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    • 2. 发明申请
    • DEVELOPING BLADE
    • 开发叶片
    • US20090016780A1
    • 2009-01-15
    • US12281150
    • 2007-05-18
    • Shinji SoumaHiroshi Nakamura
    • Shinji SoumaHiroshi Nakamura
    • G03G15/08
    • G03G15/0812C08G77/04C08K3/04C08K3/041C08K3/045C08L23/04C08L83/04G03G2215/0634Y02P20/123C08L2666/06C08L2666/04
    • The blade member of the invention is composed mainly of silicone rubber and contains as an additive component at least one selected from the group consisting of ultra-high molecular-weight-polyethylene, carbon nanotube, and fullerene. It is thus possible to decrease the coefficient of friction of silicone rubber in a practical range and without detrimental to its flexibility or other physical properties to let the developing blade slip off more, thereby diminishing the amount of abrasion of the rubber and improving on the robustness of the developing blade without detrimental to image quality. Decreasing the coefficient of friction to let the developing blade slip off more has additional advantages: a decrease in the force of contact of the developing blade with a developing roll, which contributes more to energy savings resulting from the size reductions of a driving motor, and making the developer equipment compact.
    • 本发明的叶片构件主要由硅橡胶构成,作为添加成分,含有选自超高分子量聚乙烯,碳纳米管和富勒烯中的至少一种。 因此,可以在实用的范围内降低硅橡胶的摩擦系数,并且不会对其柔性或其他物理性质产生不利影响,从而使显影刮板脱落更多,从而减少橡胶的磨损量并提高其坚固性 的显影刀片,而不损害图像质量。 降低摩擦系数以使显影刮板滑落更多具有另外的优点:显影刮板与显影辊的接触力降低,这对于由于驱动电机的尺寸减小而导致的能量节省更多;以及 使开发设备紧凑。
    • 3. 发明授权
    • Developing blade
    • 开发刀片
    • US07783237B2
    • 2010-08-24
    • US12281150
    • 2007-05-18
    • Shinji SoumaHiroshi Nakamura
    • Shinji SoumaHiroshi Nakamura
    • G03G15/08
    • G03G15/0812C08G77/04C08K3/04C08K3/041C08K3/045C08L23/04C08L83/04G03G2215/0634Y02P20/123C08L2666/06C08L2666/04
    • The blade member of the invention is composed mainly of silicone rubber and contains as an additive component at least one selected from the group consisting of ultra-high molecular-weight-polyethylene, carbon nanotube, and fullerene. It is thus possible to decrease the coefficient of friction of silicone rubber in a practical range and without detrimental to its flexibility or other physical properties to let the developing blade slip off more, thereby diminishing the amount of abrasion of the rubber and improving on the robustness of the developing blade without detrimental to image quality. Decreasing the coefficient of friction to let the developing blade slip off more has additional advantages: a decrease in the force of contact of the developing blade with a developing roll, which contributes more to energy savings resulting from the size reductions of a driving motor, and making the developer equipment compact.
    • 本发明的叶片构件主要由硅橡胶构成,作为添加成分,含有选自超高分子量聚乙烯,碳纳米管和富勒烯中的至少一种。 因此,可以在实用的范围内降低硅橡胶的摩擦系数,并且不会对其柔性或其他物理性质产生不利影响,从而使显影刮板脱落更多,从而减少橡胶的磨损量并提高其坚固性 的显影刀片,而不损害图像质量。 降低摩擦系数以使显影刮板滑落更多具有另外的优点:显影刮板与显影辊的接触力降低,这对于由于驱动电机的尺寸减小而导致的能量节省更多;以及 使开发设备紧凑。
    • 5. 发明授权
    • Developing blade and its manufacturing method
    • 开发刀片及其制造方法
    • US08129014B2
    • 2012-03-06
    • US11952604
    • 2007-12-07
    • Hiroshi NakamuraJunji TsuboiShinji Souma
    • Hiroshi NakamuraJunji TsuboiShinji Souma
    • B32B7/02
    • G03G15/0812Y10T428/24355Y10T428/24942Y10T428/31
    • A developing blade (11) comprises a blade member (14) located along one side edge of a support member (12) and having a surface shape defined by a maximum height roughness Ry of 0.35 to 4.5 μm and a length ratio under load tp (at a 30% cut level) of 15% or less. Such a developing blade is manufactured by bringing a top mold (2) having a mold surface (2A) with a cavity (4) formed for the formation of a blade member and a gate (6) in communication with the cavity (4) in alignment with a bottom mold (3) having a flat mold surface (3A) such that at least a part of the support member (12) is positioned in the cavity (4), clamping together both the top and bottom molds, and pouring a molding material from the gate (6) to fill in the cavity (4).
    • 显影刀片(11)包括沿着支撑构件(12)的一个侧边缘定位并且具有由0.35至4.5μm的最大高度粗糙度Ry和负载下的长度比tp( 以30%的削减水平)为15%以下。 通过使具有模具表面(2A)的顶模(2)具有形成用于形成叶片构件的空腔(4)和与空腔(4)连通的浇口(6),从而制造这种显影刮板 与具有平坦模具表面(3A)的底部模​​具(3)对准,使得支撑构件(12)的至少一部分定位在空腔(4)中,将顶部和底部模具夹紧在一起并且倾倒 模制材料从浇口(6)填充到空腔(4)中。