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    • 6. 发明授权
    • Methods for dispersing decontamination products
    • 去污产品分散方法
    • US09474816B2
    • 2016-10-25
    • US14218054
    • 2014-03-18
    • The Boeing Company
    • Shawn Hyunsoo ParkJames J. Sheahan, Jr.Charles E. Morris
    • A61L2/20A61L2/22B05B5/03B05B5/16
    • A61L2/22A61L2202/15A61L2202/16A61L2202/25B05B5/03B05B5/1608
    • An electrostatic spraying system for decontamination of a vehicle is described. The system includes a wheeled platform sized to fit inside the vehicle, at least one tank operable to contain one or more decontaminant agents, the tanks supported by said wheeled platform, a plurality of nozzles affixed to the wheeled platform, wherein each nozzle is positioned for distribution of the decontaminant agents in at least one pre-determined direction, an electrostatic charging system connected to each of the nozzles for applying an electrostatic charge to the decontaminant agents as the agents are dispersed, and at least one compressor in communication with the tanks for pressurizing the decontaminant agents. The one or more compressors are capable of providing a pressure sufficient to provide a constant distribution of the decontaminant agents through the electrostatic nozzles.
    • 描述了一种用于车辆去污的静电喷涂系统。 该系统包括尺寸适于装配在车辆内的轮式平台,至少一个罐,可操作以容纳一种或多种去污剂,由所述轮式平台支撑的罐,固定到轮式平台的多个喷嘴,其中每个喷嘴定位成 在至少一个预定方向上分配净化剂;静电充电系统,连接到每个喷嘴,用于当试剂分散时向静电荷施加静电荷;以及至少一个压缩机,其与罐相连通 对净化剂加压。 一个或多个压缩机能够提供足以提供去污剂通过静电喷嘴的恒定分布的压力。
    • 7. 发明授权
    • Electrohydrodynamic jet printing device with extractor
    • 电动喷射印刷装置
    • US09415590B2
    • 2016-08-16
    • US14263915
    • 2014-04-28
    • The Regents of the University of Michigan
    • Kira BartonTse Lai Yu Leo
    • B05B5/025B05C5/00B05D1/00B41J2/06B05B5/03B05B5/16
    • B41J2/06B05B5/0255B05B5/03B05B5/1608B05C5/00
    • A printing device includes a nozzle and an extractor. An electrostatic extraction field is generated at the extractor and at a discharge opening of the nozzle to extract polarized ink from the nozzle for deposition on a printing substrate. The extractor includes an electrically conductive portion for application of one side of a voltage potential to generate the electrostatic field. The extractor can be in the form of an extractor plate with an opening through which the extracted ink passes, or the extractor can be in the form of another nozzle. The printing device provides a directionality field that affects the trajectory of the extracted ink. The directionality field can include the electrostatic field or a gas flow field. The printing device is useful for electrohydrodynamic jet, or e-jet, printing on a non-conductive substrate.
    • 打印装置包括喷嘴和提取器。 在提取器和喷嘴的排出口处产生静电抽取场,以从喷嘴提取极性油墨以沉积在印刷基板上。 提取器包括用于施加电压电位的一侧以产生静电场的导电部分。 提取器可以是具有提取器板的形式,其具有开口,抽出的油墨通过该开口,或者提取器可以是另一个喷嘴的形式。 打印装置提供影响提取的墨水的轨迹的方向性场。 方向性场可以包括静电场或气体流场。 印刷装置可用于非导电基板上的电流动力学喷射或电喷射印刷。
    • 8. 发明授权
    • Method for controlling the temperature of a jetting device
    • 用于控制喷射装置的温度的方法
    • US09393581B2
    • 2016-07-19
    • US14087950
    • 2013-11-22
    • OCE-TECHNOLOGIES B.V.
    • Mircea V. RasaMarcel SlotHenricus C. M. Van GenuchtenWilhelmus P. J. Classens
    • B05B7/22B41J2/045B05B5/16B05B12/00
    • B05B7/22B05B5/1608B05B12/004B41J2/04515B41J2/04563B41J2/04586B41J2202/04
    • A method for controlling a temperature of a jetting device, the jetting device being configured to jet droplets of a fluid at a high temperature, the fluid comprising an electrically conductive fluid, wherein at least a part of the fluid is positioned in a magnetic field, includes heating the jetting device to an operating temperature, being defined as the temperature suitable for jetting droplets, using a heat jetting droplets by providing an electrical actuation current in the part of the fluid positioned in the magnetic field, thereby generating a force in the conductive fluid; determining upcoming jetting conditions, the upcoming jetting conditions being defined as the jetting conditions corresponding to droplets to be jetted at a time (t1) which is later than the present time (t0); determining settings for the heat based on the determined upcoming jetting conditions; controlling the heating of the jetting device using the heat in accordance with the determined settings.
    • 一种用于控制喷射装置的温度的方法,所述喷射装置构造成在高温下喷射流体的液滴,所述流体包括导电流体,其中至少一部分流体位于磁场中, 包括将喷射装置加热到工作温度,其被定义为适于喷射液滴的温度,使用热喷射液滴,通过在位于磁场中的流体部分中提供电致动电流,从而在导电中产生力 流体; 确定即将到来的喷射条件,即将到来的喷射条件被定义为在比当前时间(t0)晚的时间(t1)对应于要喷射的液滴的喷射条件; 基于确定的即将到来的喷射条件来确定热量的设置; 根据所确定的设置,使用热控制喷射装置的加热。