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    • 13. 发明申请
    • MULTIFUNCTIONAL CARBON POWDER FILLING DEVICE FOR REGENERATION OF CARBON POWDER CARTRIDGE
    • 用于再生碳粉盒的多功能碳粉填充装置
    • US20130071144A1
    • 2013-03-21
    • US13520292
    • 2011-05-16
    • Lei Shi
    • Lei Shi
    • G03G13/08
    • G03G13/08B65D39/04B65D41/26B65D47/123B65D83/06B65D2539/003
    • A multifunctional ink powder filling device for a regenerated powder cartridge box, which includes a bottle body, a powder-leakage prevention bottle plug, a powder filling nozzle and a bottle cover serving as a measuring cup at the same time, wherein the bottle plug is tightly matched and arranged on a bottle mouth of the bottle body and is externally provided with the powder filling nozzle, the inner and the outer peripheries of the pedestal of the powder filling nozzle are respectively provided with inner threads matched with the outer threads of the bottle mouth and outer threads matched with the inner threads on the mouth part of the bottle cover, and the upper end of the powder filling nozzle is provided with a diminishing heavy-caliber powder filling hopper.
    • 一种用于再生粉盒装盒的多功能油墨粉末填充装置,其特征在于,包括瓶体,防漏粉瓶,粉末填充喷嘴和同时用作量杯的瓶盖,其中瓶塞为 紧密配合并配置在瓶体的瓶口上,外部设置有粉末填充喷嘴,粉末填充喷嘴基座的内周和外周分别设有与瓶的外螺纹相配的内螺纹 嘴和外螺纹与瓶盖口部的内螺纹配合,粉末填充喷嘴的上端设有减小的重口粉末填充料斗。
    • 17. 发明申请
    • Toner for Electrostatic Latent Image Development and Method of Magnetic Monocomponent Development
    • 静电潜像显影用调色剂及磁性单组分显影方法
    • US20080213680A1
    • 2008-09-04
    • US10586562
    • 2005-02-25
    • Takashi Nagai
    • Takashi Nagai
    • G03G9/083G03G13/06
    • G03G13/08G03G9/0827G03G9/09708G03G2215/0609
    • The present invention provides a toner for electrostatic latent image development and a method of magnetic monocomponent development using the toner which can prevent the toner adhesion to a photoconductor for a long time period and can obtain an image having high quality by maintaining functions of the toner for a long time period or by favorably adjusting the conveying property of the toner on a developing sleeve. In a toner for electrostatic latent image development which contains toner particles and inorganic particles and a method of development using the toner, the toner particles exhibit a shape factor SF-1 which satisfies the relationship 115≦SF-1≦150 and a shape factor SF-2 which satisfies the relationship 115≦SF-2≦145 and, at the same time, a quantity of inorganic particles which are in a floating state is set to a value which falls within a range from 10 weight % to 25 weight % with respect to the total quantity of the inorganic particles.
    • 本发明提供了一种用于静电潜像显影的调色剂和使用调色剂的磁性单组分显影方法,其可以防止调色剂长时间粘附到感光体上,并且可以通过保持调色剂的功能来获得具有高质量的图像 或者通过有利地调节显影套筒上的调色剂的输送性能。 在包含调色剂颗粒和无机颗粒的静电潜像显影用调色剂和使用调色剂的显影方法中,调色剂颗粒呈现满足关系115 <= SF-1 <= 150的形状因子SF-1和形状 满足关系115 <= SF-2 <= 145的因子SF-2,并且同时将处于浮动状态的无机颗粒的量设定为在10重量%以下的范围内的值 相对于无机粒子的总量为25重量%。
    • 19. 发明授权
    • Image forming method
    • 图像形成方法
    • US07135262B2
    • 2006-11-14
    • US10663137
    • 2003-09-15
    • Akihiko Itami
    • Akihiko Itami
    • G03G15/08
    • G03G5/0659G03G5/0657G03G5/0679G03G5/0683G03G5/0696G03G13/08
    • An electrostatic toner image forming method is disclosed. In the method, the photoreceptor comprises a charge generation layer containing an N-type charge generation material and a charge transportation layer containing a charge transportation material and has a thickness of from 5 to 15 μm; and the toner contains colored particles which have a ratio, Dv50/Dp50, from 1.0 to 1.15 and a ratio, Dv75/Dp75, from 1.0 to 1.20 and the content of particles having a diameter of 0.7×Dp50 is not more than 10 in number, and the reversal development is performed under a condition satisfying the following expression; 50≦|E|≦100 Expression 1 E: Electrical field intensity applied to the organic photoreceptor during development.
    • 公开了静电调色剂图像形成方法。 在该方法中,感光体包含含有N型电荷产生材料的电荷产生层和含有电荷传输材料的电荷输送层,其厚度为5至15μm; 并且调色剂含有具有1.0至1.15的比率Dv <75 / Dp的有色颗粒,Dv <50 / Dp <50> 75,从1.0到1.20,直径为0.7×Dp <50的颗粒的含量不超过10个,反转显影在满足 以下表达式; <?in-line-formula description =“在线公式”end =“lead”?> 50 <= | E | <= 100表达式1 <?in-line-formula description =“In-line Formulas”end = “尾”?> E:开发期间施加到有机感光体上的电场强度。