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    • 1. 发明授权
    • Toner aggregation processes using water insoluble transition metal
containing powder
    • 使用水不溶性过渡金属的粉末的调色剂聚集方法
    • US5527658A
    • 1996-06-18
    • US403043
    • 1995-03-13
    • Michael A. HopperRaj D. PatelH. Bruce GoodbrandGrazyna E. Kmiecik-Lawrynowicz
    • Michael A. HopperRaj D. PatelH. Bruce GoodbrandGrazyna E. Kmiecik-Lawrynowicz
    • G03G9/08
    • G03G9/0804G03G9/0815
    • A process for the preparation of toner comprising:(i) preparing a pigment dispersion comprised of pigment, an ionic surfactant, and optionally a charge control agent;(ii) shearing said pigment dispersion with a latex comprised of resin, a counterionic surfactant with a charge polarity of opposite sign to that of said ionic surfactant, and a nonionic surfactant;(iii) heating the above sheared blend of (ii) about below the glass transition temperature (Tg) of the resin, to form electrostatically bound toner size aggregates with a volume average diameter of from between about 2 and about 15 microns and with a narrow particle size distribution as reflected in the particle diameter GSD of between about 1.15 and about 1.30, followed by the addition of a water insoluble transition metal containing powder ionic surfactant in an amount of from between about 0.05 and about 5 weight percent based on the weight of the aggregates; and(iv) heating said bound aggregates about above the Tg of the resin to form toner.
    • 一种制备调色剂的方法,包括:(i)制备由颜料,离子表面活性剂和任选的电荷控制剂组成的颜料分散体; (ii)用由树脂,具有与所述离子表面活性剂的电荷极性相反的电荷极性的抗衡离子表面活性剂和非离子表面活性剂的胶乳剪切所述颜料分散体; (iii)将(ii)的上述剪切混合物加热到低于树脂的玻璃化转变温度(Tg),形成体积平均直径为约2至约15微米的静电结合的调色剂尺寸聚集体,并具有狭窄的 粒径分布反映在颗粒直径GSD为约1.15至约1.30之间,随后加入含水粉末离子表面活性剂的量为约0.05至约5重量% 聚集体 和(iv)将所述结合的聚集体加热到高于树脂的Tg以形成调色剂。
    • 4. 发明授权
    • Fluorescent toner processes
    • 荧光调色剂工艺
    • US5554480A
    • 1996-09-10
    • US299392
    • 1994-09-01
    • Raj D. PatelH. Bruce GoodbrandGrazyna E. Kmiecik-LawrynowiczMichael A. HopperMelvin D. CroucherJames M. Duff
    • Raj D. PatelH. Bruce GoodbrandGrazyna E. Kmiecik-LawrynowiczMichael A. HopperMelvin D. CroucherJames M. Duff
    • G03G9/08G03G9/09G03G9/087
    • G03G9/0804G03G9/0926
    • A process for the preparation of fluorescent toner compositions comprising(i) preparing a pigment dispersion in a solvent, which dispersion is comprised of a pigment or dye, an ionic surfactant and optionally a charge control agent;(ii) shearing the pigment dispersion with a latex mixture comprised of a counterionic surfactant with a charge polarity of opposite sign to that of said ionic surfactant, a nonionic surfactant and resin particles, thereby causing a flocculation or heterocoagulation of pigment, resin particles and charge control agent to form electrostatically bound toner size aggregates; and(iii) heating the statically bound aggregated particles to form said toner composition comprised of polymeric resin, pigment and optionally a charge control agent, and wherein the pigment or dye is excitable by ultraviolet light in the frequency range of from about 254 to about 366 nanometers and fluoresces in the visible spectrum of from about 400 to about 700 nanometers.
    • 一种制备荧光调色剂组合物的方法,包括(i)在溶剂中制备颜料分散体,该分散体由颜料或染料,离子表面活性剂和任选的电荷控制剂组成; (ii)用包含与所述离子表面活性剂相反的电荷极性的反离子表面活性剂,非离子表面活性剂和树脂颗粒的胶乳混合物剪切颜料分散体,从而引起颜料,树脂颗粒和电荷的絮凝或杂合 控制剂形成静电结合的调色剂尺寸聚集体; 和(iii)加热静态结合的聚集颗粒以形成由聚合物树脂,颜料和任选的电荷控制剂组成的所述调色剂组合物,并且其中颜料或染料可以通过紫外光在约254至约366的频率范围内激发 纳米,并且在约400至约700纳米的可见光谱中发荧光。