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    • 2. 发明申请
    • Debris evacuation apparatus and method for an oil pump
    • 油泵排气装置及方法
    • US20050025644A1
    • 2005-02-03
    • US10632201
    • 2003-07-30
    • Michael Ford
    • Michael Ford
    • F04B47/00F04B39/00
    • F04B47/005
    • A debris evacuation apparatus and method evacuates debris in a pumping system that forms between the plunger exterior and barrel interior. The apparatus has at least one seal and one groove located south of the seal, with the seal blocking northward travel of debris and directing it to the groove. Ports within the groove permit debris to enter the debris evacuation apparatus. Interior to the debris evacuation apparatus, the entering debris will become mixed with pumped fluid, and will be drawn out of the pumping system with the pumped fluid. The pumped fluid passing through the debris evacuation apparatus will be caused to rotate by a screw-in insert located at a south portion of the debris evacuation apparatus, utilizing a plurality of angled veins surrounding a closed center section located at a north end of the screw-in insert.
    • 碎片排泄装置和方法在抽吸系统中排出碎屑,其形成在柱塞外部和桶内部之间。 该装置具有位于密封件南部的至少一个密封件和一个凹槽,密封件阻挡了碎屑向北移动并将其引导到凹槽。 凹槽内的孔允许碎片进入碎片排泄装置。 在碎片排泄装置的内部,进入的碎屑将与泵送的流体混合,并且将被泵送的液体从泵送系统中抽出。 穿过碎片排泄装置的泵送流体将通过位于碎片排泄装置的南部的螺旋插入件旋转,利用围绕位于螺钉的北端的封闭中心部分的多个倾斜静脉 - 插入。
    • 3. 发明申请
    • Shock absorbing and shock force generating apparatus and method for an oil pump
    • 用于油泵的减震和冲击力产生装置和方法
    • US20050023739A1
    • 2005-02-03
    • US10630158
    • 2003-07-30
    • Michael Ford
    • Michael Ford
    • E21B17/07E21B31/107E21B43/12F04B47/02F16F9/16F16F9/18
    • F16F9/16E21B17/07E21B31/107E21B43/127F04B47/026
    • A shock absorbing apparatus and method includes a shaft travelling north and south within a tube. The tube is positioned south of a sucker rod. The shaft has a piston head coupled at a south end thereof, which piston head is received in an area of reduced diameter with the shaft. North pores and south pores permit the movement of fluid into and out of the interior of the tube, in response to the northward/southward movement of the piston head. Fluid entering through the pores provides a shock absorbing effect on both the upstroke and the downstroke. The shock absorbing effect on the upstroke can be rapidly eliminated and an upward shock force generated, through the shearing of a shear pin that maintains a bushing in position on the shaft, restricting northward travel of the piston head.
    • 一种冲击吸收装置和方法,包括在管内向北和南行的轴。 管位于抽油杆的南侧。 轴具有在其南端连接的活塞头,该活塞头被容纳在与轴直径减小的区域中。 响应于活塞头的向北/向南运动,北孔和南孔允许流体进入和离开管的内部。 通过毛孔进入的流体对上冲程和下冲程都有缓冲作用。 可以快速消除对上行程的冲击吸收作用,并且通过剪切保持衬套在轴上的位置的剪切销产生向上的冲击力,限制活塞头的向北行进。
    • 6. 发明申请
    • Cyclonic debris removal device and method for a pumping apparatus
    • 用于抽油机的旋风除尘装置及方法
    • US20060083646A1
    • 2006-04-20
    • US10966783
    • 2004-10-15
    • Michael Ford
    • Michael Ford
    • F04B39/10F04B53/00
    • F04B53/20
    • A pumping apparatus and method incorporates at least one and preferably as many as four components that are configured to improve debris removal capabilities as compared to prior art apparatuses. The apparatus and method impart cyclonic motion to pumped fluid, in a manner that tends to separate entrained solids and other impurities, and further that helps draw solid impurities away from the pump barrel. In a preferred embodiment, a cyclonic effect first occurs in a seat plug having a funnel-shaped accumulator region leading to an interior passage therethrough, and at least one off-center opening extending from the interior passage to the exterior of the plug. In one embodiment, that effect is continued at a plunger adapter that has a plurality of inward-angled rings, and that also features off-center openings through which debris may pass to the interior of the plunger adapter. A top plunger adapter may also be provided, having angled veins and openings therethrough to impart cyclonic motion to the pumped fluid as it exits the interior of the top plunger adapter. Finally, it may also be desired to provide a cage having angled veins, to continue the cyclonic effect on the fluid as it travels northward and into the pump barrel.
    • 泵送装置和方法包括至少一个并且优选多达四个组件,其被配置为与现有技术装置相比提高碎屑去除能力。 该装置和方法以倾向于分离夹带的固体和其它杂质的方式赋予泵送流体气旋运动,并且还有助于将固体杂质从泵筒中抽出。 在优选实施例中,气旋效应首先发生在具有通向其中的内部通道的漏斗形蓄电池区域的座椅插头中,以及从内部通道延伸到插头外部的至少一个偏心开口。 在一个实施例中,该效果在具有多个向内成角度的环的柱塞适配器处继续,并且还具有偏心开口,碎屑可穿过该开口穿过柱塞适配器的内部。 还可以提供顶部柱塞适配器,其具有成角度的静脉和穿过其中的开口,以在泵送流体离开顶部柱塞适配器的内部时将旋风运动提供给泵送的流体。 最后,也可能希望提供具有斜静脉的保持架,以在流体向北移动并进入泵筒时继续对流体的气旋作用。
    • 9. 发明申请
    • Debris evacuation apparatus and method for an oil pump
    • 油泵排气装置及方法
    • US20050025645A1
    • 2005-02-03
    • US10862757
    • 2004-06-07
    • Michael Ford
    • Michael Ford
    • F04B47/00
    • F04B47/005
    • A debris evacuation apparatus and method evacuates debris in a pumping system that forms between the plunger exterior and barrel interior. The apparatus has at least one seal and one groove located south of the seal, with the seal blocking northward travel of debris and directing it to the groove. Ports within the groove permit debris to enter the debris evacuation apparatus. Interior to the debris evacuation apparatus, the entering debris will become mixed with pumped fluid, and will be drawn out of the pumping system with the pumped fluid. The pumped fluid passing through the debris evacuation apparatus will be caused to rotate by an interior section located at a south portion of the debris evacuation apparatus, utilizing a plurality of angled veins surrounding a closed center section located at a north end of the interior section.
    • 碎片排泄装置和方法在抽吸系统中排出碎屑,其形成在柱塞外部和桶内部之间。 该装置具有位于密封件南部的至少一个密封件和一个凹槽,密封件阻挡了碎屑向北移动并将其引导到凹槽。 凹槽内的孔允许碎片进入碎片排泄装置。 在碎片排泄装置的内部,进入的碎屑将与泵送的流体混合,并且将与泵送的流体一起从泵送系统中抽出。 穿过碎片排泄装置的泵送流体将被位于碎片排泄装置的南部的内部部分旋转,利用围绕位于内部部分的北端的封闭中心部分的多个倾斜静脉。