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    • 1. 发明申请
    • CONTAINER ASSEMBLY,TAP AND VALVE CAP THEREFOR
    • 集装箱组件,阀盖和阀盖
    • WO1981000608A1
    • 1981-03-05
    • PCT/AU1980000051
    • 1980-08-26
    • BOSBY NOMINEES PTY LTDTOREN T
    • BOSBY NOMINEES PTY LTD
    • F16K07/02
    • B65D47/2025F16K21/04
    • Tap for use with bag-in-the-box liquid containers. The tap has a neck member (18) with a passageway (26) through the neck member. The passageway is closed at its outer end by a manipulable valve assembly (28). The neck member (18) has a liquid flow port (40) communicating laterally with the passageway, (26), and a valve member (69) is provided which normally overlies the port (40) to close the tap. A resiliently deformable diaphragm (64) is attached to the valve member (69) so as to extend across and close off the passageway (26). This diaphragm (64) is arranged such that externally applied manual deformation of it is effective to lift the valve member (69) away from the port (40) to open the lap so that a liquid flow path is established between the inner end of said passageway (26) and the exterior of said port (40). Also disclosed are an integral valve cap, another valve assembly for a tap including a conical valve member axially movable to open and close a fluid passageway, and a container assembly having an inner flexible bag within a relatively rigid outer box with a neck member attached to the inner bag and slidable through an aperture in the outer box.
    • 点击可与袋装盒式液体容器一起使用。 龙头具有颈部构件(18),其具有通过颈部构件的通道(26)。 通道在其外端由可操纵的阀组件(28)封闭。 颈部构件(18)具有与通道(26)横向连通的液体流动口(40),并且设置有通常覆盖端口(40)以闭合水龙头的阀构件(69)。 可弹性变形的隔膜(64)附接到阀构件(69),以便延伸穿过和关闭通道(26)。 该隔膜(64)被布置成使得其外部施加的手动变形有效地将阀构件(69)提升离开端口(40)以打开搭接圈,使得在所述第二端口的内端之间建立液体流动路径 通道(26)和所述端口(40)的外部。 还公开了一种整体阀盖,用于龙头的另一阀组件,其包括可轴向移动以打开和关闭流体通道的锥形阀构件,以及在相对刚性的外箱内具有内柔性袋的容器组件, 内袋并可通过外箱中的孔滑动。
    • 3. 发明申请
    • TENSION RESPONSIVE PINCH VALVE
    • 张力响应的密封阀
    • WO1997011296A1
    • 1997-03-27
    • PCT/US1996014602
    • 1996-09-11
    • ABBOTT LABORATORIES
    • ABBOTT LABORATORIESOSBORNE, Robert, S.PIONTEK, Carl, J.BUCK, Bradford, L.FLEMING, Matthew, S.WILSON, Grant, R.PATTON, William, E.ALEXANDER, Kathryn, E.HARRIS, Jeremy, M.LYON, William, F.
    • F16K07/02
    • A61M39/288
    • A tension responsive pinch valve is made up of a combination of an elastically flexible pinch valve element and a length of flexible tubing having a section that is to be closed automatically by being distorted to the point of pinching or kinking and thus closing the lumen when the distorted section is not under longitudinal tension. The pinch valve element is associated longitudinally with the tubing section and preferably has two end portions connected by a shank portion. The end portions are attached to the tubing section at spaced-apart points longitudinally of the flexible tubing such that the length of the encompassed section is much longer than the shank portion of the pinch valve element. If the elastic yield strength of the shank portion is greater than the bend resistance of the flexible tubing, the encompassed section of the flexible tubing will be bent over to the point of occlusion when the section is not under tension but will allow the passage of fluid when longitudinal unkinking tension is applied.
    • 张力响应夹紧阀由弹性柔性夹管阀元件和一定长度的柔性管道的组合构成,该管状部件具有通过扭曲到捏合或扭结点并因此在管腔闭合时自动关闭的部分 扭曲部分不在纵向张力之下。 夹管阀元件与管道部分纵向连接,并且优选地具有通过柄部分连接的两个端部部分。 端部在柔性管的纵向上以间隔开的点附接到管部分,使得包围部分的长度比夹紧阀元件的柄部分长得多。 如果柄部分的弹性屈服强度大于柔性管的弯曲阻力,当该部分不处于张力下时,柔性管的包围部分将被弯曲到咬合点,但允许流体通过 当施加纵向不打滑张力时。
    • 4. 发明申请
    • STRETCH VALVE METHOD AND APPARATUS
    • 拉伸阀方法和装置
    • WO1994021946A1
    • 1994-09-29
    • PCT/US1993002709
    • 1993-03-24
    • GENERAL VALVE CORPORATION
    • GENERAL VALVE CORPORATIONPROPER, George, N.
    • F16K07/02
    • F16K7/20F16K7/02
    • A stretch valve (1) which achieves precise control of fluid flow rates through the use of a cylindrical fluid elastomeric valve element (2). This elastomer element (2) is installed within the cylindrical flow path (20) of a valve body. The flow path (20) has a diameter that is slightly smaller than that of the elastomer element (2), which is therefore constrained within the flow path. Longitudinal stretching of the elastomer element causes the diameter of the elastomer element to decrease. As a result, a flow path is opened. The further elastomer element is stretched, the larger is the fluid path that is created. Therefore, precise control of the fluid flow rate is made possible.
    • 拉伸阀(1),其通过使用圆柱形流体弹性体阀元件(2)实现对流体流速的精确控制。 该弹性体元件(2)安装在阀体的圆柱形流路(20)内。 流动路径(20)的直径略小于弹性体元件(2)的直径,因此其限制在流动路径内。 弹性体元件的纵向拉伸导致弹性体元件的直径减小。 结果,打开流路。 另外的弹性体元件被拉伸,产生的流体路径越大。 因此,可以精确控制流体流量。