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    • 1. 发明授权
    • Method for the formation of outline images corresponding to the
peripheral outlines of document's images
    • 用于形成对应于文档图像的外围轮廓的轮廓图像的方法
    • US4792775A
    • 1988-12-20
    • US16717
    • 1987-02-19
    • Tateki OkaNaoki ToyoshiTomoaki Yokoyama
    • Tateki OkaNaoki ToyoshiTomoaki Yokoyama
    • G03G13/045G03G13/22G03G15/00
    • G03G13/22G03G13/045
    • A method for forming an outline of an image. By this method, at first, an electrostatic latent image bearing member is charged and then irradiated to form an electrostatic latent image. Thereafter, the irradiated member is re-charged with a scorotron charger while applying a voltage to the scorotron grid, the voltage being slightly lower than the surface potential of the image portion of the latent image, and being substantially higher than the background potential of the latent image and being of the same polarity as that of the charging. By this re-charging, the outline portion of the image is given lower potential than the other portion. Then, the outline portion of the image with the lower potential is developed by a reversal development by using a toner charged to a polarity the same as the polarity of charging of the latent image bearing member.
    • 一种用于形成图像的轮廓的方法。 通过该方法,首先,对静电潜像承载部件进行充电,然后照射以形成静电潜像。 此后,将照射部件用灰火焰充电器再次施加电压到栅极栅极,该电压略低于潜像的图像部分的表面电位,并且显着高于该潜像的背景电位 具有与充电相同极性的潜像。 通过这种再充电,图像的轮廓部分被赋予比其他部分更低的电位。 然后,通过使用充电到与潜像承载部件的充电极性相同的极性的调色剂,通过反转显影来显现具有较低电位的图像的轮廓部分。
    • 4. 发明授权
    • Method for the formation of outline images corresponding to the
peripheral outlines of document's images
    • 用于形成对应于文档图像的外围轮廓的轮廓图像的方法
    • US4828953A
    • 1989-05-09
    • US58266
    • 1987-05-21
    • Tateki OkaNaoki ToyoshiTomoaki Yokoyama
    • Tateki OkaNaoki ToyoshiTomoaki Yokoyama
    • G03G13/045G03G13/22
    • G03G13/22G03G13/045
    • The present invention relates to a method for forming an outline of an image. By this method, at first, an electrostatic latent image bearing member is charged and then irradiated to a negative image to form an electrostatic latent image. Thereafter, the irradiated member is re-charged with a scorotron charger while applying a voltage to a grid, said voltage being lower than the surface potential of the non-image portion of the latent image, being higher than the potential of the image portion of the latent image and being of the same porality as that of the charging. By this re-charging, in one embodiment, the outline portion of the image has lower potential than the other portion. Then, the outline portion of the image with lower potential is visualized with a reversal development by using a toner charged to a polarity same as the polarity of charging.Or in another embodiment, the outline portion of the image has higher potential than the other portion. Then, the outline portion of the image with high potential is visualized with a normal development by using a toner charged to a polarity opposite to the polarity of charging.
    • 本发明涉及一种形成图像轮廓的方法。 通过该方法,首先,对静电潜像承载部件进行充电,然后照射到负像以形成静电潜像。 之后,将照射部件用栅极充电器重新充电,同时施加电压到电网,所述电压低于潜像的非图像部分的表面电位,高于图像部分的电位 潜像,与充电相同。 通过这种再充电,在一个实施例中,图像的轮廓部分具有比其他部分更低的电位。 然后,通过使用充电至与充电极性相同的极性的调色剂,通过反转显影可视化具有较低电位的图像的轮廓部分。 或者在另一个实施例中,图像的轮廓部分具有比其他部分更高的电位。 然后,通过使用以与充电极性相反的极性进行充电的调色剂,通过正常显影,可视化具有高电位的图像的轮廓部分。
    • 7. 发明授权
    • Electrophotographic copying apparatus
    • 电子照相复印设备
    • US4835566A
    • 1989-05-30
    • US119833
    • 1987-11-12
    • Tateki OkaNaoki ToyoshiTomoaki Yokoyama
    • Tateki OkaNaoki ToyoshiTomoaki Yokoyama
    • G03G15/04G03G15/045
    • G03G15/045G03G15/04027
    • A first developing device is provided in a demountable manner near a photoconductor drum of an electrophotographic copying apparatus. There is further provided a second developing device most downstream along a direction of rotation of the photoconductor drum. Developer containing color toner is stored in the first developing device and developer containing black toner is stored in the second developing device. An outline image forming unit for forming an outline image can be installed in place of the first developing device. When the first developing device is installed, development of a copy image is effected by either the first developing device or the second developing device. When the outline image forming unit is installed in place of the first developing device, an outline image formed by the outline image forming unit is developed by the second developing device.
    • 在电子照相复印装置的感光鼓附近以可拆卸的方式提供第一显影装置。 还沿着感光鼓的旋转方向设置最下游的第二显影装置。 含有彩色调色剂的显影剂储存在第一显影装置中,含有黑色调色剂的显影剂储存在第二显影装置中。 可以安装用于形成轮廓图像的轮廓图像形成单元来代替第一显影装置。 当安装第一显影装置时,复印图像的显影由第一显影装置或第二显影装置实现。 当安装轮廓图像形成单元代替第一显影装置时,由第二显影装置显影由轮廓图像形成单元形成的轮廓图像。
    • 8. 发明授权
    • Electrophotographic copiers
    • 电子照相复印机
    • US4821071A
    • 1989-04-11
    • US46944
    • 1987-05-07
    • Tateki OkaNaoki ToyoshiHisashi MyochinTomoaki Yokoyama
    • Tateki OkaNaoki ToyoshiHisashi MyochinTomoaki Yokoyama
    • G03G15/045G03G15/00
    • G03G15/045G03G2215/083
    • An improved electrophotographic copier is proposed which includes a first static charger; an image exposure unit; a second charger provided with a grid; and a developer having a developing electrode, all being arranged around a photosensitive rotatable drum.The second charger is impressed selectively with an a.c. voltage or a d.c. voltage which has an opposite polarity to that applied to the first charger. The voltage impressed to the grid has same polarity with that which is applied to the first charger. The developing agent contained in the developer includes such statically charged toner as having an opposite polarity to that of static latent images formed on the drum surface. The copier operates selectively in standard copy mode or in marginal image outline formation mode. The developing service is nevertheless carried out in the normal manner, thus employing no reverse development mode.
    • 提出了一种改进的电子照相复印机,其包括第一静电充电器; 图像曝光单元; 具有电网的第二充电器; 以及具有显影电极的显影剂,全部被布置在光敏可旋转滚筒周围。 第二个充电器选择性地以一个a.c. 电压或直流 电压具有与施加到第一充电器的极性相反的极性。 施加到电网的电压具有与施加到第一充电器相同的极性。 包含在显影剂中的显影剂包括具有与形成在鼓表面上的静电潜像相反的极性的这种静电荷的调色剂。 复印机在标准复印模式或边缘图像轮廓形成模式下选择性地操作。 开发服务仍然以正常的方式进行,因此不采用逆向开发模式。