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    • 2. 发明授权
    • Method of manufacturing aggregated particles
    • 聚集颗粒的制造方法
    • US07833446B2
    • 2010-11-16
    • US11882372
    • 2007-08-01
    • Nobuhiro MaezawaKatsuru MatsumotoKeiichi Kikawa
    • Nobuhiro MaezawaKatsuru MatsumotoKeiichi Kikawa
    • G03G9/08
    • B29C67/06
    • The aggregated particles are manufactured through a method of manufacturing aggregated particles, which includes an aggregating step, a depressurizing step, and a cooling step. In the aggregating step, a slurry is prepared which contains aggregated particles obtained by flowing an aqueous slurry of resin fine particles having a volume average particle diameter in the range of 0.4 μm to 3 μm through a coiled piping in a heated and pressurized state and thereby aggregating the resin fine particles. In the depressurizing step, the slurry containing the aggregated particles is depressurized, and a particle size control is conducted by disintegrating coarse particles so as to homogenize particle diameters of the aggregated particles. In the cooling step, the slurry containing the aggregated particles of which particle diameters have been homogenized is cooled.
    • 聚集颗粒通过制造凝集颗粒的方法制造,其包括聚集步骤,减压步骤和冷却步骤。 在聚集步骤中,制备含有凝集颗粒的浆料,该凝集颗粒通过在加热和加压状态下通过卷取管道使体积平均粒径在0.4μm至3μm范围内的树脂细颗粒的水性浆液流动而获得, 聚集树脂细颗粒。 在减压步骤中,将含有凝集颗粒的浆料减压,并通过粉碎粗颗粒进行粒径控制,使凝聚颗粒的粒径均匀化。 在冷却步骤中,将含有粒径均匀化的凝集粒子的浆料冷却。
    • 7. 发明申请
    • Method of manufacturing aggregated particles
    • 聚集颗粒的制造方法
    • US20080029924A1
    • 2008-02-07
    • US11882372
    • 2007-08-01
    • Nobuhiro MaezawaKatsuru MatsumotoKeiichi Kikawa
    • Nobuhiro MaezawaKatsuru MatsumotoKeiichi Kikawa
    • B29C67/06
    • B29C67/06
    • The aggregated particles are manufactured through a method of manufacturing aggregated particles, which includes an aggregating step, a depressurizing step, and a cooling step. In the aggregating step, a slurry is prepared which contains aggregated particles obtained by flowing an aqueous slurry of resin fine particles having a volume average particle diameter in the range of 0.4 μm to 3 μm through a coiled piping in a heated and pressurized state and thereby aggregating the resin fine particles. In the depressurizing step, the slurry containing the aggregated particles is depressurized, and a particle size control is conducted by disintegrating coarse particles so as to homogenize particle diameters of the aggregated particles. In the cooling step, the slurry containing the aggregated particles of which particle diameters have been homogenized is cooled.
    • 聚集颗粒通过制造凝集颗粒的方法制造,其包括聚集步骤,减压步骤和冷却步骤。 在聚集步骤中,制备含有通过在加热和加压状态下通过卷曲管道使体积平均粒径在0.4μm至3μm范围内的树脂细颗粒的水性浆液流过而获得的凝集颗粒的浆料, 聚集树脂细颗粒。 在减压步骤中,将含有凝集颗粒的浆料减压,并通过粉碎粗颗粒进行粒径控制,使凝聚颗粒的粒径均匀化。 在冷却步骤中,将含有粒径均匀化的凝集粒子的浆料冷却。
    • 9. 发明授权
    • Method of manufacturing coalesced resin particles, coalesced resin particles, toner, two-component developer, developing device, and image forming apparatus
    • 制造聚结树脂颗粒,聚结树脂颗粒,调色剂,双组分显影剂,显影装置和图像形成装置的方法
    • US08252501B2
    • 2012-08-28
    • US12508774
    • 2009-07-24
    • Nobuhiro MaezawaKatsuru Matsumoto
    • Nobuhiro MaezawaKatsuru Matsumoto
    • G03G5/00
    • G03G9/0804G03G9/081
    • There is provided a method of manufacturing coalesced resin particles for obtaining coalesced resin particles by coalescing aggregated resin particles in a grain boundary-free state in a short period of time while keeping a grain size distribution within a narrow range. In a coalescence process, a slurry of aggregated resin particles is flowed through an inside of a pipe under predetermined heating and pressurizing conditions. In a before-cooling decompression process, a slurry of coalesced resin particles flowing through the inside of the pipe in a heat and pressure-applied state is subjected to pressure reduction before it is cooled down to a predetermined temperature in a cooling process. Then, in a decompression process, a coalesced resin particle slurry that has been cooled in the cooling process while being flowed through the inside of the pipe is decompressed to an atmospheric pressure.
    • 提供一种制造聚结树脂颗粒的方法,用于通过在短时间内将晶粒尺寸分布保持在窄范围内而在无晶界自由状态下聚集聚集的树脂颗粒来获得聚结的树脂颗粒。 在凝聚过程中,凝集树脂颗粒的浆料在预定的加热和加压条件下流过管道内部。 在冷却前的冷却过程中,在冷却过程中冷却至规定的温度之前,将经过加压加压状态的管内流通的聚结树脂粒子的浆料进行减压。 然后,在减压处理中,在冷却工序中被流过管道内部的状态下冷却的聚结树脂颗粒浆料减压至大气压。