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    • 2. 发明授权
    • Submerged motor and pump assembly
    • 潜水电机和泵组件
    • US07513755B2
    • 2009-04-07
    • US10883229
    • 2004-07-01
    • Penrod GeisingerMark C. JohnsonJason L. AddinkScott D. KlopfensteinGregory E. Young
    • Penrod GeisingerMark C. JohnsonJason L. AddinkScott D. KlopfensteinGregory E. Young
    • F04B17/03F01D25/24F03B11/08
    • F04D29/605F04D13/086F04D29/183
    • An in-line motor and pump assembly is supported at the bottom of a fuel storage tank by a pipe and an internal concentric conduit for housing electrical conductors extending therewithin to the motor. An impeller, coaxial with the rotor of the motor, draws the fuel into an annular passageway surrounding the stator of the motor. Further passageways convey the fuel to an annular passageway defined between the pipe and the conduit for discharge external of the storage tank. A low pressure environment attendant the inflow of the fuel is used to channel fuel for lubrication and cooling purposes to a lower journal bearing and thrust bearing supporting a common shaft for the impeller and the motor. A high pressure environment attendant outflow of fuel is used to channel fuel for lubrication and cooling purposes to a journal bearing supporting the upper end of the shaft.
    • 在线电机和泵组件通过管道和内部同心导管支撑在燃料储罐的底部,用于容纳在其中延伸到电动机的电导体。 与电动机的转子同轴的叶轮将燃料吸入围绕电动机定子的环形通道中。 另外的通道将燃料传送到限定在管道和管道之间的环形通道,用于在储罐外部排放。 用于燃料流入的低压环境用于将燃料用于润滑和冷却目的,以将下轴颈轴承和推力轴承支撑在叶轮和电动机的公共轴上。 燃料的高压环境伴随的流出被用于将燃料用于润滑和冷却目的,用于支撑轴的上端的轴颈轴承。
    • 6. 发明授权
    • Miniature turbomolecular pump
    • 微型涡轮分子泵
    • US06412173B1
    • 2002-07-02
    • US09626299
    • 2000-07-25
    • Mark C. JohnsonMichael R. McNameeJason L. Addink
    • Mark C. JohnsonMichael R. McNameeJason L. Addink
    • B23P1500
    • F04D19/042B23C3/32F04D29/324Y10T29/49325Y10T29/49336
    • The present invention provides a very compact, lightweight, turbomolecular pump for evacuating a chamber at volumetric flowrates of less than 10 liters per second. In one embodiment a turbomolecular pump is provided having a bladed rotor disposed within a housing, and mounted for rotation at one end on a passive magnetic main bearing and at the other end on a ball bearing. The pump is configured such that the magnetic bearing carries a majority of the rotor unbalance load. The rotor may be beneficially tapered from a larger diameter at the high vacuum end to a smaller diameter at the low vacuum end. The invention also provides a method of machining the blades of the rotor from a rotor blank using a single point tool in a two-step numerical control lathe operation. In another method of the invention, the rotor blades are individually cut using a high speed circular slitting saw by plunging the saw radially into the rotor blank.
    • 本发明提供了一种非常紧凑,重量轻的涡轮分子泵,用于以小于10升/秒的体积流量排空室。 在一个实施例中,提供了一种涡轮分子泵,其具有设置在壳体内的叶片转子,并且安装成一端在无源磁性主轴承上旋转,另一端安装在球轴承上。 泵构造成使得磁轴承承载转子不平衡载荷的大部分。 转子可以从高真空端的较大直径有利地变小到低真空端的较小直径。 本发明还提供了一种在两步数值控制车床操作中使用单点工具从转子坯件加工转子叶片的方法。 在本发明的另一种方法中,通过将锯径向插入转子坯件中,使用高速圆形切割锯单独切割转子叶片。
    • 7. 发明授权
    • Unitary sliding vane compressor-expander and electrical generation system
    • 单一滑动叶片压缩机 - 膨胀机和发电系统
    • US06589033B1
    • 2003-07-08
    • US09678368
    • 2000-09-29
    • Mark C. JohnsonEric R. MillerJason L. AddinkJorge L. RosalesBradley B. Rogers
    • Mark C. JohnsonEric R. MillerJason L. AddinkJorge L. RosalesBradley B. Rogers
    • F04C1100
    • F04C18/3446F01C11/004F04C23/00F04C23/003F04C25/00
    • The present invention provides a unitary sliding-vane type compressor-expander comprising a housing with a compressor inlet and outlet, and an expander inlet and outlet. A single rotor is disposed therein defining in cooperation with the housing a compression chamber on one side and an expansion chamber on the opposite side. The rotor includes a plurality of regularly spaced vanes slidingly disposed in slots about the periphery of the rotor. The bottoms of the vane slots may be vented through a passage in the housing to the inlet air, or alternatively through a groove between the vane and vane slot to the compression or exhaust chambers. Permanent magnets are used in the vanes and housing to increase or decrease the contact force between the vane tip and housing. An integral condenser-humidifier is provided in the path of the expanded gas exhausting from the turbine outlet for condensing water out of the expanded gas and returning the condensed water to the compressor-expander. The integral condenser may comprise a substantially vertically oriented spout or an internal chamber. In another embodiment of the invention an electrical generation system is provided comprising a unitary sliding vane type compressor-expander in combination with a fuel cell. The compressor portion of the compressor-expander provides compressed air to an oxidant inlet of the fuel cell, and the spent oxidant exhaust from the fuel cell is expanded through the expander portion of the compressor-expander.
    • 本发明提供一种整体式滑动叶片式压缩机膨胀机,其包括具有压缩机入口和出口的壳体和膨胀器入口和出口。 单个转子设置在其中,其与壳体协作地限定在一侧的压缩室和相对侧上的膨胀室。 转子包括多个规则间隔的叶片,其滑动地设置在围绕转子周边的槽中。 叶片槽的底部可以通过壳体中的通道排放到入口空气,或者可选地通过叶片和叶片槽之间的凹槽到达压缩室或排气室。 在叶片和壳体中使用永磁体来增加或减小叶片尖端和壳体之间的接触力。 在从涡轮出口排出的膨胀气体的路径中设置一体的冷凝器 - 加湿器,用于将水从膨胀气体中冷凝并将冷凝水返回到压缩机 - 膨胀机。 整体式冷凝器可以包括基本上垂直定向的喷口或内部室。 在本发明的另一个实施例中,提供了一种发电系统,其包括与燃料电池组合的单一滑动叶片式压缩机 - 膨胀机。 压缩机 - 膨胀器的压缩机部分向燃料电池的氧化剂入口提供压缩空气,并且来自燃料电池的废氧化剂排气通过压缩机 - 膨胀机的膨胀器部分膨胀。