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    • 1. 发明申请
    • AGITATING CANISTER FOR VISCOUS FLUIDS FOR A MULTIPLE FLUID DISPENSER
    • 用于多个流体分配器的粘度流体的吸收器
    • WO2008110606A1
    • 2008-09-18
    • PCT/EP2008/053020
    • 2008-03-13
    • FLUID MANAGEMENT INC.FAST & FLUID MANAGEMENT EUROPE B.V.TIM, Hogan
    • TIM, Hogan
    • B01F5/06B01F7/00B01F13/10B01F15/00B67D1/00
    • B01F13/1055B01F3/12B01F7/00116B01F7/00141B01F7/00208B01F7/00633B01F7/18B01F15/00707B01F2003/0028B44D3/08
    • An improved canister assembly (15) for a multi-fluid dispenser (10) is shown and described. The canister assembly comprises an annular outer shell (21) with an outer cylindrical wall connected to a bottom which, in turn, is connected to an inner cylindrical wall that serves as a standpipe. The bottom includes- an outlet (29) connected to- a pump. A hollow agitator shaft (21) slides over the inner standpipe and includes a plurality of outwardly extending blades (32) for stirring or "agitating" the fluid. An annular screen element (44) is disposed below the bottom end of the agitator shaft. Beneath the annular screen element is a lower agitator blade element (46). The lower blade element (46) and the lower end of the agitator shaft are snap-fitted together with the annular screen element sandwiched therebetween. The screen element includes a cylindrical shell with the annular screen disposed upwards from the lower end of the cylindrical shell so that the screen is spaced above the bottom wall and to make room for the lower blade element.
    • 示出并描述了用于多流体分配器(10)的改进的罐组件(15)。 所述罐组件包括环形外壳(21),其外圆柱形壁连接到底部,所述外圆筒壁又连接到用作竖管的内圆柱形壁。 底部包括连接到泵的出口(29)。 中空搅拌器轴(21)在内立管上滑动并且包括用于搅拌或“搅动”流体的多个向外延伸的叶片(32)。 环形筛网(44)设置在搅拌器轴的底端下方。 环形屏元件下方是下搅拌叶片元件(46)。 下叶片元件46和搅拌轴的下端与夹在其间的环形丝网元件卡扣配合在一起。 屏幕元件包括圆柱形壳体,环形屏幕从圆柱形壳体的下端向上设置,使得屏幕在底壁上方间隔开并为下部叶片元件腾出空间。
    • 2. 发明申请
    • MANUALLY OPERABLE MANIFOLD/NOZZLE CLOSURE FOR FLUID DISPENSERS
    • 流动分配器的手动操作说明/喷嘴关闭
    • WO2008110601A1
    • 2008-09-18
    • PCT/EP2008/053014
    • 2008-03-13
    • Fluid Management Inc.Fast & Fluid Management Europe B.V.HSING, JohnKHOO, Christopher
    • HSING, JohnKHOO, Christopher
    • B67D1/12B67D1/16B67D1/08
    • B67D1/0887B67D1/1256B67D1/16Y10T137/5835
    • A manually operated seal/closure system for a fluid dispenser manifold is disclosed. The manifold includes at least one nozzle. The manifold housing (16) includes a sidewall (23) pivotally connected to an arm (27). The sidewall (23) further includes a lateral slot (25) and a curved slot (26). The arm (27) includes a proximal end pivotally connected to;the sidewall (23) and a distal end with an elongated slot (45) disposed therebetween. The closure system also includes a bracket (29) for supporting a cup (32) and a seal (33). The bracket is coupled to the arm (27) and the sidewall by a first pin (44) that extends from the bracket through the lateral slot (25) in the sidewall and through the elongated slot of the arm. The bracket is also coupled to the sidewall (23) by a second pin (48) that extends through the lateral slot (25) of the sidewall and laterally between the first pin and the manifold.
    • 公开了一种用于流体分配器歧管的手动密封/封闭系统。 歧管包括至少一个喷嘴。 歧管壳体(16)包括枢转地连接到臂(27)的侧壁(23)。 侧壁(23)还包括侧向槽(25)和弯曲槽(26)。 臂(27)包括枢转地连接到侧壁(23)的近端和设置在其间的细长狭槽(45)的远端。 封闭系统还包括用于支撑杯子(32)和密封件(33)的托架(29)。 支架通过第一销(44)联接到臂(27)和侧壁,第一销(44)从支架通过侧壁中的侧向槽(25)延伸并且穿过臂的细长槽。 支架还通过第二销(48)连接到侧壁(23),第二销(48)延伸穿过侧壁的侧向槽(25)并在第一销和歧管之间横向延伸。
    • 3. 发明申请
    • DUAL CHAMBER MIXING PUMP
    • 双室混合泵
    • WO2009015915A1
    • 2009-02-05
    • PCT/EP2008/054334
    • 2008-04-10
    • FLUID MANAGEMENT OPERATIONS LLCFast & Fluid Management Europe B.V.HOGAN, Tim Patrick
    • HOGAN, Tim Patrick
    • B01F5/12F04B7/06
    • B01F5/12F04B7/06F04B11/0075F04B13/02
    • A dual chamber mixing pump design is disclosed which allows two different sources of fluid to be combined into one mixed product fluid. The pump is divided into two chambers, the proximal chamber and the distal chamber. The chambers are defined in part by a piston having proximal and distal ends and recessed sections. The pump utilizes one common driving mechanism to axially rotate and laterally reciprocate the piston to provide continuous pumping of fluids with reduced pulsations. Each fluid enters through its own pump inlet and outlet. For mixing applications, the outlets are joined together. The flow volume per stroke of each chamber is determined by the lateral stroke of the entire piston assembly and also by the annular areas of the proximal and distal ends of the piston. The flow volume per stroke may be altered by varying the piston and shaft diameters for each chamber. This allows mixing of two fluids in any ratio or proportion desired. Alternating pulses of the two chambers provide a stream which has small segments of alternating fluid from each inlet. Such segmented streams can become more thoroughly mixed through normal flow characteristics of the downstream flow path, providing more effective mixing.
    • 公开了一种双室混合泵设计,其允许将两种不同的流体源组合成一种混合产物流体。 泵分为两个腔室,近端腔室和远端腔室。 腔室部分由具有近端和远端以及凹入部分的活塞限定。 泵利用一个共同的驱动机构来轴向地旋转和横向往复运动活塞,以提供具有减小的脉动的流体的连续泵送。 每个流体通过其自身的泵入口和出口进入。 对于混合应用,出口连接在一起。 每个室的每个行程的流量由整个活塞组件的横向冲程以及活塞的近端和远端的环形区域决定。 可以通过改变每个室的活塞和轴直径来改变每冲程的流量。 这允许以任何比例或比例混合两种流体。 两个腔室的交替脉冲提供从每个入口具有交替流体的小段的流。 这样的分段流可以通过下游流动路径的正常流动特性变得更加充分地混合,从而提供更有效的混合。