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    • 1. 发明申请
    • VARIABLE RATIO DUAL DISPENSER FOR FLUIDS
    • 可变比例双液体分配器
    • US20160311602A1
    • 2016-10-27
    • US15133706
    • 2016-04-20
    • VariBlend Dual Dispensing Systems LLC
    • Geoffrey BraceRobert BrandsGlynn Clements
    • B65D81/32B65D47/26B65D35/44B65D47/32B65D35/22B65D35/24
    • B65D35/242A45D34/00A45D40/24A45D2200/058B01F5/0615B01F15/0226B01F15/0404B01F15/0412B65D35/22B65D35/245F16K11/074
    • A dual dispenser includes a first container adapted to hold a first product, the first container including an end portion having at least one dispensing port and a second container adapted to hold a second product, the second container including an end portion having at least one dispensing port. The dual dispenser also includes a closure having at least one dispensing opening therein adapted to be in fluid communication with the at least one dispensing port of the first and second containers. The end portions of the first and second containers form a neck finish adapted to receive the closure. The neck finish and closure include engagement surfaces for rotatably mounting the closure on the neck finish such that the closure can rotate relative to the first and second containers. Upon rotation of the closure, the at least one dispensing port of the first and second containers are aligned or misaligned with the at least one dispensing opening of the closure so that a variable amount of first and second products are dispensed from the dual dispenser depending upon the orientation of the closure relative to the first and second containers.
    • 双分配器包括适于保持第一产品的第一容器,所述第一容器包括具有至少一个分配端口的端部和适于容纳第二产品的第二容器,所述第二容器包括端部,所述端部具有至少一个分配 港口。 双分配器还包括其中具有至少一个分配开口的封闭件,其适于与第一和第二容器的至少一个分配端口流体连通。 第一和第二容器的端部形成适于接纳封闭件的颈部整理件。 颈部精加工和封闭件包括用于将闭合件可旋转地安装在颈部精加工上的接合表面,使得封闭件可相对于第一和第二容器旋转。 在闭合件旋转时,第一和第二容器的至少一个分配端口与封闭件的至少一个分配开口对准或不对准,使得可变数量的第一和第二产品从双重分配器分配,这取决于 闭合件相对于第一和第二容器的取向。
    • 2. 发明授权
    • System for blending and storing petroleum based fuel and vegetable oil
    • 用于混合和储存石油基燃料和植物油的系统
    • US07850747B2
    • 2010-12-14
    • US11499417
    • 2006-08-04
    • Roy Dubs
    • Roy Dubs
    • C10L5/00
    • B01F13/0222B01F13/0255B01F15/0412
    • An apparatus for blending and storing petroleum based fuel and vegetable based fuel is provided. The apparatus includes a blended fuel storage tank; a petroleum fuel storage tank connectable to the blended fuel storage tank; a vegetable based fuel storage tank connectable to the blended fuel storage tank; and a ganged fuel controller adapted to synchronize fuel flow ratios from the petroleum fuel storage tank and the vegetable based fuel tank to the blended fuel storage tank. In an alternate embodiment the fuel may be delivered already mixed for storage and continued blending in a mixed fuel storage tank adapted to maintaining the blended fuel mixture.
    • 提供了一种用于混合和储存石油基燃料和植物性燃料的装置。 该装置包括混合燃料储罐; 可连接到混合燃料储罐的石油储存罐; 可连接到混合燃料储罐的基于蔬菜的燃料储存罐; 以及联合燃料控制器,其适于将来自石油燃料储罐和基于蔬菜的燃料箱的燃料流量比同步到混合燃料储罐。 在替代实施例中,燃料可以被输送已经混合以便储存并在适于维持混合燃料混合物的混合燃料储存罐中继续混合。
    • 6. 发明申请
    • Slurry mixing feeder and slurry mixing and feeding method
    • 浆料混合进料器和浆料混合进料方法
    • US20030031086A1
    • 2003-02-13
    • US10174991
    • 2002-06-20
    • m.FSI LTD.
    • Satoshi ShikamiMasato Kawasaki
    • B01F015/04B01F015/02
    • B01F15/00344B01F3/088B01F15/00357B01F15/0412B01F2003/125B01F2215/0045B01F2215/0096B24B57/02
    • A slurry mixing feeder for feeding a slurry to a chemical mechanical polishing machine is disclosed. The slurry contains liquids at a desired mixing ratio. The liquids includes at least a dispersion of fine abrasive particles and a solution of an additive. The slurry mixing feeder comprises: suction ports for sucking the liquids, respectively, a number of said suction ports corresponding to that of the liquids; a discharge port for feeding the slurry to the chemical mechanical polishing machine; feed pumps arranged in feed lines for the respective liquids, said feed lines extending from the individual suction ports to the discharge port, for sucking the individual liquids in specific amounts to give the mixing ratio and delivering the thus-sucked liquids toward the discharge port; and dampers and pressure-regulated restrictors arranged in combination in the feed lines on delivery sides of the feed pumps, respectively. A slurry mixing and feeding method is also disclosed.
    • 公开了一种用于将浆料供给到化学机械抛光机的浆料混合进料器。 浆料以所需的混合比含有液体。 液体至少包括细磨料颗粒和添加剂溶液的分散体。 浆料混合进料器包括:分别用于吸入液体的吸入口,与液体相对应的多个所述吸入口; 用于将浆料供给到化学机械抛光机的排出口; 供给泵布置在用于各种液体的进料管线中,所述进料管线从各个吸入口延伸到排出口,用于以特定量吸取各个液体以产生混合比并将如此吸入的液体输送到排出口; 以及分别在进料泵的输送侧的进料管路中组合布置的阻尼器和压力调节的限制器。 还公开了浆料混合和进料方法。
    • 7. 发明授权
    • Multiple component in-line paint mixing system
    • 多组分在线油漆混合系统
    • US06203183B1
    • 2001-03-20
    • US09298347
    • 1999-04-23
    • Kane M. MordauntThomas R. Sim
    • Kane M. MordauntThomas R. Sim
    • B01F308
    • B01F15/0429B01F3/088B01F5/0602B01F15/0412B01F2215/005B05B7/32B05B12/1418
    • An in-line mixing system and method for mixing one or more paint fluid subcomponents. The system includes subcomponent input lines (20) connected to a reducing manifold (22). An on/off solenoid valve (28) in each line is arranged to allow or prohibit fluid from entering the reducing manifold. The reducing manifold includes multiple input passages that converge to form a single output passage. A flow meter (26) is in communication with the manifold output passage to measure the flow of subcomponent fluid through the manifold. Using the flow meter, a control system (30) causes the input line solenoid valves to open and close to create a slugwise line of subcomponent fluids passing from the manifold output passage. From the reducing manifold, the slugwise line enters an integrator (32) where the subcomponents are partially mixed. A static mixer (34) connects to the output of the integrator to thoroughly mix the fluids. Preferred embodiments of a mixing system, an integrator, and an control instruction system are provided.
    • 用于混合一种或多种涂料流体副成分的在线混合系统和方法。 该系统包括连接到还原歧管(22)的子组件输入线(20)。 每行中的开/关电磁阀(28)布置成允许或禁止流体进入还原歧管。 还原歧管包括多个输入通道,其收敛以形成单个输出通道。 流量计(26)与歧管输出通道连通以测量通过歧管的次要组分流体的流动。 使用流量计,控制系统(30)使得输入管线电磁阀打开和关闭,以产生从歧管输出通道通过的副成分流体的一阵列。 从还原歧管中,段状线进入积分器(32),其中子部件被部分混合。 静态混合器(34)连接到积分器的输出端,以充分混合流体。 提供混合系统,积分器和控制指令系统的优选实施例。