WO2018212349A1 - ディスペンスヘッド及びそれを利用した飲料注出路の洗浄方法 - Google Patents

ディスペンスヘッド及びそれを利用した飲料注出路の洗浄方法 Download PDF

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Publication number
WO2018212349A1
WO2018212349A1 PCT/JP2018/019394 JP2018019394W WO2018212349A1 WO 2018212349 A1 WO2018212349 A1 WO 2018212349A1 JP 2018019394 W JP2018019394 W JP 2018019394W WO 2018212349 A1 WO2018212349 A1 WO 2018212349A1
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WO
WIPO (PCT)
Prior art keywords
beverage
valve
plunger
fluid inlet
dispensing
Prior art date
Application number
PCT/JP2018/019394
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English (en)
French (fr)
Japanese (ja)
Inventor
泰文 花野
Original Assignee
サントリーホールディングス株式会社
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 サントリーホールディングス株式会社 filed Critical サントリーホールディングス株式会社
Priority to CN201880025821.7A priority Critical patent/CN110573451B/zh
Priority to JP2019518901A priority patent/JP6808030B2/ja
Priority to KR1020197034137A priority patent/KR102442076B1/ko
Publication of WO2018212349A1 publication Critical patent/WO2018212349A1/ja

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B67OPENING, CLOSING OR CLEANING BOTTLES, JARS OR SIMILAR CONTAINERS; LIQUID HANDLING
    • B67DDISPENSING, DELIVERING OR TRANSFERRING LIQUIDS, NOT OTHERWISE PROVIDED FOR
    • B67D1/00Apparatus or devices for dispensing beverages on draught
    • B67D1/04Apparatus utilising compressed air or other gas acting directly or indirectly on beverages in storage containers
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B67OPENING, CLOSING OR CLEANING BOTTLES, JARS OR SIMILAR CONTAINERS; LIQUID HANDLING
    • B67DDISPENSING, DELIVERING OR TRANSFERRING LIQUIDS, NOT OTHERWISE PROVIDED FOR
    • B67D1/00Apparatus or devices for dispensing beverages on draught
    • B67D1/07Cleaning beverage-dispensing apparatus
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B67OPENING, CLOSING OR CLEANING BOTTLES, JARS OR SIMILAR CONTAINERS; LIQUID HANDLING
    • B67DDISPENSING, DELIVERING OR TRANSFERRING LIQUIDS, NOT OTHERWISE PROVIDED FOR
    • B67D1/00Apparatus or devices for dispensing beverages on draught
    • B67D1/08Details
    • B67D1/12Flow or pressure control devices or systems, e.g. valves, gas pressure control, level control in storage containers

Definitions

  • the present invention relates to a dispensing head that is attached to the mouth of a beverage storage container in which a sparkling beverage such as beer is stored. More specifically, the present invention relates to a dispensing head that discharges a beverage in a beverage storage container using a gas pressure of a gas cylinder in cooperation with a spear valve mounted on the beverage storage container.
  • a beverage supply system as shown in Patent Document 1 that uses the pressure of carbon dioxide gas filled in a cylinder to pour out a beverage in a beverage storage container is used in restaurants and the like.
  • Such a beverage supply system usually has, in addition to a carbon dioxide cylinder and a beverage storage container, a spear valve fixed in the mouth of the beverage storage container, a dispense head connected to the spear valve, and a glass or the like. It has a beverage dispenser that is poured out and a conduit connecting them.
  • the spear valve includes a first valve body that opens and closes a flow path of carbon dioxide gas flowing into the beverage storage container and a second valve body that opens and closes a flow path of the beverage discharged from the beverage storage container.
  • the dispense head has a plunger that not only opens and closes the gas flow path of the dispense head itself, but also when it is placed in the open position, the first and second valves of the spear valve. Force is applied to the body to open the gas and beverage channels. In this state, when the cock valve of the beverage dispenser is opened, the beverage in the beverage storage container is poured out from the beverage dispenser to a glass or the like based on the gas pressure of the carbon dioxide gas cylinder.
  • the beverage pouring path outside the beverage storage container must be washed with water or the like regularly (for example, every day) in accordance with a procedure determined to maintain the quality of the beer and prevent a decrease in flavor.
  • An example of the washing procedure is briefly shown as follows: (1) a drain receiving bucket is prepared under the cock valve of the beverage dispenser, (2) a washing barrel filled with water is prepared, 3) Remove the dispensing head from the beverage storage container and replace it with a washing barrel. (4) Extrude the water in the washing barrel by the pressure of carbon dioxide to wash the beverage dispensing path.
  • Patent Document 1 proposes a configuration in which cleaning can be performed with the dispense head mounted on a beverage storage container in order to reduce the burden of cleaning.
  • a state in which the dispensing head closes the spear valve is called a washing mode.
  • the beverage dispenser cock valve is opened in the washing mode, the washing liquid passes through the dispensing head to be a beverage dispenser. To the side, and thus the beverage dispensing channel is cleaned.
  • the dispensing head of Patent Document 1 By using the dispense head of Patent Document 1, it becomes possible to perform washing with the dispense head mounted on the beverage storage container.
  • the dispensing head of Patent Document 1 requires a tilt sensor that detects the angle of the operation lever, and a controller that switches the fluid based on a signal from the tilt sensor. A power supply is also required to operate.
  • the present invention has been made in view of the above circumstances, and provides a dispensing head having a relatively simple configuration that can easily carry out washing of a beverage dispensing path, and a washing method using the same. With the goal.
  • a beverage in cooperation with a spear valve connected to a spear valve that opens and closes a gas flow path and a beverage flow path at the mouth of a beverage storage container.
  • a dispensing head for supplying beverage liquid in a storage container to the outside having a main body case having a fluid inlet and an internal channel penetrating in the longitudinal axis direction, and sliding inside the main body case to open and close the fluid inlet
  • a closed position that closes the fluid inlet and does not apply force to the valve body of the spear valve, and opens the fluid inlet and applies force to the valve body of the spear valve to open the gas flow path and the beverage flow path.
  • a plunger positioned between a closed position and a specific intermediate position between the closed position and the open position, wherein the fluid inlet is opened but no force is applied to the valve body of the spear valve. And comprises a, when the plunger is in the intermediate position, fluid flowing from the fluid inlet is discharged through the internal channel of the plunger without being supplied to the beverage storage container, the dispensing head is provided.
  • the beverage supply system for pouring the beverage liquid in the beverage storage container equipped with the dispensing head according to the first aspect to the outside using the gas pressure of the gas supply source.
  • a method for cleaning a beverage dispensing channel outside a beverage storage container wherein the dispensing head allows a beverage liquid to be discharged by opening the fluid inlet and a closed position for closing the fluid inlet of the dispensing head
  • a plunger positioned in an open position and an intermediate position that opens the fluid inlet but does not allow the beverage liquid to be dispensed, the dispense head being connected to a spear valve secured to the beverage storage container; Confirming that the plunger is positioned at an intermediate position and the cleaning head at the fluid inlet of the dispense head.
  • the cleaning liquid from the cleaning liquid supply source is discharged from the beverage dispensing valve via the dispensing head without being supplied to the beverage storage container.
  • a dispense head that enables washing of a beverage dispensing path while being attached to a beverage storage container side is realized with a pure mechanical and relatively simple configuration without using an electrical sensor or control device. It becomes possible to do. As a result, a cleaning barrel is not required, and the cleaning procedure is reduced or simplified.
  • FIG. 2B is a schematic (a) front view and (b) plan view when the operation lever and the plunger of the dispense head shown in FIG. 2A are in an intermediate position.
  • FIG. 2B is a schematic front view when the operation lever and the plunger of the dispense head shown in FIG. 2A are in an open position.
  • FIG. 2 is a longitudinal sectional view schematically showing a spear valve fixed to a beverage storage container and a portion of a dispensing head according to an embodiment of the present invention connected to the spear valve, wherein the plunger is in a closed position.
  • FIG. 3B is a longitudinal sectional view similar to FIG. 3A, but is a longitudinal sectional view when the plunger is in an intermediate position.
  • FIG. 3B is a longitudinal sectional view similar to FIG. 3A, but is a longitudinal sectional view when the plunger is in the open position. It is a typical top view and plane sectional view of a three-way valve of a dispensing head, and is a figure showing the state where the 1st inflow mouth of a three-way valve was selected.
  • FIG. 3B is a longitudinal sectional view similar to FIG. 3A, but is a longitudinal sectional view when the plunger is in an intermediate position.
  • It is a typical top view and plane sectional view of a three-way valve of a dispens
  • FIG. 4B is a schematic plan view and a plan sectional view of the same three-way valve as in FIG. 4A, but shows a state where the second inlet of the three-way valve is selected. It is an independent perspective view of the shaft of a three-way valve.
  • the beverage supply system 100 includes a beverage storage container 10, a spear valve 20 (not shown in FIG. 1) fixed inside the mouth portion 10a, a dispense head 30 connected to the spear valve 20 from the outside, a beverage storage A gas cylinder 50 that supplies gas to the container 10, a beverage dispenser 60 that pours the beverage from the beverage storage container 10 into a glass or the like, and a water tap as a water supply source that supplies water as a cleaning liquid to the dispense head 30 70 as main components.
  • the beverage dispenser 60 has a cock-type beverage dispensing valve (hereinafter referred to as “cock valve”) 61.
  • cock valve cock-type beverage dispensing valve
  • the dispensing head 30 and the cock valve 61 of the beverage dispenser 60 are connected by a connecting pipe line 62.
  • the connection pipe line 62 has a spirally wound portion 62 a formed in a cylindrical coil shape for cooling in the beverage dispenser 60.
  • the beverage dispenser 60 usually has a cooling device 63 and a cooling water tank 64 cooled by the cooling device 63, and the spiral winding portion 62 a of the connection pipe line 62 shown in FIG. 1 is cooled in the cooling water tank 64.
  • the beverage to be supplied is beer, so the gas filled in the gas cylinder 50 is carbon dioxide, the beverage storage container 10 is exemplified as a beer barrel, and the beverage dispenser 60 is a beer. Illustrated as a dispenser.
  • the dispense head 30 according to the embodiment of the present invention is made of any carbonated beverage other than beer, for example, a raw material other than sparkling liquor and malt, and a beer-flavored sparkling alcoholic beverage mixed with another alcoholic beverage (third Beer), non-alcoholic beer, chu-hi, highball, or non-alcoholic carbonated beverages.
  • the beverage supplied by the beverage supply system 100 may be a beverage supplied using, for example, nitrogen gas or compressed air other than carbon dioxide gas. In that case, the gas cylinder 50 contains nitrogen gas or compressed air. Is filled.
  • the flow path of the beverage outside the beverage storage container 10 that is, the internal flow path 31 d of the plunger 31, which will be described later of the dispense head 30, the connection pipe 62, and the flow path in the cock valve 61, Call.
  • the beverage dispensing path is also a cleaning target flow path.
  • a dispensing head 30 has a single appearance as shown in FIGS. 2A to 2C, and has a generally cylindrical plunger 31 and a main body formed with a bore for slidably receiving the plunger 31.
  • a case 32, an operation lever 33 for manually moving the plunger 31, and a three-way valve 40 are provided as main components.
  • FIG. 2A shows the dispensing head 30 when the plunger 31 and the operating lever 33 are in a closed position where no beverage is fed
  • FIG. 2B shows the beverage pouring path in an intermediate position for washing
  • FIG. 2C delivers the beverage.
  • FIG. 6 schematically shows the time when the vehicle is in the open position. 2B is a front view and FIG. 2B is a plan view.
  • FIGS. 3A to 3C are schematic longitudinal sectional views.
  • FIG. 3A shows when the plunger 31 of the dispensing head 30 is in the closed position
  • FIG. 3B is in the intermediate position
  • FIG. 3C is in the open position.
  • 3A to 3C the drawing of the operation lever 33 and the three-way valve 40 of the dispense head 30 is omitted.
  • the spear valve 20 is attached to the inside of the mouth portion 10 a of the beverage storage container 10, a first valve body 21 that opens and closes a flow path of gas flowing into the beverage storage container 10, and a beverage flowing out of the beverage storage container 10.
  • the second valve body 22 that opens and closes the flow path, the first coil spring 23 and the second coil spring 24 for maintaining the valve bodies in the closed position, the cylindrical valve case 25, and the first valve body 21 are integrated.
  • the siphon tube 26 is formed as a main component. All these components of the spear valve 20 are arranged coaxially with respect to the central axis Az.
  • the spear valve 20 is fixed to the beverage storage container 10 by the valve case 25 being screwed into the inside of the mouth portion 10a of the beverage storage container 10.
  • a siphon tube 26 is held inside the valve case 25 by the valve case 25 so as to be movable in the vertical direction with respect to the valve case 25.
  • the siphon tube 26 extends to the vicinity of the bottom of the beverage storage container 10 and has a lower end (not shown) that opens there, and has an enlarged diameter portion that serves as the first valve body 21 at the upper end. .
  • the 1st valve body 21 has the 1st flange part 21a which diameter-expanded further in the uppermost end part. 3A and 3B, the first flange portion 21 a is pressed against the first valve seat 25 a of the opposing valve case 25 by the force of the first coil spring 23.
  • a generally cylindrical second valve body 22 is accommodated in the enlarged diameter portion of the siphon tube 26, that is, inside the first valve body 21 so as to be movable in the vertical direction.
  • the 2nd valve body 22 also has the 2nd flange part 22a expanded in the upper end part also. 3A and 3B, the second flange portion 22a is pressed against the second valve seat 21b formed inside the opposing first valve body 21 by the force of the second coil spring 24.
  • the first valve body 21 and the second valve body 22 of the spear valve 20 are configured such that when the plunger 31 of the dispense head 30 is disposed at the open position, the shoulder portion 31 c and the small diameter portion 31 b of the plunger 31. As a result, the gas flow path between the first flange portion 21a and the first valve seat 25a is opened, and between the second flange portion 22a and the second valve seat 21b. The beverage flow path is opened.
  • the plunger 31 of the dispensing head 30 is located in the closed position (FIG. 3A) or the intermediate position (FIG. 3B), the plunger 31 does not exert any force on any valve body of the spear valve 20, and therefore the spear valve 20 Both the gas channel and the beverage channel remain closed.
  • the body case 32 of the dispense head 30 has a fluid inlet 32a in the peripheral wall portion and a fluid outlet 32b at the lower end of the bore.
  • a pair of O-rings 34 and 35 are mounted on the inner wall of the bore with the fluid inlet 32a interposed therebetween.
  • the main body case 32 has a flange portion 32c having an enlarged diameter at its lower end, and the flange portion 32c is connected to the valve case 25 of the spear valve 20 in a gas-tight and liquid-tight manner in a rotational manner.
  • the three-way valve 40 is fixed to the peripheral wall portion of the main body case 32 so that one outflow port 42 a thereof is connected to the fluid inlet 32 a of the main body case 32.
  • Three concave portions 32d, e, and f for defining the three-stage position of the operation lever 33 are formed in the peripheral wall portion of the main body case 32 opposite to the fluid inlet 32a in the radial direction. Further, a notch is formed in the upper portion of the peripheral wall portion of the main body case 32 so that the operation lever 33 can be engaged with the outer peripheral portion of the plunger 31 by exposing the plunger 31 from the main body case 32.
  • the plunger 31 has a trapezoidal annular recess 31a.
  • the annular recess 31a is disposed so that the fluid inlet 32a faces the center of the annular recess 31a when the plunger 31 is in the closed position (FIG. 3A).
  • the annular recess 31a is sealed by being sandwiched between a pair of O-rings 34 and 35, so that the fluid from the fluid inlet 32a of the main body case 32 passes over the O-rings 34 and 35. It cannot flow and therefore the fluid inlet 32a is substantially closed.
  • the plunger 31 also has a small diameter portion 31b and a shoulder portion 31c resulting from the formation of the small diameter portion 31b at the lower end.
  • An annular shoulder packing 36 is attached to the shoulder 31c.
  • the plunger 31 also has an internal flow path 31d passing through it in the longitudinal axis direction.
  • a semicircular cutout 31e is formed at the tip of the small diameter portion 31b of the plunger 31 to guide the beverage to the internal flow path 31d when the plunger 31 is in the open position.
  • a fluid coupling (not shown) is provided at the upper end of the plunger 31 so that the internal flow path 31d and the connection pipe line 62 can be connected.
  • the shoulder packing 36 supported by the shoulder 31c of the plunger 31 and the tips of the small diameter portions 31b are respectively the first valve body 21 and the second valve body 22 of the spear valve 20.
  • the operation lever 33 is rotated about 15 degrees up and down around a pivot 39 provided on the right peripheral wall portion of the main body case 32 in the drawing to close (FIG. 2A), intermediate (FIG. 2B), and open.
  • the position (FIG. 2C) can be taken.
  • the closed position, the intermediate position, and the open position of the operation lever 33 correspond to the closed position, the intermediate position, and the open position of the plunger 31, respectively.
  • the operation lever 33 has a pair of elongated plate members 37 and a grip portion 38.
  • the grip portion 38 includes a locking member (not shown) and a lock release button so that the three concave portions 32d, e, and f of the main body case 32 can be locked and unlocked.
  • the pair of elongated plate members 37 are arranged so as to sandwich the plunger 31 exposed from the main body case 32.
  • the pair of plate members 37 are fixed with the left end portion in the figure embedded in the grip portion 38, and the right end portion functions as a shaft engaging portion that sandwiches a shaft 44 described later of the three-way valve 40.
  • the plate member 37 is configured such that a portion on the left side of the drawing with respect to the pivot 39 can engage with the exposed plunger 31 to move the plunger 31 up and down.
  • the three-way valve 40 is of a ball type in this embodiment, and includes a spherical valve body 41 having an L-shaped flow passage formed therein, one outlet 42a, and two inlets, A rectangular parallelepiped valve case 42 having a first inlet 42b and a second inlet 42c, a switching lever 43 that rotates about an axis extending in the Z-axis direction, and a switching lever that forms a rotational axis of the switching lever 43 43 and a shaft 44 that connects the valve body 41.
  • the sealing member 45 which seals between each is arrange
  • a hose from the gas cylinder 50 is connected to the first inlet 42b
  • a hose from the water tap 70 is connected to the second inlet 42c.
  • 4A shows a state where the first inlet 42b is selected
  • FIG. 4B shows a state where the second inlet 42c is selected.
  • a drain hole 46 is formed which communicates the space inside the valve case 42 and the external surrounding space.
  • the drain hole 46 is provided to prevent water from entering the outlet 42 a side by discharging water leaked into the valve case 42 due to deterioration of the seal member 45 or the like, and to notify the deterioration of the seal member 45. It has been.
  • FIG. 5 is a single perspective view of the shaft 44 of the three-way valve 40.
  • the shaft 44 of the three-way valve 40 is formed to have a cylindrical portion 47 and two bowl-shaped portions 48 disposed above and below the cylindrical portion 47.
  • the cylindrical portion 47 has an outer diameter that is slightly smaller than the interval S ⁇ b> 1 between the pair of plate members 37 of the operation lever 33.
  • the two hook-shaped portions 48 have the same size and shape, and have a pair of arc portions 48a in a plan view and a pair of parallel straight portions 48b that are strings connecting the pair of arc portions 48a.
  • the pair of arc portions 48 a of the bowl-shaped portion 48 has a diameter sufficiently larger than the interval S 1 between the pair of plate members 37, whereas the pair of linear portions 48 b is a pair of plates in the same manner as the columnar portion 47.
  • the width dimension S2 is slightly smaller than the interval S1 between the members 37.
  • the pair of linear portions 48b of the flange portion 48 of the shaft 44 is selected when the first inlet 42b of the three-way valve 40 connected to the gas cylinder 50 is selected and the outlet 42a communicates with the first inlet 42b. As shown in FIG. 4A, it extends parallel to the X-axis direction, that is, the longitudinal axis direction of the operation lever 33. On the other hand, when the second inlet 42c of the three-way valve 40 connected to the water tap 70 is selected and communicated with the outlet 42a, as shown in FIG. A pair of linear portions 48b of 48 extend in the Y-axis direction.
  • the operation lever 33 When the operation lever 33 is in the intermediate position in FIG. 2B, it extends horizontally, and the shaft engaging portion on the tip side of the plate member 37 is at the same level as the cylindrical portion 47 of the shaft 44 and sandwiches the cylindrical portion 47. Since the rotation of the cylindrical portion 47 cannot be prevented, the rotation of the shaft 44, that is, the switching of the flow path of the three-way valve 40 is allowed. In other words, when the operation lever 33 is in the intermediate position, either the first inlet 42b (gas side) or the second inlet 42c (water side) of the three-way valve 40 may be selected.
  • the straight portion 48b of the hook-like portion 48 of the shaft 44 of the three-way valve 40 must be arranged parallel to the longitudinal axis of the operation lever 33. Therefore, the first inlet 42b on the gas side of the three-way valve 40 must be selected.
  • the shaft engaging portion sandwiches the pair of linear portions 48b of the hook-shaped portion 48 of the shaft 44 of the three-way valve 40, and as a result, the shaft of the three-way valve 40 44 is prevented from rotating.
  • the three-way valve 40 cannot switch the selected gas-side first inlet 42b to the water-side second inlet 42c. Yes.
  • the shaft 44 of the three-way valve 40 and the shaft engaging portion of the operation lever 33 function as an interlock mechanism that restricts switching of the three-way valve 40 according to the position of the operation lever 33.
  • the shaft 44 of the three-way valve 40 has an upper bowl-shaped part 48 and a cylindrical part 47, but does not have a lower bowl-shaped part 48.
  • the operating lever 33 of the dispensing head that was in the closed position or the intermediate position is placed in the open position.
  • the first inlet 42 b communicating with the gas cylinder 50 is selected as the three-way valve 40 of the dispensing head 30.
  • the fluid inlet 32a of the dispensing head 30 is opened by the plunger 31 at the opening position of the dispensing head 30, and the first valve body 21 and the second valve body 22 of the spear valve 20 are moved downward. (FIG. 3C).
  • a glass or the like is prepared under the discharge port 61a of the cock valve 61 of the beverage dispenser 60, and the cock valve 61 is opened.
  • the beverage is pushed out by the gas introduced into the beverage storage container 10 through the fluid inlet 32a, the fluid outlet 32b of the dispense head 30 and the gas flow path of the spear valve 20, and the siphon tube 26 of the spear valve 20 and the beverage
  • the fluid is discharged through the semicircular cutout 31e at the tip of the plunger 31 of the dispense head 30, the internal flow path 31d, the connection pipe line 62, and the cock valve 61.
  • the cock valve 61 of the beverage dispenser 60 may be closed.
  • the beverage dispensing path is washed.
  • a bucket or the like for receiving drainage is prepared under the discharge port 61a of the cock valve 61 of the beverage dispenser 60.
  • the operation lever 33 of the dispensing head 30 is positioned at an intermediate position.
  • the fluid inlet 32 a of the dispensing head 30 is opened by the plunger 31 in the intermediate position, but force acts on the first valve body 21 and the second valve body 22 of the spear valve 20.
  • the gas flow path and the beverage flow path of the spear valve 20 are closed.
  • the switching lever 43 of the three-way valve 40 is switched to the second inlet 42 c side connected to the water tap 70.
  • the cock valve 61 is opened, the water flowing in from the second inlet 42 c of the three-way valve 40 is fluid outlet 32 b of the dispensing head 30, the internal flow path 31 d of the plunger 31, the connection pipe 62, and the cock valve 61. Accordingly, the beverage dispensing path outside the beverage storage container 10 is washed with water.
  • the cock valve 61 of the beverage dispenser 60 may be closed. In this way, at the intermediate position, the water that has flowed into the dispensing head 30 flows into the connecting pipe line 62 via the internal flow path 31 d of the plunger 31 without flowing into the beverage storage container 10.
  • the switching lever 43 of the three-way valve 40 of the dispensing head 30 is switched to the first inlet 42 b side connected to the gas cylinder 50 while maintaining the operation lever 33 of the dispensing head 30 at the intermediate position.
  • the cock valve 61 is opened, the gas flowing in from the first inlet 42b of the three-way valve 40 is discharged from the cock valve 61 through the same route as the water described above.
  • the beverage pouring path is dried by the water remaining therein being pushed out or blown away by the high-pressure gas. What is necessary is just to close the cock valve 61 of the drink dispenser 60, when stopping discharge of gas.
  • washing of the beverage dispensing path including drying is completed.
  • the dispensing head 30 According to the dispensing head 30 according to the present embodiment, all of the beverage pouring path outside the beverage storage container 10 can be washed with a cleaning liquid such as water, and further dried with gas, while being attached to the beverage storage container 10 side. It becomes possible. For this reason, it is possible to significantly reduce the working time compared to the case where the dispensing head 30 is replaced with a cleaning barrel as in the prior art. Further, conventionally, cleaning of a recess generated in the mouth portion 10a of the beverage storage container 10 from which the dispense head 30 has been removed, that is, a recess from the upper end of the mouth portion 10a to the upper surface of the valve body of the spear valve 20, is performed. However, according to the dispensing head 30 of the present embodiment, the cleaning is performed including the concave portion.
  • the dispense head 30 due to the interlock mechanism, the water as the cleaning liquid is supplied only when the plunger 31 is disposed at the intermediate position and therefore the valve body of the spear valve 20 is closed. As a result, it is possible to prevent water from accidentally flowing into the beverage storage container 10.
  • the dispensing head 30 is configured purely mechanically and relatively simply without including an electrical sensor or a control device. Therefore, not only is the power supply unnecessary and the operation reliability is high, but the plunger 31 is detached from the main body case 32 by pulling out the pivot 39 of the operation lever 33 from the main body case 32, and the disassembly and cleaning thereof can be easily performed. An effect is also obtained.
  • the cleaning liquid water is used as the cleaning liquid.
  • carbonated water used as the cleaning liquid.
  • the carbonated water supply source includes a tank for storing carbonated water and a pump or the like for pumping carbonated water.
  • the ball-type manual three-way valve 40 is used, but any directional switching valve including an electric type may be used instead of the three-way valve 40.
  • the dispense head does not have a three-way valve or other directional switching valve are possible. In that case, the connection between the tip of the hose from the gas cylinder 50 or the water supply tap 70 and the fluid inlet of the dispense head may be made manually, for example, via a quick coupling (quick coupler).
  • the cock valve 61 of the beverage dispenser 60 may have a plurality of channels such as a channel for beer and a channel for foam. In such a case, the beverage pouring channel may be washed and dried for each of the plurality of channels.
  • the dispense head 30 is indirectly attached to the beverage storage container 10 via the spear valve 20 fixed to the beverage storage container 10, but the dispense head is directly attached to the beverage storage container.
  • Embodiments are also possible in the present invention.

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  • Devices For Dispensing Beverages (AREA)
  • Automatic Analysis And Handling Materials Therefor (AREA)
PCT/JP2018/019394 2017-05-19 2018-05-18 ディスペンスヘッド及びそれを利用した飲料注出路の洗浄方法 WO2018212349A1 (ja)

Priority Applications (3)

Application Number Priority Date Filing Date Title
CN201880025821.7A CN110573451B (zh) 2017-05-19 2018-05-18 分配头以及利用该分配头的饮料喷出通路的清洗方法
JP2019518901A JP6808030B2 (ja) 2017-05-19 2018-05-18 ディスペンスヘッド及びそれを利用した飲料注出路の洗浄方法
KR1020197034137A KR102442076B1 (ko) 2017-05-19 2018-05-18 디스펜스 헤드 및 이를 이용한 음료 주출로의 세정 방법

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JP2017100214 2017-05-19
JP2017-100214 2017-05-19

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JP (1) JP6808030B2 (ko)
KR (1) KR102442076B1 (ko)
CN (1) CN110573451B (ko)
TW (1) TWI675793B (ko)
WO (1) WO2018212349A1 (ko)

Cited By (5)

* Cited by examiner, † Cited by third party
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TWI667187B (zh) * 2018-11-28 2019-08-01 先進動力實驗股份有限公司 加壓液體保存裝置及其配送方法
WO2020138102A1 (ja) * 2018-12-28 2020-07-02 サントリーホールディングス株式会社 飲料供給システムの洗浄装置
WO2020138103A1 (ja) * 2018-12-27 2020-07-02 サントリーホールディングス株式会社 ディスペンスヘッド
CN113195397A (zh) * 2018-12-21 2021-07-30 三得利控股株式会社 饮料机的清洗装置
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CN113195397A (zh) * 2018-12-21 2021-07-30 三得利控股株式会社 饮料机的清洗装置
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CN114206769A (zh) * 2019-06-07 2022-03-18 三得利控股株式会社 饮料供给系统的清洗装置以及饮料供给系统的清洗方法

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