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    • 2. 发明申请
    • Magnetically driven valveless piston pumps
    • 无磁驱动无阀活塞泵
    • US20070237658A1
    • 2007-10-11
    • US11400168
    • 2006-04-06
    • Stephen BurnsJeffrey BartonCharles Carr
    • Stephen BurnsJeffrey BartonCharles Carr
    • F04B35/04F04B17/04
    • F04B7/06F04B17/042
    • Valveless piston pumps are disclosed that are magnetically driven, thereby eliminating a troublesome dynamic seal used on conventional valveless piston pumps. An exemplary embodiment includes a housing defining a bore having a bore axis. A piston is situated in the bore so as to be movable in the bore in a reciprocating manner along the bore axis and in a rotational manner about the bore axis. A magnet is situated in the bore and is coupled to the piston. The magnet is engageable magnetically with a magnet-driving device configured to cause the magnet, and thus the piston, to move in the reciprocating manner and in the rotational manner. An exemplary magnet-driving device is a stator assembly.
    • 公开了无磁性活塞泵,其被磁驱动,从而消除了用于常规无阀活塞泵的麻烦的动态密封。 示例性实施例包括限定具有孔轴线的孔的壳体。 活塞位于孔中,以便能够沿着孔轴向往复运动的方式在孔中以关于孔轴线的旋转方式移动。 磁体位于孔中并联接到活塞上。 该磁体与磁铁驱动装置磁性地接合,该磁体驱动装置构造成使得磁体,从而使活塞以往复运动方式和旋转方式移动。 示例性的磁体驱动装置是定子组件。
    • 4. 发明授权
    • Continuous particle separation process
    • 连续粒子分离过程
    • US5344576A
    • 1994-09-06
    • US22848
    • 1993-02-25
    • Charles CarrEdward SybertAldis E. Adamson
    • Charles CarrEdward SybertAldis E. Adamson
    • B01D24/02B01D29/00B01D36/00B03B9/00B07B9/00C12M1/12B01D37/00B01D33/54
    • B07B9/00B03B9/00C12M45/02C12M45/05C12M47/04Y10T436/25375
    • A continuous process for the separation of small particles from larger particles in a biological preparation passes a liquid stream of the preparation through a first filter or screen, which retains larger particles, passing smaller particles in the liquid. The large particles have retained on their surfaces wetting water, in which are entrained some of the small particles. The large particles are directed to a liquid having a concentration of smaller particles lower than the concentration of smaller particles in the wetting water, and mixed therein. The smaller particles separate from the larger particles in the mixed suspension, which is then directed to a second filter or screen, for further separation. The smaller particle/liquid stream may be recycled to the biological preparation stage, the liquid suspension for the large particles, or to a separator means where the smaller particles are separated off from the liquid stream. As the system is susceptible of being practiced as a continuous closed system, given an adequate liquid supply, the filtering steps may be repeated any number of times. When separated at the filters or screens, at least a portion of the stream of small particles and liquid must be directed to the separation means, so that said small particles may be eventually separated.
    • 用于从生物制剂中的较大颗粒分离小颗粒的连续方法将制剂的液体流通过第一过滤器或筛网,其保留较大的颗粒,使较小的颗粒通过液体。 大颗粒在其表面上保留润湿水,其中夹带有一些小颗粒。 大颗粒被引导到具有低于润湿水中较小颗粒的浓度的较小颗粒的浓度的液体,并在其中混合。 较小的颗粒与混合悬浮液中的较大颗粒分离,然后将其引导至第二过滤器或筛网,用于进一步分离。 较小的颗粒/液体流可以循环到生物制剂阶段,用于大颗粒的液体悬浮液或者将较小颗粒与液体流分离的分离器装置。 由于系统容易被实践为连续封闭系统,因此给定足够的液体供应,过滤步骤可以重复任意次数。 当在过滤器或筛网处分离时,小颗粒和液体流的至少一部分必须被引导到分离装置,使得所述小颗粒可能最终分离。
    • 6. 发明申请
    • Peristaltic Pump
    • 蠕动泵
    • US20080085200A1
    • 2008-04-10
    • US11574646
    • 2005-09-02
    • Stephan MichelsCharles CarrDavid Imboden
    • Stephan MichelsCharles CarrDavid Imboden
    • F04B43/12
    • F04B43/1253F04B43/1292
    • The peristaltic pump is provided with a two-piece housing (2, 3), in which a conveying member (1) as well as a pump tubing section (6) squeezable by the conveying member is received. For fixing the pump tubing section (6) in the housing (2, 3), a tubing holder (4) is provided. Further provided is a connecting element (5) provided with duct shaped connecting sockets (14a, 14b) for connecting tubing sections (15a, 15b). For connecting the pump tubing section (6) to the tubing holder (4), the two ends of the particular pump tubing section (6) are fixed in receptacles (10a, 10b) of the tubing holder (4), which positively enclose the outside of the pump tubing section (6). The connecting element (5) is fixed to the tubing holder (4) by means of a snap-on connection. Thereby, the connecting sockets (14a, 14b) thereof are sealingly connected to the particular pump tubing section (6).
    • 蠕动泵设置有两件式壳体(2,3),其中容纳可由输送构件挤压的输送构件(1)以及泵管段(6)。 为了将泵管部分(6)固定在壳体(2,3)中,提供管座(4)。 还提供了一个连接元件(5),该连接元件(5)设置有用于连接管道部分(15a,15b)的导管形连接插座(14a,14b)。 为了将泵管段(6)连接到油管支架(4)上,特定泵管段(6)的两端固定在油管支架(4)的接口(10a,10b)中, 封闭泵管部分(6)的外部。 连接元件(5)通过卡扣连接固定到管道保持器(4)上。 因此,其连接插座(14a,14b)密封地连接到特定的泵管部分(6)。
    • 7. 发明授权
    • Continuous particle separation process
    • 连续粒子分离过程
    • US5080807A
    • 1992-01-14
    • US639276
    • 1991-01-10
    • Charles CarrEdward SybertAldis E. Adamson
    • Charles CarrEdward SybertAldis E. Adamson
    • B01D24/02B01D29/00B01D36/00B03B9/00B07B9/00C12M1/12
    • B07B9/00B03B9/00C12M45/02C12M45/05C12M47/04Y10T436/25375
    • A continuous process for the separation of small particles from larger particles in a biological preparation passes a liquid stream of the preparation through a first filter or screen, which retains larger particles, passing smaller particles in the liquid. The large particles have retained on their surfaces wetting water, in which are entrained some of the small particles. The large particles are directed to a liquid having a concentration of smaller particles lower than the concentration of smaller particles in the wetting water, and mixed therein. The smaller particles separate from the larger particles in the mixed suspension, which is then directed to a second filter or screen, for further separation. The smaller particle/liquid stream may be recycled to the biological preparation stage, the liquid suspension for the large particles, or to a separator means where the smaller particles are separated off from the liquid stream. As the system is susceptible of being practiced as a continuous closed system, given an adequate liquid supply, the filtering steps may be repeated any number of times. When separated at the filters or screens, at least a portion of the stream of small particles and liquid must be directed to the separation means, so that said small particles may be eventually separated.
    • 用于从生物制剂中的较大颗粒分离小颗粒的连续方法将制剂的液体流通过第一过滤器或筛网,其保留较大的颗粒,使较小的颗粒通过液体。 大颗粒在其表面上保留润湿水,其中夹带有一些小颗粒。 大颗粒被引导到具有低于润湿水中较小颗粒的浓度的较小颗粒的浓度的液体,并在其中混合。 较小的颗粒与混合悬浮液中的较大颗粒分离,然后将其引导至第二过滤器或筛网,用于进一步分离。 较小的颗粒/液体流可以循环到生物制剂阶段,用于大颗粒的液体悬浮液或者将较小颗粒与液体流分离的分离器装置。 由于系统容易被实践为连续封闭系统,因此给定足够的液体供应,过滤步骤可以重复任意次数。 当在过滤器或筛网处分离时,小颗粒和液体流的至少一部分必须被引导到分离装置,使得所述小颗粒可能最终分离。