WO2019110218A1 - Station de remplissage - Google Patents

Station de remplissage Download PDF

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Publication number
WO2019110218A1
WO2019110218A1 PCT/EP2018/080222 EP2018080222W WO2019110218A1 WO 2019110218 A1 WO2019110218 A1 WO 2019110218A1 EP 2018080222 W EP2018080222 W EP 2018080222W WO 2019110218 A1 WO2019110218 A1 WO 2019110218A1
Authority
WO
WIPO (PCT)
Prior art keywords
keg
filling
sensor unit
liquid
flow channel
Prior art date
Application number
PCT/EP2018/080222
Other languages
German (de)
English (en)
Inventor
Thomas Matheyka
Volker Damerow
Original Assignee
Khs Gmbh
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 Khs Gmbh filed Critical Khs Gmbh
Publication of WO2019110218A1 publication Critical patent/WO2019110218A1/fr

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B67OPENING, CLOSING OR CLEANING BOTTLES, JARS OR SIMILAR CONTAINERS; LIQUID HANDLING
    • B67CCLEANING, FILLING WITH LIQUIDS OR SEMILIQUIDS, OR EMPTYING, OF BOTTLES, JARS, CANS, CASKS, BARRELS, OR SIMILAR CONTAINERS, NOT OTHERWISE PROVIDED FOR; FUNNELS
    • B67C3/00Bottling liquids or semiliquids; Filling jars or cans with liquids or semiliquids using bottling or like apparatus; Filling casks or barrels with liquids or semiliquids
    • B67C3/30Filling of barrels or casks
    • B67C3/34Devices for engaging filling-heads with filling-apertures

Definitions

  • the invention relates to a filling station for filling the interiors of each equipped with at least one keg fitting keg according to the preamble of claim 1. Furthermore, the present invention relates to a method for filling the interiors of each equipped with at least one keg fitting keg according to the preamble of claim 15.
  • a main advantage of the use of kegs is that these barrel-like containers are hermetically sealed due to a particularly advantageous embodiment of the connections for filling and compressed gas and thus contents and interior of the keg are protected from contamination of all kinds, but especially from contact with germs.
  • the specialist knows the connections of kegs under designation Fitting or Keg-Fitting.
  • a keg fitting can also be described as a head-side closure valve of the keg, which as a rule comprises two flow paths, namely one directly into the interior of the keg and one to a gas or gas pipe which extends into the bottom of the keg.
  • the kegs in the bottling plants have been industrially and automatically cleaned, for example cleaned and filled, or refilled.
  • the kegs are filled in particular in fully automated single machines with a filling station or large machines with several filling stations, for example 36 filling stations, with liquid filling material.
  • the object of the present invention is to provide a filling station for filling the interiors of kegs equipped with at least one keg fitting, which avoids the abovementioned disadvantages and in particular allows monitoring at the filling station to determine whether the predetermined quantity of filling material also in fact completely filled into the keg and in particular there after completion of the filling process also remains.
  • the subclaims relate to particularly preferred embodiments of the invention.
  • the essential aspect according to the filling station for filling the interiors of each keg equipped with at least one keg fitting consists in that the filling head has at least one sensor unit for detecting a liquid and / or gas phase within the filling head housing. This is ideally done by means of one or more sensor units for detecting a liquid and / or gas phase in one of the flow channels downstream of the product valve. Alternatively, one could also speak here synonymously of a filling or measuring section, because the associated elements are possibly located locally slightly apart from each other, but this is to be understood here untouched as belonging to the filling station. By the present invention, this filling or measuring section in the sense of legislative requirements is calibrated.
  • the product flows into a first flow channel in the interior of the filling head and subsequently into the inner space through the keg fitting which has been opened by means of the raised valve tappet of the keg.
  • the existing, internal gas via the gas pipe of the keg and following a second flow channel in the interior of the filling head and via a media line (Rückgasweg) is derived.
  • This gas pipe is also called a riser, because the contents leave the keg during emptying.
  • the filling head of a filling station has at least one sensor unit for detecting a liquid and / or gas phase within the Grekgeophuses, can be detected so that, for example, a part of the contents to be filled has passed through the gas pipe in the second flow channel during the filling process and thus not finally as filling to be filled in the interior of the keg remains.
  • a sensor unit for detecting a liquid and / or gas phase is present in the return gas path of the filling head housing, which is connectable to the gas pipe of a keg.
  • the interior is in particular that inner volume of the filling head, which is regularly emptied of liquids and filled exclusively with gas with closed product valve and before the actual filling, esp.
  • the aforementioned space which results in still closed drain and / or return valve and the aforementioned return gas path over which the gas trapped at the start of filling, in particular C02, can escape when liquid product is introduced.
  • the flowmeter is ideally designed to ensure regulatory compliance as a verifiable flowmeter.
  • at least one sensor for example at least one point level sensor, is arranged in one of the flow channels which, during or after the filling process and, if appropriate, after an emptying step, should be purely gas-filled or purely gas-conducting. This also applies to the product-carrying flow channel downstream of the product valve, which is emptied after filling and before the removal of the filled keg and possibly blown with a gas.
  • the at least one sensor unit is designed as a limit level sensor unit for detecting a liquid and / or gas phase.
  • a plurality of sensor units namely a first sensor unit or a second sensor unit and a third sensor unit are provided which each have a sensor head locally defining the detection area for detecting a liquid and / or gas phase.
  • a first or a second sensor unit designed in each case as a point level sensor unit for detecting a
  • Liquid phase are provided within the GuKKgeophuses.
  • the third formed as a fluid sensor unit sensor unit is provided in the first flow channel, can be detected, for example, after a successful blow in the still closed Gremanraum, if the keg fitting located on this keg sufficiently seals the filled interior, so no liquid filling material from the keg fitting outlet and the keg fitting so that it is fully functional.
  • the first sensor unit and / or the second sensor unit is designed to detect a liquid and / or gas phase in the second flow channel.
  • the first sensor unit for detecting a liquid and / or gas phase in the running in the annular channel portion of the second flow channel and / or the second sensor unit for detecting a liquid and / or gas phase within is formed in the valve stem extending portion of the second flow channel.
  • the first sensor unit is provided in the region of the plunger top free end of the valve stem to the Golfkopfgephaseuse that at least the associated sensor head of the first sensor unit protrudes into the annular channel and preferably with its detection range in Direction of the central longitudinal axis is directed.
  • the second sensor unit for detecting a liquid and / or gas phase is formed within the extending in the valve stem portion of the second flow channel and is preferably arranged completely inside the Gremangeophuses.
  • the second sensor unit is provided centrally in the interior of the Greegeophenes in such a way that the determined by the sensor head detection area is directed into the interior of the formed as FlohlSystem valve lifter.
  • the second sensor unit is formed mitbewegbar in a Flub- and / or lowering movement of the valve stem.
  • the third sensor unit is designed to detect a liquid and / or gas phase in the first flow channel.
  • the third sensor unit is arranged above the return valve on the Greegeophen.
  • the third sensor unit is at least partially integrated into the filling head housing such that at least the detection area defined by the sensor head projects into the first flow channel for detecting the liquid and / or gas phase.
  • the filling station has at least one flow meter for detecting the supplied via the first flow channel to the interior of the keg liquid filling medium.
  • a filling method is included for filling a keg equipped with a keg fitting, wherein a filling station is used according to one of the embodiments described herein.
  • an investment and pressing element is arranged against a filling head housing, against which the keg fitting of the keg to be filled is pressed in sealing position.
  • a vertically movable along a central longitudinal axis valve tappet for opening and / or closing of the keg fittings is provided in the filling head.
  • at least one first and second flow channel is formed, wherein the first flow channel is acted upon in the filling step via a controllable product valve with a liquid product, which is introduced with an open Keg fitting in the interior of the keg to be filled.
  • At least one gaseous medium is removed from the interior of the keg via the second flow channel.
  • a liquid and / or gas phase is detected within the Greets at the filling head by means of at least one sensor unit, usually a so-called point level sensor.
  • one or more necessary SET values for the presence or absence of liquid are defined at one or more positions in the interior of the filling head, which must be given in certain time windows of the process steps. Analogously to this, of course, as a target value, the presence or absence of a gas in a desired time interval and inner location can be detected.
  • the filling station or the filling head and at least one of the sensor units are connected in a data-conducting manner to at least one control and regulation unit. Controlled by this, subsequent process steps, such as discharging the kegs or aftertreatments can be organized.
  • the delivery of a volume amount of the filling material is thus effected by a flow meter, in particular a calibratable flow meter.
  • the whereabouts or leakage of partial volumes of this filling material in the keg to be filled or filled is monitored by at least one of the sensor units.
  • FIG. 1 is a schematic sectional view of a filling head partially shown an exemplary embodiment of a filling station according to the invention with keg also partially shown,
  • Fig. 2 is a schematic sectional view of an exemplary
  • Fig. 3 is a schematic block diagram of an exemplary filling station according to the invention or the filling and measuring section.
  • the filling station generally designated 1 in the figures is in this case designed, in particular, for filling large-volume containers in the form of kegs 3 equipped with a keg fitting 2.
  • a filling station 1 is provided together with further filling stations 1 on a filling machine not shown in more detail, which may have a linear or rotary transport.
  • the kegs 3 comprise, in a known manner, on one end face, in particular on its upper side, the keg fitting 2, which is provided in the region of a longitudinal axis of the keg 3 and forms essentially two openings 4, 5.
  • the opening 4 is coaxially aligned with the longitudinal axis of the keg 3 and communicates with one end of a gas pipe 6 in connection.
  • the gas pipe 6 is preferably provided in an inner space 7 of the Kegs3 in turn coaxially with the longitudinal axis of the keg 3 and formed open at its the bottom of the keg 3 opposite end.
  • the opening 5 is formed as an annular, the opening 4 and the gas pipe 6 concentrically enclosing opening, in particular as an annular channel. Both openings 4, 5 can be closed by a self-closing keg valve device which can be opened for cleaning and / or filling the keg 3.
  • the keg valve device is biased in particular by a compression spring in its closed position.
  • kegs 3 To fill the kegs 3 with liquid filling material they are standing upright, ie with their keg fitting 2 having top facing down, via a likewise not shown in detail transporter, which may be designed in particular as a plug star, the filling machine supplied as well after the filling process via a further feed dog, which may be formed, for example, as Ausschubstern, the filling machine removed again.
  • a further feed dog which may be formed, for example, as Ausschubstern
  • the filling station 1 described below is machine-specific in its construction.
  • the filling machine has at least one filling station 1 according to the invention, preferably a plurality of filling stations 1 according to the invention at equal or approximately equal intervals.
  • this can be a rotary filling machine with more than 30 filling stations 1.
  • a diverting element for example, with a Ausschubstern be removed again. From the diversion element, the kegs 3 are removed on another conveyor.
  • the filling station 1 comprises a filling head 10 with a filling head housing 11, which can be held on a machine frame, not shown, for example, the linear transporter, pusher or rotor of the filling machine.
  • the Golfkopfgeophuse 11 may be formed like a column and inside a cavity, which is provided for receiving further components, in particular a vertically displaceable in the Gremangeophuse 11 valve stem 13 and for forming the first and / or second flow channel SK1, SK2.
  • the Greessegeophuse 11 extends along a central longitudinal axis MA, which is in the filling position of the filling station 1 to the longitudinal axis of the keg 3 in alignment, in particular coaxially formed.
  • the filling head housing 11 has a contact and pressing element 12, against which the keg fitting 2 of the keg 3 to be filled can be pressed in a sealing position.
  • the contact and pressing element 12 is provided replaceably on the Golfkopfgeophuse 11, in particular fixed but interchangeable arranged, and formed as a format part that is adaptable to the respective keg fitting 2.
  • the contact and pressing element 12 forms a tulip-shaped centering cone, which u.a. a sealing element 12.1, preferably a ring seal, for the production of the sealing layer between the filling head 10 and the respective keg fitting 2 has.
  • the filling station 1 in particular the filling head 10 within the Gresmans 11, a vertically along the central longitudinal axis MA movably formed valve stem 13 for opening and / or closing the keg fitting 2 to be filled and tightly arranged in sealing position on investment and pressing 12 Kegs 3 up.
  • the initiation of the vertical lifting and / or lowering movement on the valve tappet 13 for closing and / or opening the keg fitting 2 via a pneumatic cylinder device 15 take place.
  • valve stem 13 in particular on the abutment and pressing element 12 facing end face a designed as a bucket tappet plunger upper part 13.1, by means of which the keg valve device is actuated.
  • valve tappet 13, including its tappet upper part 13.1 may be formed as a rotationally symmetrical, hollow body open at both ends, which is arranged coaxially with respect to the central longitudinal axis MA and displaceably therealong.
  • the plunger upper part 13.1 at the same sealing position of a keg fitting 2 by a lifting movement of the valve stem 13 enter into a sealing connection with the keg valve device and the two openings 4, 5 of the keg fittings 2 release, so that a media connection in the interior 7 of the Kegs 3 is made.
  • FIG. 2 shows the filling head 10 with raised valve stems 13 and closed product valve 14 and further closed return valve 19, wherein the keg 3 and its keg fitting 2 are not shown.
  • At least one first and second controllable flow channel SK1, SK2 are formed in the filling head 10, in particular in the filling head housing 11.
  • the first flow channel SK1 is acted upon via a controllable product valve 14 with a liquid product, which is in the open Keg fitting 2, ie shared opening 5, in the interior 7 of the keg 3 to be filled can be introduced.
  • the first flow channel SK1 is fluidically connectable via a controllable return valve 19 to a media line 17.2.
  • the first flow channel SK1 is designed to be sealed relative to the second flow channel SK2 such that no media mixing takes place between the media guided in each case in the flow channels SK1, SK2.
  • the filling station 1 may have a feed line 30 for the liquid product to the filling head 10.
  • the supply line 30, visible in FIG. 3, opens in particular into a product feed 16 provided on the filling head housing 11, which can be fluidically connected to the first flow channel SK1 with the interposition of the controllable product valve 14.
  • the liquid medium of the feed line 30 can be supplied from a pipe line 34, or be diverted from this.
  • the feed line 30 between the pipe line 34 and provided on the Medkopfgepuruse 11 product supply 16 at least a main valve 31 and / or a flow meter 32 and / or a control valve 33 have.
  • the one-part or multi-part supply line 30 to the main valve 31 in front of a flow meter 32 in particular also has the function of product calming.
  • the main valve 31 may be provided upstream of the flow meter 32 with respect to the flow direction of the liquid filling material, which is directed from the pipe line 34 in the direction of the filling head 10.
  • the flow meter 32 in turn can then be provided upstream of the control valve 33 in the feed line 30 in the flow direction.
  • the first flow channel SK1 is designed as a ring channel which surrounds the valve plunger 13 at least in the region of the plunger top part 13.1 within the filling head housing 11, by means of which a fluidic connection between the product feed 16 and the opening 5 of the keg fitting 3 can be produced via the product valve 14 is.
  • the second flow channel SK2 is designed at least to divert a gaseous medium, for example a span gas supplied to the interior 7 of the keg 3, back out of the interior 7 of the keg 3 during the filling process.
  • a gaseous medium for example a span gas supplied to the interior 7 of the keg 3, back out of the interior 7 of the keg 3 during the filling process.
  • the second flow channel SK2 is formed inside the valve tappet 13 and its tappet upper part 13.1 and is guided via lateral openings 13.2 in the valve tappet 13 into an annular channel 18 enclosing at least the valve tappet 13 within the filling head housing 11.
  • the second flow channel SK2 thus has two sections, namely a section running within the valve tappet 13 and its tappet upper part 13.1 and a section guided in the annular channel 18, which can be fluidically connected to a media line 17.1.
  • the gas When filling the keg 3 with product via the product feed 16, with the product valve 14 open, the gas is discharged from the interior of the keg 3 via the gas pipe 6 and then discharged into the second flow channel SK2 and from there.
  • the annular channel 18 is provided within the Bashamgeophenomyomyomyos 11, in particular formed on the inner wall and surrounds the valve stem 13. From the annular channel 18 of the second flow channel SK2 fluidically connected to the media line 17.1, which is formed on the Golfkopfgeophuse 11 and on the the product supply 16 opposite side of the Gremangeophuses 11 is provided. In other words, therefore, the gaseous medium from the interior 7 of the keg 3 via the gas pipe 6 and the opening 4 of the keg valve device which is open in the sealing position of the keg fitting 3 can be supplied to the second flow channel SK2 formed inside the valve plunger 13.
  • the gaseous medium can be guided via the openings 13.2 of the valve tappet 13 into the section of the second flow channel SK2 formed in the annular channel 18 and be discharged from the filling head housing 11 via the media line 17.1.
  • 17.1 not shown in more detail derivations can be connected to the media line.
  • the filling head 10 has at least one sensor unit 40, 41, 42 for detecting a liquid and / or gas phase in the interior of the filling head housing 11.
  • the interior is to be understood in particular that volume which is regularly emptied of liquids with closed product valve 14 to the terminals of media lines, before the actual filling and passage of product and filled exclusively with gas.
  • the Flow meter 32 delivered actual value with a set by a on the keg nominal volume and / or fitting type and / or product temperature or the like. Adjusted in a data processing unit of the control and regulation unit filling setpoint set and possibly changes the flow rate.
  • the main valve 31 can be varied continuously, in particular the cross section can be varied such that a predetermined flow rate can be generated as a controlled variable at any time during the filling process.
  • a filling quantity predetermined to the nominal volume of the keg 3 to be filled can be filled.
  • volumetric filling the counting pulses of the volume counter, in particular of the calibratable flow meter 32, are summed up in the control unit or flow meter 32 until the parameterized filling quantity of liquid contents has been reached. Thereafter, the closing of the product valve 14 is activated by a direct signal of the flow meter 32.
  • the filling head space After closing the keg valve device, the filling head space, which is still closed by the keg fitting 2, is flushed between the keg fitting 2 and the abutment and pressing element 12, whereby residual filler residues remaining in the filling head space are displaced. Subsequently, the filling head space can be blown out with CO 2 gas.
  • the filling head 10 has at least one sensor unit 40, 41, 42 for detecting a liquid and / or gas phase within the Grekgeophuses 11, it can be detected whether, for example, a portion or proportion of the filling material to be filled in during the filling on the Gas pipe 6 has passed into the second flow channel SK2 and thus not permanently as a filling amount to be filled in the interior 7 of the keg 3 has remained.
  • the gas phase is likely to be removed in the gas pipe 6 and there is no product, ie no liquid.
  • this does not reach the complete nominal quantity detected by the flow meter 32 in the keg 3, but has exited the interior 7 again so that a keg 3 filled in this way must subsequently be discharged and / or refilled.
  • the keg 3 can not absorb the nominal filling quantity.
  • a liquid and / or gas phase in the form of remnants of liquid contents from the filling process can be detected by means of the at least one sensor unit 40, 41 provided according to the invention.
  • the at least one sensor unit 40, 41, 42 may be formed as a limit level sensor unit for detecting a liquid and / or gas phase.
  • the at least one point level sensor unit may be formed as an inductive and / or capacitive sensor unit and / or ultrasound sensor unit.
  • a plurality of sensor units 40, 41, 42 in particular a first sensor unit 40 or a second sensor unit 41 and a third sensor unit 42 are provided, each having a detection area locally defining sensor head 40.1, 41.1, 42.1 for detecting a liquid and / or gas phase have within the Grekgeophuses 11.
  • a first or a second sensor unit 40, 41 each designed as a limit sensor unit, may be provided for detecting a liquid and / or gas phase within the filling head housing 11 and a third sensor unit 42 designed as a fluid sensor unit for detecting a liquid phase within the filling head housing 11 ,
  • This sensor unit 42 is positioned in the product-carrying line, so that it is wetted in the control or target process, unlike the sensor units 40, 41, in the filling step of the keg 3 with product.
  • the sensor unit 42 thus provides additional information, namely whether the product channels at the beginning and after filling and blowing are really empty, ie only gas-filled, by detecting either the presence or absence of liquid or alternatively the presence or absence of gas.
  • the first sensor unit 40 and / or the second sensor unit 41 may be designed to detect a liquid and / or gas phase in the second flow channel SK2.
  • the first sensor unit 40 for detecting a liquid and / or gas phase in the running in the annular channel 18 portion of the second flow channel SK2 and / or the second sensor unit 41 for detecting a liquid and / or gas phase within the extending in the valve stem 13 Section of the second flow channel SK2 be formed.
  • the first sensor unit 40 may be provided on the filling head housing 11 in the region of the free end of the valve tappet 13 facing away from the tappet upper part 13.1 such that at least the associated sensor head 40.1 of the first sensor unit 40 projects into the annular channel 18 and preferably with its detection area in the direction the center longitudinal axis MA is directed.
  • the first sensor unit 40 can at least partially be integrated in the filling head housing 11, in particular fastened to it.
  • the second sensor unit 41 is designed to detect a liquid and / or gas phase within the extending in the valve stem 13 portion of the second flow channel SK2 and in this case preferably completely disposed in the interior of the Gremangeophuses 11.
  • the second sensor unit 41 is advantageously provided centrally in the interior of the filling head housing 11, ie with its longitudinal extent along the central longitudinal axis MA, in such a way that the detection area defined by the sensor head 41.1 is directed into the interior of the valve tappet 13 designed as a hollow body.
  • the second sensor unit 41 at the lower, the plunger upper part 13.1 facing away from the free end of the valve stem 13 can be centrally provided inside the Gremangepuruses 11 and directed with the sensor head 41.1 in the direction of the plunger upper part 13.1.
  • the second sensor unit 41 can thus be embodied as movable during a lifting and / or lowering movement of the valve tappet 13. It may be provided that the second sensor unit 41 is designed as a wireless sensor unit, in particular as a radio sensor unit.
  • the third sensor unit 42 may be designed to detect a liquid and / or gas phase in the first flow channel SK1.
  • the third sensor unit 42 may preferably be arranged, in particular fastened, above the return valve 19 on the filling head housing 11.
  • the third sensor unit 42 may be provided in its longitudinal extension by preferably 45 degrees to the longitudinal extension of the return valve 19 and with its detection range of the sensor head 42.1 pointing in the direction of the central longitudinal axis MA.
  • the third sensor unit 42 may advantageously be accommodated, in particular fixed, in the filling head housing 11 in such a way that at least the detection area defined by the sensor head 42.1 projects into the first flow channel SK1 for detecting the liquid and / or gas phase.
  • the sensor unit 42 is provided on the filling head housing 11 between the return valve 19 and the sealing element 12.1 of the contact and pressing element 12.

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  • Filling Of Jars Or Cans And Processes For Cleaning And Sealing Jars (AREA)
  • Basic Packing Technique (AREA)

Abstract

L'invention concerne une station de remplissage (1) pour remplir des espaces intérieurs (7) de fûts (3) équipés respectivement d'au moins un raccord de fût (2), comprenant au moins une tête de remplissage (10) équipée d'un boîtier de tête de remplissage (11), un élément d'appui et de pression (12) étant agencé sur le boîtier de tête de remplissage (11), contre lequel élément le raccord de fût (2) du fût à remplir (3) peut être pressé en contact étanche, comportant également un poussoir de soupape (13) pouvant être déplacé verticalement le long d'un axe longitudinal central (MA) pour ouvrir et/ou fermer le raccord de fût (2) du fût à remplir (3) et disposé sur l'élément de conditionnement et de pressage (12) en contact étanche, dans la tête de remplissage (10) au moins un premier et un deuxième canal d'écoulement (SK1, SK2) étant formés, ledit premier canal d'écoulement pouvant être actionné avec un produit de remplissage liquide par une soupape de produit (14) commandable, qui peut être introduit dans l'espace intérieur (7) du fût à remplir (3) lors du raccord de fût (2) ouvert, et ledit deuxième canal d'écoulement (SK2) pouvant être lié de manière fluidique au raccord de fût (2) ouvert avec le tuyau de gaz (6) d'un fût (3) pressé, de telle sorte q'au moins un médium gazeux peut être évacué de l'espace intérieur (7) du fût, ladite tête de remplissage (10) comportant au moins une unité de détection (40, 41, 42) pour détecter une phase liquide et/ou gazeuse dans l'espace intérieur du boîtier de tête de remplissage (11) dans au moins un des canaux d'écoulement (SK1, SK2) après la soupape de produit (14), et au moins une unité de détection (40, 41, 42) pouvant être liée directement ou indirectement à au moins une unité de commande et de régulation (100) en termes de données.
PCT/EP2018/080222 2017-12-04 2018-11-06 Station de remplissage WO2019110218A1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE102017128782.5A DE102017128782A1 (de) 2017-12-04 2017-12-04 Füllstation
DE102017128782.5 2017-12-04

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WO2019110218A1 true WO2019110218A1 (fr) 2019-06-13

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Cited By (5)

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Publication number Priority date Publication date Assignee Title
WO2022211853A1 (fr) * 2021-04-02 2022-10-06 Craft Standard Enterprises, Inc. Appareil, système et procédé de remplissage d'un contenant à boisson
US11511986B2 (en) 2020-07-01 2022-11-29 Craft Standard Enterprises, Inc. Apparatus, system and method for filling a beverage container
US11725168B2 (en) 2020-07-01 2023-08-15 Craft Standard Enterprises, Inc. Apparatus, system and method for filling a beverage container
US11834317B2 (en) 2020-07-01 2023-12-05 Craft Standard Enterprises, Inc. Apparatus, system and method for filling a beverage container
US11891292B2 (en) 2020-07-01 2024-02-06 Craft Standard Enterprises, Inc. Apparatus, system and method for filling a beverage container

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DE3600301A1 (de) * 1986-01-08 1987-07-09 Herbert Malek Vorrichtung zum erfassen der vollstaendigen fuellung eines fasses, insbesondere keg-fasses fuer bier o. dgl.
DE9218509U1 (de) * 1992-03-17 1994-07-07 Khs Masch & Anlagenbau Ag Vorrichtung zum Behandeln von KEG, insbesondere zum Füllen von KEG
EP1897848A1 (fr) * 2006-09-11 2008-03-12 Suntory Limited Dispositif d'évaluation d'une défaillance de remplissage et dispositif de remplissage
DE102015116532A1 (de) * 2015-09-30 2017-03-30 Khs Gmbh Verfahren sowie Behandlungsstation und Behandlungskopf zur Behandlung der Innenräume von KEGs sowie Dichtung zur Verwendung bei einer derartigen Behandlungsstation

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DE29612406U1 (de) * 1996-07-17 1996-10-17 Khs Masch & Anlagenbau Ag Vorrichtung zum Füllen von KEG mit einem flüssigen Füllgut
DE102013102616A1 (de) * 2013-03-14 2014-09-18 Khs Gmbh Verfahren sowie Füllsystem zum Füllen von Behältern

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DE3600301A1 (de) * 1986-01-08 1987-07-09 Herbert Malek Vorrichtung zum erfassen der vollstaendigen fuellung eines fasses, insbesondere keg-fasses fuer bier o. dgl.
DE9218509U1 (de) * 1992-03-17 1994-07-07 Khs Masch & Anlagenbau Ag Vorrichtung zum Behandeln von KEG, insbesondere zum Füllen von KEG
EP1897848A1 (fr) * 2006-09-11 2008-03-12 Suntory Limited Dispositif d'évaluation d'une défaillance de remplissage et dispositif de remplissage
DE102015116532A1 (de) * 2015-09-30 2017-03-30 Khs Gmbh Verfahren sowie Behandlungsstation und Behandlungskopf zur Behandlung der Innenräume von KEGs sowie Dichtung zur Verwendung bei einer derartigen Behandlungsstation

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US11511986B2 (en) 2020-07-01 2022-11-29 Craft Standard Enterprises, Inc. Apparatus, system and method for filling a beverage container
US11725168B2 (en) 2020-07-01 2023-08-15 Craft Standard Enterprises, Inc. Apparatus, system and method for filling a beverage container
US11834317B2 (en) 2020-07-01 2023-12-05 Craft Standard Enterprises, Inc. Apparatus, system and method for filling a beverage container
US11891292B2 (en) 2020-07-01 2024-02-06 Craft Standard Enterprises, Inc. Apparatus, system and method for filling a beverage container
WO2022211853A1 (fr) * 2021-04-02 2022-10-06 Craft Standard Enterprises, Inc. Appareil, système et procédé de remplissage d'un contenant à boisson

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