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    • 1. 发明申请
    • FLUIDIC CONNECTOR ASSEMBLY FOR QUICK CONNECT/ DISCONNECT
    • 用于快速连接/断开的流体连接器组件
    • WO2017218294A1
    • 2017-12-21
    • PCT/US2017/036590
    • 2017-06-08
    • IDEX HEALTH & SCIENCE LLC
    • BEEMER, EricELLIS, ScottGRAHAM, CraigNIENHUIS, NathanielSANDERS, Troy
    • F16L37/098A61M39/10F16L37/00F16L37/04F16L37/084F16L37/133
    • A fluidic connection assembly and methods for quickly connecting or disconnecting a tube to a port by hand and without the use of tools. A body is adapted to receive a tube therethrough, and may have at least two sides which are hinged. Each of the hinged sides has corresponding latching portions or projections located near a lower end of the body. These projections are adapted to fit into a port or other fitting and be securely held in place. The assembly may include a tube extending through a body and through a spring located between the end of the body and the end of the tube, whereby the spring exerts a force directly or indirectly against the end of the tube and against the body, thus holding the tubing securely and sealingly engaged in the port when the assembly is connected. The body may further comprise an additional body or an adapter, and/or a cap and latch. A second spring may be used to push a projecting member into a groove or notch of an adapter when an end of the adapter is inserted into one end of the latch or the body. The fluidic connection assembly is useful in analytical instrument systems, such as for in vitro applications and/or in high pressure applications, among other things, and may be used in methods for connecting, or disconnecting, tubing or a fluidic connection assembly from a port or other fitting or connection.
    • 一种流体连接组件和方法,用于手动和不使用工具快速连接或断开管到端口。 主体适于接收穿过其中的管,并且可以具有至少两个铰接的侧面。 每个铰接侧具有位于主体下端附近的对应的锁定部分或突起。 这些突出部分适合装入一个端口或其他配件并牢固地固定。 该组件可以包括延伸穿过主体并穿过位于主体的端部和管的端部之间的弹簧的管,由此弹簧直接或间接地施加力到管的端部并且抵靠主体,从而保持 当连接组件时,管道牢固且密封地接合在端口中。 主体可以进一步包括附加主体或适配器,和/或帽和闩锁。 当适配器的一端插入到闩锁或本体的一端中时,第二弹簧可用于将突出构件推入适配器的凹槽或凹口中。 流体连接组件在分析仪器系统中是有用的,例如用于体外应用和/或高压应用等,并且可用于将管道或流体连接组件与端口连接或断开连接的方法 或其他配件或连接。
    • 6. 发明申请
    • MICROFLUIDIC INTERCONNECT
    • 微流连接
    • WO2014085417A1
    • 2014-06-05
    • PCT/US2013/071936
    • 2013-11-26
    • IDEX HEALTH & SCIENCE LLC
    • GRAHAM, Craig
    • G01N30/60
    • F16L37/244B01L3/502715B01L3/563B01L2200/025B01L2200/027B01L2200/0631B01L2200/0689B01L2300/0832B01L2300/0851F16L15/08F16L19/0237F16L19/065F16L21/00G01N30/6026G01N30/6095G01N30/88Y10T29/49826
    • A microfluidic interconnect system and method for assembly thereof is described. The microfluidic interconnect has a port (400) and a seal (500), with the port having a reverse taper. The port has a first port end (410), a second port end (420), and an inner port surface (430) with a tapered portion. Each port end has an opening with a diameter, and in certain embodiments, the diameter (417) of the first port end is smaller than the diameter (427) of the second port end. The seal has a first end (510) and a second end (520), and each seal end has a rim and an opening with an inner diameter and an outer diameter. The seal also has an inner surface (530) and an outer surface (540), where in certain embodiments, each surface has a tapered portion. In certain embodiments, the inner diameter (517) of the first seal end is equal to or larger than the inner diameter (527) of the second seal end, the outer diameter of the first seal end (518) is equal to or smaller than the outer diameter of the second seal end (528), and the outer diameter of the second seal end is larger than the outer diameter of each port end. In certain embodiments, a tube (600) is slidably coupled to the inner surface of the seal, and the tube has an outer diameter (618) that is equal to or larger than the inner diameter of the second seal end.
    • 描述了一种微流控互连系统及其装配方法。 微流体互连具有端口(400)和密封件(500),端口具有反向锥度。 该端口具有第一端口端口(410),第二端口端部(420)和具有锥形部分的内部端口表面(430)。 每个端口具有直径的开口,并且在某些实施例中,第一端口端部的直径(417)小于第二端口端部的直径(427)。 密封件具有第一端(510)和第二端(520),并且每个密封端具有边缘和具有内径和外径的开口。 密封件还具有内表面(530)和外表面(540),其中在某些实施例中,每个表面具有锥形部分。 在某些实施例中,第一密封端的内径(517)等于或大于第二密封端的内径(527),第一密封端(518)的外径等于或小于 第二密封端(528)的外径和第二密封端的外径大于每个端口的外径。 在某些实施例中,管(600)可滑动地联接到密封件的内表面,并且管具有等于或大于第二密封端的内径的外径(618)。
    • 9. 发明申请
    • AXIAL TRANSFER LINE SHELL SIDE DEGASSING
    • 轴向传输线壳侧脱落
    • WO2016069770A3
    • 2016-07-07
    • PCT/US2015057854
    • 2015-10-28
    • IDEX HEALTH & SCIENCE LLC
    • LIU QUANGERNER YURISIMS CARL
    • B01D19/00B01D69/04
    • B01D19/0031B01D69/046
    • An elongated fluid degassing apparatus may be employed as a fluid transfer line for fluidly connecting components in a liquid system, while at the same time degassing, or preventing re-gassing of, the fluid. The fluid transfer line degassing apparatus forms a shell and tube degassing arrangement, wherein shell-side fluid flow is facilitated by one or more spacer elements that centrally position a semi-permeable separation membrane in the shell chamber. The degasser may include one or more tubular separation membranes that provide a gas-permeable, liquid-impermeable contact surface to effect the gas-liquid separation of the process fluid.
    • 细长的流体脱气装置可以用作流体输送管线,用于流体连接液体系统中的组分,同时除气或防止流体再次充气。 流体输送管线脱气装置形成壳管排气装置,其中壳侧流体流动通过一个或多个间隔元件来促进,所述间隔元件将半渗透分离膜居中地定位在壳室中。 脱气器可以包括一个或多个管状分离膜,其提供气体可渗透的液体不可渗透的接触表面以实现过程流体的气液分离。