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    • 21. 发明授权
    • Fuel rail vent system
    • 燃油轨道排气系统
    • US08042522B2
    • 2011-10-25
    • US12478980
    • 2009-06-05
    • Kyle AchorMichael RichardsRichard Harvey
    • Kyle AchorMichael RichardsRichard Harvey
    • F02M37/20F02M37/22
    • F02M37/16F02B61/045F02M37/007F02M37/20F02M55/002F02M55/007
    • A fuel rail vent system for evacuating air from a fuel rail includes a first fuel reservoir and a first fuel line extending between the first fuel reservoir and the fuel rail. A fuel pump is configured in fluid communication with the first fuel reservoir to pump liquid fuel from the first fuel reservoir to the fuel rail through the first fuel line. A second fuel line separate from the first fuel line extends between the first fuel reservoir and the fuel rail. A primer system is configured for fluid communication with the first fuel reservoir to pump liquid fuel from the first fuel reservoir to the fuel rail through the second fuel line. A second fuel reservoir separate from the first fuel reservoir is configured for fluid communication with the fuel rail downstream of the fuel rail to receive any excess liquid fuel and/or fuel vapor upstream therefrom.
    • 用于从燃料轨道排空空气的燃料轨道排气系统包括第一燃料储存器和在第一燃料储存器和燃料轨道之间延伸的第一燃料管线。 燃料泵构造成与第一燃料储存器流体连通,以将液体燃料从第一燃料储存器通过第一燃料管线泵送到燃料轨道。 与第一燃料管线分离的第二燃料管路在第一燃料储存器和燃料轨道之间延伸。 底漆系统被配置为与第一燃料储存器流体连通,以将来自第一燃料储存器的液体燃料通过第二燃料管线输送到燃料轨道。 与第一燃料储存器分离的第二燃料储存器被配置为与燃料轨道下游的燃料轨道流体连通,以在其上游接收任何多余的液体燃料和/或燃料蒸汽。
    • 23. 发明授权
    • Creping foil for redirecting dust
    • 起皱箔用于重定向灰尘
    • US07718037B2
    • 2010-05-18
    • US11789825
    • 2007-04-26
    • Richard Harvey ConnDonald Wilson Adams, Jr.Mitchell Alan Malcolm
    • Richard Harvey ConnDonald Wilson Adams, Jr.Mitchell Alan Malcolm
    • B31F1/12
    • D21G3/00
    • A creping foil having a machine direction, cross machine direction, and Z-direction normal to a plane formed by machine direction and cross machine directions. The creping foil also has a front face, back face, and bottom side. The front face has one or more top conduits with one or more upper pipes integrally mounted therein. The one or more upper pipes are rotatable about an axis in the cross machine direction and have one or more upper diameter holes. The bottom side has one or more bottom conduits with one or more lower pipes integrally mounted therein. The one or more lower pipes are rotatable about an axis in the cross machine direction and have one or more lower diameter holes.
    • 具有与由机器方向和横向机械方向形成的平面垂直的机器方向,横向和Z方向的起皱箔。 起皱箔还具有前表面,背面和底面。 前表面具有一个或多个顶部导管,其中一个或多个上管整体地安装在其中。 一个或多个上管可以在横向方向上绕轴线旋转并且具有一个或多个上直径孔。 底侧具有一个或多个底部导管,其中一个或多个下部管整体地安装在其中。 一个或多个下管可以在横向上沿轴线旋转并且具有一个或多个下直径的孔。
    • 24. 发明申请
    • VAPOR VENT CONTROL APPARATUS, SYSTEM AND OUTBOARD MARINE ENGINE THEREWITH
    • 蒸汽风门控制装置,系统和外部船用发动机
    • US20100102257A1
    • 2010-04-29
    • US12604538
    • 2009-10-23
    • Kyle D. AchorRichard Harvey
    • Kyle D. AchorRichard Harvey
    • F16K31/08F01L3/10F16K31/44
    • F16K31/084F02M25/0836F16K1/308F16K24/04Y10T137/86324
    • An outboard marine engine has vapor vent control apparatus including a fuel inlet in fluid communication with a fuel reservoir of the engine. The fuel inlet is operably attachable to a fuel pin of a fuel connector. When attached, liquid fuel flows to the fuel reservoir and when detached, liquid fuel flow out of the fuel inlet is prevented. A vapor vent passage is configured in fluid communication with the liquid fuel reservoir and an air intake of the engine. A vent pin is disposed in the vapor vent passage. The vent pin moves between a first position upon attaching the fuel connector to the fuel inlet and a second position upon detaching the fuel connector from the fuel inlet. In the first position, the vapor vent passage is open to fuel vapor flow and, when in the second position, the vapor vent passage is closed to fuel vapor flow.
    • 舷外船用发动机具有蒸气排放控制装置,其包括与发动机的燃料箱流体连通的燃料入口。 燃料入口可操作地附接到燃料连接器的燃料销。 当附接时,液体燃料流到燃料储存器,并且当分离时,液体燃料流出燃料入口被阻止。 蒸汽通气通道构造成与液体燃料储存器和发动机的进气口流体连通。 排气口设置在蒸气通道中。 当将燃料连接器附接到燃料入口时,排气销在第一位置之间移动,并且在将燃料连接器从燃料入口拆卸时,第二位置移动。 在第一位置,蒸汽通气通道对燃料蒸汽流开放,并且当处于第二位置时,蒸汽通气通道关闭以燃料蒸气流动。
    • 25. 发明申请
    • Creping blade with a highly smooth bevel surface
    • 起皱叶片具有高度平滑的斜面
    • US20080023168A1
    • 2008-01-31
    • US11493263
    • 2006-07-26
    • Richard Harvey ConnRobert Charles Dreisig
    • Richard Harvey ConnRobert Charles Dreisig
    • D21G3/00
    • D21G3/005B31F1/145D21G3/04
    • The present invention relates to a doctor blade comprising: a body having a thickness, a sharp leading side, a trailing side, and working end comprising a bevel surface, wherein the bevel surface is defined by a leading edge and a trailing edge, and wherein the Ra of the bevel surface is from about 1 μ-in to about 7 μ-in. The present invention further relates to a method of removing a material from a surface of a piece of equipment, the method comprising providing a material on the surface of the piece of equipment; providing a doctor blade adjacent to the surface of the equipment, the creping blade having a working end including a leading edge, which is disposed closest to the surface of the equipment, a trailing edge disposed farthest from the surface of the equipment and a bevel surface disposed therebetween; passing the surface of the equipment past the doctor blade or the doctor blade past the surface of the equipment such that the material impacts the doctor blade and at least a portion of the material is removed from the surface of the piece of equipment; and passing the removed material over the bevel surface of the doctor blade wherein the Ra of the bevel surface is from about 1 to about 7 μ-in.
    • 本发明涉及一种刮刀,包括:具有厚度,尖锐的前侧,后侧和包括斜面的工作端的主体,其中所述斜面由前缘和后缘限定,并且其中 斜面的R a a a为约1μ-1至约7μ-in。 本发明还涉及从一件设备的表面去除材料的方法,所述方法包括在所述设备的表面上提供材料; 提供邻近设备表面的刮刀,起皱刀片具有包括最靠近设备表面设置的前缘的工作端,设置在离设备表面最远处的后缘和斜面 设置在其间; 使设备的表面通过刮刀或刮刀穿过设备的表面,使得材料撞击刮刀并且材料的至少一部分从设备的表面移除; 并将去除的材料穿过刮刀的斜面上,其中斜面的R a 1为约1至约7微米。
    • 28. 发明授权
    • Large particulate removal system
    • 大颗粒去除系统
    • US07025140B2
    • 2006-04-11
    • US10870364
    • 2004-06-17
    • Richard Harvey McGee
    • Richard Harvey McGee
    • E21B21/01E21B21/06E21B43/00B01D21/02
    • E21B43/34B01D21/2483B01D21/34B01D2221/04E21B21/065
    • A choke for removing large diameter particulate matter from an oil or natural gas well includes a housing having a chamber with an integral solids receptacle. The chamber is in communication with a flow stream outlet and a flow stream inlet. The flow stream inlet is located below the flow stream outlet. The flow stream inlet directly adjoins the integral solids receptacle in the chamber. The choke includes a solids removal outlet located below the flow stream inlet in communication with the chamber for flowing particulate from the chamber when actuated by a user. The choke includes a needle disposed in a bonnet connected to the chamber above the flow stream inlet for controlling the flow stream from the flow stream inlet to the flow stream outlet by engaging a choke face of a seat with the needle.
    • 用于从油或天然气井中去除大直径颗粒物的扼流圈包括具有具有整体固体容器的室的壳体。 该室与流动流出口和流动流入口连通。 流动流入口位于流动出口下方。 流动流入口直接邻接室中的整体固体容器。 扼流器包括位于流动入口下方的固体除去出口,与室连通,用于当由使用者致动时将颗粒从室中流出。 扼流器包括设置在发动机盖上的针,该发动机罩连接到流动入口上方的腔室,用于通过将座椅的扼流圈与针接合来控制从流动流入口到流动出口的流动流。
    • 30. 发明授权
    • High pressure solid removal system
    • 高压固体清除系统
    • US06893558B1
    • 2005-05-17
    • US10345520
    • 2003-01-16
    • Richard Harvey McGeeYong Fu WangGarry Thomas Hill
    • Richard Harvey McGeeYong Fu WangGarry Thomas Hill
    • B01D21/26E21B43/34E21B21/06
    • E21B43/34B01D21/265B01D2221/04
    • The invention is a high pressure trap for removing particles from a flow stream of a high pressure well that maintains the full pressure of the high pressure well, wherein the trap has an inlet port connected to a Christmas tree, a chamber with a top flange, a bottom flange, and a side wall connecting the top flange and the bottom flange in fluid communication with a choke manifold, a dump outlet in communication with the bottom reservoir and connected to the bottom flange, a dump outlet controller for opening and closing the dump outlet, and a tube disposed between the bottom reservoir and the side outlet, wherein the tube is mounted within the chamber to the top flange without contacting the side wall, thereby the velocity of the flow stream is changed as the flow stream is passed from the tube into the chamber.
    • 本发明是用于从高压井的流动流中除去颗粒的高压阱,其保持高压井的全压力,其中捕集器具有连接到圣诞树的入口端口,具有顶部凸缘的室, 底部凸缘和连接顶部凸缘和底部凸缘的侧壁与阻塞歧管流体连通,与底部储存器连通并连接到底部凸缘的倾卸出口,用于打开和关闭倾卸物的倾卸出口控制器 出口和设置在底部储存器和侧面出口之间的管,其中,管被安装在室内到顶部凸缘而不与侧壁接触,由此流动流的速度随着流动流从 管入室。