会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明授权
    • Stepped rotation fuel distribution valve
    • 步进式旋转燃油分配阀
    • US5630398A
    • 1997-05-20
    • US658574
    • 1996-06-05
    • Gary L. GantGeorge L. MunteanHarry L. WilsonJohn R. YoungbloodMark S. Cavanagh
    • Gary L. GantGeorge L. MunteanHarry L. WilsonJohn R. YoungbloodMark S. Cavanagh
    • F02M41/06F02M59/44F02M41/00F16K11/076
    • F02M41/06F02M41/063F02M59/44Y10T137/86501
    • A stepped rotation fuel distribution valve for receiving and conducting metered, pressurized fuel pulses to the combustion cylinders of a diesel engine is provided. The valve includes a fuel distribution shaft rotatably mounted in a valve housing. The shaft includes a fuel discharge port that is sequentially registrable with fuel distributing passages in the housing that ultimately lead to the diesel fuel injectors associated with the combustion cylinders of the engine. A drive mechanism, which may include a stepper motor, intermittently rotates the fuel distributor shaft so that the shaft discharge port dwells in registration with one of the fuel distributing passages at the time a pressurized pulse of fuel is discharged through the shaft discharge port. The drive mechanism may also include either a set of timing gears or a spring coupling to achieve the desired intermittent rotation. In all cases, the intermittent rotation of the fuel distribution shaft prevents the shaft from rotating at a time when the discharge of a highly pressurized fuel pulse applies a high side load to the shaft which in turn can generate high frictional forces between the fuel distribution shaft and the surrounding housing.
    • 提供了一种用于接收和传导计量的加压燃料脉冲到柴油发动机的燃烧气缸的阶梯式旋转燃料分配阀。 阀包括可旋转地安装在阀壳体中的燃料分配轴。 该轴包括燃料排放口,该燃料排出口可与壳体中的燃料分配通道顺序地分配,其最终导致与发动机的燃烧气缸相关联的柴油喷射器。 可以包括步进电机的驱动机构间歇地旋转燃料分配器轴,使得在通过轴排出口排出加压的燃料脉冲时,轴排出口与燃料分配通道中的一个对准。 驱动机构还可以包括一组定时齿轮或弹簧联接器以实现期望的间歇旋转。 在所有情况下,燃料分配轴的间歇旋转防止轴在高压燃料脉冲的排放向轴施加高侧负荷时旋转,而轴可以在燃料分配轴之间产生高摩擦力 和周围的房屋。
    • 2. 发明授权
    • Lubrication oil controlled unit injector
    • 润滑油控制单元喷油器
    • US5335852A
    • 1994-08-09
    • US10313
    • 1993-01-28
    • George L. MunteanHarry L. WilsonGary L. Gant
    • George L. MunteanHarry L. WilsonGary L. Gant
    • F02M57/02F02M59/30F02M59/32F02M63/00F02M47/02
    • F02M63/0001F02M57/024F02M59/30F02M59/32
    • A unit fuel injector adapted for periodic injection of fuel into a combustion chamber of an engine at variable times from cycle to cycle under the control of the engine lubrication fluid is provided, comprising an injector body containing an injector cavity and a discharge orifice communicating with one end of the injector cavity to discharge fuel into the combustion chamber, a lubrication fluid timing circuit and a fuel metering circuit separate from the lubrication fluid timing circuit. A lubrication fluid link positioned in the lubrication fluid timing circuit within the injector cavity has a variable effective length which is varied by the operation of a control valve positioned within the lubrication timing circuit to vary the timing of injection. The control valve is operated to control the flow of lubrication fluid in the lubrication fluid timing circuit to control both the timing of injection and the metering of fuel on a cycle by cycle basis. The control valve is operable to be placed in a first position in which lubrication fluid may flow through the lubrication fluid timing circuit into the timing chamber and fuel flow from the fuel metering circuit into the metering chamber is shut off and a second position in which lubrication fluid flow into the timing chamber is shut off. Lubrication fluid is maintained at a higher pressure than the fuel pressure when the control valve is in the first position to stop the movement of a metering plunger to define the metered quantity of fuel thereby avoiding the need for a bias spring. By using lubrication fluid as timing fluid in a timing circuit separate from the fuel metering circuit, the amount of fuel required by the injector and the amount of heated fuel returned to the fuel supply tank is minimized.
    • 提供了一种单元燃料喷射器,其适于在发动机润滑流体的控制下,在循环到循环的可变时间周期性地将燃料喷射到发动机的燃烧室中,所述单元燃料喷射器包括喷射器主体,所述喷射器主体包含喷射器腔和与一个 喷射器腔的端部以将燃料排放到燃烧室中,润滑流体定时电路和与润滑流体定时电路分离的燃料计量电路。 位于喷射器腔内的润滑流体定时电路中的润滑流体连接件具有可变的有效长度,该有效长度通过位于润滑定时电路内的控制阀的操作而改变,以改变喷射时间。 控制阀被操作以控制润滑流体定时电路中的润滑流体的流动,以逐周期地控制喷射时间和燃料计量。 控制阀可操作以被放置在第一位置,在该第一位置,润滑流体可以通过润滑流体定时回路流入定时室,并且从燃料计量回路进入计量室的燃料流被切断,而第二位置中润滑 流入定时室的流体被切断。 当控制阀处于第一位置时,润滑流体被保持在比燃料压力更高的压力,以停止计量柱塞的运动以限定计量的燃料,从而避免了对偏置弹簧的需要。 通过使用润滑流体作为与燃料计量回路分开的定时回路中的定时流体,喷射器所需的燃料量和返回到燃料供应罐的加热燃料的量被最小化。
    • 4. 发明授权
    • Pilot valve controlled three-way fuel injection control valve assembly
    • 先导阀控制三通燃油喷射控制阀总成
    • US06199533B1
    • 2001-03-13
    • US09241081
    • 1999-02-01
    • Corydon Edward MorrisGary L. GantGeorge L. MunteanÁrpád M. PatakiBela Doszpoly
    • Corydon Edward MorrisGary L. GantGeorge L. MunteanÁrpád M. PatakiBela Doszpoly
    • F02B300
    • F02M59/46F02M59/466F02M63/0003F02M63/0005F02M63/0007F02M2200/04H01L21/2022H01L21/3221H01L21/3226Y10T137/86919
    • A three-way fuel injection control valve assembly is provided which includes a pilot valve for controlling the movement of a drain valve member and a separate supply valve member to minimize valve response time and transition flow losses. The solenoid operated two-way pilot valve controls the flow of fuel from a control volume formed adjacent the ends of the drain valve member and the supply valve member to begin and end an injection event. A transition flow loss limiting feature is provided which causes the drain valve member to close prior to the opening of the supply valve member and subsequently causes the supply valve member to close prior to the opening of the drain valve member during a given injection event thereby minimizing transition flow losses. The transition flow loss limiting feature includes sizing the cross sectional areas of the supply valve member and the drain valve member, sizing a bias plunger for biasing the drain valve member and sizing one or more bias springs so that no opening overlap occurs between the supply valve member and the drain valve member.
    • 提供一种三通燃料喷射控制阀组件,其包括用于控制排放阀构件和单独的供应阀构件的运动的先导阀,以最小化阀响应时间和过渡流量损失。 螺线管操作的双向先导阀控制从邻近排水阀构件和供给阀构件的端部形成的控制体积的燃料流开始和结束喷射事件。 提供了一种过渡流量损失限制特征,其使得排放阀构件在供给阀构件打开之前关闭,并且随后在给定的注射事件期间使供给阀构件在排水阀构件的打开之前关闭,从而最小化 过渡流量损失。 过渡流量损失限制特征包括确定供应阀构件和排水阀构件的横截面面积,调整偏压柱塞的尺寸以偏置排水阀构件并调整一个或多个偏压弹簧,使得在供给阀 构件和排水阀构件。
    • 6. 发明授权
    • Fuel injector
    • 喷油器
    • US4280659A
    • 1981-07-28
    • US59543
    • 1979-07-23
    • Stephen L. GaalGary L. GantGeorge L. MunteanNeville H. ReinersMichael H. Shea
    • Stephen L. GaalGary L. GantGeorge L. MunteanNeville H. ReinersMichael H. Shea
    • F02M57/02B05B9/00
    • F02M57/021
    • This disclosure relates to a unit-type fuel injector for an internal combustion engine such as a reciprocating piston internal combustion engine. The injector includes an injector body forming a plunger bore, and a plunger that reciprocates in the bore. A fuel supply passage and a drain passage are formed in the body, and a fuel injection chamber is formed at the lower end of the plunger bore. A feed hole connects the chamber with the supply passage, and a scavenge passage connects the supply and drain passages. During a retracted plunger, or fuel metering, portion of the injector cycle, the plunger opens the feed hole and closes the scavenge passage, and during a down plunger, or scavenging, portion of the injector cycle, the plunger closes the feed hole and opens the scavenge passage. An annular groove is formed between injector parts and surrounds the chamber, and the groove collects leakage. A restricted bleed hole connects the groove with the low pressure drain and removes the leakage. The feed hole is at an end of the supply passage, and the incoming fuel flows in a direct path through the supply passage and feed hole to the injection chamber.
    • 本公开涉及一种用于诸如往复活塞式内燃机的内燃机的单元型燃料喷射器。 喷射器包括形成柱塞孔的喷射器主体和在孔中往复运动的柱塞。 燃料供给通道和排放通道形成在主体中,并且燃料喷射室形成在柱塞孔的下端。 进料孔将该腔室与供给通道连接起来,并且一个清流通道连接供排通道。 在缩回柱塞或燃料计量期间,喷射器循环的一部分,柱塞打开进料孔并关闭清除通道,并且在喷射器循环的下降柱塞或清扫部分期间,柱塞关闭进料孔并打开 清扫通道。 在喷射器部件之间形成一个环形槽并围绕该腔室,并且凹槽收集泄漏。 限流排放孔将沟槽与低压排水管连接起来,消除泄漏。 进料孔位于供给通道的一端,进入的燃料直接通过供给通道和进料孔流到喷射室。
    • 7. 发明授权
    • Servo-controlled fuel injector with leakage limiting device
    • 带有泄漏限制装置的伺服控制燃油喷射器
    • US6109542A
    • 2000-08-29
    • US157389
    • 1998-09-21
    • Corydon E. MorrisGary L. GantGeorge L. Muntean
    • Corydon E. MorrisGary L. GantGeorge L. Muntean
    • F02M47/02
    • F02M47/027
    • A servo-controlled fuel injector is provided which includes a leakage limiting valve device for limiting the quantity of high pressure fuel available for leakage into the combustion chamber in the event the closed nozzle valve element fails to sealingly engage its seat between injection events. The servo-controlled fuel injector includes a control volume positioned adjacent an outer end of the nozzle valve element, a control volume charge circuit for supplying fuel to the control volume, a drain circuit for draining fuel from the control volume to a low pressure drain and an injection control valve positioned along the drain circuit for controlling the flow through the drain circuit so as to cause reciprocal movement of the nozzle valve element. The leakage limiting valve is integrated into the fuel injector body and positioned along a fuel transfer passage to block the flow of high pressure fuel to a nozzle cavity between injection events. The leakage limiting valve may be a cylindrical valve element positioned between the nozzle valve element and the injection control valve. Alternatively, the leakage limiting valve may be in the form of an annular valve sleeve slidably mounted on one end of the nozzle valve element so as to position the control volume immediately adjacent the injection control valve thereby minimizing the trapped volume and thus the valve response time.
    • 提供了一种伺服控制的燃料喷射器,其包括泄漏限制阀装置,用于在关闭喷嘴阀元件在喷射事件之间不能与其阀座密封接合的情况下,限制可用于泄漏到燃烧室中的高压燃料的量。 伺服控制的燃料喷射器包括邻近喷嘴阀元件的外端定位的控制体积,用于向控制体积供给燃料的控制体积充电电路,用于将燃料从控制容积排出到低压排水管的排水回路,以及 沿排水回路设置的喷射控制阀,用于控制通过排水回路的流动,从而引起喷嘴阀元件的往复运动。 泄漏限制阀被集成到燃料喷射器主体中并且沿着燃料传送通道定位,以阻止喷射事件之间的高压燃料流向喷嘴腔。 泄漏限制阀可以是位于喷嘴阀元件和喷射控制阀之间的圆柱形阀元件。 或者,泄漏限制阀可以是可滑动地安装在喷嘴阀元件的一端上的环形阀套的形式,以便将控制体积定位在紧邻喷射控制阀的位置,从而最小化被捕获的体积,从而使阀响应时间 。
    • 10. 发明授权
    • Fuel injection device for an internal combustion engine
    • 内燃机燃油喷射装置
    • US5333786A
    • 1994-08-02
    • US071514
    • 1993-06-03
    • Gary L. GantGeorge L. MunteanJeffrey C. Osborn
    • Gary L. GantGeorge L. MunteanJeffrey C. Osborn
    • F02M57/02F02M59/32F02M59/36F02M59/44F02M61/20F02M47/02
    • F02M59/366F02M57/024F02M59/32
    • A fuel injector for an internal combustion engine includes a main body including a timing bore, a timing plunger disposed in the timing bore, an electronically-operated solenoid valve assembled to the main body, a nozzle having a needle bore and an injection needle disposed in the needle bore which needle is operable under certain conditions to lift so as to initiate fuel injection. Disposed between the main body and the nozzle member is a one-piece adapter which is designed to include an axially-extending metering bore and a needle spring cavity. A metering plunger is disposed within the metering bore and a biasing spring is disposed within the needle spring cavity. At the base of the needle spring cavity is a button which serves as a direct abutment interface between the top of the needle and the bottom of tile biasing spring. The thickness of the button controls the preload on the spring and this is the force which must be overcome by fuel pressure present in the needle spring cavity in order to allow the needle to lift so as to create an injection opening between the needle and the tip of the nozzle for the fuel at high pressure to be injected.
    • 一种用于内燃机的燃料喷射器,包括主体,该主体包括定时孔,设在正时孔中的定时柱塞,组装在主体上的电子操作电磁阀,具有针孔的喷嘴和设置在其中的注射针 针孔在某些条件下可操作以提升以启动燃料喷射。 设置在主体和喷嘴构件之间的是一体式适配器,其被设计成包括轴向延伸的计量孔和针弹簧腔。 计量柱塞设置在计量孔内,偏置弹簧设置在针弹簧腔内。 在针簧弹簧腔的底部是一个按钮,其用作针的顶部和瓦片偏置弹簧的底部之间的直接邻接界面。 按钮的厚度控制弹簧上的预载荷,这是通过针弹簧腔中存在的燃料压力必须克服的力,以便允许针提升,从而在针和尖端之间产生注射开口 用于高压燃料喷嘴。