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    • 3. 发明申请
    • POWDER FEEDING DEVICE AND IMAGE FORMING APPARATUS
    • 粉末进料装置和图像形成装置
    • US20140341618A1
    • 2014-11-20
    • US14450832
    • 2014-08-04
    • Yukio OTOMEMasashi NAKAYAMAHiroyuki MABUCHI
    • Yukio OTOMEMasashi NAKAYAMAHiroyuki MABUCHI
    • G03G15/08
    • G03G15/0877G03G15/0822G03G15/0879
    • A powder feeding device includes a powder container, a feeding tank in communication with the powder container, a negative pressure room in communication with the feeding tank via a suction port communicating tube; an air suction device in communication with the negative pressure room via a negative pressure room communication tube; a suction port opening and closing unit that opens and closes the suction port communicating tube; a negative pressure room opening and closing unit that opens and closes of the negative pressure room communication tube; an output port opening and closing unit that opens and closes an output port of the feeding tank; and a controller that performs negative pressure generation control, powder supply control, and powder discharge control. Further, the controller simultaneously starts the negative pressure generation control and the powder discharge control.
    • 粉末供给装置包括粉末容器,与粉末容器连通的供给罐,经由吸入口连通管与供给罐连通的负压室; 空气抽吸装置,经由负压室连通管与负压室连通; 吸入口打开和关闭单元,其打开和关闭所述吸入口连通管; 负压室开闭单元,负压室连通管的开闭; 输出口打开和关闭单元,其打开和关闭所述进料罐的输出口; 以及执行负压产生控制,粉末供给控制和粉末排放控制的控制器。 此外,控制器同时开始负压产生控制和粉末排放控制。
    • 5. 发明授权
    • Developing device using developer of particular properties suitable therefore
    • 使用特定属性的显影剂的显影装置因此适用
    • US07502579B2
    • 2009-03-10
    • US11211742
    • 2005-08-26
    • Hiroyuki MabuchiMasayoshi NakayamaHirobumi Ooyoshi
    • Hiroyuki MabuchiMasayoshi NakayamaHirobumi Ooyoshi
    • G03G15/09
    • G03G15/0928G03G9/107G03G2215/0602G03G2215/0609G03G2215/0634
    • A developing device is provided with a developer accommodating vessel accommodating developer having as primary components a nonmagnetic toner and magnetic particles referred to as a carrier. The carrier is composed of a magnetic material as a core material that is uniformly covered with an insulating synthetic resin. The toner is mixed with the carrier at a weight ratio to the overall weight of the developer of 3-10%. The carrier has an average particle size of 65 μm or less and a saturation magnetization of at least 70 emu/g. The developing device includes a developing roller and a sleeve roller that rotates about the developing roller. The surface of the sleeve roller is processed with metal shot to achieve a surface roughness of 0.45-1.08 times the average particle size of the carrier, or more specifically a roughness Rz of about 30 μm.
    • 显影装置设置有容纳显影剂的显影剂容纳容器,显影剂具有作为主要组分的非磁性调色剂和被称为载体的磁性颗粒。 载体由作为核心材料的磁性材料构成,其均匀地被绝缘合成树脂覆盖。 调色剂与载体以与显影剂总重量的重量比3-10%混合。 载体的平均粒度为65μm以下,饱和磁化强度为70emu / g以上。 显影装置包括显影辊和围绕显影辊旋转的套筒辊。 用金属喷丸处理套筒辊的表面,以达到载体平均粒度的0.45-1.08倍的表面粗糙度,或更具体地,约30μm的粗糙度Rz。
    • 7. 发明授权
    • Developing apparatus and electrostatic recording apparatus using the same
    • 显影装置及其使用的静电记录装置
    • US07167667B2
    • 2007-01-23
    • US10991100
    • 2004-11-18
    • Hiroyuki Mabuchi
    • Hiroyuki Mabuchi
    • G03G15/08
    • G03G15/0849G03G15/0853G03G15/0893G03G2215/0609G03G2215/0827
    • A developing apparatus characterized in being constituted to satisfy Equation (1) shown below when an amount of a developer carried by 1 pitch of a carrying member of an auger or the like is designated by notation W(g), a toner amount supplied by 1 pitch during a time period in which the developer carried by 1 pitch passes a supply region of a toner supply roller is designated by notation M(g), a toner concentration of the developer detected by a toner concentration sensor is designated by notation Tc (%), and a mixing limit toner concentration is designated by notation Tmax (%) (W×(Tc/100)+M)/(W+M)≦Tmax/100.   (1)
    • 一种显影装置,其特征在于,当通过螺旋推运器等的承载构件的1个间距承载的显影剂的量由符号W(g)表示时,满足下面所示的等式(1),调色剂量由1 通过符号M(g)表示以1个间距传送的显影剂通过调色剂供应辊的供应区域的时间段内的间距,用符号Tc表示调色剂浓度传感器检测到的显影剂的调色剂浓度(% ),并且混合极限调色剂浓度用符号T max(%)表示。<?in-line-formula description =“In-line Formulas”end =“lead”?>(Wx(Tc / 100)+ M)/( W + M)<= Tmax / 100。 (1)<?in-line-formula description =“In-line Formulas”end =“tail”?>