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    • 4. 发明授权
    • Inkjet print cartridge having an adhesive with improved dimensional control
    • 具有改进的尺寸控制的粘合剂的喷墨打印盒
    • US07404613B2
    • 2008-07-29
    • US11169905
    • 2005-06-29
    • Kin Ming KwanJames Michael MrvosJeanne Marie Saldanha SinghMary Claire Smoot
    • Kin Ming KwanJames Michael MrvosJeanne Marie Saldanha SinghMary Claire Smoot
    • B41J2/015B41J2/175
    • B41J2/17559
    • A method for manufacturing an inkjet print cartridge and an inkjet cartridge produced thereby are disclosed. An inkjet print cartridge in accordance with one aspect includes a component of the inkjet print cartridge and an applied adhesive on at least a portion of the component, wherein the applied adhesive is formed from an adhesive having a rheology viscosity ratio ηi/ηmin of from 1.0 to less than 2.1. The method in accordance with one aspect includes applying an adhesive onto at least a portion of a component of an inkjet print cartridge at an application temperature, Tα, and heating the adhesive from an initial temperature, Ti, to a cure temperature for the adhesive, Tc. The adhesive has a rheology cure profile characterized by at least one of the following parameters: a) a rheology viscosity ratio ηi/ηmin of from 1.0 to less than 2.1, b) a temperature of the adhesive is approximately equal to a minimum viscosity temperature for the adhesive, Tηmin, within less than about 10 minutes from the start of the cure cycle, and c) viscosity of the adhesive increases within less than about 5 minutes from the start of the cure cycle.
    • 公开了一种用于制造由此制造的喷墨打印墨盒和喷墨墨盒的方法。 根据一个方面的喷墨打印墨盒包括喷墨打印墨盒的组件和在组件的至少一部分上的涂布的粘合剂,其中涂布的粘合剂由具有流变粘度比η的粘合剂形成, /小于/小于2.1。 根据一个方面的方法包括在施加温度Tαα下将粘合剂施加到喷墨打印盒的部件的至少一部分上,并从初始温度T 1加热粘合剂, 将粘合剂的固化温度提高到粘合剂的固化温度。 粘合剂具有流变学固化分布,其特征在于以下参数中的至少一个:a)1.0至小于2.1的流变粘度比ηη/ηmin / b)粘合剂的温度近似等于粘合剂T et et在从固化循环开始后不到约10分钟内的最低粘度温度,c)粘合剂的粘度 在治愈周期开始后不到5分钟内就会增加。
    • 9. 发明授权
    • Electrostatic power generator cell and method of manufacture
    • 静电发电机及其制造方法
    • US07732974B1
    • 2010-06-08
    • US11600404
    • 2006-11-15
    • Justin S. BolandBrian M. RonaldKin Ming KwanJordan H. Eber
    • Justin S. BolandBrian M. RonaldKin Ming KwanJordan H. Eber
    • H01L41/08
    • H02N1/08
    • Electrostatic power generator cell architectures having high generator output and a method of manufacture. In one embodiment, parasitic capacitances are reduced by reducing overlap between walls of the chamber and electrodes of the generator cell. In another embodiment, generator component materials are selected to reduce triboelectric effects to improve the coupling of kinetic energy to electrical output, thereby increasing generator output. In a further embodiment, the high permittivity material is selected to increase the modulation of the variable capacitors in the power generator to increase generator output. In still another embodiment, the physical dimensions of the generator cell components are reduced to increase power density. In an additional embodiment, a physical dimension of the generator chamber is based on the dominant motion the generator will be exposed to in a particular application.
    • 具有高发电机输出的静电发电机电池结构和制造方法。 在一个实施例中,通过减小腔室的壁和发电机电池的电极之间的重叠来减小寄生电容。 在另一个实施例中,选择发电机部件材料以降低摩擦电效应以改善动能与电输出的耦合,从而增加发电机输出。 在另一实施例中,选择高电容率材料以增加发电机中的可变电容器的调制以增加发电机输出。 在另一个实施例中,发电机组件的物理尺寸减小以增加功率密度。 在另外的实施例中,发电机室的物理尺寸是基于发电机在特定应用中将被暴露的主要运动。