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    • 4. 发明申请
    • Method and apparatus for manufacturing developer, and developer
    • 用于制造开发商和开发人员的方法和装置
    • US20090117479A1
    • 2009-05-07
    • US12317033
    • 2008-12-17
    • Shinichi NakanoYasuhiro ShibaiKeiichi Kikawa
    • Shinichi NakanoYasuhiro ShibaiKeiichi Kikawa
    • G03G9/087G03G5/00
    • G03G9/0804
    • The invention provides a method and an apparatus for manufacturing a developer, which can manufacture a developer having a uniform and fine particle shape in a narrow particle size distribution and having a coloring agent highly dispersed therein at the primary particle level, the method and apparatus at the same time enabling continuous and efficient production without opening and closing a reactor. The method comprises the steps of: dissolving a binding resin component in a supercritical or subcritical fluid so that the binding resin component is blended with a coloring agent component; and reducing the solubility of the binding resin component in the supercritical or subcritical fluid so that the binding resin component is precipitated in the form of particles with the coloring agent component dispersed in the interior thereof. In the aforementioned method and apparatus, the reactor provided with at least a stirring mechanism and a mechanism for discharging dissolved components has a developer material carrier comprising a mesh that prevents the passage of treated materials and allows the passage of the supercritical or subcritical fluid.
    • 本发明提供了一种用于制造显影剂的方法和装置,其可以制造具有窄粒度分布的均匀和细颗粒形状的显影剂,并且其初级颗粒水平上具有高度分散在其中的着色剂,该方法和装置 同时能够在不打开和关闭反应器的情况下实现连续高效的生产。 该方法包括以下步骤:将粘结树脂组分溶解在超临界或亚临界流体中,使粘结树脂组分与着色剂组分共混; 并降低粘结树脂成分在超临界或亚临界流体中的溶解度,使得结合树脂组分以分散在其内部的着色剂组分的颗粒形式沉淀。 在上述方法和装置中,设置有至少搅拌机构和用于排出溶解组分的机构的反应器具有显影剂载体,其包含防止经处理的材料通过并允许超临界或亚临界流体通过的网。
    • 5. 发明申请
    • Method of manufacturing toner and toner
    • 制造调色剂和调色剂的方法
    • US20070166638A1
    • 2007-07-19
    • US11652482
    • 2007-01-12
    • Katsuru MatsumotoYasuhiro Shibai
    • Katsuru MatsumotoYasuhiro Shibai
    • G03G9/08
    • G03G9/0817G03G9/0804G03G9/081G03G9/0815
    • A toner is manufactured by way of a coarse particle preparing step, a slurry preparing step, a pulverizing step, a cooling step, and a depressurizing step. Slurry of toner coarse particles obtained by way of the coarse particle preparing step and the slurry preparing step is made to pass under heat and pressure through a pressure-resistant nozzle whereby toner coarse particles are pulverized into diameter-reduced toner particles. By providing the cooling step immediately after the pulverizing step, dispersion of wax component into the toner particles is promoted. And by further providing the depressurizing step, bubbling and coarsening of the toner particles due to the bubbling are prevented. By so doing, there is obtained a diameter-reduced toner particle in which wax is evenly dispersed and which does not cause bleeding out.
    • 通过粗粒子制备步骤,浆料制备步骤,粉碎步骤,冷却步骤和减压步骤制造调色剂。 通过粗颗粒制备步骤和浆料制备步骤获得的调色剂粗颗粒通过耐压喷嘴在加热和压力下通过,由此调色剂粗颗粒被粉碎成直径减小的调色剂颗粒。 通过在粉碎步骤之后立即提供冷却步骤,促进了蜡组分向调色剂颗粒中的分散。 并且通过进一步提供减压步骤,防止由于起泡引起的调色剂颗粒的起泡和粗化。 通过这样做,得到其中蜡均匀分散并且不引起渗出的直径减小的调色剂颗粒。
    • 6. 发明申请
    • Two-component developer and image formation method
    • 双组分显影剂和成像方法
    • US20060084003A1
    • 2006-04-20
    • US11252992
    • 2005-10-19
    • Yasuhiro ShibaiYoritaka TsubakiKeiichi Kikawa
    • Yasuhiro ShibaiYoritaka TsubakiKeiichi Kikawa
    • G03G9/08
    • G03G9/081G03G9/0819G03G9/08755G03G9/08759G03G9/0904G03G9/09716G03G9/09725G03G9/10G03G9/113
    • A two-component developer and an image formation method for two-component development type are provided. With this developer and this method, even if toners have a small grain diameter and a high density of pigments for economizing the toner consumption, cracking and toner spent caused by the stress from carriers are suppressed, so that less deteriorated and stabler images can be obtained throughout a long time period. The two-component developer includes toner particles containing at least a binding resin and a pigment. A mean volume particle diameter of the toner particles is between 5.5 μm and 7 μm. A number percent of the toner particles with a mean volume particle diameter of 5 μm or below, and a volume percent of the toner particles with a mean volume particle diameter between 8 μm and 12.7 μm, with respect to the total toner particles, respectively, are set to be within a predetermined range. Density of the pigment in the toner particles is between 8 weight percent and 20 weight percent. The two-component developer also includes carrier particles which are resin-coated carrier particles. A mean volume particle diameter of the carrier particles is between 35 μm and 65 μm. The two-component developer allows the formation of less deteriorated and stabler images throughout a long time period.
    • 提供双组分显影剂和双组分显影类型的图像形成方法。 使用该显影剂和该方法,即使调色剂具有小的粒径和高密度的颜料以节省调色剂消耗,也能够抑制来自载体的应力引起的开裂和消耗,从而可以获得更少的劣化和更稳定的图像 在很长一段时间内。 双组分显影剂包括至少含有粘合树脂和颜料的调色剂颗粒。 调色剂颗粒的平均体积粒径在5.5μm和7μm之间。 分别相对于总调色剂颗粒,平均体积粒径为5μm以下的调色剂颗粒的数量百分比以及平均体积粒径在8μm和12.7μm之间的调色剂颗粒的体积百分数, 被设定在预定范围内。 调色剂颗粒中颜料的密度为8重量%至20重量%。 双组分显影剂还包括作为树脂涂布的载体颗粒的载体颗粒。 载体颗粒的平均体积粒径在35μm和65μm之间。 双组分显影剂允许在长时间内形成较不恶化和稳定的图像。
    • 10. 发明授权
    • Method for manufacturing toner and toner
    • 调色剂和调色剂的制造方法
    • US07659045B2
    • 2010-02-09
    • US11705504
    • 2007-02-13
    • Yasuhiro ShibaiSatoru AriyoshiKatsuru Matsumoto
    • Yasuhiro ShibaiSatoru AriyoshiKatsuru Matsumoto
    • G03G9/08
    • G03G9/0804G03G9/08782
    • Resin particles containing at least binding resin and wax particles having a diameter of 30 to 600 nm are coagulated, and a resulting coagulated product is heated. Such wax particles are manufactured, for example, by way of a coarse particle preparing step, a slurry preparing step, a pulverizing step, a cooling step, and a depressurizing step. Slurry of wax coarse particles obtained by way of the coarse particle preparing step and the slurry preparing step is directed under heat and pressure through a pressure-resistant nozzle whereby the wax coarse particles are pulverized into the wax particles at the pulverizing step. The cooling step and the depressurizing step are disposed just after the pulverizing step to prevent the wax particles from coarsening.
    • 至少含有结合树脂的树脂颗粒和直径为30至600nm的蜡颗粒被凝结,并且所得的凝固产物被加热。 这样的蜡颗粒例如通过粗粒子制备步骤,浆料制备步骤,粉碎步骤,冷却步骤和减压步骤来制造。 通过粗颗粒制备步骤获得的浆料粗颗粒和浆料制备步骤通过耐压喷嘴在加热和压力下进行,从而在粉碎步骤中将蜡粗颗粒粉碎成蜡颗粒。 冷却步骤和减压步骤刚好在粉碎步骤之后设置,以防止蜡颗粒粗大化。