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    • 1. 发明授权
    • Image forming apparatus including an electric field having an oscillation component between an image carrier and a developer carrier
    • 图像形成装置包括在图像载体和显影剂载体之间具有振荡分量的电场
    • US06823163B2
    • 2004-11-23
    • US09864335
    • 2001-05-25
    • Naomi SugimotoTsukuru KaiHisashi ShojiNobutaka Takeuchi
    • Naomi SugimotoTsukuru KaiHisashi ShojiNobutaka Takeuchi
    • G03G1509
    • G03G15/09
    • An image forming apparatus develops a latent image formed on an image carrier with a developer that forms a magnet brush on a developer carrier. The developer carrier is made up of a sleeve and a stationary magnet roller accommodated in the sleeve. The magnet roller includes a main pole for causing the developer to form the magnet brush and auxiliary poles for helping the main pole exert a magnetic force. An electric field including an oscillation component is formed between the image carrier and the developer carrier. A particular ratio is set up between a distance between the image carrier and the developer carrier, as measured at the boundary of a nip, and the shortest distance between them, between the above shortest distance and the shortest distance between the developer carrier and a metering member, or between the shortest distance between the image carrier and the developer carrier and the amount of developer scooped up to the image carrier.
    • 图像形成装置将形成在图像载体上的潜像用形成磁刷的显影剂显影在显影剂载体上。 显影剂载体由容纳在套筒中的套筒和固定磁辊组成。 磁辊包括用于使显影剂形成磁刷的主极和用于帮助主极施加磁力的辅助杆。 在图像载体和显影剂载体之间形成包括振荡分量的电场。 在图像载体和显影剂载体之间的距离(在辊隙的边界处测量)之间的距离和它们之间的最短距离之间,在上述最短距离和显影剂载体与计量之间的最短距离之间建立特定的比例 或者在图像载体和显影剂载体之间的最短距离以及汲取到图像载体的显影剂的量之间。
    • 7. 发明授权
    • Image forming apparatus and method using a magnetic toner brush
    • 使用磁性调色剂刷的图像形成装置和方法
    • US06757511B2
    • 2004-06-29
    • US10075402
    • 2002-02-15
    • Naomi SugimotoTsukuru Kai
    • Naomi SugimotoTsukuru Kai
    • G03G1509
    • G03G15/0907G03G2215/0177
    • An image forming apparatus in which the flux density of a main magnetic pole for development has an attenuation ratio of 40% or above in the normal direction is disclosed. Assume that a period of time of T1 is necessary for a photoconductive element to move by a single dot at a nip for development. Also, assume that, in a single period of an alternating electric field applied to a developing sleeve as a bias, the duration of an electric field causing toner to move toward the photoconductive element is T2. Further, assume that the duration of an electric field causing the toner to move toward the sleeve is T3. Then, a relation of T1>T2>0 or a relation of T1>T3>0 holds.
    • 公开了一种图像形成装置,其中用于显影的主磁极的磁通密度在正常方向上具有40%或更高的衰减比。 假设光电导元件在用于显影的辊隙处的单个点移动需要T1的时间段。 此外,假设在作为偏压施加到显影套筒的交变电场的单个周期中,使调色剂朝向光电导元件移动的电场的持续时间为T2。 此外,假设使调色剂朝向套筒移动的电场的持续时间为T3。 然后,T1> T2> 0的关系或T1> T3> 0的关系成立。