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    • 3. 发明申请
    • Fuel injection apparatus for internal combustion engine
    • 内燃机燃油喷射装置
    • US20070040053A1
    • 2007-02-22
    • US11505305
    • 2006-08-17
    • Kenji Date
    • Kenji Date
    • F02M63/00
    • F02M61/1846F02D19/061F02D19/0694F02M21/0254F02M21/0263Y02T10/32Y02T10/36
    • A fuel injection valve has a sac chamber filled with high-pressure gaseous fuel, an injection hole communicated with the sac chamber, and a nozzle needle that slidably moves to allow and interrupt a supply of the high-pressure gaseous fuel into the sac chamber. The fuel injection valve performs an injection of the high-pressure gaseous fuel directly into a combustion chamber of the internal combustion engine in accordance with a movement of the nozzle needle. The injection hole has an outlet portion with a divergently formed inner surface as coming toward an outlet end of the injection hole. The driving portion controls the movement of the nozzle needle to change a sac chamber pressure of the high-pressure gaseous fuel in the sac chamber so as to switch a jet flow speed of the high-pressure gaseous fuel injected through the injection hole between a subsonic speed and a supersonic speed.
    • 燃料喷射阀具有填充有高压气体燃料的囊室,与囊室连通的喷射孔以及可滑动地移动以允许和中断高压气体燃料供应到囊室中的喷嘴针。 燃料喷射阀根据喷嘴针的移动,进行高压气态燃料直接喷入内燃机的燃烧室。 注入孔具有朝着喷射孔的出口端朝向分开形成的内表面的出口部分。 驱动部分控制喷嘴针的移动,以改变囊室中的高压气体燃料的囊室压力,以便切换通过喷射孔喷射的高压气体燃料在亚音速 速度和超音速。
    • 6. 发明授权
    • Plasma display panel and manufacturing method thereof
    • 等离子显示面板及其制造方法
    • US08330368B2
    • 2012-12-11
    • US12615522
    • 2009-11-10
    • Shuzo TsuchidaKazuto FukudaKenji Date
    • Shuzo TsuchidaKazuto FukudaKenji Date
    • H01J17/49
    • H01J9/02H01J11/12H01J11/38
    • An object of the present invention is to provide a plasma display panel that can suppress the generation of cracks in a dielectric layer, and also improve the yield, and a method for manufacturing such a display panel. A dielectric layer on a front panel is designed to have a two-layer structure in which a first dielectric layer and a second dielectric layer are laminated, and the first dielectric layer is formed through processes in which, after printing or applying a dielectric paste containing a glass frit onto a front substrate so as to cover display electrodes formed thereon as a stripe pattern, drying and firing the resulting substrate at a temperature not less than a softening point of the glass frit, and the second dielectric layer is formed on the first dielectric layer by using a sol-gel method.
    • 本发明的目的是提供一种能够抑制电介质层中的裂纹的产生并提高成品率的等离子体显示面板及其制造方法。 将前面板上的电介质层设计为具有层叠第一电介质层和第二电介质层的二层结构,通过以下工序形成第一电介质层,其中,在印刷或涂布含有 将玻璃料覆盖在前基板上,以覆盖形成在其上的显示电极作为条纹图案,在不低于玻璃料的软化点的温度下干燥和烧制所得到的基板,并且第二介电层形成在第一 介电层,采用溶胶 - 凝胶法。
    • 9. 发明申请
    • Gaseous fuel injector
    • 气体燃料喷射器
    • US20060086825A1
    • 2006-04-27
    • US11256102
    • 2005-10-24
    • Kenji DateMasaaki Kato
    • Kenji DateMasaaki Kato
    • B05B7/12
    • F02M43/04F02D19/0647F02D19/0694F02M21/0254F02M21/0263F02M61/042Y02T10/32Y02T10/36
    • The injector includes a nozzle, a needle, a control chamber, a working fluid supply passage, an electric switching valve, a high-pressure gaseous fuel supply passage and a lubrication liquid fuel supply passage. The nozzle has an injection hole, through which high-pressure gaseous fuel is injected. The needle is axially reciprocably received in the nozzle to open and close the injection hole. The needle includes a sliding portion and a valve portion. The control chamber applies a pressure to the needle. The working fluid supply passage supplies liquid fuel to the control chamber. The electric switching valve controls an inflow/outflow of the liquid fuel to/from the control chamber. The high-pressure gaseous fuel supply passage supplies the high-pressure gaseous fuel to the injection hole. The lubrication liquid fuel supply passage supplies the liquid fuel from the working fluid supply passage to the sliding portion and the valve portion.
    • 喷射器包括喷嘴,针,控制室,工作流体供应通道,电切换阀,高压气体燃料供给通道和润滑液体燃料供给通道。 喷嘴具有注入孔,高压气体燃料通过喷射孔注入。 针在喷嘴中轴向往复运动,以打开和关闭注射孔。 针包括滑动部分和阀部分。 控制室对针施加压力。 工作流体供应通道向控制室供应液体燃料。 电动切换阀控制液体燃料流入/流出控制室。 高压气体燃料供给通道将高压气体燃料供应到喷射孔。 润滑液体燃料供给通道将液体燃料从工作流体供给通道供应到滑动部分和阀部分。