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    • 1. 发明授权
    • Oiling system
    • US06390033B1
    • 2002-05-21
    • US09432533
    • 1999-11-03
    • David J. HartkeRichard P. Kolb
    • David J. HartkeRichard P. Kolb
    • F01M116
    • F01M3/02F01M5/001F02B33/04F02B61/045
    • The present invention, in one form, is an oiling system for an outboard engine and includes an oil tank and an oil pump located within the tank. A manifold is coupled to the oil pump, and the manifold includes a solenoid controlled valve. The solenoid controlled valve controls the flow of oil through the manifold. The manifold further includes a plurality of check valves in flow communication with the solenoid controlled valve. The check valves are in flow communication between the solenoid controlled valve and the engine cylinders. The oil system, in the one embodiment, further includes a pressure regulator in flow communication with, and downstream from, the manifold. An outlet of the pressure regulator in flow communication with the oil tank, and allows oil to flow from the manifold to the tank when pressure in the system exceeds a preselected pressure. The oil system also includes a fuel solenoid controlled valve coupled to receive oil from the manifold and to supply oil to the engine fuel system. The engine includes an electronic control unit (ECU) for controlling the manifold solenoid and the fuel solenoid. In one embodiment, the ECU controls opening of the manifold solenoid valve and the fuel solenoid valve based on engine revolutions per minute.
    • 4. 发明授权
    • Oiling system
    • 油气系统
    • US06477992B2
    • 2002-11-12
    • US10002380
    • 2001-10-20
    • David J. HartkeRichard P. Kolb
    • David J. HartkeRichard P. Kolb
    • F02B3304
    • F01M3/02F01M5/001F02B33/04F02B61/045
    • The present invention, in one form, is an oiling system for an outboard engine and includes an oil tank and an oil pump located within the tank. A manifold is coupled to the oil pump, and the manifold includes a solenoid controlled valve. The solenoid controlled valve controls the flow of oil through the manifold. The manifold further includes a plurality of check valves in flow communication with the solenoid controlled valve. The check valves are in flow communication between the solenoid controlled valve and the engine cylinders. The oil system, in the one embodiment, further includes a pressure regulator in flow communication with, and downstream from, the manifold. An outlet of the pressure regulator in flow communication with the oil tank, and allows oil to flow from the manifold to the tank when pressure in the system exceeds a preselected pressure. The oil system also includes a fuel solenoid controlled valve coupled to receive oil from the manifold and to supply oil to the engine fuel system. The engine includes an electronic control unit (ECU) for controlling the manifold solenoid and the fuel solenoid. In one embodiment, the ECU controls opening of the manifold solenoid valve and the fuel solenoid valve based on engine revolutions per minute.
    • 本发明以一种形式是用于舷外发动机的上油系统,并且包括位于罐内的油箱和油泵。 歧管联接到油泵,并且歧管包括电磁控制阀。 电磁阀控制通过歧管的油流。 歧管还包括与螺线管控制的阀流动连通的多个止回阀。 止回阀在电磁阀和发动机气缸之间处于流动连通状态。 在一个实施例中,油系统还包括与歧管流动连通并且在歧管下游的压力调节器。 与油箱流动连通的压力调节器的出口,并且当系统中的压力超过预选压力时允许油从歧管流到油箱。 油系统还包括燃料电磁控制阀,其连接以从歧管接收油并向发动机燃料系统供油。 发动机包括用于控制歧管螺线管和燃料螺线管的电子控制单元(ECU)。 在一个实施例中,ECU基于每分钟的发动机转数来控制歧管电磁阀和燃料电磁阀的打开。
    • 5. 发明授权
    • Engine oiling system and an oil system distribution manifold, and method of use
    • 发动机上油系统和油分配歧管及其使用方法
    • US06644250B1
    • 2003-11-11
    • US09670730
    • 2000-09-27
    • James C. KantolaRichard P. KolbDavid J. Hartke
    • James C. KantolaRichard P. KolbDavid J. Hartke
    • F02B3304
    • F01M3/02F01M1/08F01M2001/083
    • The present invention includes a distribution manifold for evenly distributing engine oil to the cylinders of an internal combustion engine, as well as, directing oil and purging any air accompanying the oil through the fuel system of an internal combustion engine. The manifold includes a plurality of cylinder oiling outlet housings, each having a number of cylinder oiling valves corresponding to the number of cylinders in an internal combustion engine. The distribution manifold has a centrally-located dome in fluid communication with the cylinder oiling outlet housings. Extending from the apex of the dome is a fuel system outlet housing also having an oiling valve to regulate the flow of oil to the fuel system. A notch extends along the upper interior surface of the centrally-located dome in fluid communication with the fuel system outlet housing. The notch is positioned so that air that rises to the top of the centrally-located dome can be purged through the fuel system oiling outlet valve to a fuel separator in the fuel system of the internal combustion engine.
    • 本发明包括用于将发动机油均匀地分配到内燃机的气缸的分配歧管,以及引导油和通过内燃机的燃料系统吹送伴随油的任何空气。 歧管包括多个汽缸上油出口壳体,每个汽缸上油出口壳体具有与内燃机中的气缸数相对应的多个汽缸上油阀。 分配歧管具有中心定位的圆顶与气缸上油出口壳体流体连通。 从圆顶的顶点延伸的是燃料系统出口壳体,其还具有用于调节到燃料系统的油流的上油阀。 凹口沿着位于中心的圆顶的上内表面延伸,与燃料系统出口壳体流体连通。 凹口定位成使得能够通过燃料系统上油出口阀将上升到位于中心的圆顶顶部的空气吹扫到内燃机的燃料系统中的燃料分离器。
    • 7. 发明授权
    • Oil system vent with remote oil reservoir
    • 油系统通风口与遥控油箱
    • US06416373B1
    • 2002-07-09
    • US09689456
    • 2000-10-12
    • Richard P. KolbDavid J. Hartke
    • Richard P. KolbDavid J. Hartke
    • B63H2110
    • F01M3/02B63H20/002
    • The invention includes an oil system vent that is remote from an oil reservoir so that the oil reservoir can be stored in the bilge section of a boat. The oil reservoir has an oil supply outlet and an oil supply return. The oil reservoir is constructed without a ventilation means attached thereto. The oil system vent includes an oil return port having an oil input and an oil output. The oil input receives pressurized lubricant and the oil output returns the pressurized lubricant to the oil supply return of the oil reservoir. The oil return port has a vent port in communication with atmospheric pressure so that when lubricant is drawn and used from the oil reservoir, the vent port allows air to displace the used lubricant in the oil reservoir. The oil reservoir is positioned at a relatively low elevation, in the bilge section of the boat, and the vent port is positioned at a relatively high elevation with respect to the outboard motor.
    • 本发明包括一个远离油层的油系排气口,使得储油室可以储存在船的舱底部分。 油库有一个供油口和一个供油回路。 油库被构造成没有附接到其上的通风装置。 油系统通风口包括具有油输入和油输出的回油口。 油输入接受加压润滑剂,油输出将加压润滑剂返回到油层的供油回路。 回油口具有与大气压力连通的排气口,使得当润滑剂从储油器抽出和使用时,排气口允许空气使储油器中使用的润滑剂移位。 储油器位于船的舱底部分相对较低的高度处,并且排气口相对于舷外马达位于相对较高的高度。
    • 10. 发明授权
    • Engine oiling distribution system for purging air and method of use
    • 用于吹扫空气的发动机注油分配系统和使用方法
    • US06435146B1
    • 2002-08-20
    • US09694186
    • 2000-10-23
    • James C. KantolaRichard P. KolbDavid J. Hartke
    • James C. KantolaRichard P. KolbDavid J. Hartke
    • F02B3304
    • F01M3/02
    • The present invention includes an oiling distribution system having an oil distribution manifold for evenly distributing engine oil to the cylinders of an internal combustion engine and an adapter base for coupling to the oil distribution manifold having therein an air purging passage for purging any air accompanying the oil exiting an oil pumping system. The air purging passage discharges air to the oil distribution manifold wherein the air is transported to the fuel system of an internal combustion engine through a fuel system oiling outlet. The air purging passage has an air inlet and air outlet that are sufficient size to allow the transport of air but minimize the flow of oil through the air purging passage. The present invention also provides a method for purging air from an oiling system.
    • 本发明包括一种油分配系统,其具有用于将发动机油均匀地分配到内燃机的气缸的油分配歧管和用于联接到分配歧管的适配器基座,其中具有用于吹扫伴随油的任何空气的空气吹扫通道 离开抽油系统。 空气净化通道将空气排放到分配歧管,其中空气通过燃料系统上油出口输送到内燃机的燃料系统。 空气净化通道具有足够的尺寸的空气入口和空气出口,以允许空气的输送,但是使通过空气净化通道的油流量最小化。 本发明还提供一种从上油系统吹扫空气的方法。