1. Field of the Invention
The present invention relates to a scorotron type charging device used in an electrophotographic image forming apparatus such as a copying machine, a printer, a facsimile, or the like and, more particularly, a charging device using a sawtooth electrode. The invention also relates to an image forming apparatus including the scorotron type charging device.
2. Description of the Related Art
The apparatus using a dry toner occupies the mainstream of the electrophotographic system and such system gives a relatively inexpensive page cost. Thus, such system is used widely in many image forming apparatuses such as a copying machine, a printer, a facsimile, or the like. For example, in an image forming apparatus 100 shown in
An example of the image forming apparatus that is able to form a color image will be explained with reference to
The charging device 1 used in the image forming apparatus in the prior art is of a scorotron type that uses wires as electrode. An example is shown in
Therefore, recently the charging device 1 using sawtooth electrodes 11, as shown in
The charging device using the sawtooth electrodes has such a problem that a corona discharge is generated ununiformly at respective sawteeth due to variation in top end shapes of respective sawteeth, or the like, and thus charged potential on the photosensitive body is varied to affect an image.
The present invention has been made in view of the above problem, and it is an object of the present invention to provide a charging device using sawtooth electrodes, capable of uniformizing charged potential on the photosensitive body along its axial direction by generating uniformly the corona discharge at respective sawteeth.
The above object can be attained by providing a scorotron type charging device that includes a shield case having an opening portion toward a photosensitive body, sawtooth electrodes for generating a corona discharge, and a grid having a plurality of grid wires provided at a predetermined interval from the sawtooth electrodes, wherein at least one side surface of the shield case is arranged adjacent to one sawtooth electrode, and a relationship between a current It supplied to the sawtooth electrodes and a current Is flowing through the shield case is set to satisfy a conditional expression of ¼≦Is/It≦½ and wherein an interval between vertexes of sawteeth of the sawtooth electrodes is set to 1 mm or more but 3 mm or less and also a relationship between a charged potential Vo of the photosensitive body and a voltage Vg applied to the grid is set to satisfy a conditional expression of −50 V≦|Vo|−|Vg|≦50 (V).
According to the present invention, the corona discharge can be generated uniformly at respective sawteeth of the sawtooth electrodes, and thus a current that flows through the photosensitive body in the axial direction can be uniformized. Therefore, the excellent image without an image defect can be formed.
These and other objects and advantages of this invention will become more fully apparent from the following detailed description taken with the accompanying drawings in which:
Now, a description will be given in more detail of preferred embodiments of the present invention with reference to the accompanying drawings.
Next, the charging device 1 using the sawtooth electrodes 11 as an embodiment of the present invention shown in
The material of the sawtooth electrode 11 is stainless steel (SUS304). A shape of the sawtooth electrode 11 is set such that a thickness is 0.1 mm, a height of a sawtooth 11a is 20 mm, an interval between the sawteeth 11a is 1 mm, an angle of the sawtooth is 15 degree. A shape of the shield case 12 is set to have a width of 70 mm and a length of 600 mm. A shape of the grid 13 is set such that a width of a grid wire is 0.1 mm, a grid interval is 1.3 mm, and a thickness is 0.1 mm. The grid as well as the sawtooth electrode 11 is formed by the etching process. The charging device 1 using the sawtooth electrode is provided in a position that is apart from the photosensitive body 2 by 1.5 mm. The shield case 12 is held at a ground potential. A power supply of the sawtooth electrode 11 is controlled based on a current, and a power supply of the grid 13 is controlled based on a voltage.
Then, in the charging device 1 using the sawtooth electrode 11, variation of a current flowing through the photosensitive body 2 in its axial direction was measured while adjusting the distance Dpt between the top end portion of the sawtooth electrode 11 and the end portion of the shield case 12 in the vertical direction to change a current Is flowing into the shield case 12, and also the advantage of the present invention was checked based on evaluation of the printed picture quality in the image forming apparatus in
In the above explanation, the distance Dpt between the top end portion of the sawtooth electrode 11 and the end portion of the shield case 12 in the vertical direction is adjusted. In this case, if the relationship of the current Is flowing into the shield case 12 between the current It flowing through the sawtooth electrode 11 of the present invention is set to satisfy the conditional expression of Is/It≧¼, the excellent image without the image defect could also be formed by adjusting the distance Dps between the sawtooth electrode 11 and the side surface of the shield case 12.
Further, the advantage of the present invention was checked by performing the printing experiment similar to the embodiment 1 while using the sawtooth electrode 11 in which an interval between vertexes of the sawteeth 11a is changed by 1 mm at a time from 1 mm to 5 mm. At this time, the sawtooth electrodes 11 were arranged such that the relationship between the current Is flowing into the shield case 12 and the current It supplied to the sawtooth electrode 11 satisfies Is/It=¼, and a relationship between a charged potential Vo of the photosensitive body 2 and a voltage Vg applied to the grid 13 was set to |Vo|−|Vg|=0 V. As a result, if an interval between vertexes of the sawteeth 11a is set to 4 mm or more, the image defect that appears as the black stripe when the line width becomes different by almost 20% due to variation in the charged potential still appeared and thus the excellent image could not be formed. In contrast, if an interval between vertexes of the sawteeth 11a is set to 3 mm or less, the excellent image without the image defect could be formed. Also, if the interval between the sawteeth 11a is set excessively narrow, the electric fields of adjacent sawteeth 11a interfere with each other and the corona discharge is hard to occur. With the above, the interval between vertexes of the sawteeth 11a must be set to 1 mm or more but 3 mm or less.
Moreover, the advantage of the present invention was checked by performing the printing experiment similar to the embodiment 1 while changing the relationship between a charged potential Vo of the photosensitive body 2 and a voltage Vg applied to the grid 13 by using the sawtooth electrode 11 in which the interval between vertexes of the sawteeth 11a is changed from 1 mm to 3 mm. As a result, if the relationship between the charged potential Vo of the photosensitive body 2 and the voltage Vg applied to the grid 13 is given to satisfy the conditional expression of |Vo|−|Vg|≧−50 V, the excellent image without the image defect could be formed. In contrast, if |Vo|−|Vg| becomes too large, an amount of generated ozone is increased to accelerate the degradation of the photosensitive body and bring about reduction in the life time. Therefore, the above relationship must be set to |Vo|−|Vg|≦50 V.
The foregoing description of the preferred embodiments of the invention has been presented for purposes of illustration and description. It is not intended to be exhaustive or to limit the invention to the precise form disclosed, and modifications and variations are possible in light of the above teachings or may be acquired from practice of the invention. The embodiments were chosen and described in order to explain the principles of the invention and its practical application to enable one skilled in the art to utilize the invention in various embodiments and with various modifications as are suited to the particular use contemplated. It is intended that the scope of the invention be defined by the claims appended hereto, and their equivalents.
Number | Date | Country | Kind |
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P2003-314021 | Sep 2003 | JP | national |