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    • 2. 发明授权
    • Electrophotographic developing method using magnetic toners
    • 使用磁性调色剂的电子照相显影方法
    • US4433042A
    • 1984-02-21
    • US327197
    • 1981-12-03
    • Tsuneaki KawanishiAkio MukohHirosada MorishitaNobuyoshi Hoshi
    • Tsuneaki KawanishiAkio MukohHirosada MorishitaNobuyoshi Hoshi
    • G03G9/08G03G9/083G03G13/09G03G13/22
    • G03G13/22G03G9/0823G03G9/083
    • Electrophotographic copying is carried out by electrostatically forming a latent image on a recording medium, supplying a magnetic toner of single component system containing at least a resin and fine particles of forromagnetic material on a non-magnetic sleeve provided with a permanent magnet roller having a plurality of magnetic poles therein, transporting the magnetic toner into a gap between the recording medium and the non-magnetic sleeve, attaching the magnetic toner to the recording medium, thereby developing the latent image into a visible image, electrostatically transferring the toner image thus formed on the recording medium onto a transfer sheet, and fixing the transferred image, thereby obtaining a final image, wherein the magnetic toner has a resistivity of more than 5.times.10.sup.15 .OMEGA.cm and a relative dielectric constant of less than 3.0.Good development and good transferred image are obtained even with a recording medium having a low relative dielectric constant and a high insulating property, and practically high transfer efficiency can be obtained with the ordinary sheet having a low resistivity as a transfer sheet.
    • 通过在记录介质上静电形成潜像来进行电子照相复印,将含有至少一种树脂的单组分体系的磁性调色剂和非磁性的细小颗粒供给到具有多个 将磁性调色剂输送到记录介质和非磁性套筒之间的间隙中,将磁性调色剂附着到记录介质上,从而将潜像显影成可见图像,将如此形成的调色剂图像静电转印到 将记录介质转印到转印纸上,并固定转印图像,从而获得最终图像,其中磁性调色剂的电阻率大于5×10 15欧姆·厘米,相对介电常数小于3.0。 即使使用具有低相对介电常数和高绝缘性的记录介质,也能获得良好的显影和良好的转印图像,并且通过具有低电阻率的普通片作为转印片可以获得实际上高的转印效率。
    • 10. 发明授权
    • Electro-photographic developing unit
    • 电子照相显影单元
    • US06813462B2
    • 2004-11-02
    • US10351533
    • 2003-01-27
    • Teruaki MitsuyaTsuneaki KawanishiMasayoshi IshiiHisao OkadaHiroyoshi MatsumotoKeisuke KubotaNatsuki Kuribayashi
    • Teruaki MitsuyaTsuneaki KawanishiMasayoshi IshiiHisao OkadaHiroyoshi MatsumotoKeisuke KubotaNatsuki Kuribayashi
    • G03G1509
    • G03G15/09G03G2215/0648
    • A developing unit in an electro-photographic apparatus such as a printer, a facsimile and a copier for actualizing an image employing colored particles such as toner, and more particularly to a developing unit for forming a toner image on the surface of a photosensitive body. The developing unit includes a plurality of developing rollers each having a core and a sleeve. The sleeve accommodates the core. The plurality of developing rollers include a first developing roller and a second developing roller. The sleeve for the first developing roller is rotated to move in the same direction as a moving direction of the surface of the photosensitive body. The sleeve for the second developing roller is rotated to move in an opposite direction to the moving direction of the surface of the photosensitive body. The core of only one of the plurality of developing rollers is driven in rotation while the other core is fixed. Alternatively, a magnetic pole of one of the developing rollers is placed at an opposing position where the developing rollers mutually oppose while an intermediate portion between two poles of the second developer roller is placed at the opposing position.
    • 一种电子照相设备中的显影单元,例如打印机,传真机和复印机,用于实现使用诸如调色剂的着色颗粒的图像,更具体地涉及用于在感光体表面上形成调色剂图像的显影单元。 显影单元包括各自具有芯和套筒的多个显影辊。 套筒容纳核心。 多个显影辊包括第一显影辊和第二显影辊。 用于第一显影辊的套筒旋转以沿与感光体的表面的移动方向相同的方向移动。 用于第二显影辊的套筒旋转以沿与感光体表面的移动方向相反的方向移动。 多个显影辊中只有一个的芯被旋转驱动,而另一个芯是固定的。 或者,一个显影辊的磁极被放置在显影辊相对的相对位置,而第二显影辊的两极之间的中间部分位于相对位置。