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    • 1. 发明申请
    • GLASS ROLL AND MANUFACTURING METHOD FOR GLASS ROLL
    • 玻璃滚筒和玻璃滚筒的制造方法
    • US20120237779A1
    • 2012-09-20
    • US13419575
    • 2012-03-14
    • Yasuo TERANISHIKoichi MoriHiroki MoriYasuo Yamazaki
    • Yasuo TERANISHIKoichi MoriHiroki MoriYasuo Yamazaki
    • B32B1/00C03B23/023B32B17/06
    • B65D85/672
    • Provided is a glass roll (1) formed by rolling a glass film (2) around a roll core (4) under a state in which a resin film (3) is superposed on an outer peripheral surface side of the glass film (2). The resin film (3) is superposed on the outer peripheral surface side of the glass film (2) under a state in which tension of from 100 kPa to 1 GPa is applied to the resin film (3). The following relationships hold true: {(tg×Eg)/(tp×Ep)}×(tg/R)≦0.1, and 1×10−5≦tg/R≦1×10−3, where tg [m] represents a thickness of the glass film (2), Eg [Pa] represents a tensile modulus of elasticity of the glass film (2), tp [m] represents a thickness of the resin film (3), Ep [Pa] represents a tensile modulus of elasticity of the resin film (3), and R [m] represents an outer diameter of the roll core (4).
    • 提供一种玻璃辊(1),其通过在玻璃膜(2)的外周面侧叠置树脂膜(3)的状态下将玻璃膜(2)卷绕在卷芯(4)上而形成, 。 在树脂膜(3)上施加100kPa〜1GPa的张力的状态下,将树脂膜(3)重叠在玻璃膜(2)的外周面侧。 以下关系成立:{(tg×Eg)/(tp×Ep)}×(tg / R)≦̸ 0.1和1×10-5≦̸ tg / R≦̸ 1×10-3,其中tg [ ]表示玻璃膜(2)的厚度,Eg [Pa]表示玻璃膜(2)的拉伸弹性模量,tp [m]表示树脂膜(3)的厚度,Ep [Pa]表示 树脂膜(3)的拉伸弹性模量,R [m]表示辊芯(4)的外径。
    • 5. 发明申请
    • CLEAVING METHOD FOR A GLASS FILM
    • 玻璃膜清洗方法
    • US20120024928A1
    • 2012-02-02
    • US13195178
    • 2011-08-01
    • Yasuhiro MatsumotoKoichi MoriHiroshi NaruseMichiharu EtaHiroki Mori
    • Yasuhiro MatsumotoKoichi MoriHiroshi NaruseMichiharu EtaHiroki Mori
    • B65H35/10
    • B28D1/221C03B33/091C03B35/189Y02P40/57Y10T225/12
    • Provided is a cleaving method for a glass film (G) including: cleaving, during conveyance of the glass film (G) in a predetermined direction, the glass film (G) continuously along a preset cleaving line (8) extending in a predetermined conveying direction (a) by a thermal stress generated through localized heating performed along the preset cleaving line (8) and through cooling of a locally heated region (H); dividing the glass film (G) in a width direction of the glass film (G) ; diverting, after the dividing, adjacent divided glass films (10) , which are obtained by the dividing, so that the adjacent divided glass films (10) are separated in a front and rear direction of the adjacent divided glass films; and forming a predetermined widthwise clearance between the adj acent divided glass films after the dividing of the glass film (G) and before the diverting of the adjacent divided glass films (10).
    • 本发明提供一种玻璃薄膜(G)的切割方法,其特征在于,包括:在沿规定方向输送所述玻璃薄膜(G)的同时,沿着预定的输送线(8)连续延伸所述玻璃薄膜(G) 方向(a)通过沿着预设的分裂线(8)进行的局部加热而产生的热应力,并且通过冷却局部加热区域(H); 在玻璃膜(G)的宽度方向上分割玻璃膜(G); 在分割之后,通过分割获得的相邻分割玻璃膜(10)转向,使得相邻的分割玻璃膜(10)在相邻的分割玻璃膜的前后方向上分离; 并且在玻璃膜(G)分割之后和相邻的分割玻璃膜(10)转向之前,在相邻的分割玻璃膜之间形成预定的宽度间隙。
    • 7. 发明授权
    • Process unit
    • 处理单元
    • US09042776B2
    • 2015-05-26
    • US14094216
    • 2013-12-02
    • Masatoshi ShirakiHiroki Mori
    • Masatoshi ShirakiHiroki Mori
    • G03G21/18
    • G03G21/1817G03G21/1821G03G21/1825G03G21/1857G03G21/1864G03G2221/1687
    • A process unit includes a drum frame supporting a photoconductor drum and a development frame supporting a development roller. The development cartridge is swingably supported by the drum frame at a coupling joint provided at a first side of the development frame and a support portion provided at a second side of the development frame. A center of rotation of the development roller is located in a position shifted from a line segment connecting a center of rotation of the coupling joint and a center of rotation of the photoconductor drum to an upstream side with respect to a direction of rotation of the coupling joint as viewed in an axial direction of the development roller, such that the development roller is pressed against the photoconductor drum by the action of the rotatory force received by the coupling joint.
    • 处理单元包括支撑感光鼓的鼓框架和支撑显影辊的显影框架。 显影盒由设置在显影框架的第一侧处的联接接头处的鼓框架可摆动地支撑,以及设置在显影框架的第二侧的支撑部分。 显影辊的旋转中心位于从耦合接头的旋转中心和感光鼓的旋转中心相对于联接器的旋转方向的上游侧的线段偏移的位置 在显影辊的轴向观察时,通过由联接接头接受的转动力使显影辊压靠在感光鼓上。
    • 10. 发明授权
    • Photosensitive cartridge
    • 感光墨盒
    • US08843027B2
    • 2014-09-23
    • US13361593
    • 2012-01-30
    • Hiroki MoriYasumasa Fujii
    • Hiroki MoriYasumasa Fujii
    • G03G21/18G03G15/02
    • G03G21/1814G03G15/0258
    • A photosensitive cartridge includes: a photosensitive member mounted to the photosensitive cartridge such that a surface thereof is movable in a first direction; an electric discharge electrode that extends in a second direction at an interval with the surface of the photosensitive member, the second direction being orthogonal to the first direction and parallel with the surface of the photosensitive member; a frame holding the photosensitive member and the electric discharge electrode and including an opening at an opposite side of the photosensitive member across the electric discharge electrode, the opening extending in the second direction; a cleaner movable along the opening so as to clean the electric discharge electrode; and a reinforcement member, which is a separate member from the cleaner, and which is contactable with the frame to reinforce a surrounding part of the opening.
    • 感光盒包括:安装到感光盒的感光件,使得其表面可在第一方向上移动; 放电电极,其在与感光构件的表面间隔开的第二方向上延伸,第二方向与第一方向正交并与感光构件的表面平行; 保持感光构件和放电电极并且在感光构件的相对侧的开口,横跨放电电极的框架,该开口沿第二方向延伸; 可沿着开口移动的清洁剂,以清洁放电电极; 以及加强构件,其是与清洁器分离的构件,并且可与框架接触以加强开口的周围部分。