a photoconductive drum gear of a process cartridge of the image forming apparatus, and a connection unit to connect the driving gear and the driving shaft such that the driving gear rotates with respect to the driving shaft by a predetermined angle when the process cartridge is mounted into a main body of the image forming apparatus.
The connection unit may comprise a plurality of connection projections formed at one of the driving shaft and the driving gear, a plurality of connection recesses formed at the other one of the driving shaft and the driving gear to correspond with the connection projections and having a greater width than the connection projections, and a spring interposed between at least one of the connection projections and at least one of the connection recesses to elastically bias the driving gear in a certain direction with respect to the driving shaft.
The connection unit may comprise four connection projections disposed at regular intervals of 90° at a driving gear connection part of the driving shaft, four connection recesses disposed at the driving gear to correspond to the connection projections, and two springs.
These and/or other aspects and advantages of the present general inventive concept will become apparent and more readily appreciated from the following description of the embodiments, taken in conjunction with the accompanying drawings of which:
In the following description, like reference numerals are used for like elements even in different drawings. The matters defined in the description such as a detailed construction and elements are nothing but the ones provided to assist in a comprehensive understanding of the general inventive concept. Thus, it is apparent that the present general inventive concept can be carried out without those defined matters. Also, well-known functions or constructions are not described in detail since they would obscure the general inventive concept in unnecessary detail.
The driving shaft 110 rotates in connection with a driving source (not shown), such as a motor. The driving gear 120 is connected to the driving shaft 110 by the connection unit 130 and rotates together with the driving shaft 110.
The connection unit 130 connects the driving gear 120 and the driving shaft 110, so that the driving gear 120 rotates by a predetermined angle with respect to the driving shaft 110, and thereby absorbs an impact when the driving gear 120 is applied with the impact in a state in which the driving shaft 110 is still. For example, such an impact can occur when the driving gear 120 is impacted by a photoconductive drum gear 22 (
Therefore, damage to teeth of the driving gear 120 and the photoconductive drum gear 22, which can occur by a collision of the photoconductive drum gear 22 and the driving gear 120 during the mounting of the process cartridge into the main body of the image forming apparatus, can be prevented. Furthermore, the image forming apparatus can be prevented from being driven with the photoconductive drum gear 22 and the photoconductive drum driving gear 120 being incorrectly meshed.
The connection unit 130 comprises a plurality of connection projections 131 formed at a driving gear connection part of the driving shaft 110, a plurality of connection recesses 132 formed at the driving gear 120 to correspond with the connection projections 131, and a plurality of elastic members 133 interposed between the connection projections 131 and the connection recesses 132 to elastically bias the driving gear 120 in a certain direction with respect to the driving shaft 110. That is, each of the elastic members 133 can be interposed between one of the connection projections 131 and an inner wall of one of the connection recesses 132 to elastically bias the connection projections 131 toward an opposing inner wall of the one of the connection recesses 132.
Although the embodiment of
In addition, although the numbers of the connection projections 131 and the connection recesses 132 are not limited, four connection projections 131 and four connection recesses 132 can be provided to provide rotational balance. The four connection projections 131 can be disposed at regular intervals of approximately 90°.
A width W2 (
As shown in
In the conventional art, when the photoconductive drum driving gear 30 (
The elastic members 133 may each be formed of a compressing coil spring. A spring positioning projection part 132a to fix the compressing coil spring can be formed at a wall of one or more of the connection recesses 132. A spring mounting part 131a can be formed at one or more of the connection projections 131. Alternatively, positions of the spring positioning projection part 132a and the spring mounting part 131a can be exchanged. As an example, two elastic members 133, as well as two spring positioning projection parts 132a and two spring mounting parts 131a can be provided.
Hereinbelow, the operation of the photoconductive drum driving gear device of the image forming apparatus according to an embodiment of the present general inventive concept will be described in detail.
The photoconductive drum driving gear device is mounted in the main body (not shown) of the image forming apparatus. As shown in
The process cartridge is mounted into the main body of the image forming apparatus along a mounting rail 40, which is provided in the main body. A position of the process cartridge is determined by seating a photoconductive drum shaft 21 of the process cartridge in a photoconductive drum center fixing part 41 of the mounting rail 40.
During the mounting of the process cartridge, the photoconductive drum gear 22 formed at the process cartridge meshes with the photoconductive drum driving gear 120. Although the teeth of the photoconductive drum gear 22 and the driving gear 120 can collide with each other during the mounting of the process cartridge, the driving gear 120 can rotate clockwise with respect to the driving shaft 110 to absorb the impact from the collision, thereby decreasing damage to the teeth of the driving gear 120 and the photoconductive drum gear 22.
Moreover, as the driving gear 120 is rotated with respect to the driving shaft 110, the photoconductive gear 22 smoothly meshes with the driving gear 120.
A photoconductive drum driving gear device usable with an image forming apparatus has been illustrated and described so far. However, the photoconductive drum driving gear device according to an embodiment of the present general inventive concept can be used to transmit power not only in an image forming apparatus, but also in other assorted electric and electronic appliances to prevent damage of the teeth of gears.
According to an embodiment of the present general inventive concept as described above, when meshing a driving gear and a driven gear, for example, when meshing a photoconductive drum gear, which is the driven gear, and a driving gear of a photoconductive drum driving gear device while mounting a process cartridge into an image forming apparatus body, an impact from a collision of teeth of the driving and the driven gears can be absorbed by the driving gear rotating in a direction of the impact being applied. Therefore, damage to the teeth of the gears can be prevented.
Also, inaccurate mounting of a process cartridge can be prevented since a driving gear and a driven gear are well meshed.
As a result, image quality of a image forming apparatus can be improved by reducing teeth damage and inaccurate mounting of a process cartridge.
Although a few embodiments of the present general inventive concept have been shown and described, it will be appreciated by those skilled in the art that changes may be made in these embodiments without departing from the principles and spirit of the general inventive concept, the scope of which is defined in the appended claims and their equivalents.
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