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    • 1. 发明公开
    • Apparatus for reconstituting a concentrate
    • 重新设计浓度的装置
    • EP0197655A3
    • 1987-01-14
    • EP86301635
    • 1986-03-07
    • Hume, Ronald W.
    • Hume, Ronald W.
    • B67D01/10B67D05/56B01F15/04G01F11/06G01F11/02
    • B67D1/1293B01F15/0458B67D1/107G01F11/06
    • Apparatus (10) for mixing two liquids in desired proportion to provide and dispense a homogeneous beverage on demand in an individual portion, the apparatus including first (18) and second (42) cylinders with reciprocating pistons (24, 46) operable to respectively pump proportionate amounts of the first and second liquids during forward and backward strokes of the pistons, mixing means (32) for mixing the first and second liquids provided from the first and second cylinders, dispensing means (32) for receiving the liquids from the mixing means and discharging them through an outlet to an individual portion shed container, control means (68, 70) for initiating pumping by the first and second cylinders and pistons, and means for automatically terminating the pumping after the pistons have traveled predetermined distances corresponding to a volume of beverage equal to the individual portion. Also disclosed is using a piston sensing means to sense the position of the pistons and provide a control signal when the pistons have reached predetermined positions to cause the pistons to reverse direction.
    • 用于以所需比例混合两种液体的设备(10),用于在单独部分中根据需要提供和分配均质饮料,所述设备包括具有可操作以分别泵送的往复式活塞(24,46)的第一(18)和第二(42) 在第一和第二气缸提供的第一和第二液体混合的混合装置(32)中,用于从混合装置接收液体的分配装置(32) 并通过出口将其排出到单独的部分尺寸的容器,用于启动由第一和第二气缸和活塞泵送的控制装置(68,70),以及用于在活塞行进了对应于体积的预定距离之后自动终止泵送的装置 的饮料等于单个部分。 还公开了使用活塞检测装置来感测活塞的位置,并且当活塞达到预定位置以使活塞反向时提供控制信号。
    • 6. 发明公开
    • Self-fill system
    • 自填系统
    • EP0161042A3
    • 1986-03-05
    • EP85301352
    • 1985-02-28
    • JET SPRAY CORP
    • Jacobs, LeonardArzberger, WilliamCoppola, PeterGross, Thomas A. O.
    • B67D01/10B67D01/00B67D01/12B67D03/00G01F23/24G05D09/12
    • G01F23/242B67D1/0016B67D1/10B67D3/00B67D2210/00157G05D9/12
    • In connection with a beverage dispensing machine, an automatic self-fill control apparatus for the machine for controlling the filling of the liquid tank, which liquid tank is fed with a combination of water and a concentrate syrup adapted to be mixed with the water within the tank. A sensor member is disposed in the tank in a position so as to be responsive to the rise and fall of liquid in the tank. Pump means are provided adapted to pump the syrup to the tank. Control of water flow to the tank is also carried out. The sensor member has a low probe for detecting a low predetermined level of liquid in the tank and a high probe for detecting a high predetermined level of liquid in the tank and adapted to respectively generate low and high probe signals. Control circuit means is provided receiving and responsive to these low and high probe signals for controlling the pump to operate when the low probe is uncovered and terminating the pumping action,when the liquid level reaches the high probe position so that the liquid level in the tank is always maintained at a level between the low and high probes. Also provided is a third sensor for determining an unsafe condition referred to herein as a system override to shut the system down in the event that the high probe is covered and that the liquid level proceeds to the even higher third probe. Also in the system of the present invention, there is provided a sensor for detecting an out-of-syrup condition.
    • 7. 发明公开
    • Dispenser for semi-liquid foods such as chili
    • 半液体食品如CHILI的分配器
    • EP0085835A3
    • 1985-01-23
    • EP83100208
    • 1983-01-12
    • Food-Cone Corporation
    • Frank, Dennis BenjaminO'Mealy, Todd Calef
    • A47G19/18B67D05/02B67D01/02B67D01/10
    • B67D7/64
    • A dispenser for viscous liquid or semi-liquid materials comprising a container (12) for the material and an upright hollow stationary cylinder (36) within the container (12) operatively closed at its bottom end (46), an intake opening (42) in the side of the cylinder (36) disposed upwardly from but adjacent said bottom end (40) and an elevated discharge opening (44) in the side of the cylinder (36) disposed upwardly from said intake opening (42), a sleeve (46) slideably mounted within the cylinder (36) having a lowered position and a raised position and constructed in said lowered position to close off the intake opening (42) and open up the elevated discharge opening (44) and in said raised position to open said intake opening (42) and to close off said elevated discharge opening (44), a vertically reciprocatable piston and rod assembly (60) including a piston (62) disposed within the cylinder (36) shiftable between lowered and raised positions disposed above said elevated discharge opening (44), and friction means (70, 72) interposed between the assembly (60) and sleeve (46) for producing movement of the sleeve (46) between its lowered and raised positions with shifting of the piston (62) between lowered and raised positions.
    • 8. 发明申请
    • METHOD AND DEVICE FOR THE PRODUCTION OF BEVERAGES
    • 用于生产饮料的方法和装置
    • WO1998008769A1
    • 1998-03-05
    • PCT/SE1997001421
    • 1997-08-27
    • POST-MIX EQUIPMENT ABADOLFSSON, Bengt
    • POST-MIX EQUIPMENT AB
    • B67D01/10
    • B67D1/107B67D1/004
    • The invention concerns a method and a device for producing beverages in a beverage making machine, wherein inside a pressure vessel (2) water is stored, carbonated and possibly chilled under pressure and wherein water intended to be fed into the pressure vessel is subjected to an increase of pressure in a water inlet circuit between a feed water intake (I1, I2) and the pressure vessel (2). The invention is distinguished in that carbonated water which is discharged from the pressure vessel (2) in a water outlet circuit (10, 11, 12) is subjected to a controlled pressure reduction or decompression in order to counteract excessive loss of carbon dioxide which is dissolved in the water by supplying it to a pressure transfer device so that the pressure of this water together with the pressure in incoming (I1, I2) feed water is used to obtain said increased pressure. The invention prevents excessive loss of carbon dioxide which is dissolved in the water.
    • 本发明涉及一种用于在饮料制造机中生产饮料的方法和装置,其中在压力容器(2)内储存水,碳酸化并在压力下可能冷却,并且其中将要供入压力容器的水经受 进水口(I1,I2)和压力容器(2)之间的进水回路中的压力增加。 本发明的区别在于,在出水回路(10,11,12)中从压力容器(2)排出的碳酸水受到控制的减压或减压,以抵消二氧化碳的过度损失 通过将其供应到压力传递装置而溶解在水中,使得该水的压力与进入(I1,I2)给水中的压力一起被用于获得所述增加的压力。 本发明防止溶解在水中的二氧化碳的过量损失。
    • 9. 发明申请
    • DEVICE FOR VOLUMETRIC DOSING OF PRODUCTS
    • 产品体积计量装置
    • WO1993025465A1
    • 1993-12-23
    • PCT/US1993005189
    • 1993-06-02
    • THE COCA-COLA COMPANY
    • THE COCA-COLA COMPANYCREDLE, William, S., Jr.HUGHES, Robert, D., IV
    • B67D01/10
    • B67D1/122B67D1/0032B67D1/104
    • A post-mix beverage dispensing valve for dispensing syrup and soda in the desired ratio without the need for flow controls for periodic adjustment of the ratio. The valve includes a flow meter (30) for measuring the flow rate of the soda and a pump (10) for dispensing metered quantities of syrup. The pump (10) preferably includes a chamber (14) within a ceramic sleeve (12) having first and second distal ends and a double-acting ceramic piston (16) mounted for reciprocating sliding movement within the sleeve (12). A solenoid valve control system including a pair of solenoid valves (SCA, SCB) controls syrup flow through the pump (10), in response to signals from the flow meter (30). The valve preferably also includes a syrup flow regulator. The valve can include a single externally manually adjustable flow rate control to vary the dispensing flow rate to any desired value.
    • 一种用于以期望的比例分配糖浆和苏打的后混合饮料分配阀,而不需要用于周期性调节比例的流量控制。 阀包括用于测量苏打流量的流量计(30)和用于分配计量的糖浆的泵(10)。 泵(10)优选地包括在具有第一和第二远端的陶瓷套筒(12)内的腔室(14)和安装成用于套筒(12)内往复滑动运动的双作用陶瓷活塞(16)。 响应于来自流量计(30)的信号,包括一对电磁阀(SCA,SCB)的电磁阀控制系统控制通过泵(10)的糖浆流。 阀优选还包括糖浆流量调节器。 阀可以包括单个外部可手动调节的流量控制,以将分配流量改变为任何期望值。
    • 10. 发明申请
    • DOUBLE DIAPHRAGM PUMP
    • 双面胶膜泵
    • WO1996010534A1
    • 1996-04-11
    • PCT/GB1995002332
    • 1995-10-02
    • ROSEREED LIMITEDENGLAND, Paul, Anthony
    • ROSEREED LIMITED
    • B67D01/10
    • B67D1/103F01L21/02F04B43/0736
    • A pump (38) has a product inlet (9) and a product outlet (10). The product can either enter into the chamber (52) or a chamber (53) with reciprocating movement of a shaft (14) causing fluid to be drawn into one of those chambers and pushed out of the other through a common inlet (9) or outlet (10). Pressure is supplied to a remote chamber and selectively to the opposed sides of the chambers having the product in order to drive the shaft (14) in either direction, as required. The shaft (14) includes passages extending along its length to connect the chambers on the opposite sides from those containing the product either to a low pressure vent or to the high pressure source. A valve (29) is slidably mounted on the shaft (14) in order to determine whether a particular chamber is vented or pressurised and movement of the valve is caused by the movement of the shaft (14).
    • 泵(38)具有产品入口(9)和产品出口(10)。 产品可以通过轴(14)的往复运动进入腔室(52)或腔室(53),导致流体被吸入这些腔室中的一个并通过公共入口(9)推出另一个腔室 出口(10)。 压力被供应到远程室并且选择性地供应到具有产品的室的相对侧,以便根据需要沿任一方向驱动轴(14)。 轴(14)包括沿着其长度延伸的通道,用于将相对侧的腔室与包含产品的腔室连接到低压通风口或高压源。 阀(29)可滑动地安装在轴(14)上,以便确定特定室是否排气或加压,并且阀的运动是由轴(14)的运动引起的。