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    • 3. 发明授权
    • Method to charge toner for electrophotography using carbon nanotubes or other nanostructures
    • 使用碳纳米管或其他纳米结构对用于电子照相的调色剂进行充电的方法
    • US08472159B2
    • 2013-06-25
    • US12202787
    • 2008-09-02
    • Michael Donald Thompson
    • Michael Donald Thompson
    • G03G15/02H05H3/00H01T23/00H01G7/02H05F3/00
    • G03G15/08G03G2215/0619G03G2215/0641
    • In accordance with the invention, there are systems and methods to impart an electrostatic charge to particles. An exemplary method can include providing a plurality of particles to be charged and providing a plurality of nanostructures disposed over a first electrode array, the first electrode array including a plurality of electrodes spaced apart. The method can also include providing a multi-phase voltage source operatively coupled to the first electrode array and applying a multi-phase voltage to the first electrode array to create a traveling electric field between each electrode of the first electrode array, thereby causing electron emission from the plurality of nanostructures and forming a plurality of charged particles. The method can further include transporting each of the plurality of charged particles using the traveling electric field onto a surface.
    • 根据本发明,存在赋予颗粒静电荷的系统和方法。 示例性方法可以包括提供多个待充电的颗粒并提供设置在第一电极阵列上的多个纳米结构,所述第一电极阵列包括间隔开的多个电极。 该方法还可以包括提供可操作地耦合到第一电极阵列并将多相电压施加到第一电极阵列的多相电压源,以在第一电极阵列的每个电极之间产生行进电场,由此引起电子发射 从多个纳米结构中形成多个带电粒子。 该方法还可以包括使用行进电场将多个带电粒子中的每一个传送到表面上。
    • 4. 发明申请
    • SECURITY PRINTING WITH CURABLE TONERS
    • 安全打印与可固化音调
    • US20110113976A1
    • 2011-05-19
    • US12620835
    • 2009-11-18
    • Michael Donald Thompson
    • Michael Donald Thompson
    • B41F19/02B31F1/07
    • G03G7/006G03G7/0066G03G7/008G03G8/00G03G9/0821G03G9/0825G03G9/0827G03G9/08795G03G9/08797G03G9/0926
    • A system and accompanying method for creating a securely printed document using curable toners. The system includes a first radiation source configured to expose a first radiation to a printing substrate having an applied amount of toner, thereby liquefying the toner into a molten state, a curing station, a first feeder configured to feed the printing substrate into the curing station, and a second feeder configured to feed the embossing substrate into the curing station, wherein the embossing substrate comprises a pattern to be imprinted into the toner. The curing station includes a combiner configured to press the printing substrate and an embossing substrate together, a second radiation source configured to expose a second radiation to the combined substrates, and a divider configured to separate the printing substrate from the embossing substrate.
    • 一种使用可固化调色剂创建安全印刷的文件的系统和相关方法。 该系统包括:第一辐射源,被配置为将第一辐射暴露于具有施加量的调色剂的印刷基底,从而将调色剂液化成熔融状态;固化站;第一供料器,其配置成将印刷基材进料到固化站 以及第二进料器,其被配置为将压花基材进料到固化站中,其中压花基材包括要印刷到调色剂中的图案。 固化站包括组合器,其被配置为将印刷基板和压花基板压在一起,被配置为将第二辐射暴露于组合的基板的第二辐射源以及被构造成将印刷基板与压花基板分开的分隔件。
    • 6. 发明申请
    • METHOD TO CHARGE TONER FOR ELECTROPHOTOGRAPHY USING CARBON NANOTUBES OR OTHER NANOSTRUCTURES
    • 使用碳纳米管或其他纳米结构充电电极的方法
    • US20100053840A1
    • 2010-03-04
    • US12202787
    • 2008-09-02
    • Michael Donald Thompson
    • Michael Donald Thompson
    • G03G15/02
    • G03G15/08G03G2215/0619G03G2215/0641
    • In accordance with the invention, there are systems and methods to impart an electrostatic charge to particles. An exemplary method can include providing a plurality of particles to be charged and providing a plurality of nanostructures disposed over a first electrode array, the first electrode array including a plurality of electrodes spaced apart. The method can also include providing a multi-phase voltage source operatively coupled to the first electrode array and applying a multi-phase voltage to the first electrode array to create a traveling electric field between each electrode of the first electrode array, thereby causing electron emission from the plurality of nanostructures and forming a plurality of charged particles. The method can further include transporting each of the plurality of charged particles using the traveling electric field onto a surface.
    • 根据本发明,存在赋予颗粒静电荷的系统和方法。 示例性方法可以包括提供多个待充电的颗粒并提供设置在第一电极阵列上的多个纳米结构,所述第一电极阵列包括间隔开的多个电极。 该方法还可以包括提供可操作地耦合到第一电极阵列并将多相电压施加到第一电极阵列的多相电压源,以在第一电极阵列的每个电极之间产生行进电场,由此引起电子发射 从多个纳米结构中形成多个带电粒子。 该方法还可以包括使用行进电场将多个带电粒子中的每一个传送到表面上。