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    • 3. 发明授权
    • Fuel injector
    • 喷油器
    • US06783087B2
    • 2004-08-31
    • US10118313
    • 2002-04-09
    • Fumiaki AokiNobuo ImatakeKimitaka SaitoKenji KaneharaAkinori Harada
    • Fumiaki AokiNobuo ImatakeKimitaka SaitoKenji KaneharaAkinori Harada
    • B05B100
    • F02M61/18F02M51/0678F02M51/0682F02M61/1806F02M61/1853F02M2200/06
    • An injector has an orifice plate formed with plural orifices. At a radially outward position of the orifice plate is disposed a wall at least partially. It is preferable that the wall be disposed at a lower position in the direction of gravity. In the wall is formed a guide hole toward an area on the orifice plate where a strong negative pressure is developed. A portion of fuel injected from the injector adheres as adhered fuel to the orifice plate or the wall. Under the action of a negative pressure on the orifice plate the guide hole sucks in the adhered fuel and returns it onto the surface of the orifice plate. The adhered fuel flows from the wall onto the surface of the orifice plate and again joins a fuel jet injected from the orifices. By utilizing a negative pressure developed near the plural orifices, the adhered fuel can be recovered and again injected. Consequently, it is possible to decrease the amount of adhered fuel.
    • 注射器具有形成有多个孔的孔板。 在孔板的径向向外的位置处至少部分地设置有壁。 优选地,所述壁沿重力方向设置在下部位置。 在壁上形成有朝向孔板上产生强负压的区域的引导孔。 从喷射器喷射的燃料的一部分作为附着的燃料附着到孔板或壁上。 在孔板的负压作用下,引导孔吸附粘附的燃料并将其返回到孔板的表面上。 附着的燃料从壁流到孔板的表面上,并再次连接从孔口喷射的燃料喷嘴。 通过利用在多个孔附近产生的负压,可以回收粘附的燃料并再次注入。 因此,可以减少附着的燃料量。
    • 5. 发明申请
    • Mount structure of fuel injection valve and fuel injection system
    • 燃油喷射阀和燃油喷射系统的安装结构
    • US20100250100A1
    • 2010-09-30
    • US12662603
    • 2010-04-26
    • Yukio TomiitaHidekazu OomuraFumiaki AokiYoshinori YamashitaTakanori Suzuki
    • Yukio TomiitaHidekazu OomuraFumiaki AokiYoshinori YamashitaTakanori Suzuki
    • F02D41/30F02M61/14F02B3/00
    • F02M35/10177F02D41/3094F02M35/10216F02M35/1085F02M61/06F02M61/1806F02M61/1853F02M69/044
    • A combustion chamber side end portion of a fuel injection valve is placed at a location that overlaps with an imaginary plane, which is perpendicular to a center axis of a cylinder and extends along a portion of a wall surface of an intake port where an intake valve protrudes, or is projected out from the imaginary plane toward a combustion chamber. Alternatively, a center of a fuel injecting side end port of the fuel injection valve, which injects fuel into intake air that flows in a branch port branched from the intake port, may be placed on the center axis side of the intake valve in a radial direction of the cylinder. Further alternatively, an upstream side fuel injection valve may inject fuel into intake air that flows in the intake port, and a downstream side fuel injection valve may inject fuel into intake air that flows in the branch port branched from the intake port. Alternatively, an injection quantity of fuel may be controlled for each of fuel injection valves, which injects fuel into intake air that flows in the corresponding branch port branched from the intake port.
    • 燃料喷射阀的燃烧室侧端部被放置在与假想平面重叠的位置,假想平面垂直于圆筒的中心轴线并且沿进气口的壁表面的一部分延伸,进气门 从虚拟平面朝向燃烧室突出或突出。 或者,燃料喷射阀的燃料喷射侧端部的中心,其向从进气口分支的分支口流动的进气中喷射燃料,可以在进气阀的中心轴侧以径向 气缸方向。 另外,上游侧燃料喷射阀可以将燃料喷射到在进气口中流动的进气中,并且下游侧燃料喷射阀可以将燃料喷射到从进气口分支的分支口中流动的进气中。 或者,可以对于每个燃料喷射阀控制燃料喷射量,燃料喷射阀将燃料喷射到从进气口分支的相应分支口中流动的进气中。
    • 8. 发明授权
    • Mount structure of fuel injection valve and fuel injection system
    • 燃油喷射阀和燃油喷射系统的安装结构
    • US08281766B2
    • 2012-10-09
    • US12662603
    • 2010-04-26
    • Yukio TomiitaHidekazu OomuraFumiaki AokiYoshinori YamashitaTakanori Suzuki
    • Yukio TomiitaHidekazu OomuraFumiaki AokiYoshinori YamashitaTakanori Suzuki
    • F02B15/00
    • F02M35/10177F02D41/3094F02M35/10216F02M35/1085F02M61/06F02M61/1806F02M61/1853F02M69/044
    • A combustion chamber side end portion of a fuel injection valve is placed at a location that overlaps with an imaginary plane, which is perpendicular to a center axis of a cylinder and extends along a portion of a wall surface of an intake port where an intake valve protrudes, or is projected out from the imaginary plane toward a combustion chamber. Alternatively, a center of a fuel injecting side end port of the fuel injection valve, which injects fuel into intake air that flows in a branch port branched from the intake port, may be placed on the center axis side of the intake valve in a radial direction of the cylinder. Further alternatively, an upstream side fuel injection valve may inject fuel into intake air that flows in the intake port, and a downstream side fuel injection valve may inject fuel into intake air that flows in the branch port branched from the intake port. Alternatively, an injection quantity of fuel may be controlled for each of fuel injection valves, which injects fuel into intake air that flows in the corresponding branch port branched from the intake port.
    • 燃料喷射阀的燃烧室侧端部被放置在与假想平面重叠的位置,假想平面垂直于圆筒的中心轴线并且沿进气口的壁表面的一部分延伸,进气门 从虚拟平面朝向燃烧室突出或突出。 或者,燃料喷射阀的燃料喷射侧端部的中心,其向从进气口分支的分支口流动的进气中喷射燃料,可以在进气阀的中心轴侧以径向 气缸方向。 另外,上游侧燃料喷射阀可以将燃料喷射到在进气口中流动的进气中,并且下游侧燃料喷射阀可以将燃料喷射到从进气口分支的分支口中流动的进气中。 或者,可以对于每个燃料喷射阀控制燃料喷射量,燃料喷射阀将燃料喷射到从进气口分支的相应分支口中流动的进气中。