会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 2. 发明授权
    • Developing method and device and color image forming method and
apparatus using same
    • 显影方法和装置以及使用其的彩色图像形成方法和装置
    • US4954404A
    • 1990-09-04
    • US251780
    • 1988-10-03
    • Masahiro InoueHatsuo TajimaYuji SakemiKenji Okado
    • Masahiro InoueHatsuo TajimaYuji SakemiKenji Okado
    • G03G15/01G03G13/01G03G13/09
    • G03G13/09G03G13/013
    • A method of reverse development for depositing the toner particles to the light potential area of a photosensitive member. The developer used contains magnetic carrier particles and toner particles. An alternating electric field is formed in the developing position or zone. A relative volumetric ratio Q (%) of the magnetic carrier particles in the developing position satisfies 15.0.ltoreq.Q.ltoreq.28.0. The relative volumetric ratio is defined asQ=(M/h).times.(1/.rho.).times.C.sigma./(T+C)where M (g/cm.sup.2) is an amount of applied developer on a developing sleeve surface per unit area, h (cm) is a height of space in the developing position, .rho. (g/cm.sup.3) is a true density of the magnetic carrier particles, C/(T+C) (%) is a weight ratio of the carrier particles in the developer on the surface of the sleeve, and .sigma. is a ratio of a peripheral speed of the sleeve relative to the peripheral speed of the photosensitive member.
    • 一种用于将调色剂颗粒沉积到感光构件的光电势区域的反向显影方法。 使用的显影剂包含磁性载体颗粒和调色剂颗粒。 在显影位置或区域形成交变电场。 显影位置中的磁性载体颗粒的相对体积比Q(%)满足15.0≤Q≤28.0。 相对体积比定义为Q =(M / h)x(1 / rho)xC sigma /(T + C)其中M(g / cm2)是每单位面积在显影套筒表面上施加的显影剂的量, h(cm)是显影位置的高度,rho(g / cm3)是磁性载体颗粒的真实密度,C /(T + C)(%)是载体颗粒的重量比 显影剂在套筒的表面上,西格玛是套筒的圆周速度相对于感光构件的圆周速度的比率。
    • 4. 发明授权
    • Image forming apparatus
    • 图像形成装置
    • US07016630B2
    • 2006-03-21
    • US10836278
    • 2004-05-03
    • Kazumi YoshizakiKenji OkadoMasashige TamuraNaotaka Ikeda
    • Kazumi YoshizakiKenji OkadoMasashige TamuraNaotaka Ikeda
    • G03G15/08
    • G03G15/0808G03G15/09G03G2215/0177
    • In an image forming apparatus having a powder transport mechanism including a powder container and a powder transport means which rotates relative to the powder container, the powder transport means has the rotation center substantially on the axis of the powder container, and the space between the inner wall surface of the powder container and the powder transport means is sealed with magnetic particles held by a magnetic-filed generation means. The magnetic particles have a specific saturation magnetization σs and a specific value of A×σA where the residual magnetic flux density of the magnetic-field generation means is represented by A in a specific range and the magnetization intencity of the magnetic particles in a magnetic field with the residual magnetic flux density A is represented by σA.
    • 在具有粉末输送机构的图像形成装置中,粉末输送机构包括粉末容器和相对于粉末容器旋转的粉末输送装置,粉末输送装置具有大致在粉末容器的轴线上的旋转中心, 粉末容器的壁表面和粉末输送装置用磁场产生装置保持的磁性颗粒密封。 磁性颗粒具有特定的饱和磁化信号和Axsigma的特定值,其中磁场产生装置的剩余磁通密度由特定范围内的A表示,并且磁场强度 具有剩余磁通密度A的磁场中的磁性颗粒由σA表示。
    • 9. 发明授权
    • Image forming method
    • 图像形成方法
    • US5994019A
    • 1999-11-30
    • US979960
    • 1997-11-26
    • Kenji OkadoToshiyuki UgaiRyoichi FujitaKazumi Yoshizaki
    • Kenji OkadoToshiyuki UgaiRyoichi FujitaKazumi Yoshizaki
    • G03G13/02G03G15/02G03G9/083
    • G03G13/025G03G15/0241G03G2215/022
    • An image forming method is disclosed in which a contact charging means is brought into contact with a latent image bearing member to electrostatically charge the latent image bearing member on which electrostatic latent images are formed and developed with a one component type or two component type developer to form toner images, using a developing assembly provided with a developing container and a developer carrying member. The one component developer is comprised of toner particles. The two component type developer is comprised of toner particles and a magnetic carrier. The toner particles of the one component type and two component type developers contains fine particles as an external additive.The latent image bearing member has a surface layer having a volume resistivity A of from 10.sup.8 to 10.sup.15 .OMEGA..multidot.cm; the contact charging means comprises an assembly for electrostatically charging the latent image bearing member by applying a voltage to a charging member having a volume resistivity B of from 10.sup.4 to 10.sup.9 .OMEGA..multidot.cm; the toner has, as an external additive, fine particles having a volume resistivity C of from 10.sup.7 to 10.sup.11 .OMEGA..multidot.cm; the magnetic carrier has a volume resistivity D1 of from 10.sup.9 to 10.sup.15 .OMEGA..multidot.cm; and the developer carrying member has a surface layer having a volume resistivity D2 of from 10.sup.9 to 10.sup.15 .OMEGA..multidot.cm. The resistivities A, B, C, D1 and D2 stasisfy the following conditions: B
    • 公开了一种图像形成方法,其中接触充电装置与潜像承载部件接触,以静电潜像形成和显影的潜像承载部件用单组分型或双组分型显影剂静电充电 使用具有显影容器和显影剂承载构件的显影组件形成调色剂图像。 单组分显影剂由调色剂颗粒组成。 双组分型显影剂由调色剂颗粒和磁性载体构成。 单组分型和二组分型显影剂的调色剂颗粒含有作为外部添加剂的细颗粒。 潜像承载部件具有体积电阻率A为108至1015欧米伽×厘米的表面层; 接触充电装置包括用于通过向体积电阻率B为104至109欧姆×xcm的充电部件施加电压来静电充电潜像承载部件的组件; 作为外部添加剂,调色剂具有体积电阻率C为107至1011欧米伽×厘米的细小颗粒; 磁性载体的体积电阻率D1为109〜1015ΩEGEG×cm; 并且显影剂承载构件具有体积电阻率D2为109至1015欧姆×xcm的表面层。 电阻率A,B,C,D1和D2停留在以下条件下:B
    • 10. 发明授权
    • Color toner
    • US5120631A
    • 1992-06-09
    • US514232
    • 1990-04-25
    • Makoto KanbayashiKenji OkadoTakayuki NagatsukaYoshinobu Baba
    • Makoto KanbayashiKenji OkadoTakayuki NagatsukaYoshinobu Baba
    • G03G9/08G03G9/09G03G9/097
    • G03G9/09716G03G9/09G03G9/09708G03G9/09725
    • A color toner, comprises non-magnetic resin particles containing a coloring agent and two types of inorganic oxide particles, wherein;particles of coloring agent have an average particle diameter D of 300 m.mu..ltoreq.D.ltoreq.800 m.mu. as determined by measurement of scattered-light intensity; coloring agent particles with a particle diameter of from (D-120) m.mu. to (D+120) m.mu. account for not less than 90% of the whole; coloring agent particles with a particle diameter of 169 m.mu. or less account for not more than 1.0%; and coloring agent particles with a particle diameter of 949 m.mu. or more account for not more than 0.5%;said color toner has a volume average diameter of from 6 to 10 .mu.m; colored resin particles with a particle diameter of 5 .mu.m or less are contained in a proportion of from 15 to 40% by number; colored resin particles with a particle diameter of from 12.7 to 16.0 .mu.m are contained in an amount of from 0.1 to 5.0% by volume; colored resin particles with a particle diameter of 16 .mu.m or more are contained in an amount of not more than 1.0% by volume; and colored resin particles with a particle diameter of from 6.35 to 10.1 .mu.m have a particle size distribution that satisfies the following expression:9.ltoreq.V.times.dv/N.ltoreq.14 wherein V represent a volume percentage of colored resin particles with a diameter of from 6.35 to 10.1 .mu.m; N represents a number percentage of colored resin particles with a diameter of from 6.35 to 10.1 .mu.m; and dv represents a volume average particle diameter of the whole colored resin particles; andsaid inorganic oxide particles comprise a hydrophobic inorganic oxide (A) having an absolute value of not less than 50 .mu.c/g for the amount of triboelectricity and a specific surface area S.sub.A of from 80 to 300 m.sup.2 /g as measured by the BET method, contained in an amount of a% by weight based on the colored resin particles, and a hydrophilic inorganic oxide (B) having an absolute value of not more than 20 .mu.c/g for the amount of triboelectricity and a specific surface area S.sub.B of from 30 to 200 m.sup.2 /g as measured by the BET method, contained in an amount of b% by weight based on the colored resin particles, where S.sub.A .gtoreq.S.sub.B, a.gtoreq.b, and 0.3.ltoreq.a+b.ltoreq.1.5.