1. Field of the Invention
The present invention relates a magnetic roller for image developing means in electrophotographic system, and more particularly to a magnetic roller of image developing means that can largely reduce the cost of the magnetic rollers body, makes magnetic pole angle more accurate, and enhances the magnetic strength.
2. Description of the Prior Art
Accordingly, the image module of a laser printer, as shown in
In the image developing means of printer described above, the quality of the magnetic roller has great impact on printing quality. In the conventional magnetic roller, as shown in
However, whether the S magnetic pole and N magnetic pole are formed by inserting the magnetic bars into the roller body or formed with the roller body as a whole, the entire cost of the magnetic roller is very high. This is because the materials of the roller body are very expensive and the technology that makes magnetic angle, magnetic strength, and magnetism equalization fit the need of printers is sophisticated. Moreover, if S magnetic poles and N magnetic poles are formed by inserting the magnetic bars into furrows formed on the surface of the roller body, this not only brings many problems with regards to density configuration, but also causes inconvenience on assembling. The problems regarding magnetic angle, magnetic strength, and magnetism equalization in each magnetic bar still need to be solved.
If S magnetic poles and N magnetic poles are formed on the adjacent edge of the whole roller body, some magnetic dipoles (small magnets) can not be exactly allocated in the position coherent to the magnetic flux, therefore, there are still some irregularly arranged magnetic dipoles (small magnets) 24 (as shown in
Accordingly, the present invention has been made for solving the above-mentioned problems occurred in the prior art.
Accordingly, the object of present invention is to provide a magnetic roller for image developing means in electrophotographic system. The magnetic roller for image developing means of printer according to the present invention is formed as an integral body. The magnetic roller is a non-cylinder body, and only S magnetic poles and N magnetic poles are formed in outward protruding status, so that the area between S magnetic poles and N magnetic poles can be largely curtailed and the cost of the magnetic roller can be largely reduced.
In the magnetic roller for image developing means in eletrophotographic system according to the present invention, since magnetic poles are formed in outward protruding status, and the area between S magnetic poles and N magnetic poles is largely curtailed, as a result, magnetic flux of magnetic poles can be more concentrated during magnetic excitation. In magnetic roller the magnetic dipoles (shown as small magnets) those are arranged irregularly and thus (cause) the interference of magnetic poles would be decreased. Therefore, magnetic flux of S magnetic poles and N magnetic poles can be increased, the effect of attracting toner can be enhanced, and printing quality can be further enhanced. This is the another object of the present invention.
The magnetic roller for image developing means of printer according to the present invention, with the position of S magnetic poles and N magnetic poles are fixed, the magnetic angle is then fixed, so that the accuracy of magnetic angle can be enhanced. This is further object of the present invention.
The above objects and other advantages of the present invention will become more apparent by describing in detail the preferred embodiment of the present invention with reference to the attached drawings.
As shown in
A plurality of S magnetic poles 41, 42 and N magnetic poles 51, 52 on the outer surface of roller body 3 are protruded outward from the center of the roller body 3, so that S magnetic poles 41, 42 and N magnetic poles 51, 52 form strip shape in the direction of the axis of roller body; and an axis of roller 6, which is passed through the center of the roller body.
Wherein, said plurality of S magnetic poles 41, 42 and N magnetic poles 51, 52 are formed after roller body 3 is manufactured by injection, compression, or extrusion process and before the process of curing, using a plurality of exciting devices 61, 62, 63, 64 to excite the protruding part of the magnetic roller respectively, so that S magnetic poles and N magnetic poles are formed on the protruding part respectively. The roller body formed by this way is a magnetic roller with outward protruding S magnetic poles 41, 42 and N magnetic poles 51, 52. Such a magnetic roller is a non-circular body in a unity, and the areas 71, 72, 73, 74 between S magnetic poles and N magnetic poles are hollow in inner indentation status.
As the above-mentioned magnetic roller is implemented in image developing means (i.e. printer), as shown in
In another embodiment of the present invention, as shown in
In addition, since the position of magnetic poles is fixed, magnetic angle of the magnetic roller can be more accurate. In the magnetic roller of the embodiment, the more magnetic flux is oriented into the central part of the roller, the more effective the magnetization of the material is. Since the convex parts are extruded outward in fixed angles, thus the magnetic flux can be more concentrated, the magnetic strength are enhanced, and the materials saved have been increased than the prior embodiment, thus promoting large cost down.
In the magnetic roller of the present invention, as S magnetic poles and N magnetic poles can be paired or not paired (as shown in
For example, as shown in
In addition, for special uses and other considerations, for example, in order to obtain different flux densities, as shown in
In conclusion from above, according to the magnetic roller for image developing means of the present invention in a electrophotographic system, by making the magnetic roller formed as a non-cylinder body in a unity and only S magnetic poles and N magnetic poles are in outward protruding status, so that the area between two magnetic poles is in inner indentation status, which effectively makes magnetic angle of the magnetic roller more accurate, enhances magnetic strength, and largely reduces the cost of magnetic roller. Also, the present invention has not yet opened to public, it is then complied with the conditions of allowable patents.
Although the above-mentioned embodiments of the present invention has been described for illustrative purposes, those skilled in the art will appreciate that various modifications, additions and substitutions are possible, without departing from the scope and spirit of the invention as disclosed in the accompanying claims.
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Number | Date | Country | |
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20050276636 A1 | Dec 2005 | US |