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    • 1. 发明专利
    • 電子写真感光体
    • 电子照相机
    • JP2015007753A
    • 2015-01-15
    • JP2014060962
    • 2014-03-24
    • キヤノン株式会社Canon Inc
    • OZAWA TOMOHITOOWAKI HIRONORIABE YUKIHIROOHIRA JUNUENO TAKANORI
    • G03G5/08
    • 【課題】画像流れの抑制とゴーストの抑制を可能な電子写真感光体を提供する。【解決手段】光導電層と、光導電層の上の水素化アモルファスSiCで構成された表面層とを有する電子写真感光体において、表面層のケイ素原子の原子数(Si)と炭素原子の原子数(C)との和に対する炭素原子の原子数(C)の比(C/(Si+C))が0.50以上0.60以下であり、表面層のケイ素原子の原子密度と炭素原子の原子密度との和が6.60?1022原子/cm3以上であり、表面層の赤外吸収スペクトルにおいて、Si-Cの結合に起因するピークにおける吸光度の最大値をISiCとし、Si-Hnの結合に起因するピークにおける吸光度の最大値をISiHnとし、C-Hnの結合に起因するピークにおける吸光度の最大値をICHnとしたとき、ISiHn/ISiCが0.08以上0.15以下、かつ、ICHn/ISiCが0.03以上0.06以下である。【選択図】図1
    • 要解决的问题:提供能够抑制图像缺失并抑制重影的电子照相感光体。解决方案:一种电子照相感光体,包括:光电导层; 以及设置在光电导层上并由无定形SiC氢化物形成的表面层,碳原子数(C)与硅原子数(Si)之和的比率(C /(Si + C)) 原子和表面层上碳原子的原子数不小于0.50且不大于0.60; 表面层上的硅原子和碳原子的原子密度之和不小于6.60×10原子/ cm; 表面层的红外吸收光谱满足I / Iis不小于0.08且不大于0.15,并且I / I不小于0.03且不大于0.06,其中由键形成的峰的吸光度的最大值 的Si-C为I时,由Si-Hn的键合而产生的峰的吸光度的最大值为I,C-Hn的键的峰的吸光度的最大值为I.
    • 2. 发明专利
    • Deposition film forming device
    • 沉积膜形成装置
    • JP2013153023A
    • 2013-08-08
    • JP2012012382
    • 2012-01-24
    • Canon Incキヤノン株式会社
    • UENO TAKANORIABE YUKIHIROOHIRA JUN
    • H01L21/205C23C16/44
    • PROBLEM TO BE SOLVED: To provide a deposition film forming device that suppresses back diffusion while removing by-products.SOLUTION: A deposition film forming device 1000 comprises: trap means 1200 that is installed in the course of an exhaust pipe 1201 and traps by-products. The trap means 1200 includes a wall surface area A that is a projection area of an exhaust pipe 1201a connected with a reaction vessel 1001, and a wall surface area B located farther than the wall surface area A from an opening 1202 of the exhaust pipe connected with the reaction vessel 1001, and has a configuration where the by-products are trapped more easily in the wall surface area B than the wall surface area A. The deposition film forming device 1000 further includes means 1300 for supplying a radical cleaning gas toward the wall surface area B.
    • 要解决的问题:提供一种在除去副产物的同时抑制反向扩散的沉积膜形成装置。解决方案:沉积膜形成装置1000包括:捕集装置1200,其安装在排气管1201的过程中, 产品。 捕集装置1200包括作为与反应容器1001连接的排气管1201a的投影区域的壁面积A和从连接的排气管的开口部1202位于比壁面积A更远的壁面积B 与反应容器1001相比,具有比壁面积A更容易在壁面积B中捕获副产物的构造。沉积膜形成装置1000还具有将自由基清洗气体朝向 墙面积B.
    • 3. 发明专利
    • Method for forming deposited film
    • 形成沉积膜的方法
    • JP2013147709A
    • 2013-08-01
    • JP2012009644
    • 2012-01-20
    • Canon Incキヤノン株式会社
    • ABE YUKIHIROOHIRA JUNUENO TAKANORI
    • C23C16/44C23C16/24G03G5/08H01L21/205H01L21/3065
    • PROBLEM TO BE SOLVED: To provide a method for forming a deposited film in which a device for forming the deposited film is prevented from being damaged and a by-product is prevented from adhering, while the utilization efficiency of a cleaning gas is improved.SOLUTION: In a method for forming a deposited film: a substrate 1106 is installed in a reaction vessel 1100 capable of decompression; plasma is generated while a source gas is supplied; a cleaning gas diluted by an inert gas is supplied into an exhaust pipe 1203 connecting the reaction vessel with an exhaust means 1200 for exhausting the inside of the reaction vessel, in parallel with formation of the deposited film on the substrate; and thereby a by-product is prevented from adhering in the exhaust pipe. The method includes a first step and a second step different from at least source gas supplies. Among the first step and the second step, when it is assumed that the step where the source gas supply is less is an A step and the step where the supply is more is a B step, a cleaning gas supply in the B step is more than that in the A step and a ratio of the cleaning gas to the total flow rate of the cleaning gas and the inert gas in the B step is less than that in the A step.
    • 要解决的问题:提供一种形成沉积膜的方法,其中防止沉积膜形成装置被损坏并防止副产物粘附,同时清洁气体的利用效率提高。 在形成沉积膜的方法中:将基板1106安装在能够减压的反应容器1100中; 在供应源气体的同时产生等离子体; 将通过惰性气体稀释的清洗气体与连接反应容器的排气管1203一起供给排气装置1200,用于排出反应容器的内部,同时在基板上形成沉积膜; 从而防止副产物粘附在排气管中。 该方法包括与至少源气体供应不同的第一步骤和第二步骤。 在第一步骤和第二步骤中,当假设源气体供给少的步骤是A步骤,并且供给量更多的步骤是B步骤时,B步骤中的清洁气体供给更多 比B步骤中的清洁气体和惰性气体的总流量的比率小于A步骤中的清洗气体的比例小于A步骤中的清洗气体和惰性气体的总流量的比率。
    • 4. 发明专利
    • Manufacturing method of electrophotographic photoreceptor
    • 电子光电子器件的制造方法
    • JP2013104927A
    • 2013-05-30
    • JP2011246927
    • 2011-11-10
    • Canon Incキヤノン株式会社
    • OYAMA KAZUNARIFURUSHIMA SATOSHIABE YUKIHIRO
    • G03G5/08
    • PROBLEM TO BE SOLVED: To provide an electrophotographic photoreceptor in which a plurality of cylindrical base substances are set in the state of being stacked and irregularity in the peripheral direction of the characteristics of the end part of a deposition film likely to occur is suppressed when the deposition film is formed on each cylindrical base substance.SOLUTION: An electrophotographic photoreceptor is manufactured by decomposing a raw material gas to form a deposition film on the cylindrical base substance by applying an alternating voltage of a rectangular wave having a frequency of not less than 3 kHz and not more than 300 kHz between an electrode and a plurality of cylindrical base substances so that one potential of an electrode and a cylindrical base substance with respect to the other potential becomes positive and negative alternately. At this time, one of the absolute value of a potential difference between the electrode that become positive and the cylindrical base substance and the absolute value of the potential difference between the electrode that becomes negative and the cylindrical base substance is made a value below the absolute value of a discharge maintenance voltage, and the other is made a value above the absolute value of a discharge starting voltage, and a ring-shaped member is disposed in the inner peripheral side of the cylindrical base substance and a force directed outward is applied to an inner diameter enlarged part of the cylindrical base substance by the ring-shaped member.
    • 要解决的问题:为了提供一种电子照相感光体,其中堆叠状态下设置多个圆柱形基体物质,并且可能发生沉积膜的端部部分的特性的圆周方向的不规则性是 当在每个圆柱形基体上形成沉积膜时被抑制。 解决方案:通过施加频率不小于3kHz且不大于300kHz的矩形波的交流电压,通过分解原料气体以在圆柱形基体上形成沉积膜来制造电子照相感光体 在电极和多个圆柱形基体物质之间,使得电极和圆柱形基体相对于另一个电位的一个电位交替变为正负。 此时,成为正极的电极与圆筒形基体之间的电位差的绝对值与成为负极的电极的绝对值与圆柱形基体之间的绝对值之一成为低于绝对值的值 放电维持电压的值,另一个值高于放电起始电压的绝对值,并且环状部件设置在圆筒形基体的内周侧,向外侧施加向外侧的力 通过环状构件的圆筒状基体的内径扩大部分。 版权所有(C)2013,JPO&INPIT
    • 8. 发明专利
    • Electrophotographic apparatus and process cartridge
    • 电子照相设备和工艺盒
    • JP2008145765A
    • 2008-06-26
    • JP2006333462
    • 2006-12-11
    • Canon Incキヤノン株式会社
    • ABE YUKIHIROUESUGI HIROTOSHITAKAGI SHINJIOGAKI HARUNOBU
    • G03G5/05G03G5/147G03G9/08
    • PROBLEM TO BE SOLVED: To provide an electrophotographic apparatus and a process cartridge in which stable cleaning is performed while maintaining enhancement of image quality and definition and long-term improvement of image stability by reducing the particle diameter of toner and controlling the distribution of toner shape. SOLUTION: In the electrophotographic apparatus, a surface layer of an electrophotographic photoreceptor 1 contains a polyarylate resin containing a specific structural unit, and a toner is used which has a mode circularity of 0.97 to COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供一种电子照相设备和处理盒,其中通过降低调色剂的粒径并控制分布,同时保持图像质量的提高和图像稳定性的定义和长期改善,进行稳定的清洁 的调色剂形状。 解决方案:在电子照相设备中,电子照相感光体1的表面层含有含有特定结构单元的多芳基化合物树脂,并且使用在具有流动性的圆形度分布测量中具有0.97至<1.00的模式圆形度的调色剂 系统粒子图像测量装置,通过粒度分布测量为1.73至<60.19μm,满足式(4):2.0%≤Dns≤15.0%和式(5):5.0%≤Dvr≤23.0% 作为通过电区法测量物体。 在式(4)和(5)中,Dns表示数量分布比<3.014μm,Dvr表示体积分布比≥7.318μm。 版权所有(C)2008,JPO&INPIT
    • 9. 发明专利
    • Electrophotographic photoreceptor, process cartridge, and electrophotographic equipment
    • 电子照相机,过程盒和电子照相设备
    • JP2008026480A
    • 2008-02-07
    • JP2006197029
    • 2006-07-19
    • Canon Incキヤノン株式会社
    • UESUGI HIROTOSHITAKAGI SHINJIKUMOI HIROFUMIABE YUKIHIROMIURA DAISUKE
    • G03G5/14
    • PROBLEM TO BE SOLVED: To provide an electrophotographic photoreceptor for suppressing occurrence of charge stripe even in the electrophotographic photoreceptor having a substrate layer, an intermediate layer and a photosensitive layer on a support in this order in order to achieve covering of defect of a support surface, improvement of coating property of the photosensitive layer, improvement of adhesion of the support and the photosensitive layer, protection against electric breakage of the photosensitive layer, improvement of charging property, and improvement of charge injection from the support to the photosensitive layer.
      SOLUTION: The electrophotographic photoreceptor contains conductive inorganic particles (oxygen deficiency tin oxide coated particles) and a conductive polymer (polypyrrole, polyaniline and polythiophene) in the substrate layer in a layered photoreceptor having the substrate layer and the intermediate layer on the support.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:即使在具有衬底层,中间层和感光层的电子照相感光体中,为了实现覆盖缺陷的目的,提供一种用于抑制电荷条纹发生的电子照相感光体 支撑表面,改善感光层的涂层性能,提高支持体和感光层的粘附性,防止感光层的电断裂,提高带电性能,以及改善从支持体到感光层的电荷注入 。 解决方案:电子照相感光体包含导电性高分子(聚吡咯,聚苯胺,聚噻吩)和导电性聚合物(聚吡咯,聚苯胺和聚噻吩),该层状感光体具有基材层和载体上的中间层 。 版权所有(C)2008,JPO&INPIT
    • 10. 发明专利
    • Method for manufacturing electrophotographic photoreceptor
    • 制造电子照相光电子的方法
    • JP2006251314A
    • 2006-09-21
    • JP2005067181
    • 2005-03-10
    • Canon Incキヤノン株式会社
    • ABE YUKIHIROUEDA SHIGENORIHOSOI KAZUTOOHIRA JUN
    • G03G5/00G03G5/08
    • PROBLEM TO BE SOLVED: To provide a method for manufacturing an electrophotographic photoreceptor capable of detecting the defect on the electrophotographic photoreceptor with high accuracy without destruction.
      SOLUTION: The method for manufacturing the electrophotographic photoreceptor has a process of relatively moving the cylindrical electrophotographic photoreceptor 101 having a polished surface, and an image element 105 capable of photographing the surface of the electrophotographic photoreceptor 101 in the circumferential direction of the electrophotographic photoreceptor 101, irradiating the surface of the electrophotographic photoreceptor 101 with light, receiving the reflected light reflected by the electrophotographic photoreceptor 101 with the image element 106, and processing the output of the image element 106 to inspect the defect of the electrophotographic photoreceptor 101.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种能够以高精度无损地检测电子照相感光体上的缺陷的电子照相感光体的制造方法。 解决方案:用于制造电子照相感光体的方法具有使具有抛光表面的圆柱形电子照相感光体101相对移动的方法,以及能够在电子照相的圆周方向上拍摄电子照相感光体101的表面的图像元件105 感光器101,用光照射电子照相感光体101的表面,用图像元件106接收由电子照相感光体101反射的反射光,并处理图像元件106的输出以检查电子照相感光体101的缺陷。 P>版权所有(C)2006,JPO&NCIPI