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    • 1. 发明授权
    • Foam retainer
    • 泡沫保持器
    • US08267267B2
    • 2012-09-18
    • US12459462
    • 2009-07-01
    • M Pasha Pashazadeh
    • M Pasha Pashazadeh
    • B65D6/28B65D8/18
    • A47G19/00Y10T29/53Y10T137/2984
    • A foam retainer constructed with a having hollow tubular body including a receiving end and a discharge end. A passage is formed within the hollow tubular body through which a liquid is adapted to flow. The discharge end of the hollow tubular body is adapted to snugly fit onto an open end of a container into which the liquid flows. As the container is filled with the liquid, the foam generated during the dispensing of the fluid rises back into the discharge end of the hollow tubular body. In the hollow tubular body, the foam is received and captivated therein such that when the hollow tubular body is removed, the foam may also be removed from the container.
    • 一种泡沫保持器,其构造为具有中空管状体,其包括接收端和排出端。 通道形成在中空管状体内,液体通过该通道适于流动。 中空管状体的排放端适于紧贴地装配到液体流入的容器的开口端。 当容器充满液体时,在分配流体期间产生的泡沫上升回到中空管状体的排放端。 在中空管状体中,泡沫被容纳并吸收在其中,使得当去除中空管状体时,也可以将泡沫从容器中取出。
    • 2. 发明申请
    • DEFOAMING METHOD
    • 缺陷方法
    • US20110306681A1
    • 2011-12-15
    • US13217546
    • 2011-08-25
    • Ken TakenouchiYoshiyuki Yuasa
    • Ken TakenouchiYoshiyuki Yuasa
    • B01D19/02
    • B67D1/1422B01D19/0073B01D19/0078B01D19/02B67C3/22Y10T137/0385Y10T137/2984Y10T137/299
    • A defoaming method capable of destroying foams generated when a container is filled with drink, or the like, efficiently at a high speed and destroying foams effectively even in the case of a container having a narrow mouth. Liquid surface (6) in a container (1) is irradiated with pulse-like light (2) and a pulse-like sound wave (8) is generated from an irradiated point (7) as a sound source. The pulse-like sound wave thus generated propagates from the sound source as a strong spherical wave to reach a bubble (9) and to destroy the bubble. It can also destroy a bubble located at a place remote from the optical path quickly, thus destroying bubbles efficiently at a high speed. Alternatively, pulse-like light is condensed at a gas portion above the liquid surface and the bubbles can be destroyed with a shock wave generated by breakdown phenomenon.
    • 当容器充满饮料时产生的泡沫等的消泡方法,即使在具有窄口的容器的情况下也能够高效地有效地破坏泡沫体。 用脉冲状光(2)照射容器(1)中的液面(6),从作为声源的照射点(7)产生脉冲状声波(8)。 这样产生的脉冲状声波作为强球形波从声源传播到达气泡(9)并破坏气泡。 也可以快速破坏位于远离光路的位置的气泡,从而高效地破坏气泡。 或者,脉冲状光在液面上方的气体部分被冷凝,并且气泡可以被击穿现象产生的冲击波破坏。
    • 4. 发明申请
    • Foam retainer
    • 泡沫保持器
    • US20100001009A1
    • 2010-01-07
    • US12459462
    • 2009-07-01
    • M. Pasha Pashazadeh
    • M. Pasha Pashazadeh
    • B65D8/00B65D25/00B23P19/04
    • A47G19/00Y10T29/53Y10T137/2984
    • A foam retainer constructed with a having hollow tubular body including a receiving end and a discharge end. A passage is formed within the hollow tubular body through which a liquid is adapted to flow. The discharge end of the hollow tubular body is adapted to snugly fit onto an open end of a container into which the liquid flows. As the container is filled with the liquid, the foam generated during the dispensing of the fluid rises back into the discharge end of the hollow tubular body. In the hollow tubular body, the foam is received and captivated therein such that when the hollow tubular body is removed, the foam may also be removed from the container.
    • 一种泡沫保持器,其构造为具有中空管状体,其包括接收端和排出端。 通道形成在中空管状体内,液体通过该通道适于流动。 中空管状体的排放端适于紧贴地装配到液体流入的容器的开口端。 当容器充满液体时,在分配流体期间产生的泡沫上升回到中空管状体的排放端。 在中空管状体中,泡沫被容纳并吸收在其中,使得当去除中空管状体时,也可以将泡沫从容器中取出。
    • 5. 发明授权
    • Throttling and diffusing dispensing valve
    • 调节和扩散分配阀
    • US5538028A
    • 1996-07-23
    • US336041
    • 1994-11-04
    • Samuel N. Lombardo
    • Samuel N. Lombardo
    • B67D1/04B67D1/14F16K47/04
    • B67D1/0456B67D1/1455B67D1/1461Y10T137/0385Y10T137/2984Y10T137/9464
    • A valve suitable for dispensing effervescent liquids under pressure includes a frusto-conical core member disposed in a similarly configured frusto-conical valve chamber section to both define a restrictive diffusing flow path when the valve is open and the sole pressure seal when the valve is closed. The pressure seal is created along a substantial length of the core member which is preferably made of resiliently compressible plastic to enhance the seal. The outlet spout located downstream of the diffusing flow path is provided with interior baffles to prevent vortical flow and the resulting frothing in the liquid. The valve chamber and components are sloped to assure that all liquid downstream of the seal can flow toward the outlet spout after the valve is closed. Immediately downstream of the diffusing flow path there is a transition path permitting the flowing liquid to expand gradually without cavitation before entering the expanded downstream end of the valve chamber. That chamber is sized sufficiently small so that the outlet spout serves as a restriction to create a back pressure in the liquid and prevent gas bubbles from escaping.
    • 适于在压力下分配泡腾液体的阀包括设置在类似构造的截头圆锥形阀室部分中的截头圆锥形芯部件,以在阀打开时限定限制性扩散流路,并且当阀关闭时限定唯一的压力密封 。 压力密封沿芯部件的大部分长度产生,该芯部件优选由弹性可压缩塑料制成以增强密封。 位于扩散流路下游的出口喷口设置有内部挡板,以防止涡流流动并导致液体中的起泡。 阀室和部件倾斜,以确保在阀关闭后,密封件下游的所有液体可以流向出口喷口。 在扩散流路的最下游,存在允许流动的液体在进入阀室的膨胀的下游端之前逐渐膨胀而不产生空化的过渡路径。 该室的尺寸足够小,使得出口喷口用作在液体中产生背压并防止气泡逸出的限制。