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    • 1. 发明公开
    • Bottle coupler
    • 瓶耦合器
    • EP1211217A1
    • 2002-06-05
    • EP02000987.4
    • 1999-10-15
    • Bilskie, Richard P.Oyler, Edward N.Stover, Harold F.
    • Bilskie, Richard P.Oyler, Edward N.Stover, Harold F.
    • B67D1/08
    • B67D1/0462B67D1/0835B67D1/103F04B9/135
    • The present disclosure concerns a self-contained, pneumatic beverage dispensing system with a bottle coupler. The bottle coupler (120) generally comprises an outer member (128) and an inner member (130) that is slidingly disposed within the outer member. The outer member (122) is substantially tubular in shape so as to be formed as an elongated, hollow cylinder having a first end (132) and a second end (134). Formed at the first and second ends (132) and (134) of the outer member (128) are first and second collars (136) and (138), respectively. Each of these collars (136,138) are non-continuous in nature in that both are interrupted by a notch (140) and (142), respectively. Pivotally connected to the outer member (128) at the notch (140) is a bottle release lever (144).
    • 本公开涉及一种具有瓶子联接器的独立的气动饮料分配系统。 瓶连接器(120)通常包括外部构件(128)和滑动地设置在外部构件内的内部构件(130)。 外部构件(122)大致为管状形状,以形成为具有第一端部(132)和第二端部(134)的细长空心圆柱体。 在外部构件(128)的第一和第二端(132)和(134)处分别形成第一和第二卡圈(136)和(138)。 这些套环(136,138)中的每一个在性质上都是不连续的,因为两者分别被凹口(140)和(142)中断。 在槽口(140)处与外部构件(128)枢转连接的是瓶释放杆(144)。
    • 2. 发明公开
    • High pressure pneumatic beverage dispensing system
    • 高压气动饮料分配系统
    • EP1094027A1
    • 2001-04-25
    • EP99120677.2
    • 1999-10-19
    • Bilskie, Richard P.Oyler, Edward N.Stover, Harold F.
    • Bilskie, Richard P.Oyler, Edward N.Stover, Harold F.
    • B67D1/00B67D1/10
    • B67D1/006B67D1/0057B67D1/103B67D2001/0827
    • The present disclosure relates to a self-contained high pressure pneumatic beverage dispensing system. In one embodiment, the system comprises a carbonator tank for facilitating absorption of CO 2 gas in water to produce carbonated water, a refillable source of CO 2 gas under high pressure, the source of CO 2 gas in fluid communication with the carbonator tank so as to fill the carbonator tank with CO 2 gas, a source of water under high pressure and in fluid communication with the carbonator tank so as to fill the carbonator tank with water, at least one pneumatic pump in fluid communication with the source of CO 2 gas, at least one liquid reservoir, for example a bag-in-box container, in fluid communication with the at least one pneumatic pump, and a beverage dispenser valve in fluid communication with the carbonator tank and the at least one liquid reservoir, wherein the beverage dispenser valve can dispense carbonated water and/or the liquid held in the at least one liquid reservoir when activated by the operator.
    • 本公开涉及一种独立式高压气动饮料分配系统。 在一个实施方案中,该系统包括碳酸化剂罐,用于促进CO 2气体在水中吸收以产生碳酸水,高压下可再填充的CO 2气体源,CO 2气体源与碳酸化剂罐流体连通以填充 具有CO 2气体的碳酸化器罐,在高压下并且与碳酸化器罐流体连通的水源,以便用水填充碳酸化器罐,至少一个与CO 2气体源流体连通的气动泵,至少一种液体 与所述至少一个气动泵流体连通的储液器,例如袋中袋容器以及与所述碳酸化剂储罐和所述至少一个液体储存器流体连通的饮料分配器阀,其中所述饮料分配器阀可以分配 碳酸水和/或当由操作员启动时保持在至少一个液体储存器中的液体。
    • 3. 发明公开
    • Self-contained pneumatic beverage dispensing system
    • Pneumatisch betriebenerGetränkespender
    • EP1092674A1
    • 2001-04-18
    • EP99120508.9
    • 1999-10-15
    • Bilskie, Richard P.Oyler, Edward N.Stover, Harold F.
    • Bilskie, Richard P.Oyler, Edward N.Stover, Harold F.
    • B67D1/04F04B9/135
    • B67D1/0462B67D1/0835B67D1/103F04B9/135
    • The present disclosure concerns a self-contained, pneumatic beverage dispensing system. In one embodiment, the pneumatic beverage dispensing system comprises a carbonator tank for facilitating absorption of CO 2 gas in water to produce carbonated water, a source of CO 2 gas under high pressure, the source of CO 2 gas being in fluid communication with the carbonator tank so as to fill the carbonator tank with CO 2 gas, and a source of water under high pressure, the source of water being in fluid communication with the carbonator tank so as to fill the carbonator tank with water. The system normally further comprises at least two liquid containers for containing liquids to be dispensed by the dispensing system, one of the liquid containers being in fluid communication with the source of CO 2 gas, and a pneumatic pump system in fluid communication with the source of CO 2 gas and the other of the liquid containers. In operation, the pneumatic pump system receives high pressure CO 2 gas from the source of CO 2 gas and uses it to pressurize air that is supplied to the other of the liquid containers.
    • 本公开涉及一种独立的气动饮料分配系统。 在一个实施方案中,气动饮料分配系统包括碳酸化器罐,用于促进CO 2气体在水中的吸收以产生碳酸水,高压下的CO 2气体源,CO 2气体源与碳酸化器罐流体连通,以便 用CO2气体和高压水源填充碳酸化器罐,水源与碳酸化器罐流体连通,以便向碳酸化器罐充满水。 该系统通常还包括至少两个用于容纳由分配系统分配的液体的液体容器,其中一个液体容器与CO 2气体源流体连通,以及与CO 2源流体连通的气动泵系统 气体和另一个液体容器。 在操作中,气动泵系统从CO2气体源接收高压二氧化碳气体,并使用它来对供应给另一个液体容器的空气加压。
    • 4. 发明公开
    • High-pressure pneumatic beverage dispensing system
    • Mit Hochdruck betriebener pneumatischerGetränkespender
    • EP1092673A1
    • 2001-04-18
    • EP99120507.1
    • 1999-10-15
    • Bilskie, Richard P.Oyler, Edward N.Stover, Harold F.
    • Bilskie, Richard P.Oyler, Edward N.Stover, Harold F.
    • B67D1/00B67D1/04
    • B67D1/0057B67D1/0462
    • A self-contained high pressure pneumatic beverage dispensing system configured for portable or fixed installations. The beverage system is designed to dispense carbonated and noncarbonated mixed beverages, as well as any carbonated and noncarbonated unmixed beverages in liquid form. In particular, the self-contained pneumatic beverage dispensing system includes source of high pressure water, a source of high pressure CO 2 gas, a carbonator tank, a tank water level switch, and a water valve. In a first embodiment, the source of pressurized water comprises a high pressure water tank containing water that is pressurized with CO 2 gas. In a second embodiment, the source of pressurized water comprises a low pressure water tank, and a high pressure water pump that is used to raise the pressure of the water supplied by the low pressure water tank.
    • 配置用于便携式或固定式安装的独立式高压气动饮料分配系统。 饮料系统设计用于分配碳酸化和非碳酸化混合饮料,以及液体形式的任何碳酸化和非碳酸化的未混合饮料。 特别地,独立气动饮料分配系统包括高压水源,高压二氧化碳气体源,碳酸化器罐,罐水位开关和水阀。 在第一实施例中,加压水源包括含有用CO 2气体加压的水的高压水箱。 在第二实施例中,加压水源包括低压水箱和用于提高由低压水箱供应的水的压力的高压水泵。