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    • 6. 发明授权
    • Hero-turbine centrifuge with flow-isolated collection chamber
    • 英制涡轮离心机带流量隔离收集室
    • US07377893B2
    • 2008-05-27
    • US11113740
    • 2005-04-25
    • Peter K. HermanHendrik N. Amirkhanian
    • Peter K. HermanHendrik N. Amirkhanian
    • B04B9/06
    • B04B5/005B04B1/08
    • A centrifuge for the separation of particulate matter from a volume of fluid includes an outer housing, a rotational member extending through the outer housing, and a rotor assembled onto the rotational member for rotation relative to the rotational member and relative to the housing. The centrifuge is constructed and arranged to enable self-driven rotation by the exit flow of fluid through jet nozzle openings defined by the rotor. The rotational member includes a fluid passageway and an exit opening for delivering fluid to the rotor. The rotor includes a divider plate that separates the interior of the rotor into a collection chamber and a separate jet zone. The collection chamber has a single fluid entry location defined by the divider plate for processing a single batch of fluid at a time.
    • 用于从一定体积流体分离颗粒物质的离心机包括外壳体,延伸穿过外壳体的旋转构件和组装到旋转构件上的转子,用于相对于旋转构件和相对于壳体旋转。 离心机被构造和布置成使得能够通过流体通过由转子限定的喷嘴开口的出口流自动旋转。 旋转构件包括流体通道和用于将流体输送到转子的出口。 转子包括分隔板,其将转子的内部分离成收集室和单独的喷射区域。 收集室具有由分隔板限定的单个流体入口位置,用于一次处理单批流体。
    • 7. 发明授权
    • Internal seal for a disposable centrifuge
    • 一次性离心机的内部密封
    • US06793615B2
    • 2004-09-21
    • US10084039
    • 2002-02-27
    • Kevin C. SouthPeter K. HermanHendrik N. AmirkhanianIsmail C. Bagci
    • Kevin C. SouthPeter K. HermanHendrik N. AmirkhanianIsmail C. Bagci
    • B04B906
    • B04B7/08B04B5/005
    • A fluid separation centrifuge for the separation of particulate matter from a flow of oil is designed with a disposable rotor assembly including a molded plastic rotor housing and a fluid separation device positioned within the rotor housing. Included as part of the fluid separation device is a unitary, molded plastic base plate which is designed and arranged with a peripheral lip formed with a channel portion therein. In a cooperating manner, the rotor housing is constructed and arranged with a molded plastic, generally cylindrical projection which is designed and arranged to receive the channel portion so as to create a fluid-tight, sealed interface at the location of contact between the projection and the channel portion.
    • 用于将颗粒物质与油流分离的流体分离离心机设计有一次性转子组件,其包括模制塑料转子壳体和定位在转子壳体内的流体分离装置。 包括作为流体分离装置的一部分的是一体的模制塑料底板,其设计和布置有在其中形成有通道部分的外围唇缘。 以协作的方式,转子壳体被构造和布置成具有模制的塑料,大体上为圆柱形的突起,其被设计和布置成接收通道部分,以便在突出部和突出部之间的接触位置处产生流体密封的密封界面 通道部分。
    • 10. 发明授权
    • Air-assisted drain with pressure cutoff valve
    • 带压力截止阀的空气辅助排水管
    • US06599229B1
    • 2003-07-29
    • US10083972
    • 2002-02-27
    • Kevin C. SouthPeter K. HermanHendrik N. Amirkhanian
    • Kevin C. SouthPeter K. HermanHendrik N. Amirkhanian
    • B04B906
    • B04B7/02B04B5/005B04B11/04F01M2001/1035
    • A centrifuge assembly for processing a flow of oil so as to separate out particulate matter includes a centrifuge, a housing base, and a flow-control piston which is assembled into the housing base. The centrifuge includes a housing which defines a hollow interior with a centrifugal separator positioned within the hollow interior for separation of particulate matter from the flow of oil. The housing base defines an incoming oil conduit, a drain conduit, an air-in passageway, and air-out passageway. The flow-control piston is movable between a normally-closed position and an open position in response to incoming oil pressure. When in the closed position, neither oil nor air are able to flow into the centrifuge assembly. In the open position, both oil and air are able to flow into the centrifuge assembly. The air which is introduced is under pressure and provides air-assisted drainage of the oil from the centrifuge housing back to sump.
    • 用于处理油流以分离颗粒物质的离心机组件包括离心机,壳体基座和组装到壳体基座中的流量控制活塞。 离心机包括壳体,其限定中空内部,其中设置有位于中空内部的离心分离器,用于将颗粒物质与油流分离。 壳体基座限定了进入的油管道,排水管道,进气通道和排出通道。 流量控制活塞响应于进入的油压而在常闭位置和打开位置之间移动。 当处于关闭位置时,油和空气都不能流入离心机组件。 在打开位置,油和空气均能流入离心机组件。 引入的空气处于压力下,并将油从离心机外壳空气辅助排放回到储槽。