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    • 3. 发明申请
    • RE-FILLABLE SYRUP BIN FOR BEVERAGE MACHINE
    • 饮料机可重复灌装桶
    • US20160089647A1
    • 2016-03-31
    • US14864273
    • 2015-09-24
    • Carrier Corporation
    • James J. Minard
    • B01F15/02B01F3/08
    • B01F13/1066B01F15/02B01F15/0201B01F15/0202B01F15/0203B01F15/0205B01F15/0222B01F15/0234B01F15/0235B01F2215/0022
    • A beverage dispenser includes a mixing portion to mix a plurality of beverage ingredients and a dispensing portion to dispense the mixed beverage. The dispenser further includes a product input portion having a plurality of refillable ingredient bins operably connectible to the mixing portion. Each refillable ingredient bin includes a self-closing seal located at a bin outlet to prevent leakage of the beverage ingredients from the bin outlet when the refillable ingredient bin is disconnected from the mixing portion. An ingredient bin assembly for a beverage dispensing machine includes a refillable ingredient bin having a bin outlet and a self-closing seal positioned at the bin outlet to prevent leakage of beverage ingredients from the bin outlet when the refillable ingredient bin is disconnected from a beverage dispensing machine.
    • 饮料分配器包括混合部分以混合多种饮料成分和分配部分以分配混合饮料。 分配器还包括产品输入部分,其具有可操作地连接到混合部分的多个可再填充的成分箱。 每个可再填充成分箱包括位于箱出口处的自封闭密封件,以防止当可再填充成分箱与混合部分断开时饮料成分从箱出口泄漏。 一种用于饮料分配机的配料箱组件包括一个可重新填充的配料箱,其具有一个箱子出口和一个位于箱子出口处的自动关闭密封件,以防止当可再填充成分箱与饮料分配器断开时饮料成分从箱子出口泄漏 机。
    • 4. 发明授权
    • Apparatus and method of delivering a fluid using a non-mechanical eductor pump and lock hopper
    • 使用非机械喷射泵和锁定料斗输送流体的装置和方法
    • US09086164B2
    • 2015-07-21
    • US13537511
    • 2012-06-29
    • Jason Paul MortzheimFarshad Ghasripoor
    • Jason Paul MortzheimFarshad Ghasripoor
    • B65G51/18F16K24/00
    • F16K24/00B01F3/12B01F5/0421B01F5/043B01F15/0235E21B21/062Y10T137/0318Y10T137/85978
    • An apparatus and method for delivering a fluid using non-mechanical lock hopper eductor assembly. The assembly including at least one lock hopper coupled to an eductor motive fluid inlet, a source of a treatment material and a suction flow outlet. The lock hopper configured to contain therein a pressurized treatment fluid as an output suction flow. The lock hopper is coupled to an eductor pump assembly. The eductor pump assembly including a suction chamber in fluidic communication with the eductor motive fluid inlet, the suction flow outlet and a fluid mixture outlet. The suction chamber configured to output a fluid mixture to a mixing chamber coupled to said fluid mixture outlet and configured to mix the fluid mixture therein. The eductor pump assembly further including an expansion feature coupled to said mixing chamber and configured to expand the fluid mixture therein for delivery to a downstream component.
    • 一种使用非机械闭锁料斗喷射器组件输送流体的装置和方法。 所述组件包括联接到喷射器动力流体入口的至少一个锁定料斗,处理材料源和吸入流出口。 锁定料斗构造成在其中容纳加压处理流体作为输出抽吸流。 锁料斗联接到喷射泵组件。 喷射泵组件包括与喷射器动力流体入口流体连通的吸入室,吸入流出口和流体混合物出口。 吸入室被配置为将流体混合物输出到与所述流体混合物出口连接的混合室,并且配置成将流体混合物混合在其中。 喷射泵组件还包括连接到所述混合室的膨胀特征并且构造成将其中的流体混合物膨胀以输送到下游部件。
    • 7. 发明申请
    • Beverage Mixing and Dispensing Apparatus
    • 饮料混合和分配装置
    • US20120111450A1
    • 2012-05-10
    • US12943019
    • 2010-11-10
    • Don L. Claps
    • Don L. Claps
    • B65B39/00
    • B01F15/0235B01F3/0869B01F15/0203B01F15/0291B01F2215/007
    • This present invention includes an apparatus and a process for mixing two or more beverages and dispensing the same for one or more consumer(s). It is comprised of a primary beverage collection funnel, which is designed to hold a secondary beverage collection funnel or funnels. Attached to the bottom of the collection funnels are beverage transport tubes, primary and secondary respectively. The beverage transport tubes are then connected to either a beverage combining device which has an integrated one way check valve or to a beverage splitting devises which would then in turn have additional beverage transport tubes connected thereto that are then connected to multiple beverage combining devices which have integrated one way check valves. Attached to the bottom of the beverage combining device is a beverage transport tube. Attached to the bottom of the beverage transport tube is a trigger type valve that has the option of being either locked into the open/on position or the trigger type valve may be used in such a way that when the trigger is released, it returns to the closed/off position automatically. And attached to the outlet port of the trigger type valve is a mouthpiece.
    • 本发明包括用于混合两种或多种饮料并将其分配给一个或多个消费者的装置和方法。 它由主要的饮料收集漏斗组成,其设计用于容纳辅助饮料收集漏斗或漏斗。 收集漏斗的底部分别是饮料输送管,主要和次要的。 饮料输送管然后连接到具有集成单向止回阀的饮料组合装置或饮料分配装置,饮料分配装置又将具有连接到其上的另外的饮料输送管,然后将其连接到多个饮料组合装置,其具有 集成单向止回阀。 饮料组合装置的底部附着有饮料输送管。 连接到饮料输送管的底部的是触发式阀,其具有被锁定到打开/打开位置的选项,或者触发式阀可以以这样的方式使用,即当触发器被释放时,它返回到 自动关闭/关闭位置。 并且连接到触发式阀的出口是一个接口。
    • 9. 发明申请
    • METHOD AND SYSTEM FOR ADMINISTERING MICRO-INGREDIENT FEED ADDITIVES TO ANIMAL FEED RATIONS
    • 将微量成分添加剂用于动物饲料添加剂的方法和系统
    • US20100220548A1
    • 2010-09-02
    • US12777395
    • 2010-05-11
    • Steven R. FREEMANCharles H. HOFF
    • Steven R. FREEMANCharles H. HOFF
    • G05D11/12
    • B01F15/0479A01K5/0216B01F3/1228B01F5/248B01F15/00032B01F15/0235B01F15/0445
    • A system and method are provided for administering micro-ingredient feed additives or supplements to feed rations. The amount of each particular micro-ingredient to be delivered to a feed ration may be determined by a bulk density measurement. Alternatively, bulk density measurement may be used in combination with existing weight measurement and volumetric metering methods for multiple micro-ingredients. Delivery by bulk density requires determination of a bulk density value along with use of a dispensing device that dispenses a calculated amount of the micro-ingredient ration. The dispensing calculation may be achieved by analysis of delivery time, pulse count, or some other quantitative measure such as magnitude. Use of bulk density as a measurement technique eliminates the requirement for use of scales in the micro-ingredient delivery system.
    • 提供了一种用于施用微量成分饲料添加剂或饲料口粮补充剂的系统和方法。 要输送到饲料定量的每个特定微量成分的量可以通过体积密度测量来确定。 或者,堆积密度测量可以结合现有的重量测量和用于多种微量成分的体积计量方法。 通过堆积密度的交付需要使用分配计算量的微量成分比例的分配装置来确定体积密度值。 分配计算可以通过分析递送时间,脉冲计数或一些其他定量测量例如大小来实现。 使用堆密度作为测量技术消除了在微量成分传送系统中使用秤的要求。