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    • 21. 发明授权
    • Ink jet printing head and apparatus incorporating the same
    • 喷墨打印头及其结合的装置
    • US5988800A
    • 1999-11-23
    • US992040
    • 1992-12-17
    • Yasushi EmaHisayoshi FujimotoNobuhisa IshidaToshio AmanoAkihiro ShimokataShinsaku Takada
    • Yasushi EmaHisayoshi FujimotoNobuhisa IshidaToshio AmanoAkihiro ShimokataShinsaku Takada
    • B41J2/045B41J2/055B41J2/14C03C15/00
    • C03C15/00B41J2002/14266
    • An ink jet printing head which both realizes a higher density and prevents a failure in ink jetting and deterioration in the printing quality. A photosensitive glass substrate which allows anisotropic etching is provided with a multiplicity of individual ink passages each having a narrow width and a large depth formed in an array by anisotropic etching in such a manner that each extends from the rear end of the glass substrate to the forward end thereof. A diaphragm is attached to the surface of the glass plate on which the individual ink passages are formed in such a manner as to cover all the individual ink passages. A common electrode is provided on the diaphragm, and individual piezoelectric elements are fixed to the common electrode at the portions corresponding to the individual ink passages. Individual electrodes are provided on the respective individual piezoelectric elements.When a voltage is applied to the common electrode and the individual electrode, the portion of the diaphragm corresponding to the individual electrode is bent and deformed, so that the ink storing capacity of the corresponding individual ink passage is reduced and some of the ink in the individual ink passage is forced out.
    • 一种喷墨打印头,其实现更高的密度并防止喷墨故障和打印质量的劣化。 允许各向异性蚀刻的感光性玻璃基板设置有多个单独的墨通道,每个墨通道具有窄的宽度和大的深度,通过各向异性蚀刻以阵列形式形成,从而从玻璃基板的后端延伸到 其前端。 以形成各个墨水通道的玻璃板的表面附着隔膜,以覆盖所有单独的墨水通道。 公共电极设置在隔膜上,各个压电元件在对应于各个墨水通道的部分固定到公共电极。 在各个压电元件上设置单独的电极。 当向公共电极和单独电极施加电压时,与各个电极相对应的隔膜的部分弯曲变形,从而相应的单个墨水通道的墨水储存能力降低,并且一些墨水 单独的墨水通道被迫熄灭。
    • 23. 发明授权
    • Ink jet print head and ink jet printer
    • 喷墨打印头和喷墨打印机
    • US5627575A
    • 1997-05-06
    • US281693
    • 1994-07-28
    • Hisayoshi FujimotoNobuhisa Ishida
    • Hisayoshi FujimotoNobuhisa Ishida
    • B41J2/045B41J2/055B41J2/15B41J2/16
    • B41J2/15
    • In order to provide an ink jet print head effectively ensuring a stable print quality or capable of reducing the voltage applied to piezoelectric: elements while maintaining the volume displacement of the pressure chambers, and to provide an ink jet printer using the same, the ink jet print head of the present invention comprises a plurality of pressure chambers circularly arranged in a hounds tooth manner for allowing the passage of ink, and a plurality of ink flow paths acting as flow paths for ink flowing from the pressure chambers. It further comprises a diaphragm defining one surface of the pressure chambers, and a plurality of piezoelectric elements which apply a pressure to the pressure chambers to discharge the ink within the pressure chambers from the nozzle through the ink flow paths for printing. The pressure chambers disposed in the external portion of the hounds tooth arrangement have a circumferential length equal to or greater than that of the pressure chambers disposed in the internal portion of the hounds tooth arrangement, and have a radial length equal to or smaller than that of the latter.
    • 为了提供喷墨打印头,有效地确保了稳定的打印质量或能够降低施加到压电元件上的电压,同时保持压力室的体积位移,并且提供使用其的喷墨打印机 本发明的打印头包括多个压力室,该压力室以用于允许油墨通过的方式圆形排列,并且用作用于从压力室流动的油墨的流动路径的多个油墨流动路径。 其还包括限定压力室的一个表面的隔膜,以及多个压力元件,其向压力室施加压力,以将来自喷嘴的压力室内的墨通过用于打印的油墨流动路径排出。 设置在所述猎犬齿配置的外部的压力室的圆周长度等于或大于设置在所述猎犬齿布的内部的压力室的周长,并且其径向长度等于或小于 后者。
    • 24. 发明申请
    • Fuel Cell Device
    • 燃料电池装置
    • US20130065141A1
    • 2013-03-14
    • US13697786
    • 2011-04-26
    • Shoichi UrataniShigeru WadaMasayuki UeyamaNobuhisa Ishida
    • Shoichi UrataniShigeru WadaMasayuki UeyamaNobuhisa Ishida
    • H01M8/06
    • H01M8/186H01M8/04373H01M8/04738H01M8/065H01M8/1231H01M2008/1293Y02E60/528
    • The fuel cell device is provided with: an electricity-generating unit having a fuel electrode (102), an air electrode (103), and an electrolyte film (101) sandwiched between the fuel electrode (102) and the air electrode (103); a hydrogen-generating member (104) that, by means of an oxidation reaction with water, generates hydrogen for supplying to the fuel electrode (102) of the aforementioned electricity-generating unit; a heater (105) that heats the hydrogen-generating member (104); a temperature sensor (106) that detects the temperature of the hydrogen-generating member (104); and a temperature control unit (20) that controls the temperature of the hydrogen-generating member (104) in response to the detection results of the temperature sensor (106). The temperature control unit (20) stops the passage of electricity through the heater (105) when it has been determined that the temperature of the hydrogen-generating member (104) is at least a predetermined temperature.
    • 燃料电池装置具备:发电单元,具有燃料电极(102),空气电极(103)和夹在燃料电极(102)和空气电极(103)之间的电解质膜(101) ; 通过与水的氧化反应产生用于向所述发电单元的燃料电极(102)供给的氢的氢发生部件(104) 加热所述生氢部件(104)的加热器(105)。 检测氢生成部件(104)的温度的温度传感器(106)。 以及根据温度传感器(106)的检测结果控制氢生成部件(104)的温度的温度控制部(20)。 当确定氢生成元件(104)的温度至少为预定温度时,温度控制单元(20)停止通过加热器(105)的电流。
    • 26. 发明授权
    • Fuel cell device
    • 燃料电池装置
    • US07666538B2
    • 2010-02-23
    • US11005747
    • 2004-12-07
    • Nobuhisa IshidaYasuhiro SandoKusunoki Higashino
    • Nobuhisa IshidaYasuhiro SandoKusunoki Higashino
    • H01M2/00
    • H01M8/1009H01M8/04156H01M8/04194H01M8/04291H01M8/1011Y02E60/523
    • A fuel cell device has a small and compact structure as a whole. The fuel cell device employs a fuel cell (e.g., direct methanol fuel cell of an MEA structure) using liquid fuel. Diluted liquid fuel is prepared by diluting the liquid fuel (methanol-contained liquid in the case of DMFC) with dilution liquid, and is supplied to the fuel cell. A first pump unit stacked on the fuel cell supplies the diluted liquid fuel to the fuel cell while diluting the liquid fuel by mixing the liquid fuel and the dilution liquid together. A second pump unit stacked on the fuel cell collects liquid (water usable as dilution liquid in DMFC) produced by an electrochemical reaction in the fuel cell.
    • 燃料电池装置整体上具有小而紧凑的结构。 燃料电池装置采用液体燃料的燃料电池(例如MEA结构的直接甲醇燃料电池)。 通过稀释液体燃料(在DMFC的情况下含有甲醇的液体)稀释液体来制备稀释的液体燃料,并将其供应到燃料电池。 堆叠在燃料电池上的第一泵单元将稀释的液体燃料供应到燃料电池,同时通过将液体燃料和稀释液混合在一起来稀释液体燃料。 堆叠在燃料电池上的第二泵单元收集通过燃料电池中的电化学反应产生的液体(可用作DMFC中的稀释液体的水)。
    • 27. 发明申请
    • Fuel cell system
    • 燃料电池系统
    • US20060141322A1
    • 2006-06-29
    • US11319642
    • 2005-12-28
    • Nobuhisa IshidaKusunoki Higashino
    • Nobuhisa IshidaKusunoki Higashino
    • H01M8/02H01M8/04H01M8/10
    • H01M8/1011H01M8/04194H01M8/04753H01M8/04798H01M8/0668Y02E60/523
    • A fuel cell system including a fuel cell including a cell body having an electrolyte membrane held between a fuel electrode and an air electrode, and a fuel supply chamber neighboring to the fuel electrode of the cell body, and having a fuel liquid supply port (and optionally a fuel liquid collecting port); and a fuel liquid supply portion for supplying a fuel liquid into the fuel supply chamber through the fuel liquid supply port. The fuel liquid supply portion supplies the fuel liquid to the fuel supply chamber while generating positive and negative pressure variations in the fuel supply chamber and/or forward and reverse flows of the liquid in the fuel supply chamber for removing a gas produced on the fuel electrode side of the cell body.
    • 一种燃料电池系统,包括燃料电池,其包括具有保持在燃料电极和空气电极之间的电解质膜的电池体和与电池体的燃料电极相邻的燃料供给室,并且具有燃料液供给口(和 可选地,燃料液体收集口); 以及用于通过燃料液体供给口将燃料液体供给到燃料供给室的燃料液供给部。 燃料液体供应部分将燃料液体供应到燃料供应室,同时在燃料供应室中产生正的和负的压力变化,和/或燃料供给室中的液体的正向和反向流动,用于除去在燃料电极上产生的气体 侧面的细胞体。