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    • 3. 发明申请
    • Asymmetrical Orifice for Bypass Control
    • 用于旁路控制的不对称孔
    • US20150198124A1
    • 2015-07-16
    • US14154946
    • 2014-01-14
    • Caterpillar, Inc.
    • David Elliot HackettScott ShaferMartin LehmanAlan Willard WellsLifeng Wang
    • F02M37/22F15D1/02
    • F02M37/22F02M19/025F02M37/0052F02M37/0058F15D1/025
    • An asymmetrical orifice for bypass control in a clean fuel module may include a body having first and second end surfaces and an inner surface defining a bore through the body extending from a first opening through the first end surface to a second opening through the second end surface. The first opening has a first opening inner diameter and the second opening has a second opening inner diameter that is less than the first opening inner diameter. The asymmetrical orifice also includes a flow control contour in the second end surface surrounding the second opening of the bore. The configuration may give the asymmetrical orifice a first discharge coefficient for fluid flowing from the first opening to the second opening that is greater than a second discharge coefficient for fluid flowing in a second direction from the second opening to the first opening
    • 用于在清洁燃料模块中旁路控制的不对称孔口可以包括具有第一和第二端面的主体和限定穿过主体的孔的内表面,该孔从第一开口穿过第一端面延伸穿过第二端表面的第二开口 。 第一开口具有第一开口内径,第二开口具有小于第一开口内径的第二开口内径。 不对称孔口还包括围绕孔的第二开口的第二端表面中的流动控制轮廓。 该配置可以使非对称孔口具有用于从第一开口到第二开口流动的流体的第一排放系数,该第一排放系数大于用于在从第二开口到第一开口的第二方向上流动的流体的第二排放系数
    • 8. 发明授权
    • Port injection system for gaseous fuels
    • US09797342B2
    • 2017-10-24
    • US14525810
    • 2014-10-28
    • CATERPILLAR INC.
    • Scott F. ShaferDennis Henderson GibsonLifeng WangAlan Ray Stockner
    • F02M21/02F02M51/06
    • F02M21/0233F02M21/0215F02M21/0242F02M21/0278Y02T10/32
    • A port injection system for gaseous fuels may include an injector body defining a hydraulic fluid inlet chamber, a hydraulic fluid exit passageway, a hydraulic fluid actuation passageway, a check valve inlet passageway fluidly connected with the hydraulic fluid actuation passageway, a valve chamber, and a gaseous fuel inlet chamber. An electrical solenoid actuator may be mounted to the injector body, with the electrical solenoid actuator including a movable armature, and a poppet valve connected to the movable armature and disposed within the valve chamber. The poppet valve may be movable between a pressurized hydraulic fluid flow blocking position and a pressurized hydraulic fluid flow passing position. A check valve may be disposed within the check valve inlet passageway. A gas admission valve may be disposed at least partially within the gaseous fuel inlet chamber and in contact with the check valve such that movement of the check valve by hydraulic fluid entering the check valve inlet passageway results in actuation of the gas admission valve away from a normally closed position closing off the gaseous fuel inlet chamber to a fuel injection position wherein gaseous fuel is allowed to flow from the gaseous fuel inlet chamber into an intake manifold or intake port of an engine on which the injector body is mounted.