This application claims the priority of Korean Patent Application No. 2006-89822 filed on Sep. 15, 2006, in the Korean Intellectual Property Office, the disclosure of which is incorporated herein by reference.
1. Field of the Invention
Aspects of the present invention relate to a fusing device of an image forming apparatus, and more specifically, to a device which releases the pressure between rollers used in fusing an electrostatic latent image onto print material.
2. Description of the Related Art
Image forming apparatuses generally include a paper feed device which picks up paper from a feeding tray and feeds the paper along a feed path, a developing device which applies developing materials to an electrostatic latent image and develops the image, a transfer device which transfers the developed image onto the paper, and a fusing device which fuses the developed image onto a surface of the paper using heat and pressure.
In such a configuration, the pressure supplied by the pressure roller 3 is maintained or released according to a rotation of the cam 5. That is, in order to release the pressure, the installed cam 5 rotates according to the method described above, and the pressure release member 6 releases the pressure by pushing the pressure roller 3 away from the heating roller 2 while rotating around a hinge 6′ towards the pressure spring 4. If the cam 5 rotates in the opposite direction, pressure is added to the pressure roller 3 using the pressure spring 4.
When the cover of the image forming apparatus is opened for purposes of maintenance or the like, for example, when paper is jammed between the heating roller 2 and the pressure roller 3 during image formation, or when the cover is closed in order to operate the image forming apparatus, the pressure roller 3 should be pressured or released, and so the opening and closing of the cover and the rotation of the cam should occur together.
In a related art fusing device, various mechanisms have been suggested in order to achieve this joint opening and closing. One suggested method uses a position detection sensor on the cam, and a power source which moves the cam so the position of the cam can be adjusted according to the opening and closing of the cover.
However, if a separate power source and position detection sensor are used as described above, these added components increase costs, and if the system suddenly halts during operation (for example, due to power being cut or a lightning strike), the reliability of the high pressure release function also drops, or additional costs are required to maintain reliability.
A second suggested method adjusts the angle of the cam according to whether the cover is open or shut by installing a lever attached to one side of the cover and connecting the other side of the cover to part of the cam. However, a problem with this second suggested method is that the reliability of the high pressure release function may drop if the configuration changes due to changes in the lever or cam caused by the high temperature of the heating roller or wear and tear of the cam parts.
An aspect of the present invention provides a fusing device in an image forming apparatus which resolves at least the above and/or other problems, reduces pressure in the fusing apparatus through the cover of the image forming apparatus being opened with minimal effort by the user, and increases pressure supplied by the pressure roller in a stable fashion when the cover is closed.
Another aspect of the present invention is to provide an image forming apparatus comprising the aforementioned fusing device.
According to an aspect of the invention, a fusing device of an image forming apparatus designed in order to achieve the above and/or other aspects and advantages includes a fusing unit having a heating roller and a pressure roller which contact with other and rotate together, a cover which opens and closes the fusing unit, and a pressure and release unit, including a rotational shaft, and a member rotatable about the rotational shaft and having a pressuring part that transmits pressure to the pressure roller in a direction of the heating roller if the cover is shut and a pressured part pressured by the cover and disposed farther than the pressuring part from the rotational shaft.
According to an aspect, the cover includes a pressure boss to transmit the pressure to the pressured part.
According to an aspect, the pressure and release unit further includes a second rotational shaft, and a second member rotatable about the rotational shaft and having a second pressure boss pressured by the pressuring part, and a second pressuring part that is closer than the second pressure boss to the second rotational shaft and transmits pressure to the pressure roller.
According to an aspect, the second pressure boss is attached to the second pressuring part.
According to an aspect, a second spring inside of the second pressure boss should be stiffer than a spring inside of the first pressure boss.
According to an aspect, the second pressuring part is a side of a recess in which a rotational shaft of the pressure roller is rotatably inserted and which presses the pressure roller in a direction of the heating roller when the cover is closed.
According to an aspect, the second pressuring part includes a stopper to limit a rotation of the member to a predetermined internal range.
According to another aspect of the present invention, an image forming apparatus includes a document feed device which picks up a document from a feeding tray and feeds the document along a feed path, a developing device which applies developing materials to an electrostatic latent image to develop the electrostatic latent image, a transfer device which transfers the developing materials onto the document, and the pressure and release unit described above, which fuses the developing materials onto the document.
Additional aspects and/or advantages of the invention 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 invention.
These and/or other aspects and advantages of the invention will become apparent and more readily appreciated from the following description of the embodiments, taken in conjunction with the accompanying drawings of which:
Reference will now be made in detail to the present embodiments of the present invention, examples of which are illustrated in the accompanying drawings, wherein like reference numerals refer to the like elements throughout. The embodiments are described below in order to explain the present invention by referring to the figures.
The pressure and release unit 23 is formed as a two-level lever. As is illustrated in
The first member 26, also known as a first lever, includes a first pressuring part 26b disposed closer than the first pressured part 26a to the first rotating shaft 26′, and transmits the pressure received from the first pressured part 26a to the first pressuring part 26b, which is amplified according to the principle of leverage.
On the other side of the first pressured part 26a of the first member 26, a stopper 27 is installed so that when the cover 24 is closed, an area of movement of the first member 26 is restricted and the amount of pressure transmitted to the first pressured part 26a does not exceed a certain limit.
The second member 28, also known as a second lever, includes a second rotating shaft 28′, a second pressure boss 29 (also referred to as a second pressured part), and a channel 30 (also referred to as the second pressuring part) which transmits pressure to the pressure roller 22 through the rotating axis of the pressure roller 22, re-transmitting pressure which is again amplified by the principle of leverage. As shown in
As the second pressure boss 29, which is the second pressured part, receives the amplified power according to the construction described above, it is desirable that the strength, that is, the stiffness, of the spring 29b built into the second pressure boss 29 is greater than the strength of the spring 25b built into the first pressure boss 25. A second sliding component 29b is supported by the spring 29b. Moreover, since the springs 25b and 29b of the first and second pressure bosses 25 and 29, respectively, are able to conserve a fixed amount of energy, even if energy exceeding the minimum energy levels which the springs 25b and 29b need to press the pressure roller 22 into the heating roller 21 is transmitted to the pressure roller 22, pressure builds up in the springs 25b and 29b, and pressure can be released from the pressure roller 22 by opening the cover 24, or the cover 24 can be prevented from opening to maintain the energy levels.
The ratio between the length from the first rotational shaft 26′ to the first pressuring part 26b and the length from the first rotational shaft 26′ to the first pressured part 26a is preferably, but not necessarily, about 11:73.5. Moreover, the ratio between the length from the second rotational shaft 28′ to the second pressuring part 30 and the length from the second rotational shaft 28′ to the second pressured boss 29 which is the second pressured part is preferably, but not necessarily, about 23:55. Using these preferred ratios, in order to press the pressure roller with a force of, for example, 10 kgf, the size of the force to be applied to the cover decreases to 10*23/55*11/73.5=0.626 kgf=626 gf, so the force which should be applied to the cover is reduced by about 16 times. It is understood that other ratios may also be used to configure the structure of the fusing device.
The fusing device of the image forming apparatus according to aspects of the present invention provides a two-ended lever, so the user can open the cover of the image forming apparatus with little effort and release the pressure from the fusing device, and provides a fusing device of an image forming apparatus which adds pressure to the fusing device in a stable fashion when the cover is closed.
Although a few embodiments of the present invention have been shown and described, it would be appreciated by those skilled in the art that changes may be made in this embodiment without departing from the principles and spirit of the invention, the scope of which is defined in the claims and their equivalents.
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10-2006-0089822 | Sep 2006 | KR | national |
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