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    • 2. 发明申请
    • APPARATUS AND METHOD FOR XEROGRAPHIC PRINTER CLEANING BLADE LUBRICATION
    • 用于XEROGRAPHIC PRINTER CLEANING BLADE LUBRICATION的装置和方法
    • US20110044742A1
    • 2011-02-24
    • US12543846
    • 2009-08-19
    • Bruce Earl THAYERAaron Michael BurryMichael F. Zona
    • Bruce Earl THAYERAaron Michael BurryMichael F. Zona
    • G03G21/00
    • G03G21/0011
    • An apparatus (100) and method (200) that lubricates a cleaning blade in a xerographic printer is disclosed. The apparatus can include a charge receptor (110), movable in a process direction P, where the charge receptor can have a main surface (111). The apparatus can include a cleaning station (123) configured to clean the main surface of the charge receptor, where the cleaning station can include a cleaning blade (124) coupled to the main surface of the charge receptor. The apparatus can include a cleaning blade lubrication module (118) configured to place a lubrication stripe (160) on a portion of the main surface of the charge receptor at a selected time. The apparatus can include a controller (150) coupled to the cleaning blade lubrication module and coupled to the charge receptor. The controller can be configured to substantially park the cleaning blade in the lubrication stripe when the charge receptor is stopped.
    • 公开了一种在静电印刷机中润滑清洁刮板的设备(100)和方法(200)。 该装置可以包括可在处理方向P上移动的电荷接收器(110),其中电荷受体可以具有主表面(111)。 该设备可以包括被配置为清洁电荷接收器的主表面的清洁站(123),其中清洁站可以包括耦合到电荷接收器的主表面的清洁刮板(124)。 该设备可以包括清洁刮板润滑模块(118),其配置成在所选择的时间将润滑条(160)放置在电荷接收器的主表面的一部分上。 该装置可以包括耦合到清洁刮板润滑模块并耦合到电荷接收器的控制器(150)。 当电荷受体停止时,控制器可被配置为基本上将清洁刮板停放在润滑条中。
    • 4. 发明申请
    • CLEANING EDGE MODIFICATION FOR IMPROVED CLEANING BLADE LIFE AND RELIABILITY
    • 清洁边缘修改改善清洁叶片寿命和可靠性
    • US20120020711A1
    • 2012-01-26
    • US12840798
    • 2010-07-21
    • Bruce Earl THAYERAaron Michael Burry
    • Bruce Earl THAYERAaron Michael Burry
    • G03G21/00B32B37/00
    • G03G21/0076Y10T156/1062
    • According to aspects of the embodiments, there is provided an apparatus comprising a cleaning unit with a blade holder that rotates about a pivot point, the cleaning blade is coupled to the blade holder and is positioned to chisel excess toner from a photoreceptor surface. Geometrical changes produce a blade having a plurality of slanted surfaces at the working end of the blade one at an obtuse angle, in the range of 93 degrees to 97 degrees, and a second at an acute angle that forms an offset point between the cleaning edge and the intersection of the two angles. A double cut allows for improvement in the cleaning tip stiffness using the first cut, while the second cut increases the contact width and improves the pressure distribution at the working edge.
    • 根据实施例的方面,提供了一种装置,其包括具有围绕枢转点旋转的刀片保持器的清洁单元,清洁刀片联接到刀片保持器并且定位成从感光体表面凿出多余的调色剂。 几何变化产生具有在刀片工作端的多个倾斜表面的刀片,其钝角在93度至97度的范围内,第二级以锐角形成第二倾斜角,其形成清洁边缘 和两个角度的交点。 双切割允许使用第一切口改善清洁尖端刚度,而第二切口增加接触宽度并改善工作边缘处的压力分布。
    • 8. 发明申请
    • PIVOTING CLEANING BLADE TO MINIMIZE BLADE STRESS AND PHOTORECEPTOR TORQUE WITH INCREASING FRICTION COEFFICIENT
    • 提供清洁叶片以最小化叶片应力和光电转矩,增加摩擦系数
    • US20130064589A1
    • 2013-03-14
    • US13228838
    • 2011-09-09
    • Bruce Earl THAYER
    • Bruce Earl THAYER
    • G03G21/00
    • G03G21/0029
    • The cleaning blade is mounted to a holder that is pivoted. The pivot mechanism is designed such that the instantaneous center of rotation of the blade holder, in its operational position, is positioned above the plane of blade tip contact to the photoreceptor and upstream of the blade tip or below the plane of contact and downstream from the blade tip. These configurations result in a reduction of blade load as friction coefficient increases and a slower increase in photoreceptor torque when compared to conventional interference loaded blades. By a careful choice of the location of the center of rotation, the blade load can be maintained at a sufficiently high value for good cleaning over the expected range of friction coefficients. A four bar linkage provides a compact mechanism to pivot the blade holder and avoids potential problems of the mechanism interfering with the process and other components.
    • 清洁刀片安装到枢转的保持器上。 枢转机构被设计成使得刀片保持器在其操作位置处的瞬时旋转中心位于与刀片接触平面相对感光体的上方或叶片顶端的上游或者在接触平面之下或下游 刀尖。 当与传统的干涉负载叶片相比时,这些构造导致叶片负载的减小,因为摩擦系数增加并且感光器转矩增加较慢。 通过仔细选择旋转中心的位置,可以将叶片负载保持在足够高的值,以便在摩擦系数的预期范围内进行良好的清洁。 四杆连杆提供了一种紧凑的机构来枢转刀架,并避免了机构干扰过程和其他部件的潜在问题。