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    • 1. 发明授权
    • Non-magnetic one-component developer
    • 非磁性单组分显影剂
    • US5215849A
    • 1993-06-01
    • US640498
    • 1991-01-14
    • Yoshihiro MakutaMitsuo UenoMinoru IsobeHiroshi KikuchiKatsuyuki Ito
    • Yoshihiro MakutaMitsuo UenoMinoru IsobeHiroshi KikuchiKatsuyuki Ito
    • G03G9/097
    • G03G9/09716
    • A non-magnetic one-component developer suitable for use in a contact or non-contact development system. The developer comprises 100 parts by weight of colored fine particles, which comprises a binder resin and a colorant, and 0.3-10 parts by weight of at least one fine inorganic powder selected from (i) a fine inorganic powder (I) obtained by subjecting a fine inorganic powder having an average particle size of 0.1-10 .mu.m and a heating loss (under drying conditions of 150.degree. C. and 1 hour) of at most 1 wt.% to a hydrophobicity-imparting treatment with a silicone oil and (ii) a fine inorganic powder (II) obtained by subjecting a fine inorganic powder having an average particle size of 0.1-10 .mu.m to a two-step hydrophobicity-imparting treatment with at least one compound selected from silane coupling agents and silazane compounds and then further with a silicone oil.
    • 适合用于接触或非接触显影系统的非磁性单组分显影剂。 显影剂包含100重量份的着色细颗粒,其包含粘合剂树脂和着色剂,以及0.3-10重量份的至少一种选自(i)无机细粉末(I)的至少一种无机细粉末,其通过 平均粒径为0.1-10μm的无机细粉和至少1重量%的热损失(在150℃和1小时的干燥条件下)与使用硅油的疏水性处理相比,以及 (ii)通过使平均粒径为0.1-10μm的无机细粉末与至少一种选自硅烷偶联剂和硅氮烷化合物的化合物进行两步疏水性处理而获得的无机细粉末(II) 然后再用硅油。
    • 3. 发明申请
    • Production Process of Polymerized Toner
    • 聚合调色剂的生产工艺
    • US20070218397A1
    • 2007-09-20
    • US10594921
    • 2005-03-30
    • Junichi TakashimaKazuhiro SatoYoshihiro Makuta
    • Junichi TakashimaKazuhiro SatoYoshihiro Makuta
    • G03G9/08
    • G03G9/0806
    • A production process of a polymerized toner, in which a corrosion-resistant metal container, the surface roughness Ry of an inner wall of which is at most 3 μm, is used as a polymerization container, and when an aqueous liquid dispersion is heated in the polymerization container to conduct polymerization, the temperature of the aqueous liquid dispersion is raised up to a temperature 5° C. lower than a target polymerization temperature at a heating rate of 20 to 60° C./hr and raised up to the target polymerization temperature from the temperature 5° C. lower than the target polymerization temperature at a heating rate of 5 to 30° C./hr, and after the temperature of the aqueous liquid dispersion reaches the target polymerization temperature, the polymerization is conducted while controlling the temperature of the aqueous liquid dispersion so as to fall within a range of (the target polymerization temperature ±3° C.).
    • 聚合调色剂的制造方法,其中耐腐蚀金属容器(其内壁的表面粗糙度Ry为3μm以下)用作聚合容器,并且当水分散体在 聚合容器进行聚合,将水性液体分散体的温度升高至比目标聚合温度低5℃,加热速率为20至60℃/小时,并升高至目标聚合温度 从5℃至低于目标聚合温度5℃,加热速率为5至30℃/小时,并且在水性分散体的温度达到目标聚合温度之后,进行聚合,同时控制温度 的水性分散液,使其落在(目标聚合温度±3℃)的范围内。
    • 4. 发明授权
    • Hollow fiber permeability apparatus
    • 中空纤维透气装置
    • US4237013A
    • 1980-12-02
    • US21885
    • 1979-03-19
    • Masahiro YamazakiYoshihiro MakutaYasushi JohNoriaki Kaneko
    • Masahiro YamazakiYoshihiro MakutaYasushi JohNoriaki Kaneko
    • A61M1/18B01D63/02B01D31/00
    • B01D63/02
    • A hollow-fiber permeability apparatus includes a housing having a permeating region, a bundle of permeable-wall hollow fibers in the permeating region, means for supplying a first fluid flowing between the exteriors of the fibers, another means for passing a second fluid through the interiors of fibers such that materials selectively permeate through the walls of the fibers, and an enlarged cross-section portion to define at least one compartment between the bundle and a wall of the housing and having an inlet opening for introducing the first fluid into the housing, the permeating region having a flattened cross-section in the direction substantially perpendicular to the lengthwise direction of the fibers, and the enlarged cross-section portion being formed at least along substantially the whole lengths of the longer side of the cross section of the permeating region.
    • 中空纤维透气装置包括具有渗透区域的壳体,渗透区域中的一层可渗透壁中空纤维,用于供应在纤维外部之间流动的第一流体的装置,用于使第二流体通过 纤维的内部,使得材料选择性地渗透通过纤维的壁,以及扩大的横截面部分,以在束和壳体的壁之间限定至少一个隔室,并具有用于将第一流体引入壳体 所述渗透区域在与所述纤维的长度方向大致垂直的方向上具有扁平的横截面,并且所述扩大的横截面部分至少沿着渗透层的横截面的长边的大致整个长度形成 地区。