WO2004004523A1 - System and method for producing foamed and steamed milk for hot beverages - Google Patents

System and method for producing foamed and steamed milk for hot beverages Download PDF

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Publication number
WO2004004523A1
WO2004004523A1 PCT/US2003/021207 US0321207W WO2004004523A1 WO 2004004523 A1 WO2004004523 A1 WO 2004004523A1 US 0321207 W US0321207 W US 0321207W WO 2004004523 A1 WO2004004523 A1 WO 2004004523A1
Authority
WO
WIPO (PCT)
Prior art keywords
milk
foamed
pressurized
steam
air
Prior art date
Application number
PCT/US2003/021207
Other languages
French (fr)
Inventor
Charles Bradley Green
Original Assignee
The Coca-Cola Company
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by The Coca-Cola Company filed Critical The Coca-Cola Company
Priority to AU2003247901A priority Critical patent/AU2003247901A1/en
Priority to EP03763287A priority patent/EP1519670B1/en
Priority to BRPI0312396-0B1A priority patent/BR0312396B1/en
Priority to JP2004519962A priority patent/JP4410102B2/en
Priority to DE60312165T priority patent/DE60312165T2/en
Priority to CA002493904A priority patent/CA2493904A1/en
Priority to MXPA05000041A priority patent/MXPA05000041A/en
Priority to CNB038160854A priority patent/CN100333675C/en
Publication of WO2004004523A1 publication Critical patent/WO2004004523A1/en

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Classifications

    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47JKITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
    • A47J31/00Apparatus for making beverages
    • A47J31/44Parts or details or accessories of beverage-making apparatus
    • A47J31/4485Nozzles dispensing heated and foamed milk, i.e. milk is sucked from a milk container, heated and foamed inside the device, and subsequently dispensed from the nozzle
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47JKITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
    • A47J43/00Implements for preparing or holding food, not provided for in other groups of this subclass
    • A47J43/12Whipping by introducing a stream of gas

Definitions

  • the present invention relates generally to a beverage system and more particularly relates to systems and method for producing foamed and steamed milk for beverages.
  • Hot beverages such as cappuccinos and lattes are becoming increasingly popular.
  • Commercial businesses from fast food restaurants to coffee houses are providing these hot beverages to their customers.
  • hot beverages may be made in sufficient quantity for a high volume restaurant, many customers may prefer a freshly brewed beverage.
  • these customers also may prefer freshly made foamed or steamed milk in their hot beverage.
  • the foamed or steamed milk generally is of higher quality if it is made fresh for each customer.
  • current technology may not produce foamed or steamed milk quickly or efficiently enough to satisfy consumer demands.
  • foamed milk may be produced using steam, milk, and air
  • steamed milk is produced using only steam and milk.
  • steam, milk, and/or air may be forced through a single venturi orifice.
  • the steam, milk, and/or air may then be mixed as they pass through the single venturi orifice.
  • the milk, steam, and/or air may not be sufficiently mixed. Insufficient mixing may introduce inefficiencies that result in some of the milk not being converted to foam.
  • a foamed or steamed milk dispenser that can produce foamed and steamed milk in an efficient, high quality, and high speed manner to individual consumers in individual servings.
  • the device preferably should be easy to use, easy to maintain, and be competitive in terms of cost. Summary Of The invention
  • the present invention thus provides a foamed milk system for creating foamed milk from a source of milk, a source of air, and a source of steam.
  • the system may include a milk inlet system for pressurizing the milk, an air inlet system for pressurizing the air, a mixing area to mix the pressurized milk, the pressurized air, and the steam, and an expansion area to expand the mixture of the pressurized milk, the pressurized air, and the steam.
  • the milk inlet system may include a peristaltic pump.
  • a disposable hose may connect the peristaltic pump and the source of milk.
  • the air inlet system may include an air pump.
  • a hose connector may connect the milk inlet system and the air inlet system.
  • the hose connector may include a three-way or a four- way valve.
  • a disposable hose also may connect the hose connector and the mixing area.
  • the mixing area may include a hollow nozzle block.
  • a mixture nozzle may be positioned within the hollow nozzle block.
  • the mixture nozzle may include a number of protrusions positioned thereon and a number of orifice area positioned about the protrusions.
  • the mixture nozzle may be removable.
  • the foamed milk system further may include a diffuser to gather the flow of the foamed milk to be dispensed.
  • the diffuser may include a diffuser insert and a spout.
  • the foamed milk system further may include a sanitation system.
  • the sanitation system may include a source of hot water. The hot water flows through the mixing area and the expansion area via a sanitation hose.
  • a further embodiment of the present invention provides for a steamed milk system for creating steamed milk from pressurized milk and steam.
  • the system may include a mixing area to mix the pressurized milk and the steam, a pressurized milk inlet system for injecting the pressurized milk into the mixing area, a steam inlet system for injecting the steam into the mixing area, an expansion area to expand the pressurized milk and the steam to form a flow of steamed milk, and a diffuser to gather the flow of the steamed milk to be dispensed.
  • a method of the present invention may provide for a sanitizing a dispenser serving foamed milk from a source of pressurized milk and a source of pressurized air.
  • the pressurized milk and the pressurized air may be fed through a number of hoses and mixed together in a mixing nozzle.
  • the method may include providing a source of hot water, connecting the source of hot water to one or more of the number of hoses, flowing the hot water through the one or more of the number of hoses and the mixing nozzle, disconnecting the source of hot water, and repeating the above steps on a predetermined schedule.
  • the predetermined schedule may include about every two (2) hours.
  • the hot water may include about 190 degrees Fahrenheit (about 87.8 degrees Celsius).
  • the method further may include the steps of replacing the number of hoses on a second predetermined schedule.
  • the second predetermined schedule may include about daily.
  • a further method of the present invention may provide for producing foamed milk from milk, air, and steam.
  • the method may include pressurizing the milk and the air, injecting the pressurized milk, the pressurized air, and the steam into a mixing area, and depressurizing the milk, air, and steam mixture to ambient pressure to create the foamed milk.
  • Fig. 1 is a schematic view of the foamed milk system of the present invention.
  • FIG. 2 is a plan view of the mixing nozzle insert shown with the nozzle block in cross-section.
  • Fig. 3 is a perspective view of the nozzle insert and protrusions.
  • FIG. 4 is a perspective view of an alternative embodiment of a cleaning block junction.
  • the present invention injects pressurized milk, air, and steam into a mixing area of a nozzle body.
  • the milk, air, and steam may be intimately and thoroughly mixed within one or more orifice areas.
  • the mixture then proceeds to an expansion area where the mixture expands to ambient pressure.
  • the expansion causes the milk to foam.
  • the foamed milk may then be collected with a diffuser and dispensed into a cup.
  • the present invention also can be used to produce steamed milk only by introducing steam and milk to the foamed milk system.
  • T he foamed milk system 100 may include a pressurized milk inlet system 110.
  • the pressurized milk inlet system 110 may provide pressurized milk to the foamed milk system 100 as a whole.
  • the pressurized milk inlet 110 system may include a milk supply 120, a milk pump 130, and a plurality of milk hoses 140, 150.
  • the milk inlet system 110 may be positioned within a refrigerated container 155.
  • the refrigerated container 110 may be any type of standard refrigeration system.
  • the milk supply 120 may include any type of container, including a carton, a bag in box, or any other type of storage device.
  • the milk itself may be UHT (Ultra High Temperature) milk.
  • the milk preferably is maintained at about 40 degrees Fahrenheit (4.4 degrees Celsius) or lower after opening.
  • the milk preferably is replaced when the milk supply 120 is empty or about every 48 hours or so.
  • the milk hoses 140, 150 may be made out of rubber, copper, stainless steel, o ther t ypes o f m etals, p lastics, and o ther types o f s ubstantially n on-corrosive materials. The materials preferably are food grade.
  • the hoses 140, 150 preferably are disposable. Although any length may be used, the hoses 140, 150 preferably are as short as possible to limit the length the milk must travel out of the milk supply.
  • the first milk hose 140 may connect the milk supply 120 to the milk pump 130.
  • the milk pump 130 may pressurize and meter the milk.
  • the milk may be pressurized between about two (2) and about forty (40) pounds per square inch (psi) (about 0.14 to about 2.8 kilograms per square centimeter (ksc)) depending on the flow rate desired.
  • the present embodiment may pressurize the milk to about fifteen (15) psi (about one (1) ksc).
  • the milk pump 130 may be a peristaltic pump to better meter the milk.
  • the peristaltic pump also may have the advantage of reducing the risk of backflow and, hence, reducing the risk of somehow contaminating the milk. Any other type of pump that pressurizes and meters the milk is contemplated for use herein.
  • the foamed milk system 100 also may include a pressurized air inlet system 160.
  • the pressurized air inlet system 160 may provide pressurized air to the foamed milk system 100.
  • the air may be pressurized to between about two (2) and about forty (40) psi (about 0.14 to about 2.8 ksc) using an air pump 170 depending on the desired flow rate.
  • the present embodiment may pressurize the air to about fifteen (15) psi (about one (1) ksc).
  • the air pump 170 may be any pump design that provides compressed air.
  • the pressurized air may be delivered via an air hose 180.
  • the air hose 180 may include a microfilter 175 or a similar type of device to remove any impurities in the air stream.
  • the pressurized milk and the pressurized air may be combined and pre-mixed.
  • the pressurized milk inlet system 110 and the pressurized air inlet system 160 may be joined at a hose connector 185 via the second milk hose 150 and the air hose 180.
  • the hose connector 185 may include three (3) hose fittings 190, 200, 210. Any type of three (3) way valve may be used.
  • the milk hose 150 may connected the output of the milk pump 130 and the first hose fitting 190.
  • the air hose 180 may connect the output of the air pump 170 and the second hose fitting 200.
  • the pressurized air and pressurized milk may be combined into one stream in the hose connector 185 to allow the mixture to exit through the third hose fitting 210.
  • the hose connector 185, the milk hose 150, and the air hose 180 may be made out of copper, stainless steel, other types of metals, plastics, rubber, and other types of substantially non-corrosive materials as described above. These elements m ay b e d etachable t o a How for easier c leaning.
  • the h ose fittings 190, 200, 210 and the other connections described herein may be barbed and may include polished surfaces to prevent crevice accumulation.
  • the hoses 150, 180 preferably are disposable. The length of the hoses 150, 180 preferably is as short as possible.
  • a mixture hose 220 may connect the hose connector 185 to a mixture inlet 230 of a nozzle body 240 to transport the milk and air mixture.
  • the mixture hose 220 may be made out of copper, stainless steel, other types of metals, plastics, rubber, or other types of substantially non-corrosive materials as described above.
  • the hose 220 preferably is disposable and as short in length as possible.
  • the mixture hose 220 may be attached to the nozzle body 240 by fitting the mixture hose 220 into the mixture inlet 230. Alternatively, a clamping mechanism or any other method to secure the mixture hose 220 in the mixture inlet 230 known in the art may be used.
  • the nozzle body 240 may be a substantially hollow block-like structure.
  • the nozzle body 240 may be made out of stainless steel, aluminum, plastic, or any other substantially non-corrosive material.
  • the nozzle body 240 may include an inner wall 250 and an outer wall 260.
  • the inner wall 250 may define a mixing area 310 as w ill b e d escribed in more d etail b elow.
  • the m ixing area 310 m ay b e substantially conical in shape.
  • the mixture inlet 230 may pass through the nozzle body 240 to the mixing area 310.
  • the mixture inlet 230 may be a hollow region in the nozzle body between the inner wall 250 and the outer wall 260 that allows the mixture hose 220 to fit into the nozzle body 240 and allows the milk and air mixture to pass to the mixing area 310.
  • the mixture inlet 230 also is contemplated to include an insert or any other means of allowing the mixture hose 220 to feed the mixture into the mixing area 310.
  • the mixture inlet 230 may include a barbed connector.
  • the present invention is not limited to pre-mixing the pressurized air and milk prior to the mixing area 310. It is contemplated that the milk and air may enter the mixing area 310 jointly or separately.
  • the foamed milk system 100 also may include a pressurized steam inlet system 235 that provides steam to the foamed milk system 310.
  • the steam inlet system 235 may include a steam generator 270, a steam hose 280, and a steam inlet 290.
  • the steam generator 270 may be a heat exchanger, a boiler, or any other device that creates pressurized steam. Steam in the present embodiment may be pressurized to about forty (40) psi (about 2.8 ksc) or so. The pressure may be higher or lower depending on the rate of foam production required.
  • the steam hose 280 may be used to transport the pressurized steam from the steam generator 270 to the steam inlet 290.
  • the steam hose 280 may be made out of copper, stainless steel, other types of metals, plastics, rubber, or other types of substantially non-corrosive materials as are described above.
  • the steam hose 280 may be attached to the nozzle body 240 by fitting the steam hose 280 into the steam inlet 290 by a clamping mechanism or by any other method known in the art.
  • the steam inlet 290 may pass through the nozzle body 240.
  • the steam inlet 290 may be a hollow region in the nozzle body 240 between the inner wall 250 and the outer wall 260 that allows the steam hose 280 to fit into the nozzle body 240 and the steam to pass to the mixing area 310.
  • the steam inlet 290 may include a barbed connector.
  • the pressurized steam may be pre- mixed with the pressurized milk and/or air prior to entering the mixing area 310.
  • the inner wall 250 of the nozzle body may define the mixing area 310.
  • the inner wall 250 and the mixing area 310 may be tapered to allow a nozzle insert 300 to fit therein.
  • the nozzle body 240 may be made of stainless steel, aluminum, plastic, or any other substantially non-corrosive material.
  • the nozzle insert 300 may be tapered in a similar manner as the mixing area 310 so as to allow the insert 300 to fit inside of the nozzle body 240.
  • the nozzle insert 300 may be solid or hollow.
  • the nozzle insert 300 may be locked into the nozzle body 240 by using a twist lock mechanism, by a screwing mechanism, or by any other attachment means known in the art.
  • the screwing mechanism for instance, may include a screw attached to the top end of the nozzle insert 300 that screws into a threaded channel in the nozzle body 240.
  • the insertion of the nozzle insert 300 may create an annular region between the inner wall 250 of the nozzle body 240 and the nozzle insert 300.
  • the annular region defines the mixing area 310 for the milk, air, and steam.
  • the mixing area 310 the milk, air, and steam become intimately mixed so as to increase the efficiency of the system.
  • the nozzle insert 300 also may contain a number of protrusions 320 to aid in the mixing of the milk, air, and steam.
  • the protrusions 320 may contact the inner wall 250 of the nozzle body 240 when the nozzle insert 300 is placed inside the nozzle body 240.
  • the spaces between the protrusions 320 may create a number of orifice areas 330.
  • the use of the protrusions 320 in the mixing area 310 may promote turbulent fluid flow therein. This turbulent fluid flow may enhance mixing of the milk, air, and steam passing there through. However, turbulent flow is not required so long as sufficient mixing is achieved. [0033] In an exemplary embodiment of the present invention, the nozzle body
  • the nozzle insert 300 may be about three (3) inches (about 7.6 centimeters) long and substantially cylindrically shaped.
  • the nozzle insert 300 also may be substantially c ylindrically shaped and about one (1) inch (about 2.5 centimeters) long and about 0.6 inches (about 1.5 centimeters) in diameter at the base.
  • the inner wall 250 of the nozzle body 240 and the nozzle insert 300 may be tapered at about a 10.5 degree angle.
  • the nozzle insert 300 may only be tapered for about 0.8 inches (2 centimeters) of the length and the remaining length may not be tapered.
  • the exemplary embodiment may include about two (2) rows of protrusions 320 with about sixteen (16) protrusions 320 per row within the mixing area 310.
  • the protrusions 320 in the exemplary embodiment, may be about 0.029 inches (about 0.7 millimeters) tall and about 0.06 inches (1.5 millimeters) wide.
  • the rows may be about one-third inch (about 0.85 centimeters) apart. Any number of protrusions 320, rows of protrusions 320, or size of protrusions 320 is contemplated so as to enhance the mixing of the milk, air, and steam. Further, the present invention is not limited to the dimensions in the exemplary embodiment.
  • the nozzle body 240 and the nozzle insert 300 are contemplated to be any size and tapered at any angle that may create an adequate space for use with the present invention.
  • Adjacent to the mixing area 310 may be an expansion area 340.
  • the expansion area 340 may be located where the annular region between the inner wall 250 of the nozzle body and the nozzle insert 300 begins to widen or ends.
  • the expansion area 340 may be at or about ambient pressure. As the pressurized milk, air, and steam mixture reach the expansion area 340 from the mixing area 310, the mixture may begin to expand as the pressure of the mixture is reduced to about ambient pressure. This expansion may cause the milk, air, and steam mixture to foam as the pressure is reduced.
  • the foam then may be collected using a diffuser 350.
  • the diffuser 350 may be used to control and collect the foam from the expansion area 340 and dispense the foam into a cup or mug 380.
  • the diffuser 350 may include a diffuser insert 360 and a spout 370.
  • the diffuser insert 360 may be cylindrically shaped and may be tapered to funnel the foam to the spout 370.
  • the diffuser 350 may be made of stainless steel, aluminum, plastic, or any other substantially non-corrosive material. Any type of diffuser system is contemplated herein that allows the user to collect and dispense the foam into a cup or mug 380.
  • the diffuser insert 360 and the bottom of the nozzle body 240 may be threaded so as to allow them to be screwed together.
  • the diffuser insert 360 also may snap into the nozzle body 240 or be connected in any other means known in the art.
  • the spout 370 may be threaded and screwed into the bottom of the diffuser insert 360, snapped into the bottom portion of the diffuser insert 360, or connected to the diffuser insert 360 in any other manner known in the art.
  • the exemplary embodiment may produce about eight (8) ounces
  • the foam may be produced at a rate of about 0.375 ounces/second (about 11 milliliters/second) by providing pressurized milk at about 0.375 ounces/second (about 11 milliliters/second) for about eight (8) seconds, pressurized air at about fifteen (15) psi (about one (1) ksc) for about eight (8) seconds, and pressurized steam at about fifteen (15) psi (about one (1) ksc) for about eight (8) seconds into the mixing area 310.
  • the temperature of the milk may be about 155 degrees Fahrenheit (about 68.3 degrees Celsius) or so.
  • the temperature of the nozzle body 240 may reach about 212 degrees Fahrenheit (about 100 degrees Celsius).
  • the present invention is in no way limited to the exemplary embodiment and can be of any size, dimension, operating conditions, and flow rates necessary for the desired foam production.
  • the foamed milk system 100 also may be used to produce steamed milk for lattes and other hot beverages.
  • the foamed milk system 100 may be used in substantially the same manner to produce steamed milk as it is used to produce foamed milk.
  • Steamed milk may be produced by only introducing milk and steam into the foamed milk system 100.
  • the pressurized air inlet system 160 would not be used.
  • Milk from the pressurized milk inlet system 110 and steam from the pressurized steam inlet system 235 may be introduced to the mixing area 310, expanded in the expansion area 340, collected with the diffuser 350, and dispensed into the mug or cup 380 to produce the steamed milk desired.
  • the present embodiment may pressurize the milk to about fifteen (15) psi (about 1 ksc) and the steam to about forty (40) psi (about 2.8 ksc) to produce steamed milk at a rate of about six (6) ounces per second (about 177.4 milliliters per second). Any pressure, however, may be used to accommodate a similar or different steamed milk production rate.
  • the foamed milk system 100 also may include a sanitation system 500.
  • the sanitation system 500 may include a source of hot water 510.
  • the hot water supply 510 may be the hot water storage tank of a coffee brewer (not shown) or a similar type of device.
  • the hot water supply 510 may be connected to the air hose 180 via a hot water hose 520.
  • a sanitation valve 530 may open and shut the hot water hose 520.
  • the sanitation valve 530 may be a solenoid valve or a similar type of device.
  • a T-joint 540 or a similar type of device may join the air hose 180 and the hot water hose 520.
  • One or more check valves 550 may be placed on either side of the T-joint 540 to prevent backflow.
  • the sanitation valve 530 is opened and allows hot water to flow from the hot water source 510 through the hot water hose 520 and the check valves 550.
  • the hot water is delivered to the hose connector 185, the mixture hose 220, and the nozzle body 240.
  • a sufficient quantity of water is delivered to ensure that all internal services reach a temperature of at least about a 190 degrees Fahrenheit (about 87.8 degrees Celsius).
  • This flush cycle ensures that all elements outside of the refrigerated container 155 or in connection with a non- refrigerated element are flushed and sanitized.
  • the flush cycle preferably is repeated about every two (2) hours or so.
  • Sanitation is further improved by the milk hoses 140, 150 and the mixture hose 220 being disposable.
  • the hoses 140, 150, 220 may be replaced daily.
  • the hose connector 185 and the nozzle insert 300 of the nozzle body 240 may be removed and sanitized each day.
  • the connectors used herein may be barbed to prevent crevice build up.
  • the milk system 100 thus provides for quick and easy cleaning and sanitation.
  • the foamed milk system 100 also may include a cleaning block junction 390 depicted in Fig. 4.
  • the cleaning block junction 390 may replace the hose connector 185.
  • the cleaning block junction 390 may contain four (4) hose fittings 400, 410, 420, 430.
  • the first three (3) fittings 400, 410, 420 may be connected to the milk hose 150, the air hose 180, and the mixture hose 220 in the manner described above with respect to the hose connector 185.
  • the fourth fitting 430 may be connected to a flush water hose (not shown). Hot water may be forced through the flush water hose and into the cleaning block junction 390 to sterilize the foamed milk system 100.
  • the hot water may travel through the mixture hose 220, the mixture inlet 230, the mixing area 310, the expansion area 340, and the diffuser 350 to sterilize the foamed milk sy stem 100 as is d escribed above.
  • the sy stem 100 a s a whole may then be reoriented to producing the steamed milk and foam as is described above.

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  • Engineering & Computer Science (AREA)
  • Food Science & Technology (AREA)
  • Mechanical Engineering (AREA)
  • Apparatus For Making Beverages (AREA)
  • Dairy Products (AREA)
  • Commercial Cooking Devices (AREA)
  • Beans For Foods Or Fodder (AREA)
  • Tea And Coffee (AREA)
  • Grain Derivatives (AREA)

Abstract

A foamed milk system (100) for creating foamed milk from a source of milk, a source of air, and a source of steam. The system may include a milk inlet system (110) for pressurizing the milk, an air inlet system (160) for pressurizing the air, a mixing area (310) to mix the pressurized milk, the pressurized air, and the steam, and an expansion area (340) to expand the mixture of the pressurized milk, the pressurized air, and the steam.

Description

SYSTEM AND METHOD FOR PRODUCING FOAMED AND STEAMED MILK
FOR HOT BEVERAGES
Technical Field
[0001] The present invention relates generally to a beverage system and more particularly relates to systems and method for producing foamed and steamed milk for beverages.
Background of the Invention
[0002] Hot beverages such as cappuccinos and lattes are becoming increasingly popular. Commercial businesses from fast food restaurants to coffee houses are providing these hot beverages to their customers. Although hot beverages may be made in sufficient quantity for a high volume restaurant, many customers may prefer a freshly brewed beverage. Likewise, these customers also may prefer freshly made foamed or steamed milk in their hot beverage. The foamed or steamed milk generally is of higher quality if it is made fresh for each customer. However, current technology may not produce foamed or steamed milk quickly or efficiently enough to satisfy consumer demands.
[0003] Generally described, foamed milk may be produced using steam, milk, and air, whereas steamed milk is produced using only steam and milk. Specifically, steam, milk, and/or air may be forced through a single venturi orifice. The steam, milk, and/or air may then be mixed as they pass through the single venturi orifice. The milk, steam, and/or air, however, may not be sufficiently mixed. Insufficient mixing may introduce inefficiencies that result in some of the milk not being converted to foam. Furthermore, it may take a considerable amount of time to produce the foamed or steamed milk by forcing the steam, milk, and/or air through the single venturi orifice.
[0004] What may be desired, therefore, is a foamed or steamed milk dispenser that can produce foamed and steamed milk in an efficient, high quality, and high speed manner to individual consumers in individual servings. The device, however, preferably should be easy to use, easy to maintain, and be competitive in terms of cost. Summary Of The invention
[0005] The present invention thus provides a foamed milk system for creating foamed milk from a source of milk, a source of air, and a source of steam. The system may include a milk inlet system for pressurizing the milk, an air inlet system for pressurizing the air, a mixing area to mix the pressurized milk, the pressurized air, and the steam, and an expansion area to expand the mixture of the pressurized milk, the pressurized air, and the steam.
[0006] The milk inlet system may include a peristaltic pump. A disposable hose may connect the peristaltic pump and the source of milk. The air inlet system may include an air pump. A hose connector may connect the milk inlet system and the air inlet system. The hose connector may include a three-way or a four- way valve. A disposable hose also may connect the hose connector and the mixing area.
[0007] The mixing area may include a hollow nozzle block. A mixture nozzle may be positioned within the hollow nozzle block. The mixture nozzle may include a number of protrusions positioned thereon and a number of orifice area positioned about the protrusions. The mixture nozzle may be removable.
[0008] The foamed milk system further may include a diffuser to gather the flow of the foamed milk to be dispensed. The diffuser may include a diffuser insert and a spout.
[0009] The foamed milk system further may include a sanitation system. The sanitation system may include a source of hot water. The hot water flows through the mixing area and the expansion area via a sanitation hose.
[0010] A further embodiment of the present invention provides for a steamed milk system for creating steamed milk from pressurized milk and steam. The system may include a mixing area to mix the pressurized milk and the steam, a pressurized milk inlet system for injecting the pressurized milk into the mixing area, a steam inlet system for injecting the steam into the mixing area, an expansion area to expand the pressurized milk and the steam to form a flow of steamed milk, and a diffuser to gather the flow of the steamed milk to be dispensed.
[0011] A method of the present invention may provide for a sanitizing a dispenser serving foamed milk from a source of pressurized milk and a source of pressurized air. The pressurized milk and the pressurized air may be fed through a number of hoses and mixed together in a mixing nozzle. The method may include providing a source of hot water, connecting the source of hot water to one or more of the number of hoses, flowing the hot water through the one or more of the number of hoses and the mixing nozzle, disconnecting the source of hot water, and repeating the above steps on a predetermined schedule.
[0012] The predetermined schedule may include about every two (2) hours.
The hot water may include about 190 degrees Fahrenheit (about 87.8 degrees Celsius). The method further may include the steps of replacing the number of hoses on a second predetermined schedule. The second predetermined schedule may include about daily.
[0013] A further method of the present invention may provide for producing foamed milk from milk, air, and steam. The method may include pressurizing the milk and the air, injecting the pressurized milk, the pressurized air, and the steam into a mixing area, and depressurizing the milk, air, and steam mixture to ambient pressure to create the foamed milk.
Brief Description of the Drawings
[0014] Fig. 1 is a schematic view of the foamed milk system of the present invention.
[0015] Fig. 2 is a plan view of the mixing nozzle insert shown with the nozzle block in cross-section.
[0016] Fig. 3 is a perspective view of the nozzle insert and protrusions.
[0017] Fig. 4 is a perspective view of an alternative embodiment of a cleaning block junction.
Detailed Description of the Invention
[0018] Briefly described, the present invention injects pressurized milk, air, and steam into a mixing area of a nozzle body. The milk, air, and steam may be intimately and thoroughly mixed within one or more orifice areas. The mixture then proceeds to an expansion area where the mixture expands to ambient pressure. The expansion causes the milk to foam. The foamed milk may then be collected with a diffuser and dispensed into a cup. The present invention also can be used to produce steamed milk only by introducing steam and milk to the foamed milk system. [0019] Referring now to the drawings in more detail, in which like numerals represent like elements throughout the several views, Figs. 1-3 show a foamed milk system 100 of the present invention. T he foamed milk system 100 may include a pressurized milk inlet system 110. The pressurized milk inlet system 110 may provide pressurized milk to the foamed milk system 100 as a whole. The pressurized milk inlet 110 system may include a milk supply 120, a milk pump 130, and a plurality of milk hoses 140, 150. The milk inlet system 110 may be positioned within a refrigerated container 155. The refrigerated container 110 may be any type of standard refrigeration system. The milk supply 120 may include any type of container, including a carton, a bag in box, or any other type of storage device. The milk itself may be UHT (Ultra High Temperature) milk. The milk preferably is maintained at about 40 degrees Fahrenheit (4.4 degrees Celsius) or lower after opening. The milk preferably is replaced when the milk supply 120 is empty or about every 48 hours or so.
[0020] The milk hoses 140, 150 may be made out of rubber, copper, stainless steel, o ther t ypes o f m etals, p lastics, and o ther types o f s ubstantially n on-corrosive materials. The materials preferably are food grade. The hoses 140, 150 preferably are disposable. Although any length may be used, the hoses 140, 150 preferably are as short as possible to limit the length the milk must travel out of the milk supply. [0021] The first milk hose 140 may connect the milk supply 120 to the milk pump 130. The milk pump 130 may pressurize and meter the milk. The milk may be pressurized between about two (2) and about forty (40) pounds per square inch (psi) (about 0.14 to about 2.8 kilograms per square centimeter (ksc)) depending on the flow rate desired. The present embodiment may pressurize the milk to about fifteen (15) psi (about one (1) ksc). The milk pump 130 may be a peristaltic pump to better meter the milk. The peristaltic pump also may have the advantage of reducing the risk of backflow and, hence, reducing the risk of somehow contaminating the milk. Any other type of pump that pressurizes and meters the milk is contemplated for use herein. [0022] The foamed milk system 100 also may include a pressurized air inlet system 160. The pressurized air inlet system 160 may provide pressurized air to the foamed milk system 100. The air may be pressurized to between about two (2) and about forty (40) psi (about 0.14 to about 2.8 ksc) using an air pump 170 depending on the desired flow rate. The present embodiment may pressurize the air to about fifteen (15) psi (about one (1) ksc). The air pump 170 may be any pump design that provides compressed air. The pressurized air may be delivered via an air hose 180. The air hose 180 may include a microfilter 175 or a similar type of device to remove any impurities in the air stream.
[0023] The pressurized milk and the pressurized air may be combined and pre-mixed. The pressurized milk inlet system 110 and the pressurized air inlet system 160 may be joined at a hose connector 185 via the second milk hose 150 and the air hose 180. The hose connector 185 may include three (3) hose fittings 190, 200, 210. Any type of three (3) way valve may be used. The milk hose 150 may connected the output of the milk pump 130 and the first hose fitting 190. The air hose 180 may connect the output of the air pump 170 and the second hose fitting 200. The pressurized air and pressurized milk may be combined into one stream in the hose connector 185 to allow the mixture to exit through the third hose fitting 210. [0024] As described above, the hose connector 185, the milk hose 150, and the air hose 180 may be made out of copper, stainless steel, other types of metals, plastics, rubber, and other types of substantially non-corrosive materials as described above. These elements m ay b e d etachable t o a How for easier c leaning. The h ose fittings 190, 200, 210 and the other connections described herein may be barbed and may include polished surfaces to prevent crevice accumulation. The hoses 150, 180 preferably are disposable. The length of the hoses 150, 180 preferably is as short as possible.
[0025] A mixture hose 220 may connect the hose connector 185 to a mixture inlet 230 of a nozzle body 240 to transport the milk and air mixture. The mixture hose 220 may be made out of copper, stainless steel, other types of metals, plastics, rubber, or other types of substantially non-corrosive materials as described above. The hose 220 preferably is disposable and as short in length as possible. The mixture hose 220 may be attached to the nozzle body 240 by fitting the mixture hose 220 into the mixture inlet 230. Alternatively, a clamping mechanism or any other method to secure the mixture hose 220 in the mixture inlet 230 known in the art may be used. [0026] The nozzle body 240 may be a substantially hollow block-like structure. The nozzle body 240 may be made out of stainless steel, aluminum, plastic, or any other substantially non-corrosive material. The nozzle body 240 may include an inner wall 250 and an outer wall 260. The inner wall 250 may define a mixing area 310 as w ill b e d escribed in more d etail b elow. The m ixing area 310 m ay b e substantially conical in shape.
[0027] The mixture inlet 230 may pass through the nozzle body 240 to the mixing area 310. The mixture inlet 230 may be a hollow region in the nozzle body between the inner wall 250 and the outer wall 260 that allows the mixture hose 220 to fit into the nozzle body 240 and allows the milk and air mixture to pass to the mixing area 310. The mixture inlet 230 also is contemplated to include an insert or any other means of allowing the mixture hose 220 to feed the mixture into the mixing area 310. The mixture inlet 230 may include a barbed connector. The present invention is not limited to pre-mixing the pressurized air and milk prior to the mixing area 310. It is contemplated that the milk and air may enter the mixing area 310 jointly or separately.
[0028] The foamed milk system 100 also may include a pressurized steam inlet system 235 that provides steam to the foamed milk system 310. The steam inlet system 235 may include a steam generator 270, a steam hose 280, and a steam inlet 290. The steam generator 270 may be a heat exchanger, a boiler, or any other device that creates pressurized steam. Steam in the present embodiment may be pressurized to about forty (40) psi (about 2.8 ksc) or so. The pressure may be higher or lower depending on the rate of foam production required. The steam hose 280 may be used to transport the pressurized steam from the steam generator 270 to the steam inlet 290. The steam hose 280 may be made out of copper, stainless steel, other types of metals, plastics, rubber, or other types of substantially non-corrosive materials as are described above. The steam hose 280 may be attached to the nozzle body 240 by fitting the steam hose 280 into the steam inlet 290 by a clamping mechanism or by any other method known in the art. [0029] The steam inlet 290 may pass through the nozzle body 240. The steam inlet 290 may be a hollow region in the nozzle body 240 between the inner wall 250 and the outer wall 260 that allows the steam hose 280 to fit into the nozzle body 240 and the steam to pass to the mixing area 310. The steam inlet 290 may include a barbed connector. It is also contemplated that the pressurized steam may be pre- mixed with the pressurized milk and/or air prior to entering the mixing area 310. [0030] As described above, the inner wall 250 of the nozzle body may define the mixing area 310. The inner wall 250 and the mixing area 310 may be tapered to allow a nozzle insert 300 to fit therein. The nozzle body 240 may be made of stainless steel, aluminum, plastic, or any other substantially non-corrosive material. The nozzle insert 300 may be tapered in a similar manner as the mixing area 310 so as to allow the insert 300 to fit inside of the nozzle body 240. The nozzle insert 300 may be solid or hollow.
[0031 ] The nozzle insert 300 may be locked into the nozzle body 240 by using a twist lock mechanism, by a screwing mechanism, or by any other attachment means known in the art. The screwing mechanism, for instance, may include a screw attached to the top end of the nozzle insert 300 that screws into a threaded channel in the nozzle body 240.
[0032] The insertion of the nozzle insert 300 may create an annular region between the inner wall 250 of the nozzle body 240 and the nozzle insert 300. The annular region defines the mixing area 310 for the milk, air, and steam. In the mixing area 310, the milk, air, and steam become intimately mixed so as to increase the efficiency of the system. As depicted in Figs. 2 and 3, the nozzle insert 300 also may contain a number of protrusions 320 to aid in the mixing of the milk, air, and steam. The protrusions 320 may contact the inner wall 250 of the nozzle body 240 when the nozzle insert 300 is placed inside the nozzle body 240. The spaces between the protrusions 320 may create a number of orifice areas 330. The use of the protrusions 320 in the mixing area 310 may promote turbulent fluid flow therein. This turbulent fluid flow may enhance mixing of the milk, air, and steam passing there through. However, turbulent flow is not required so long as sufficient mixing is achieved. [0033] In an exemplary embodiment of the present invention, the nozzle body
240 may be about three (3) inches (about 7.6 centimeters) long and substantially cylindrically shaped. The nozzle insert 300 also may be substantially c ylindrically shaped and about one (1) inch (about 2.5 centimeters) long and about 0.6 inches (about 1.5 centimeters) in diameter at the base. The inner wall 250 of the nozzle body 240 and the nozzle insert 300 may be tapered at about a 10.5 degree angle. The nozzle insert 300 may only be tapered for about 0.8 inches (2 centimeters) of the length and the remaining length may not be tapered. The exemplary embodiment may include about two (2) rows of protrusions 320 with about sixteen (16) protrusions 320 per row within the mixing area 310. The protrusions 320, in the exemplary embodiment, may be about 0.029 inches (about 0.7 millimeters) tall and about 0.06 inches (1.5 millimeters) wide. The rows may be about one-third inch (about 0.85 centimeters) apart. Any number of protrusions 320, rows of protrusions 320, or size of protrusions 320 is contemplated so as to enhance the mixing of the milk, air, and steam. Further, the present invention is not limited to the dimensions in the exemplary embodiment. The nozzle body 240 and the nozzle insert 300 are contemplated to be any size and tapered at any angle that may create an adequate space for use with the present invention.
[0034] Adjacent to the mixing area 310 may be an expansion area 340. The expansion area 340 may be located where the annular region between the inner wall 250 of the nozzle body and the nozzle insert 300 begins to widen or ends. The expansion area 340 may be at or about ambient pressure. As the pressurized milk, air, and steam mixture reach the expansion area 340 from the mixing area 310, the mixture may begin to expand as the pressure of the mixture is reduced to about ambient pressure. This expansion may cause the milk, air, and steam mixture to foam as the pressure is reduced.
[0035] The foam then may be collected using a diffuser 350. The diffuser 350 may be used to control and collect the foam from the expansion area 340 and dispense the foam into a cup or mug 380. The diffuser 350 may include a diffuser insert 360 and a spout 370. The diffuser insert 360 may be cylindrically shaped and may be tapered to funnel the foam to the spout 370. The diffuser 350 may be made of stainless steel, aluminum, plastic, or any other substantially non-corrosive material. Any type of diffuser system is contemplated herein that allows the user to collect and dispense the foam into a cup or mug 380. [0036] The diffuser insert 360 and the bottom of the nozzle body 240 may be threaded so as to allow them to be screwed together. The diffuser insert 360 also may snap into the nozzle body 240 or be connected in any other means known in the art. The spout 370 may be threaded and screwed into the bottom of the diffuser insert 360, snapped into the bottom portion of the diffuser insert 360, or connected to the diffuser insert 360 in any other manner known in the art.
[0037] The exemplary embodiment may produce about eight (8) ounces
(about 236.6 milliliters) of foam for an individual serving. The foam may be produced at a rate of about 0.375 ounces/second (about 11 milliliters/second) by providing pressurized milk at about 0.375 ounces/second (about 11 milliliters/second) for about eight (8) seconds, pressurized air at about fifteen (15) psi (about one (1) ksc) for about eight (8) seconds, and pressurized steam at about fifteen (15) psi (about one (1) ksc) for about eight (8) seconds into the mixing area 310. The temperature of the milk may be about 155 degrees Fahrenheit (about 68.3 degrees Celsius) or so. The temperature of the nozzle body 240 may reach about 212 degrees Fahrenheit (about 100 degrees Celsius). The present invention is in no way limited to the exemplary embodiment and can be of any size, dimension, operating conditions, and flow rates necessary for the desired foam production.
[0038] The foamed milk system 100 also may be used to produce steamed milk for lattes and other hot beverages. The foamed milk system 100 may be used in substantially the same manner to produce steamed milk as it is used to produce foamed milk. Steamed milk may be produced by only introducing milk and steam into the foamed milk system 100. Thus, the pressurized air inlet system 160 would not be used. Milk from the pressurized milk inlet system 110 and steam from the pressurized steam inlet system 235 may be introduced to the mixing area 310, expanded in the expansion area 340, collected with the diffuser 350, and dispensed into the mug or cup 380 to produce the steamed milk desired. The present embodiment may pressurize the milk to about fifteen (15) psi (about 1 ksc) and the steam to about forty (40) psi (about 2.8 ksc) to produce steamed milk at a rate of about six (6) ounces per second (about 177.4 milliliters per second). Any pressure, however, may be used to accommodate a similar or different steamed milk production rate. [0039] The foamed milk system 100 also may include a sanitation system 500.
The sanitation system 500 may include a source of hot water 510. The hot water supply 510 may be the hot water storage tank of a coffee brewer (not shown) or a similar type of device. The hot water supply 510 may be connected to the air hose 180 via a hot water hose 520. A sanitation valve 530 may open and shut the hot water hose 520. The sanitation valve 530 may be a solenoid valve or a similar type of device. A T-joint 540 or a similar type of device may join the air hose 180 and the hot water hose 520. One or more check valves 550 may be placed on either side of the T-joint 540 to prevent backflow.
[0040] In order to flush the milk system 100, the sanitation valve 530 is opened and allows hot water to flow from the hot water source 510 through the hot water hose 520 and the check valves 550. The hot water is delivered to the hose connector 185, the mixture hose 220, and the nozzle body 240. A sufficient quantity of water is delivered to ensure that all internal services reach a temperature of at least about a 190 degrees Fahrenheit (about 87.8 degrees Celsius). This flush cycle ensures that all elements outside of the refrigerated container 155 or in connection with a non- refrigerated element are flushed and sanitized. The flush cycle preferably is repeated about every two (2) hours or so.
[0041] Sanitation is further improved by the milk hoses 140, 150 and the mixture hose 220 being disposable. As such, the hoses 140, 150, 220 may be replaced daily. Likewise, the hose connector 185 and the nozzle insert 300 of the nozzle body 240 may be removed and sanitized each day. Further, the connectors used herein may be barbed to prevent crevice build up. The milk system 100 thus provides for quick and easy cleaning and sanitation.
[0042] Alternatively, the foamed milk system 100 also may include a cleaning block junction 390 depicted in Fig. 4. The cleaning block junction 390 may replace the hose connector 185. The cleaning block junction 390 may contain four (4) hose fittings 400, 410, 420, 430. The first three (3) fittings 400, 410, 420 may be connected to the milk hose 150, the air hose 180, and the mixture hose 220 in the manner described above with respect to the hose connector 185. The fourth fitting 430 may be connected to a flush water hose (not shown). Hot water may be forced through the flush water hose and into the cleaning block junction 390 to sterilize the foamed milk system 100. The hot water may travel through the mixture hose 220, the mixture inlet 230, the mixing area 310, the expansion area 340, and the diffuser 350 to sterilize the foamed milk sy stem 100 as is d escribed above. The sy stem 100 a s a whole may then be reoriented to producing the steamed milk and foam as is described above.

Claims

ClaimsI claim:
1. A foamed milk system for creating foamed milk from a source of milk, a source of air, and a source of steam, comprising: a milk inlet system for pressurizing the milk; an air inlet system for pressurizing the air; a mixing area to mix the pressurized milk, the pressurized air, and the steam; and an expansion area to expand the mixture of the pressurized milk, the pressurized air, and the steam.
2. The foamed milk system of claim 1 , wherein said milk inlet system comprises a peristaltic pump.
3. The foamed m ilk s ystem of claim 2 , wherein said milk inlet system comprises a disposable hose connecting the source of milk and said peristaltic pump.
4. The foamed milk system of claim 1, wherein the air inlet system comprises an air pump.
5. The foamed milk system of claim 1, further comprising a hose connector connecting said milk inlet system and said air inlet system.
6. The foamed milk system of claim 5, wherein said hose connector comprises a three-way valve.
7. The foamed milk system of claim 5, wherein said hose connector comprises a four-way valve.
8. The foamed milk system of claim 10, wherein said disposable hose comprises one or more check valves positioned therein.
9. The foamed milk system of claim 5, further comprising a disposable hose connecting said hose connector and said mixing area.
10. The foamed milk system of claim 1, wherein said mixing area comprises a hollow nozzle block.
11. The foamed milk system of claim 10, wherein said mixing area comprises a mixture nozzle positioned within said hollow nozzle block.
12. The foamed milk system of claim 11, wherein said mixture nozzle comprises a plurality of protrusions positioned thereon.
13. The foamed milk system of claim 12, wherein said mixture nozzle comprises a plurality of orifice area positioned about said plurality of protrusions.
14. The foamed milk system of claim 11, wherein said mixture nozzle comprises a removable nozzle.
15. The foamed milk system of claim 1, further comprising a diffuser to gather the flow of the foamed milk to be dispensed.
16. The foamed milk system of claim 1, further comprising a sanitation system.
17. The foamed milk system of claim 16, wherein said sanitation system comprises a sanitation valve adjacent to a source of hot water so as to provide hot water to said mixing area and said expansion area.
18. A steamed milk system for creating steamed milk from pressurized milk and steam, comprising: a mixing area to mix the pressurized milk and the steam; a pressurized milk inlet system for injecting the pressurized milk into the said mixing area; a steam inlet system for injecting the steam into said mixing area; an expansion area to expand the pressurized milk and the steam to form a flow of steamed milk; and a diffuser to gather the flow of the steamed milk to be dispensed.
19. A method of sanitizing a dispenser serving foamed milk from a source of pressurized milk and a source of pressurized air, the pressurized milk and the pressurized air being fed through a plurality of hoses and mixed together in a mixing nozzle, the method comprising: providing a source of hot water; connecting the source of hot water to one or more of the plurality of hoses; flowing the hot water through the one or more of the plurality of hoses and the mixing nozzle; disconnecting the source of hot water; and repeating the above steps on a predetermined schedule.
20. A method for producing foamed milk from milk, air, and steam, comprising: pressurizing the milk and the air; injecting the pressurized milk, the pressurized air, and the steam into a mixing area; and depressurizing the milk, air, and steam mixture to ambient pressure to create the foamed milk
PCT/US2003/021207 2002-07-09 2003-07-02 System and method for producing foamed and steamed milk for hot beverages WO2004004523A1 (en)

Priority Applications (8)

Application Number Priority Date Filing Date Title
AU2003247901A AU2003247901A1 (en) 2002-07-09 2003-07-02 System and method for producing foamed and steamed milk for hot beverages
EP03763287A EP1519670B1 (en) 2002-07-09 2003-07-02 System and method for producing foamed and steamed milk for hot beverages
BRPI0312396-0B1A BR0312396B1 (en) 2002-07-09 2003-07-02 FOAM MILK SYSTEM, STEAM HOT MILK SYSTEM, METHOD FOR SANITING A DISPENSER SERVING FOAM MILK, AND METHOD FOR PRODUCING FOAM MILK FROM MILK, AIR AND STEAM
JP2004519962A JP4410102B2 (en) 2002-07-09 2003-07-02 System and method for making hot beverage foam milk and steam milk
DE60312165T DE60312165T2 (en) 2002-07-09 2003-07-02 DEVICE AND METHOD FOR PREPARING MILK FOAM FOR HOT BEVERAGES
CA002493904A CA2493904A1 (en) 2002-07-09 2003-07-02 System and method for producing foamed and steamed milk for hot beverages
MXPA05000041A MXPA05000041A (en) 2002-07-09 2003-07-02 System and method for producing foamed and steamed milk for hot beverages.
CNB038160854A CN100333675C (en) 2002-07-09 2003-07-02 System and method for producing foamed and steamed milk for hot beverages

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US60/394,480 2002-07-09

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JP (1) JP4410102B2 (en)
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AU (1) AU2003247901A1 (en)
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Cited By (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB2408194A (en) * 2003-11-18 2005-05-25 Lundar Electric Ind Co Ltd Milk foam delivery pipe for an espresso coffee maker
EP1561407A1 (en) * 2004-02-06 2005-08-10 Niro-Plan AG Device for the production of milk foam
FR2875117A1 (en) * 2004-09-10 2006-03-17 Seb Sa MILK HEATING DEVICE AND COFFEE MACHINE COMPRISING SUCH A DEVICE
WO2006078339A1 (en) * 2005-01-20 2006-07-27 The Coca-Cola Company System and method for producing foamed and steamed milk from milk concentrate
JP2006334086A (en) * 2005-06-01 2006-12-14 Sanyo Electric Co Ltd Milk foamer and coffee beverage manufacturing device provided with it
JP2008519587A (en) * 2004-11-11 2008-06-12 ネステク ソシエテ アノニム Self-cleaning mixing head for producing a milk-based mixture and a beverage maker comprising such a mixing head
GB2438803B (en) * 2005-02-28 2008-11-26 Coffee Nation Ltd Apparatus for preparing beverages
DE202008016375U1 (en) 2007-12-14 2009-03-12 Koninklijke Philips Electronics N.V. Device for frothing a liquid, e.g. milk
EP2138077A2 (en) * 2008-06-19 2009-12-30 WIK Far East Ltd. Coffee machine
US8951357B2 (en) 2008-06-13 2015-02-10 Koninklijke Philips N.V. Device for whisking milk and method for cleaning such a device

Families Citing this family (52)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
ITTO20030271A1 (en) * 2003-04-09 2004-10-10 Rancilio Macchine Caffe AUTOMATIC STEAM DISPENSER DEVICE FOR THE PREPARATION OF HOT AND / OR FOAM DRINKS.
DE102004004821A1 (en) * 2004-01-30 2005-08-18 BSH Bosch und Siemens Hausgeräte GmbH Coffee machine with water heater
EP1716797B1 (en) * 2005-04-29 2012-03-14 UNICALL S.r.l. Method for preparing a drink, for example chocolate, and device for preparing the drink
PT1776905E (en) * 2005-10-21 2008-03-31 Gruppo Cimbali Spa A method for heating and whipping milk and a device for carrying out the method
WO2009018672A1 (en) * 2007-08-06 2009-02-12 Egro Coffee Systems Ag Device for producing and dispensing beverages mixed from milk with liquid flavoring agents
EP2025270B1 (en) * 2007-08-16 2017-04-12 Cafina AG Device for foaming and heating up milk
GB2454656A (en) * 2007-11-09 2009-05-20 Kraft Foods R & D Inc A beverage cartridge
DE102008012525A1 (en) * 2008-03-04 2009-09-10 Margret Spiegel Method and device for separating fat from fatty dairy products, comprise separating different components of fatty dairy products from one another by bulk material and then gassing with air through supply component
FR2929824B1 (en) * 2008-04-15 2013-01-04 Seb Sa PROCESS FOR FOAMING MILK.
EP2133010A1 (en) * 2008-06-13 2009-12-16 Koninklijke Philips Electronics N.V. Device for whisking milk and method for cleaning such a device
US20090317526A1 (en) * 2008-06-18 2009-12-24 Christopher Tacklind Coffee brewing system
US9055752B2 (en) * 2008-11-06 2015-06-16 Intercontinental Great Brands Llc Shelf-stable concentrated dairy liquids and methods of forming thereof
DE202008016400U1 (en) 2008-12-12 2009-03-05 Eugster/Frismag Ag Multiway valve arrangement in a beverage preparation unit
DE102009034234B4 (en) * 2009-07-23 2013-06-13 Wmf Württembergische Metallwarenfabrik Ag Vending Machine
EP2359725A1 (en) * 2010-02-11 2011-08-24 Koninklijke Philips Electronics N.V. Device for heating and frothing a liquid
WO2011105942A1 (en) 2010-02-26 2011-09-01 Crem International Ab A method and a system for producing foamed milk
DE102010010516A1 (en) * 2010-03-05 2011-09-08 Kaffee Partner Service Gmbh Coffee machine and method for cleaning the same
CN101849777B (en) * 2010-03-29 2012-01-18 广东新宝电器股份有限公司 Water storage type coffee machine
US9427104B1 (en) 2010-07-06 2016-08-30 Shearwater Investment Co. Method for determining coffee brewing parameters and coffee brewing parameters developed thereby
UA112972C2 (en) 2010-09-08 2016-11-25 Інтерконтінентал Грейт Брендс ЛЛС LIQUID DAIRY CONCENTRATE WITH A HIGH CONTENT OF DRY SUBSTANCES
EP2478804A1 (en) 2011-01-21 2012-07-25 Nestec S.A. Milk frothing with pressurized gas
DE102011102734A1 (en) 2011-05-20 2012-11-22 WMF Württembergische Metallwarenfabrik Aktiengesellschaft Device for frothing milk, beverage preparation with this device and method for frothing milk
CN202112950U (en) * 2011-06-01 2012-01-18 吴仲彬 Full-automatic cake whipping machine
US8739687B1 (en) 2011-08-11 2014-06-03 Shearwater Investment Company Device for metering coffee brewing
KR101145137B1 (en) * 2011-09-14 2012-05-14 경북대학교 산학협력단 Coffee machine
DE102012214104A1 (en) * 2012-08-08 2014-02-13 BSH Bosch und Siemens Hausgeräte GmbH Kaffeevollautomat
CN202714725U (en) * 2012-08-08 2013-02-06 漳州灿坤实业有限公司 Milk frothing machine with automatic cleaning function
DE202012009074U1 (en) 2012-09-21 2012-11-08 Eugster/Frismag Ag Device for the preparation of either cold or warm milk froth or delivery of either cold or warm milk
JP6305427B2 (en) * 2012-12-21 2018-04-04 ネステク ソシエテ アノニム Equipment for producing milk foam
WO2014096181A1 (en) 2012-12-21 2014-06-26 Nestec S.A. Device for producing milk foam
DE102014105108A1 (en) * 2013-04-29 2014-10-30 Melitta Professional Coffee Solutions GmbH & Co. KG Device for producing a milk foam
DE102013104339A1 (en) * 2013-04-29 2014-10-30 Melitta Professional Coffee Solutions GmbH & Co. KG Method and device for producing dairy products, in particular milk froth
DE102013224786B3 (en) 2013-12-03 2015-03-12 Wmf Ag Milk frothing device with dynamic mixing unit and beverage maker containing the same
EP2896332B1 (en) * 2014-01-15 2016-08-17 De'Longhi Appliances S.r.l. Device associable with a steam dispensing nozzle of a coffee machine for the production of a milk-based beverage
EP2918201A1 (en) 2014-03-13 2015-09-16 Jura Elektroapparate Ag Method for cleaning and/or disinfecting a milk- conveying system of a coffee machine and coffee machine
KR101555011B1 (en) 2014-05-07 2015-09-22 김준석 Steaming bubble generating device
EP2952474A1 (en) * 2014-06-03 2015-12-09 Steris Europe, Inc. Suomen Sivuliike Method and device for generating steam and gaseous hydrogen peroxide
AU2015279399B2 (en) * 2014-06-25 2020-05-14 Société des Produits Nestlé S.A. Disposable foaming device
KR102503530B1 (en) * 2015-03-03 2023-02-23 후지 덴키 가부시키가이샤 Milk beverage dispensing device
ES2770683T3 (en) 2015-03-20 2020-07-02 Rancilio Group Spa Foaming device and corresponding procedure
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WO2017062282A1 (en) * 2015-10-05 2017-04-13 Grindmaster Corporation Beverage brewer with adjustable shelf
WO2017076997A1 (en) * 2015-11-05 2017-05-11 Nestec S.A. Centrifugal pumping and foaming device
ITUA20163855A1 (en) * 2016-05-27 2017-11-27 Progetti Snc Di Lorenzo E Massimiliano Valsecchi DEVICE FOR DISPENSING HOT OR COLD MILK IN A CUP.
JP6208292B2 (en) * 2016-06-14 2017-10-04 麒麟麦酒株式会社 Tap device for beverage dispenser and foam generation method
IT201700054448A1 (en) * 2017-05-19 2018-11-19 Coffee Innovations Pty Ltd C/O Green & Sternfeld APPARATUS AND METHOD FOR FOAMING A QUANTITY OF MILK
AU2018298273B2 (en) * 2017-07-06 2024-01-18 Steiner Ag Weggis Milk module for generating milk foam or milk beverages, preferably for installing into a coffee machine
CH713954A1 (en) * 2017-07-06 2019-01-15 Steiner Ag Weggis Milk module for producing milk foam or milk drinks, preferably for installation in a coffee machine.
WO2019077578A1 (en) * 2017-10-19 2019-04-25 Carimali S.P.A. Con Socio Unico Beverage vending machine
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WO2021261012A1 (en) * 2020-06-25 2021-12-30 富士電機株式会社 Beverage supply device
DE102021104680A1 (en) 2021-02-26 2022-09-01 Eberspächer Catem Gmbh & Co. Kg Electric heater

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CH684627A5 (en) * 1992-11-12 1994-11-15 Thermoplan Ag Device for producing frothed milk in particular for cappuccino coffee
US5423245A (en) * 1994-04-13 1995-06-13 Bunn-O-Matic Corporation Milk foaming device
DE4445436A1 (en) * 1994-12-20 1996-06-27 Wmf Wuerttemberg Metallwaren Foaming device, esp. for foaming milk in the prepn. of cappuccino
US5549036A (en) * 1995-08-24 1996-08-27 Hourizadeh; Richard Cappuccino making apparatus
US6019032A (en) * 1998-10-30 2000-02-01 Acorto, Inc. Automated espresso and milk aeration apparatus and method
DE20204085U1 (en) * 2002-03-13 2002-05-23 Eugster/Frismag Ag, Romanshorn Device for producing milk foam for cappuccino

Family Cites Families (19)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
IT1198946B (en) * 1984-10-26 1988-12-21 Fulmine Srl DEVICE FOR HEATING AND EMULSION OF MILK IN SPECIES FOR THE PREPARATION OF THE SO-CALLED CAPPUCCINO
IT212806Z2 (en) * 1987-11-24 1989-09-20 Crociati Sante MACHINE FOR INSTANT HEATING OF MILK OR OTHER DRINKS PARTICULARLY SUITABLE FOR THE BREAKFAST SERVICE
IT1215793B (en) * 1988-02-04 1990-02-22 Alberto Siccardi AUTOMATIC DEVICE FOR OBTAINING FOAM MILK.
EP0344859B1 (en) * 1988-06-01 1993-08-11 Lucio Grossi Device for frothing and heating milk for beverages
US5083504A (en) * 1989-03-27 1992-01-28 Sanyo Electric Co., Ltd. Drink extraction apparatus
US5207148A (en) * 1990-06-25 1993-05-04 Caffe Acorto, Inc. Automated milk inclusive coffee apparatus
US5189949A (en) * 1991-06-14 1993-03-02 Vincenzo Apa Cappuccino dispenser
DE4220986A1 (en) * 1992-06-26 1994-01-05 Gotthard Dipl Ing Mahlich Device for preparing milk foam for cappuccino
EP0600826B1 (en) * 1992-11-12 1996-02-14 Thermoplan Ag Device for producing frothed milk for cappuccino-coffee or similar beverages
US5526841A (en) * 1993-08-20 1996-06-18 Detsch; Steven G. Water line decontamination system
WO1997027793A1 (en) * 1996-01-31 1997-08-07 C.M.A. S.P.A. Unit for preparing mixed beverages for machines for preparing coffee or other infused beverages
ES2133212B1 (en) * 1996-02-22 2000-04-16 Gaggia Espanola EXPRESS COFFEE MACHINE EQUIPPED WITH A DEVICE FOR MILK FOAMING.
EP0820715B1 (en) * 1996-07-22 1998-12-23 Wmf Württembergische Metallwarenfabrik Ag Coffee machine
US5738002A (en) * 1996-11-04 1998-04-14 Marano-Ducarne; Anthony Self-cleaning espresso machine attachment for producing frothed hot milk
US6006654A (en) * 1997-06-13 1999-12-28 Tcc Trading Limited Milk frothing apparatus and method
DE19806020A1 (en) * 1998-02-13 1999-08-26 Maxs Ag shaker
DE19921483C1 (en) * 1999-05-08 2000-08-17 Braun Gmbh Appts for foaming milk has a steam pipe with an end jet extending from a base body with a sliding vertical movement in a housing to move the jet in and out of the milk without holding the vessel
DE10161586B4 (en) * 2001-12-14 2004-07-29 Wacker Construction Equipment Ag Fuel-metering device
US6786134B2 (en) * 2002-02-07 2004-09-07 The Coca-Cola Company Coffee and tea dispenser

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CH684627A5 (en) * 1992-11-12 1994-11-15 Thermoplan Ag Device for producing frothed milk in particular for cappuccino coffee
US5423245A (en) * 1994-04-13 1995-06-13 Bunn-O-Matic Corporation Milk foaming device
DE4445436A1 (en) * 1994-12-20 1996-06-27 Wmf Wuerttemberg Metallwaren Foaming device, esp. for foaming milk in the prepn. of cappuccino
US5549036A (en) * 1995-08-24 1996-08-27 Hourizadeh; Richard Cappuccino making apparatus
US6019032A (en) * 1998-10-30 2000-02-01 Acorto, Inc. Automated espresso and milk aeration apparatus and method
DE20204085U1 (en) * 2002-03-13 2002-05-23 Eugster/Frismag Ag, Romanshorn Device for producing milk foam for cappuccino

Cited By (22)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US7550169B2 (en) 2003-07-08 2009-06-23 The Coca-Cola Company System and method for producing foamed and steamed milk from milk concentrate
GB2408194A (en) * 2003-11-18 2005-05-25 Lundar Electric Ind Co Ltd Milk foam delivery pipe for an espresso coffee maker
US7448314B2 (en) 2004-02-06 2008-11-11 Niro-Plan Ag Device for producing milk foam
EP1561407A1 (en) * 2004-02-06 2005-08-10 Niro-Plan AG Device for the production of milk foam
FR2875117A1 (en) * 2004-09-10 2006-03-17 Seb Sa MILK HEATING DEVICE AND COFFEE MACHINE COMPRISING SUCH A DEVICE
US8061264B2 (en) 2004-09-10 2011-11-22 Seb S.A. Device for heating milk and coffee machine comprising same
WO2006030098A1 (en) * 2004-09-10 2006-03-23 Seb S.A. Device for heating milk and coffee machine comprising same
JP2008519587A (en) * 2004-11-11 2008-06-12 ネステク ソシエテ アノニム Self-cleaning mixing head for producing a milk-based mixture and a beverage maker comprising such a mixing head
JP4634463B2 (en) * 2004-11-11 2011-02-16 ネステク ソシエテ アノニム Self-cleaning mixing head for producing a milk-based mixture and a beverage maker comprising such a mixing head
JP2008527995A (en) * 2005-01-20 2008-07-31 ザ・コカ−コーラ・カンパニー System and method for producing frothed milk and steam milk from concentrated milk
EP1838185B2 (en) 2005-01-20 2023-08-23 The Coca-Cola Company System and method for producing foamed and steamed milk from milk concentrate
WO2006078339A1 (en) * 2005-01-20 2006-07-27 The Coca-Cola Company System and method for producing foamed and steamed milk from milk concentrate
CN100539911C (en) * 2005-01-20 2009-09-16 可口可乐公司 Be used for producing the milk bubble and steaming the system and method for suckling by the concentrated milk
GB2438803B (en) * 2005-02-28 2008-11-26 Coffee Nation Ltd Apparatus for preparing beverages
JP2006334086A (en) * 2005-06-01 2006-12-14 Sanyo Electric Co Ltd Milk foamer and coffee beverage manufacturing device provided with it
JP4711747B2 (en) * 2005-06-01 2011-06-29 三洋電機株式会社 Milk foamer and coffee beverage production apparatus equipped with the same
DE202008016375U1 (en) 2007-12-14 2009-03-12 Koninklijke Philips Electronics N.V. Device for frothing a liquid, e.g. milk
WO2009077912A1 (en) * 2007-12-14 2009-06-25 Koninklijke Philips Electronics N.V. Method for controlling a formation process of froth in a device for frothing a liquid such as milk
EP2070455A1 (en) 2007-12-14 2009-06-17 Koninklijke Philips Electronics N.V. Method for controlling a formation process of froth in a device for frothing a liquid such as milk
US8951357B2 (en) 2008-06-13 2015-02-10 Koninklijke Philips N.V. Device for whisking milk and method for cleaning such a device
EP2138077A3 (en) * 2008-06-19 2011-06-15 WIK Far East Ltd. Coffee machine
EP2138077A2 (en) * 2008-06-19 2009-12-30 WIK Far East Ltd. Coffee machine

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ATE355003T1 (en) 2006-03-15
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EP1872698B1 (en) 2010-03-31
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ATE462332T1 (en) 2010-04-15
CN1665434A (en) 2005-09-07

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