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    • 1. 发明授权
    • Fuel injector with pressure balanced needle valve
    • 带压力平衡针阀的燃油喷射器
    • US5979803A
    • 1999-11-09
    • US939007
    • 1997-09-26
    • Lester L. PetersJulius P. PerrBenjamin M. YenGeorge L. MunteanJ. Victor PerrJohn D. Crofts
    • Lester L. PetersJulius P. PerrBenjamin M. YenGeorge L. MunteanJ. Victor PerrJohn D. Crofts
    • F02M47/04F02M51/06F02M61/04F02M63/00F02M45/00
    • F02M47/046F02M51/0603F02M51/061F02M51/0653F02M51/0657F02M61/042F02M2200/702
    • An improved fuel injector for providing precise control over injection timing, quantity and rate shape is provided which includes a fuel pressure balancing device for balancing the fuel pressure forces acting on a needle valve element while the element is in both the closed and open positions thereby permitting an actuator to more precisely and predictably control the movement of the needle valve element. The fuel pressure balancing device includes a cavity formed in the needle valve element and pressure balancing surfaces formed on the needle valve element and positioned in the cavity. The actuator may be a piezoelectric actuator for compressing actuating fluid in an actuating fluid circuit which includes a fluid chamber positioned adjacent a needle valve element and fluidically separate from a fuel supply circuit for supplying high pressure fuel for injection. Actuating fluid pressure in the chamber acts on the needle valve element to initiate injection. In another embodiment, the needle valve element is directly controlled by a solenoid actuator.
    • 提供了一种用于提供对喷射正时,数量和速率形状的精确控制的改进的燃料喷射器,其包括用于平衡作用在针阀元件上的燃料压力的燃料压力平衡装置,同时元件处于关闭位置和打开位置,从而允许 致动器以更精确和可预测地控制针阀元件的运动。 燃料压力平衡装置包括形成在针阀元件中的空腔和形成在针阀元件上并定位在空腔中的压力平衡表面。 致动器可以是用于压缩致动流体回路中的致动流体的压电致动器,该致动流体回路包括邻近针阀元件定位的流体室,并与用于喷射高压燃料的燃料供应回路流体分离。 腔室中的致动流体压力作用在针阀元件上以开始注射。 在另一个实施例中,针阀元件由螺线管致动器直接控制。
    • 4. 发明授权
    • Three-way flow valve with variable drain orifice area
    • 具有可变排水口面积的三通流量阀
    • US5518030A
    • 1996-05-21
    • US354287
    • 1994-12-12
    • Chung Y. LiuBenjamin M. YenLester L. PetersJulius P. Perr
    • Chung Y. LiuBenjamin M. YenLester L. PetersJulius P. Perr
    • F02M59/46F15B13/04F15B13/044F16K11/044F16K31/06
    • F16K31/0627F02M59/466F15B13/0405F15B13/044F16K11/044F02M2200/04F15B2013/041Y10T137/86622Y10T137/86678Y10T137/86686
    • A solenoid valve for use in a fuel system includes a valve body with a central core and three interconnected passageways. A spool is disposed within the central core and by means of enlarged and reduced diameter portions controls the flow through the solenoid valve. Solenoid armatures cooperatively control movement of the valve spool which is sized and shaped so as to provide a fuel flow path from an inlet passageway to an outlet passageway when the solenoid valve is in an opened condition. When the spool is shifted to a closed condition, incoming fuel is blocked and a flow path is created from the output passageway to a drain passageway, The drain passageway allows excess fuel in the injector to drain to relieve fuel pressure on the metering plunger. As the spool moves from a closed condition to an opened condition, some fuel flows to the drain passageway. The amount of fuel "loss" depends on the speed of the spool and the size of the drain passageway. In order to avoid the higher cost associated with drilling a small diameter hole through the valve body, a larger drilled hole is used. The enlarged end of the valve spool is extended so as to block a substantial portion of the drain passageway orifice. The blocked orifice yields a smaller flow through area and this reduced flow orifice area reduces transition loss and cavitation.
    • 用于燃料系统的电磁阀包括具有中心芯的阀体和三个相互连接的通道。 阀芯设置在中心芯内,并且通过放大和缩小的直径部分控制通过电磁阀的流量。 螺线管电枢协调地控制阀芯的运动,该阀芯的尺寸和形状被设计成当电磁阀处于打开状态时提供从入口通道到出口通道的燃料流动路径。 当阀芯移动到关闭状态时,进入的燃料被堵塞并且从输出通道到排水通道产生流动通道。排放通道允许喷射器中的过量燃料排出以减轻计量柱塞上的燃料压力。 当阀芯从关闭状态移动到打开状态时,一些燃料流向排放通道。 燃料“损失”的数量取决于阀芯的速度和排水通道的大小。 为了避免与通过阀体钻出小直径孔相关联的较高成本,使用较大的钻孔。 阀芯的扩大端部被延伸以阻塞排水通道孔口的大部分。 堵塞的孔产生较小的流过面积,并且该减小的流动孔面积减小了过渡损失和空化。
    • 5. 发明授权
    • Two stage fuel injector nozzle assembly
    • 两级燃油喷嘴组件
    • US5899389A
    • 1999-05-04
    • US867356
    • 1997-06-02
    • Arpad M. PatakiLester L. PetersBenjamin M. YenJulius P. Perr
    • Arpad M. PatakiLester L. PetersBenjamin M. YenJulius P. Perr
    • F02M45/08F02M47/02F02M61/18F02M63/00F02M61/20
    • F02M61/182F02M45/086F02M2200/46F02M47/027
    • A fuel injector assembly is provided which operates to effectively creating a low injection flow rate followed by a high injection flow rate during all engine operating conditions, including idle and low engine speed conditions, to produce a high quality fuel spray with proper atomization and thus improved fuel air mixing resulting in improved emissions abatement and fuel economy. The assembly includes two biased valve elements designed to sequentially open and close to initially open a limited number of orifices followed by the opening of a remainder of the orifices thereby effectively varying the available cross sectional flow area from the nozzle cavity into the combustion chamber of the engine during the injection event. The nozzle valve elements may be spring biased or fluid pressure biased and include biasing surfaces sized to cause the sequential opening and closing of the elements.
    • 提供了一种燃料喷射器组件,其操作以在所有发动机操作条件(包括空转和低发动机转速条件)下有效地产生低喷射流量,随后是高喷射流量,以产生具有适当雾化的高质量燃料喷雾,从而改善 燃料空气混合,从而改善减排和燃油经济性。 组件包括两个偏压的阀元件,设计成顺序地打开和关闭以初始打开有限数量的孔,随后打开剩余的孔,从而有效地改变从喷嘴腔到燃烧室的可用横截面流动面积 发动机在注射事件期间。 喷嘴阀元件可以是弹簧偏置或流体压力偏置的,并且包括尺寸适于引起元件的顺序打开和关闭的偏置表面。
    • 6. 发明授权
    • Injection rate shaping nozzle assembly for a fuel injector
    • 用于燃料喷射器的喷射成形喷嘴组件
    • US5765755A
    • 1998-06-16
    • US787963
    • 1997-01-23
    • Lester L. PetersJulius P. PerrA. S. GhumanBenjamin M. YenChad L. BuchananRobert SamuelKevin L. VogtJohn T. Carroll, IIIJames E. DentonDavid E. Schisler
    • Lester L. PetersJulius P. PerrA. S. GhumanBenjamin M. YenChad L. BuchananRobert SamuelKevin L. VogtJohn T. Carroll, IIIJames E. DentonDavid E. Schisler
    • F02M45/10F02M61/04F02M61/16F02M61/18B05B9/00F02M47/02
    • F02M61/18F02M45/10F02M61/042F02M61/168
    • An injection rate shaping nozzle assembly for a fuel injector is provided which includes a closed nozzle valve element and a rate shaping control device including an injection spill circuit for spilling a portion of the fuel to be injected to produce a predetermined time varying change in the flow rate of fuel injected into a combustion chamber. The spill circuit includes a spill passage integrally formed in the nozzle valve element. The rate shaping control device may include a spill accelerating chamber in formed in the nozzle valve element for creating a rapid increase in the spill flow rate. A spill circuit purge device is provided to remove fuel from the spill circuit and accelerating chamber between each of the injection events thereby ensuring an unimpeded, effective spill fuel flow during the next spill event. The purge device includes a purge passage formed of a predetermined size for restricting the flow of purge gas to ensure sufficient fuel removal from the injection spill circuit while avoiding excessive purge gas flow. The purge passage may include an annular clearance gap formed between the nozzle valve element and the nozzle housing wall, or alternatively, may include an orifice passage formed in the inner portion of the nozzle valve element. An improved method for forming a nozzle valve element having an axial center passage is also disclosed.
    • 提供了一种用于燃料喷射器的喷射率成形喷嘴组件,其包括封闭的喷嘴阀元件和速率整形控制装置,该速率整形控制装置包括用于溢出待喷射的燃料的一部分以产生流量的预定时变变化的喷射泄漏电路 喷入燃烧室的燃料的速率。 泄漏回路包括一体形成在喷嘴阀元件中的溢流通路。 速率整形控制装置可以包括形成在喷嘴阀元件中的溢流加速室,用于产生溢流量的快速增加。 提供溢流回路吹扫装置以在每次喷射事件之间从泄漏回路和加速室中除去燃料,从而确保在下一个溢出事件期间不受阻碍地有效地溢出燃料流。 净化装置包括由预定尺寸形成的吹扫通道,用于限制净化气体的流动,以确保足够的燃料从喷射泄漏电路中移除,同时避免过多的吹扫气体流动。 净化通道可以包括形成在喷嘴阀元件和喷嘴壳体壁之间的环形间隙,或者可以包括形成在喷嘴阀元件的内部中的孔口通道。 还公开了一种用于形成具有轴向中心通道的喷嘴阀元件的改进方法。
    • 8. 发明授权
    • Turbocharger assembly
    • 涡轮增压器总成
    • US4207035A
    • 1980-06-10
    • US864629
    • 1977-12-27
    • Julius P. PerrGeorge L. Muntean
    • Julius P. PerrGeorge L. Muntean
    • F01D25/18F02B39/14F04D29/04F04D29/057F04D29/06F04D29/10F16J15/40F02B37/00
    • F04D29/057F01D25/186F02B39/14F04D29/063F16J15/40
    • A turbocharger assembly is provided for use with an internal combustion engine. The assembly includes a compressor chamber having a compressor wheel disposed therein and a turbine chamber having a turbine wheel disposed therein. The two wheels are affixed to a rotating shaft. A lubricated bearing assembly is disposed between the chambers and encompasses the shaft. A dynamic first seal encompasses the shaft and is disposed between the bearing assembly and the compressor chamber. A second seal encompasses the shaft and is disposed between the bearing assembly and the turbine chamber. Controlled first means is provided for braking rotation of the shaft. Second means is provided which, when the first means is in a shaft-braking mode, causes a predetermined gaseous pressure to be exerted on the first seal inhibiting migration of the lubricant from the bearing assembly to the compressor chamber.
    • 提供一种用于内燃机的涡轮增压器组件。 组件包括压缩机室,其中设置有压缩机叶轮,并且具有设置在其中的涡轮机叶轮的涡轮室。 两个轮子固定在旋转轴上。 润滑的轴承组件设置在室之间并且包围轴。 动态第一密封件包围轴并且设置在轴承组件和压缩机室之间。 第二密封件包围轴并且设置在轴承组件和涡轮室之间。 控制的第一装置用于制动轴的旋转。 提供了第二装置,当第一装置处于轴制动模式时,使预定的气体压力施加在第一密封件上,从而阻止润滑剂从轴承组件向压缩机室的移动。
    • 10. 发明授权
    • Electronic controlled fuel supply system for high pressure injector
    • 用于高压喷射器的电子控制燃料供应系统
    • US5042445A
    • 1991-08-27
    • US572212
    • 1990-08-24
    • Lester L. PetersJulius P. PerrEdward D. Smith
    • Lester L. PetersJulius P. PerrEdward D. Smith
    • F02B1/04F02B3/06F02D7/00F02D41/40F02M57/02
    • F02M57/024F02D41/40F02D7/002F02D7/007F02M57/021F02B1/04F02B3/06F02D2200/0602F02D2250/31Y02T10/44
    • An electronically controlled fuel supply system is provided for employing a plurality of fuel injectors which maximize SAC pressures under both low speed and high speed operating conditions and are capable of sustaining SAC pressures in excess of 30,000 psi. The fuel supply system of the present invention includes a gear pump which supplies pressure-modulated fuel to a fueling channel and to a timing channel and from there to a plurality of injectors. Fuel pressure regulator means and timing fluid pressure regulator means are provided in the fueling and timing channel, respectively. An electronic control unit receives information relating to engine operating conditions from a plurality of sensors and actuates the fuel pressure regulator means and the timing fluid pressure regulator means to adjust the pressure as required for the specific engine operating conditions. The timing fluid is delivered to the injectors by the present system at a pressure sufficient to sustain a hydraulic link within the injector of the length necessary to maintain high SAC pressures during injection. Several embodiments of a fuel supply system which achieves these objectives are disclosed. A mounting integral with the cylinder head for an electronically controlled injector fuel supply system is also provided.
    • 提供了一种电子控制的燃料供应系统,用于使用多个燃料喷射器,其在低速和高速运行条件下使SAC压力最大化,并且能够承受超过30,000psi的SAC压力。 本发明的燃料供给系统包括齿轮泵,其将加压调节燃料供给到加油通道和定时通道,并且从那里到多个喷射器。 燃料压力调节装置和定时流体压力调节装置分别设置在加油和定时通道中。 电子控制单元从多个传感器接收与发动机操作条件相关的信息,并致动燃料压力调节装置和定时流体压力调节装置,以根据特定的发动机运行条件来调节压力。 正时流体由本系统以足以维持注射器内的液压连杆在注射期间维持高SAC压力所需的长度的压力被输送到喷射器。 公开了实现这些目的的燃料供应系统的几个实施例。 还提供了与用于电子控制的喷射器燃料供应系统的气缸盖一体的安装。