EP2794462B1 - Filling element and filling system - Google Patents

Filling element and filling system Download PDF

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Publication number
EP2794462B1
EP2794462B1 EP12780664.4A EP12780664A EP2794462B1 EP 2794462 B1 EP2794462 B1 EP 2794462B1 EP 12780664 A EP12780664 A EP 12780664A EP 2794462 B1 EP2794462 B1 EP 2794462B1
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EP
European Patent Office
Prior art keywords
filling
discharge opening
liquid
liquid channel
product
Prior art date
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EP12780664.4A
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German (de)
French (fr)
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EP2794462A1 (en
Inventor
Ludwig Clüsserath
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KHS GmbH
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KHS GmbH
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Priority to SI201231149T priority Critical patent/SI2794462T1/en
Publication of EP2794462A1 publication Critical patent/EP2794462A1/en
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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
    • B67C3/02Bottling liquids or semiliquids; Filling jars or cans with liquids or semiliquids using bottling or like apparatus
    • B67C3/023Filling multiple liquids in a container
    • B67C3/026Filling the liquids simultaneously
    • 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
    • B67C3/02Bottling liquids or semiliquids; Filling jars or cans with liquids or semiliquids using bottling or like apparatus
    • B67C3/22Details
    • B67C3/225Means for filling simultaneously, e.g. in a rotary filling apparatus or multiple rows of containers
    • 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
    • B67C3/02Bottling liquids or semiliquids; Filling jars or cans with liquids or semiliquids using bottling or like apparatus
    • B67C3/22Details
    • B67C3/26Filling-heads; Means for engaging filling-heads with bottle necks
    • 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
    • B67C3/02Bottling liquids or semiliquids; Filling jars or cans with liquids or semiliquids using bottling or like apparatus
    • B67C3/22Details
    • B67C3/28Flow-control devices, e.g. using valves
    • B67C3/286Flow-control devices, e.g. using valves related to flow rate control, i.e. controlling slow and fast filling phases
    • 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
    • B67C3/02Bottling liquids or semiliquids; Filling jars or cans with liquids or semiliquids using bottling or like apparatus
    • B67C3/22Details
    • B67C3/26Filling-heads; Means for engaging filling-heads with bottle necks
    • B67C2003/2671Means for preventing foaming of the liquid

Definitions

  • the invention relates to a filling element according to the preamble of claim 1 and to a filling system according to the preamble of claim 6.
  • a filling element with the features of the preamble of claim 1 is known ( DE 22 46 176 A1 ).
  • the known filling element designed as a metering valve has, in a fluid channel formed in a filling element housing, a first valve body which is part of a first fluid valve and which controls the delivery of a first filling material jet at a first discharge opening.
  • a second liquid channel with a second discharge opening discharge of a second Gregutstrahls is formed in the first valve body.
  • the second fluid channel communicates with the first fluid passage via another fluid valve and via channels that are slanted with respect to a filament axis and provided in the first valve body.
  • a second, arranged in the first valve body valve body forms the further remplisstechniksvantil, with which the delivery of the second Gregutstrahls is controllable.
  • the known filling element serves to avoid at the beginning of filling a container a disturbance of the introduced into a container contents by a too sharp Gregutstrahl. For this purpose, at the beginning of each filling process, initially only the further liquid valve designed as a fine-flow valve is opened.
  • a filling element ( DE 10 2006 017706 A1 ), which is suitable and intended either for free jet filling or for pressure filling of containers.
  • a first liquid channel is formed, which opens at a first discharge opening and in which a first liquid valve is arranged with a valve body.
  • the valve body is provided on a valve stem formed by a pipe piece.
  • the pipe section forms a second liquid channel with a second discharge opening. Via an opening, the pipe section opens with its upper end into a liquid space, which communicates with the first liquid channel via a further liquid valve.
  • the free jet filling of the container takes place via the second liquid channel and the second discharge opening with the first liquid channel closed.
  • the pressure filling the container then arranged in sealing position on the filling element takes place when the second liquid channel is closed and the first liquid channel is open.
  • valves for controlled delivery of different components of a filling material into containers via an outer annular first discharge opening and an inner branch discharge opening
  • US Pat. GB 2 451 251 A These known Mahrfachrrantile each comprise a pointedten, sleeve-like valve body, which forms between itself and a surrounding valve housing an annular fluid channel with the first discharge opening, and an inner valve body, which between them and the inner surface of the outer valve body, a second annular fluid channel with the second discharge opening forms.
  • the valve bodies are axially movable relative to the housing as well as relative to one another. Each fluid channel is connected separately from the other fluid channel with a submission providing the associated component.
  • metering valves DE 10 2010 006005 A1
  • the discharge of the filling material controlling liquid valve each having an outer and an inner valve body which are movable relative to each other and relative to a valve seat such that closed in an operating state, the metering valve by both valve body and in other operating states the metering valve respectively opened by both valve body or opened by a respective valve body and closed by the other valve body, namely, releasing different flow paths for the contents.
  • Filling elements are finally known ( JP 2007 069928 A ), mlt a arranged in a first, a first discharge port fluid channel valve body of a liquid valve.
  • a second fluid channel is provided with a second discharge opening.
  • the valve body is provided with a plurality of openings forming a sieve-like structure and opening into the second liquid channel, in such a manner that the first liquid channel is closed in a position of the valve body and a reduced flow path for the product through the openings and the second liquid channel consists of each to be filled container.
  • the object of the invention is to show a filling element which is suitable for free jet filling of containers and an optimal, especially clean filling with increased filling capacity (in the container filled product quantity per unit time) allows.
  • a filling element according to the patent claim 1 is formed.
  • a filling system is the subject of patent claim 6.
  • the filling element according to the invention is, inter alia, designed such that at least during a part of the filling phase in which the respective container or its container interior are filled with the liquid product, the product flowing Foodgutstrom by merging at least two Follguttellströmen or Golfgutteilstrahlen is formed, namely by merging at least one outer, at least one first discharge opening first Golfgutteilstrahls and at least one inner, at least one second discharge opening output second Golfgutteilstrahls.
  • the inner Golfgutteilstrahl forms a kind of guide or guide flow, with which connects the at least one outer Golfgutteilstrahl preferably before entering the respective container.
  • the at least one first discharge opening is offset radially outwardly relative to the at least one further discharge opening for the inner Golfgutteilstrahl.
  • the filling element according to the invention is further characterized by the features of the characterizing part of claim 1.
  • the first discharge opening is annular or formed by an annular gap, so that also emerging from the first discharge opening Bigutteilstrahl annular and the at least forming a further outlet opening exiting inner Golfgutteilstrahl enclosing.
  • the at least one first discharge opening is designed so that the Greengutteilstrahl exiting from this outlet opening is directed towards the Greenelementachse, i. with this an angle smaller than 90 °, which is opposite to the flow direction of the filling material, i. opens upwards.
  • the Greeteilstrahlen generated by the inventive formation which unite after exiting the filling element and preferably before entering the respective container to a common Gregutstrahl, to a substantial increase in the filling capacity (measured in filling volume per unit time), for example to an increase of up to 20%.
  • this increase in performance can be realized without it during the filling process to a foaming of the contents to a relevant extent, i. In particular, the filling process and / or the filling quality impairing scope comes.
  • free-jet filling is to be understood as meaning a process in which the liquid product flows into the container to be filled in a free filling jet or filling material jet, the container with its container mouth or opening not resting against the filling element, but rather from the filling element or from is spaced there a Gregutauslass.
  • tainers are, inter alia, bottles, cans, and also soft packagings, for example those produced from cardboard and / or plastic film and / or metal foil.
  • FIG. 1 - 3 1 is a filling element for the free jet filling of containers in the form of bottles 2 with a liquid filling material.
  • the filling element 1 is provided together with a plurality of similar filling elements 1 on the circumference of a rotatable about a vertical axis of the machine rotor 3 of a filling system or a filling machine rotating design.
  • the filling element 1 comprises a filling element housing 5, in which u.a. a Gregut- or liquid channel 6 is formed, which is connected in its upper region via a product line 7 with control or liquid valve 8 with the common Gregutkessel.
  • the product line 7 led via an inlet opening 7.1 into the liquid channel 6, whose axis is horizontal or substantially horizontal, i. is oriented perpendicular to the filler element axis FA, so that the liquid product enters radially outward in the liquid channel 6 relative to the vertical machine axis in a flow direction.
  • a liquid valve 9 is provided, which is formed in the illustrated embodiment by a cooperating with a valve seat in the liquid channel 6 valve body 10, for opening and closing the liquid valve 9 in the direction of a vertical Baselementachse FA from the in the FIGS. 1 and 2 shown, the liquid valve 9 occlusive position is movable upward into a position opening the liquid valve 9.
  • the valve body 10 is provided on a tube 11 which is arranged coaxially with the filling element axis FA and acts as a valve tappet, which cooperates with an actuating device 12 with its upper end not shown in detail and sealed out of the liquid channel 6.
  • the liquid valve 9 is in the flow direction of the liquid filling material through the liquid channel 6 at a relatively large axial distance from the discharge opening 14, ie in the darg Marieen embodiment, the liquid channel 6 is divided by the liquid valve 9 into an upper and a lower portion , wherein both sections have approximately the same axial length.
  • the tube 11 and formed in the tube 11 further liquid channel 11.2 not only open at its lower end 11.1, but the other liquid channel 11.2 is also in the upper portion of the liquid channel 6, ie in that portion of the liquid channel open, the (section ) Based on the flow direction of the liquid filling material in front of the liquid valve 9 is located.
  • the local opening of the tube 11 and the liquid channel 11.2 is for example generated by at least one transverse bore 15 which is oriented with its axis perpendicular or substantially perpendicular to the Greelementachse FA.
  • the transverse bore 15 is arranged in the illustrated embodiment so that it is in the open liquid valve 9, ie with raised valve body 10 and tube 11, congruent or substantially congruent with the inlet opening 7.1 of the product line 7.
  • different flow paths are additionally formed in the housing 5 of the filling element 1, which flow paths can be controlled by control valves 16 and 17 which are closed in the non-activated state, such as such.
  • a flow path through which the upper portion of the liquid channel 6 can be connected by activating or opening the control valve 16 with the annular channel 4, and another flow path, via the activating or opening of the control valve 17, the annular space 13 with the annular channel 4 or but by activating or opening both control valves 17, the annular channel 4 can be connected to both the annular space 13 and the liquid channel 6.
  • the controlled flow paths or the control valves 16 and 17 u.a. in closed with a closure or with a flushing cap 18 annular space 13 and with open liquid valves 8 and 9 intensive CIP cleaning and / or sterilization of the filling elements 1 of the filling machine possible.
  • the filling of the respective bottle 2 is preferably carried out such that at the beginning of the filling process, ie in a Schnellfeldfeldphase both liquid valve 8 and 9 are opened, so that the liquid product on the one hand via the lower, open and also a discharge opening 11.3 forming pipe end 11.1 as a central Golfgutteilstrahl 20 and on the other hand via the annular discharge opening 14 as the Golfgutteilstrahl 20 enclosing annular Golfgutteilstrahl 21 is discharged at the bottom of the filling element, as shown in the FIG. 3 indicated by the arrows there. Both Artgutteilstrahlen 20 and 21 combine to form a common Gregutstrahl, which then flows in the direction of the Greelementachse FA in the respective bottle 2.
  • the liquid valve 9 is closed.
  • the liquid valve still open during the slow filling is closed, for example the liquid valve 8, so that the filling process is completed after the closing of both liquid valves 8 and 9 and the bottle 2 filled with the desired filling quantity of the filling element 1 or the container carrier 19 can be removed.
  • FIGS. 4 to 6 show as a further embodiment, a filling element 1a, which differs from the filling element 1 essentially only in that in the tube 11 coaxially with the Greelementachse FA a rod 22 is disposed at the embodiment shown slightly protrudes with its lower end over the lower end 11.1 of the tube 11. Between the inner surface of the tube 11 and the outer surface of the rod 22, the additional liquid channel 11.2 is formed which is annular and in turn through the transverse bore 15 to the liquid channel 6 is open and at the lower end of the tube 11.1 forms an annular discharge opening 11.3.
  • the other construction as well as the operation of the filling element 1a are identical to the structure and operation of the filling element 1.
  • annular liquid channel 11.2 formed by rod 22 with annular discharge opening 11.3 is a still further improved flow behavior of the liquid filling material at the outlet at the bottom of the Tube 11 and thus achieved a further improvement of the respective bottle 2 flowing during the rapid filling phase Medgutstrahles.
  • a flow meter 23 (preferably a magneto-inductive flow meter) individually provided in the product line 8 for each filling element 1 or 1a is used and / or a container carrier 19 is formed Weighing device for detecting the current weight of the local area 2.
  • the invention described above is suitable in a very special way for the filling of juices which contain fruit fibers and / or fruit cells, wherein the length of these fruit fibers can be up to 25 mm.
  • This particular suitability for the filling of such products is based on the fact that the filling valve according to the invention contains no built-in parts, which would hinder the passage of solids through the filling valve.
  • Another aspect of the present invention is to choose the diameter of the liquid channel in the pipe 11 so that the capillary forces and / or the surface tension of the filling material to be filled in conjunction with the selected diameter of the liquid channel leakage of the liquid channel after closing the liquid valves 8, 9 is safely prevented.
  • the leakage of the liquid channel could be safely prevented, for example, at a diameter of 6 mm in the filling of juice and a diameter of, for example, 8 to 9 mm in the filling of syrup.
  • the channel would be 11.2 separated from the liquid channel 6, ie the transverse bore 15 would not exist, and the channel 11.2 would be connected via a separate, a control or liquid valve containing product line with a boiler for providing a component of the contents.
  • the liquid channel 6 would be connected via the product line 7, which would then not have the control valve 8, with a boiler for providing the further component of the filling material.

Description

Die Erfindung bezieht sich auf ein Füllelement gemäß Oberbegriff Patentanspruch 1 sowie auf ein Füllsystem gemäß Oberbegriff Patentanspruch 6.The invention relates to a filling element according to the preamble of claim 1 and to a filling system according to the preamble of claim 6.

Ein Füllelement mit den Merkmalen des Oberbegriffs des Patentanspruches 1 ist bekannt ( DE 22 46 176 A1 ). Das bekannte, als Dosierventil ausgebildete Füllelement besitzt in einem in einem Füllelementgehäuse ausgebildeten Flüssigkeitskanal einen ersten Ventilkörper, der Teil eines ersten Flüssigkeitsventils ist und der die Abgabe eines ersten Füllgutstrahls an einer ersten Abgabeöffnung steuert. In dem ersten Ventilkörper ist ein zweiter Flüssigkeitskanal mit einer zweiten Abgabeöffnung Abgabe eines zweiten Füllgutstrahls gebildet. Der zweite Flüssigkeitskanal steht über ein weiteres Flüssigkeitsventil und über Kanäle, die in Bezug auf eine Follelementachse schräg verlaufen und im ersten Ventilkörper vorgesehen sind, mit dem ersten Flüssigkeitskanal in Verbindung. Ein zweiter, im ersten Ventilktörper angeordneter Ventilkörper bildet das weitere Flüssigkeitsvantil, mit dem die Abgabe des zweiten Füllgutstrahls steuerbar ist. Das bekannte Füllelement dient dazu, um am Beginn des Füllens eines Behälters eine Beunruhigung des in einen Behälter eingebrachten Füllgutes durch einen zu scharfen Füllgutstrahl zu vermeiden. Hierfür wird am Anfang jedes Füllprozesses zunächst nur das weitere als Feinlaufventil ausgebildete Flüssigkeitsventil geöffnet.A filling element with the features of the preamble of claim 1 is known ( DE 22 46 176 A1 ). The known filling element designed as a metering valve has, in a fluid channel formed in a filling element housing, a first valve body which is part of a first fluid valve and which controls the delivery of a first filling material jet at a first discharge opening. In the first valve body, a second liquid channel with a second discharge opening discharge of a second Füllgutstrahls is formed. The second fluid channel communicates with the first fluid passage via another fluid valve and via channels that are slanted with respect to a filament axis and provided in the first valve body. A second, arranged in the first valve body valve body forms the further Flüssigkeitsvantil, with which the delivery of the second Füllgutstrahls is controllable. The known filling element serves to avoid at the beginning of filling a container a disturbance of the introduced into a container contents by a too sharp Füllgutstrahl. For this purpose, at the beginning of each filling process, initially only the further liquid valve designed as a fine-flow valve is opened.

Bekannt ist weiterhin ein Füllelement ( DE 10 2006 017706 A1 ), welches wahlweise zum Freistrahlfüllen oder zum Druckfüllen von Behältern geeignet und bestimmt ist. In einem Füllelementgehäuse Ist ein erster Flüssigkeitskanal ausgebildet, der an einer ersten Abgabeöffnung mündet und in dem ein erstes Flüssigkeitsventil mit einem Ventilkörper angeordnet ist. Der Ventilkörper ist an einem von einem Rohrstück gebildeten Ventilstößel vorgesehen. Das Rohrstück bildet einen zweiten Flüssigkeitskanal mit einer zweiten Abgabeöffnung. Über eine Öffnung mündet das Rohrstück mit seinem oberen Ende in einen Flüssigkeitsraum, der über ein weiteres Flüssigkeitsventil mit dem ersten Flüssigkeitskanal in Verbindung steht. Das Freistrahlfüllen der Behälter erfolgt über den zweiten Flüssigkeitskanal und die zweite Abgabeöffnung bei geschlossenem ersten Flüssigkeitskanal. Das Druckfüllen der dann in Dichtlage am Füllelement angeordnete Behälter erfolgt bei geschlossenem zweiten Flüssigkeitskanal und geöffnetem ersten Flüssigkeitskanal.Also known is a filling element ( DE 10 2006 017706 A1 ), which is suitable and intended either for free jet filling or for pressure filling of containers. In a Füllelementgehäuse a first liquid channel is formed, which opens at a first discharge opening and in which a first liquid valve is arranged with a valve body. The valve body is provided on a valve stem formed by a pipe piece. The pipe section forms a second liquid channel with a second discharge opening. Via an opening, the pipe section opens with its upper end into a liquid space, which communicates with the first liquid channel via a further liquid valve. The free jet filling of the container takes place via the second liquid channel and the second discharge opening with the first liquid channel closed. The pressure filling the container then arranged in sealing position on the filling element takes place when the second liquid channel is closed and the first liquid channel is open.

Bekannt sind weiterhin auch Mehrfachventile zur gesteuerten Abgabe von unterschiedlichen Komponenten eines Füllgutes in Behälter über eine äußere ringförmige erste Abgabeöffnung und eine innere zweige Abgabeöffnung ( GB 2 451 251 A ). Diese bekannten Mahrfachrrantile umfassen jeweils einen äußerten, hülsenartigen Ventilkörper, der zwischen sich und einem ihn umgebenden Ventilgehäuse einen ringförmigen Flüssigkeitskanal mit der ersten Abgabeöffnung bildet, sowie einen inneren Ventilkörper, der zwischen sich und der Innenfläche des äußeren Ventilkörpers einen zweiten ringförmigen Flüssigkeitskanal mit der zweiten Abgabeöffnung bildet. Zum Öffnen und Schließen der Abgabeöffnungen sind die Ventilkörper relativ zum Gehäuse sowie auch relativ zueinander axial bewegbar. Jeder Flüssigkeitskanal ist getrennt von dem anderen Flüssigkeitskanal mit einer die zugehörige Komponente bereitstellenden Einreichung verbunden.Also known are multiple valves for controlled delivery of different components of a filling material into containers via an outer annular first discharge opening and an inner branch discharge opening (US Pat. GB 2 451 251 A ). These known Mahrfachrrantile each comprise a äußerten, sleeve-like valve body, which forms between itself and a surrounding valve housing an annular fluid channel with the first discharge opening, and an inner valve body, which between them and the inner surface of the outer valve body, a second annular fluid channel with the second discharge opening forms. For opening and closing the discharge openings, the valve bodies are axially movable relative to the housing as well as relative to one another. Each fluid channel is connected separately from the other fluid channel with a submission providing the associated component.

Bekannt sind weiterhin Dosierventile ( DE 10 2010 006005 A1 ), bei denen das die Abgabe des Füllgutes steuernde Flüssigkeitsventil jeweils einen äußeren und einen inneren Ventilkörper aufweist, die relativ zueinander sowie auch relativ zu einem Ventilsitz derart bewegbar sind, dass in einem Betriebszustand das Dosierventil durch beide Ventilkörper verschlossen und in weiteren Betriebszuständen das Dosierventil jeweils durch beide Ventilkörper geöffnet oder durch jeweils einen Ventilkörper geöffnet und durch den anderen Ventilkörper verschlossen ist, und zwar unter Freigabe unterschiedlicher Strömungswege für das Füllgut.Also known are metering valves ( DE 10 2010 006005 A1 ), in which the discharge of the filling material controlling liquid valve each having an outer and an inner valve body which are movable relative to each other and relative to a valve seat such that closed in an operating state, the metering valve by both valve body and in other operating states the metering valve respectively opened by both valve body or opened by a respective valve body and closed by the other valve body, namely, releasing different flow paths for the contents.

Bekannt sind schließlich Füllelemente ( JP 2007 069928 A ), mlt einem in einem ersten, eine erste Abgabeöffnung bildenden Flüssigkeitskanal angeordneten Ventilkörper eines Flüssigkeitsventils. Im Ventilkörper ist ein zweiter Flüssigkeitskanal mit einer zweiten Abgabeöffnung vorgesehen. Weiterhin ist der Ventilkörper mit mehreren, eine siebartige Struktur bildenden und jeweils in den zweiten Flüssigkeitskanal mündenden Öffnungen versehen, und zwar derart, dass in einer Stellung des Ventilkörpers der erste Flüssigkeitskanal verschlossen und ein reduzierter Strömungsweg für das Füllgut durch die Öffnungen und den zweiten Flüssigkeitskanal in den jeweils zu füllenden Behälter besteht.Filling elements are finally known ( JP 2007 069928 A ), mlt a arranged in a first, a first discharge port fluid channel valve body of a liquid valve. In the valve body, a second fluid channel is provided with a second discharge opening. Furthermore, the valve body is provided with a plurality of openings forming a sieve-like structure and opening into the second liquid channel, in such a manner that the first liquid channel is closed in a position of the valve body and a reduced flow path for the product through the openings and the second liquid channel consists of each to be filled container.

Aufgabe der Erfindung ist es, ein Füllelement aufzuzeigen, welches zum Freistrahlfüllen von Behältern geeignet ist und ein optimales, insbesondere auch sauberes Füllen bei erhöhter Füllleistung (in die Behälter abgefüllte Füllgutmenge je Zeiteinheit) ermöglicht. Zur Lösung dieser Aufgabe ist ein Füllelement entsprechend dem Patentanspruch 1 ausgebildet. Ein Füllsystem ist Gegenstand des Patentanspruchs 6.The object of the invention is to show a filling element which is suitable for free jet filling of containers and an optimal, especially clean filling with increased filling capacity (in the container filled product quantity per unit time) allows. To solve this problem, a filling element according to the patent claim 1 is formed. A filling system is the subject of patent claim 6.

Das erfindungsgemäße Füllelement ist u.a. so ausgeführt, dass zumindest während eines Teils der Füllphase, in der der jeweilige Behälter bzw. dessen Behälterinnenraum mit dem flüssige Füllgut befüllt werden, der dem Behälter zufließende Füllgutstrom durch Zusammenführen von wenigstens zwei Follguttellströmen oder Füllgutteilstrahlen gebildet ist, und zwar durch Zusammenführen wenigstens eines äußeren, an wenigstens einer ersten Abgabeöffnung abgegebenen ersten Füllgutteilstrahls und wenigstens eines inneren, an wenigstens einer zweiten Abgabeöffnung abgegebenen zweiten Füllgutteilstrahls. Der innere Füllgutteilstrahl bildet dabei eine Art Leit- oder Führungsstrom, mit dem sich der wenigstens eine äußere Füllgutteilstrahl vorzugsweise noch vor dem Eintritt in den jeweiligen Behälter verbindet. Bezogen auf die Fülleiernentachse, in deren Richtung das Füllgut in den jeweiligen Behälter strömt, ist die wenigstens eine erste Abgabeöffnung gegenüber der wenigstens einen weiteren Abgabeöffnung für den inneren Füllgutteilstrahl radial nach außen hin versetzt, Das erfindungsgemäße Füllelement zeichnet sich weiterhin durch die Merkmale des kennzeichnenden Teils des Anspruchs 1 aus. Bei einer bevorzugten Ausführungsform ist die erste Abgabeöffnung ringförmig ausgeführt oder von einem Ringspalt gebildet, sodass sich auch der aus der ersten Abgabeöffnung austretende Füllgutteilstrahl ringförmig und den aus der wenigstens einen weiteren Austrittsöffnung austretenden inneren Füllgutteilstrahl umschließend ausbildet.The filling element according to the invention is, inter alia, designed such that at least during a part of the filling phase in which the respective container or its container interior are filled with the liquid product, the product flowing Füllgutstrom by merging at least two Follguttellströmen or Füllgutteilstrahlen is formed, namely by merging at least one outer, at least one first discharge opening first Füllgutteilstrahls and at least one inner, at least one second discharge opening output second Füllgutteilstrahls. The inner Füllgutteilstrahl forms a kind of guide or guide flow, with which connects the at least one outer Füllgutteilstrahl preferably before entering the respective container. Based on the Fülleiernentachse, in the direction of the filling material flows into the respective container, the at least one first discharge opening is offset radially outwardly relative to the at least one further discharge opening for the inner Füllgutteilstrahl, The filling element according to the invention is further characterized by the features of the characterizing part of claim 1. In a preferred embodiment, the first discharge opening is annular or formed by an annular gap, so that also emerging from the first discharge opening Füllgutteilstrahl annular and the at least forming a further outlet opening exiting inner Füllgutteilstrahl enclosing.

Bevorzugt ist die wenigstens eine erste Abgabeöffnung so ausgeführt, dass der aus dieser Austrittsöffnung austretende Füllgutteilstrahl auf die Füllelementachse hin gerichtet ist, d.h. mit dieser einen Winkel kleiner als 90° einschließt, der sich entgegen der Strömungsrichtung des Füllgutes, d.h. nach oben hin öffnet.Preferably, the at least one first discharge opening is designed so that the Füllgutteilstrahl exiting from this outlet opening is directed towards the Füllelementachse, i. with this an angle smaller than 90 °, which is opposite to the flow direction of the filling material, i. opens upwards.

Es hat sich völlig überraschend gezeigt, dass die durch die erfindungsgemäße Ausbildung erzeugten Füllgutteilstrahlen, die sich nach dem Austritt aus dem Füllelement und bevorzugt noch vor dem Eintritt in den jeweiligen Behälter zu einem gemeinsamen Füllgutstrahl vereinigen, zu einer wesentlichen Steigerung der Füllleistung (gemessen in Füllvolumen je Zeiteinheit) führen, beispielsweise zu einer Steigerung von bis zu 20%. Von besonderem Vorteil ist dabei auch, dass diese Leistungssteigerung realisiert werden kann, ohne dass es während des Füllprozesses zu einer Schaumbildung des Füllgutes in einem relevanten Umfang, d.h. insbesondere den Füllprozess und/oder die Füllqualität beeinträchtigenden Umfang kommt.It has surprisingly been found that the Füllgutteilstrahlen generated by the inventive formation, which unite after exiting the filling element and preferably before entering the respective container to a common Füllgutstrahl, to a substantial increase in the filling capacity (measured in filling volume per unit time), for example to an increase of up to 20%. Of particular advantage is also that this increase in performance can be realized without it during the filling process to a foaming of the contents to a relevant extent, i. In particular, the filling process and / or the filling quality impairing scope comes.

Der Ausdruck "im Wesentlichen" bzw. "etwa" bedeutet im Sinne der Erfindung Abweichungen vom jeweils exakten Wert um +/- 10%, bevorzugt um +/- 5% und/oder Abweichungen in Form von für die Funktion unbedeutenden Änderungen.The expression "essentially" or "approximately" in the sense of the invention means deviations from the exact value by +/- 10%, preferably by +/- 5% and / or deviations in the form of changes that are insignificant for the function.

Unter Freistrahlfüllen ist im Sinne der Erfindung ein Verfahren zu verstehen, bei dem das flüssige Füllgut dem zu befüllenden Behälter in einem freien Füllstrahl oder Füllgutstrahl zuströmt, wobei der Behälter mit seiner Behältermündung oder -öffnung nicht am Füllelement anliegt, sondern von dem Füllelement bzw. von einem dortigen Füllgutauslass beabstandet ist.For the purposes of the invention, free-jet filling is to be understood as meaning a process in which the liquid product flows into the container to be filled in a free filling jet or filling material jet, the container with its container mouth or opening not resting against the filling element, but rather from the filling element or from is spaced there a Füllgutauslass.

"Behälter" sind im Sinne der Erfindung u.a. Flaschen, Dosen, auch Weichverpackungen, beispielsweise solche hergestellt aus Karton und/oder Kunststofffolie und/oder Metallfolie.Within the meaning of the invention, "containers" are, inter alia, bottles, cans, and also soft packagings, for example those produced from cardboard and / or plastic film and / or metal foil.

Weiterbildungen, Vorteile und Anwendungsmöglichkeiten der Erfindung ergeben sich auch aus der nachfolgenden Beschreibung von Ausführungsbeispielen und aus den Figuren.Further developments, advantages and applications of the invention will become apparent from the following description of exemplary embodiments and from the figures.

Die Erfindung wird im Folgenden anhand der Figuren an Ausführungsbeispielen näher erläutert. Es zeigen:

Fig. 1
in vereinfachter Darstellung und im Schnitt ein Füllelement eines Füllsystems einer Füllmaschine umlaufender Bauart zum Freistrahlfüllen von Behältern in Form von Flaschen mit einem flüssigen Füllgut;
Fig. 2
eine Darstellung wie Figur 1, jedoch bei im Schnitt dargestellten Ventilstößel und Ventilkörper eines Flüssigkeitsventils des Füllelementes der Figur 1;
Fig. 3
in vergrößerter Teildarstellung und im Schnitt das Füllelement der Figuren 1 und 2 im Bereich der Füllelementunterseite bzw. im Bereich einer zentralen bzw. mittigen Abgabeöffnung und einer diese umschließenden ringförmigen Abgabeöffnung;
Fig. 4 - 6
Darstellung ähnlich den Figuren 1 - 3 bei einer weiteren Ausführungsform des erfindungsgemäßen Füllelementes.
The invention will be explained in more detail below with reference to the figures of exemplary embodiments. Show it:
Fig. 1
in a simplified representation and in section a filling element of a filling system of a filling machine of the rotary type for free jet filling of containers in the form of bottles with a liquid product;
Fig. 2
a representation like FIG. 1 However, in the valve stem shown in section and valve body of a liquid valve of the filling of the FIG. 1 ;
Fig. 3
in an enlarged partial view and in section the filling element of FIGS. 1 and 2 in the region of the filling element underside or in the region of a central or central dispensing opening and an annular dispensing opening enclosing the same;
Fig. 4-6
Representation similar to the Figures 1 - 3 in a further embodiment of the filling element according to the invention.

In den Figuren 1 - 3 ist 1 ein Füllelement zum Freistrahlfüllen von Behältern in Form von Flaschen 2 mit einem flüssigen Füllgut. Das Füllelement 1 ist zusammen mit einer Vielzahl gleichartiger Füllelemente 1 am Umfang eines um eine vertikale Maschinenachse umlaufend antreibbaren Rotors 3 eines Füllsystems bzw. einer Füllmaschine umlaufender Bauart vorgesehen.In the Figures 1 - 3 1 is a filling element for the free jet filling of containers in the form of bottles 2 with a liquid filling material. The filling element 1 is provided together with a plurality of similar filling elements 1 on the circumference of a rotatable about a vertical axis of the machine rotor 3 of a filling system or a filling machine rotating design.

Am Rotor 3 befinden sich ein in den Figuren nicht dargestellter, für sämtliche Füllelemente der Füllmaschine gemeinsamer, das Füllgut bereitstellender Füllgutkessel, beispielsweise in Form eines Ringkessels, sowie ein für sämtliche Füllelemente 1 ebenfalls gemeinsamer Ringkanal 4.On the rotor 3 are not shown in the figures, common to all filling elements of the filling machine, the filling material bereitstellender Füllgutkessel, for example in the form of a ring boiler, as well as a common for all filling elements 1 annular channel. 4

Das Füllelement 1 umfasst ein Füllelementgehäuse 5, in welchem u.a. ein Füllgut- oder Flüssigkeitskanal 6 ausgebildet ist, der in seinem oberen Bereich über eine Produktleitung 7 mit Steuer- bzw. Flüssigkeitsventil 8 mit dem gemeinsamen Füllgutkessel verbunden ist. Im Detail mündete die Produktleitung 7 über eine Eintrittsöffnung 7.1 in den Flüssigkeitskanal 6, deren Achse horizontal oder im Wesentlichen horizontal, d.h. senkrecht zur Füllelementachse FA orientiert ist, so dass das flüssige Füllgut bezogen auf die vertikale Maschinenachse in einer Strömungsrichtung radial nach außen in den Flüssigkeitskanal 6 eintritt.The filling element 1 comprises a filling element housing 5, in which u.a. a Füllgut- or liquid channel 6 is formed, which is connected in its upper region via a product line 7 with control or liquid valve 8 with the common Füllgutkessel. In detail, the product line 7 led via an inlet opening 7.1 into the liquid channel 6, whose axis is horizontal or substantially horizontal, i. is oriented perpendicular to the filler element axis FA, so that the liquid product enters radially outward in the liquid channel 6 relative to the vertical machine axis in a flow direction.

Im Flüssigkeitskanal 6 ist ein Flüssigkeitsventil 9 vorgesehen, welches bei der dargestellten Ausführungsform von einem mit einem Ventilsitz im Flüssigkeitskanal 6 zusammenwirkenden Ventilkörper 10 gebildet ist, der zum Öffnen und Schließen des Flüssigkeitsventils 9 in Richtung einer vertikalen Füllelementachse FA aus der in den Figuren 1 und 2 dargestellten, das Flüssigkeitsventil 9 verschließenden Position nach oben in eine das Flüssigkeitsventil 9 öffnende Position bewegbar ist. Der Ventilkörper 10 ist hierfür an einem achsgleich mit der Füllelementachse FA angeordneten und als Ventilstößel wirkenden Rohr 11 vorgesehen, welches mit seinem oberen, in den Figuren nicht näher dargestellten und abgedichtet aus dem Flüssigkeitskanal 6 herausgeführten Ende mit einer Betätigungseinrichtung 12 zusammenwirkt.In the liquid channel 6, a liquid valve 9 is provided, which is formed in the illustrated embodiment by a cooperating with a valve seat in the liquid channel 6 valve body 10, for opening and closing the liquid valve 9 in the direction of a vertical Füllelementachse FA from the in the FIGS. 1 and 2 shown, the liquid valve 9 occlusive position is movable upward into a position opening the liquid valve 9. For this purpose, the valve body 10 is provided on a tube 11 which is arranged coaxially with the filling element axis FA and acts as a valve tappet, which cooperates with an actuating device 12 with its upper end not shown in detail and sealed out of the liquid channel 6.

An der Unterseite des Füllelementes 1 bzw. in einem dortigen, zu dieser Unterseite hin offenen Ringraum 13 bildet der Flüssigkeitskanal 6 eine die Füllelementachse FA ringförmig umschließende Abgabeöffnung 14, die als Ringspalt zwischen der Außenfläche des Rohres 11 und der Innenfläche des Flüssigkeitskanals 6 ausgeführt ist und aus der das Rohr 11 mit seinem unteren offenen Rohrende 11.1 in den Ringraum 13 vorsteht. Bei der dargestellten Ausführungsform befindet sich das Flüssigkeitsventil 9 in Strömungsrichtung des flüssigen Füllgutes durch den Flüssigkeitskanal 6 in einem relativ großen axialen Abstand von der Abgabeöffnung 14, d.h. bei der dargstellten Ausführungsform wird der Flüssigkeitskanal 6 durch das Flüssigkeitsventil 9 in einen oberen und einen unteren Abschnitt unterteilt, wobei beide Abschnitte etwa gleiche axiale Länge aufweisen.On the underside of the filling element 1 or in a there, open to this bottom annular space 13 of the liquid channel 6 forms a Füllelementachse FA annularly enclosing discharge opening 14, which is designed as an annular gap between the outer surface of the tube 11 and the inner surface of the liquid channel 6 and from which the tube 11 projects with its lower open tube end 11.1 into the annular space 13. In the illustrated embodiment, the liquid valve 9 is in the flow direction of the liquid filling material through the liquid channel 6 at a relatively large axial distance from the discharge opening 14, ie in the dargstellten embodiment, the liquid channel 6 is divided by the liquid valve 9 into an upper and a lower portion , wherein both sections have approximately the same axial length.

Wie insbesondere die Figuren 2 und 3 zeigen, sind das Rohr 11 bzw. der im Rohr 11 ausgebildete weitere Flüssigkeitskanal 11.2 nicht nur an seinem unteren Ende 11.1 offen, sondern der weitere Flüssigkeitskanal 11.2 ist auch im oberen Abschnitt des Flüssigkeitskanals 6, d.h. in demjenigen Abschnitt des Flüssigkeitskanals offen, der (Abschnitt) bezogen auf die Strömungsrichtung des flüssigen Füllgutes vor dem Flüssigkeitsventil 9 liegt. Die dortige Öffnung des Rohres 11 bzw. des Flüssigkeitskanals 11.2 ist beispielsweise durch wenigstens eine Querbohrung 15 erzeugt, die mit ihrer Achse senkrecht oder im Wesentlichen senkrecht zur Füllelementachse FA orientiert ist. Weiterhin ist die Querbohrung 15 bei der dargestellten Ausführungsform so angeordnet, dass sie bei geöffnetem Flüssigkeitsventil 9, d.h. bei angehobenem Ventilkörper 10 und Rohr 11, deckungsgleich oder im Wesentlichen deckungsgleich mit der Eintrittsöffnung 7.1 der Produktleitung 7 liegt.How the particular Figures 2 and 3 show, the tube 11 and formed in the tube 11 further liquid channel 11.2 not only open at its lower end 11.1, but the other liquid channel 11.2 is also in the upper portion of the liquid channel 6, ie in that portion of the liquid channel open, the (section ) Based on the flow direction of the liquid filling material in front of the liquid valve 9 is located. The local opening of the tube 11 and the liquid channel 11.2 is for example generated by at least one transverse bore 15 which is oriented with its axis perpendicular or substantially perpendicular to the Füllelementachse FA. Furthermore, the transverse bore 15 is arranged in the illustrated embodiment so that it is in the open liquid valve 9, ie with raised valve body 10 and tube 11, congruent or substantially congruent with the inlet opening 7.1 of the product line 7.

Im Gehäuse 5 des Füllelementes 1 sind weiterhin zusätzlich verschiedene Strömungswege ausgebildet, die durch im nicht aktivierten Zustand geschlossene Steuerventile 16 und 17 steuerbar sind, so u.a. ein Strömungsweg, über den der obere Abschnitt des Flüssigkeitskanals 6 durch Aktivieren bzw. Öffnen des Steuerventils 16 mit dem Ringkanal 4 verbunden werden kann, sowie ein weiterer Strömungsweg, über den durch Aktivieren bzw. Öffnen des Steuerventils 17 der Ringraum 13 mit dem Ringkanal 4 oder aber durch Aktivieren bzw. Öffnen beider Steuerventile 17 der Ringkanal 4 sowohl mit dem Ringraum 13 als auch mit dem Flüssigkeitskanal 6 verbunden werden kann. Über die gesteuerten Strömungswege bzw. die Steuerventile 16 und 17 ist u.a. bei mit einem Verschluss oder mit einer Spülkappe 18 verschlossenem Ringraum 13 und bei geöffneten Flüssigkeitsventilen 8 und 9 eine intensive CIP-Reinigung und/oder Sterilisation der Füllelemente 1 der Füllmaschine möglich.In addition, different flow paths are additionally formed in the housing 5 of the filling element 1, which flow paths can be controlled by control valves 16 and 17 which are closed in the non-activated state, such as such. a flow path through which the upper portion of the liquid channel 6 can be connected by activating or opening the control valve 16 with the annular channel 4, and another flow path, via the activating or opening of the control valve 17, the annular space 13 with the annular channel 4 or but by activating or opening both control valves 17, the annular channel 4 can be connected to both the annular space 13 and the liquid channel 6. About the controlled flow paths or the control valves 16 and 17 u.a. in closed with a closure or with a flushing cap 18 annular space 13 and with open liquid valves 8 and 9 intensive CIP cleaning and / or sterilization of the filling elements 1 of the filling machine possible.

Im normalen Füllbetrieb sind die Steuerventile 16 und 17 geschlossen. Die zu füllende Flasche 2 ist mit ihrer Flaschenachse achsgleich mit der Füllelementachse FA und mit ihrer Flaschenmündung 2.1 mit Abstand unterhalb der Abgabeöffnung 14 gehalten, und zwar mit ihrem Mündungsflansch 2.2 hängend an einem jedem Füllelement 1 zugeordneten Behälterträger 19.In normal filling operation, the control valves 16 and 17 are closed. The bottle 2 to be filled is held with its axis of the bottle coaxially with the Füllelementachse FA and with its mouth of the bottle 2.1 at a distance below the discharge opening 14, with its mouth flange 2.2 hanging on a each filling element 1 associated container carrier 19th

Das Füllen der jeweiligen Flasche 2 erfolgt vorzugsweise derart, dass am Beginn des Füllprozesses, d.h. in einer Schnellfüllphase beide Flüssigkeitsventil 8 und 9 geöffnet werden, so dass das flüssige Füllgut einerseits über das untere, offene und ebenfalls eine Abgabeöffnung 11.3 bildende Rohrende 11.1 als zentraler Füllgutteilstrahl 20 und andererseits über die ringförmige Abgabeöffnung 14 als den Füllgutteilstrahl 20 umschließender ringförmiger Füllgutteilstrahl 21 an der Unterseite des Füllelementes abgegeben wird, wie dies in der Figur 3 mit den dortigen Pfeilen angedeutet ist. Beide Füllgutteilstrahlen 20 und 21 vereinigen sich zu einem gemeinsamen Füllgutstrahl, der dann in Richtung der Füllelementachse FA in die jeweilige Flasche 2 strömt.The filling of the respective bottle 2 is preferably carried out such that at the beginning of the filling process, ie in a Schnellfüllphase both liquid valve 8 and 9 are opened, so that the liquid product on the one hand via the lower, open and also a discharge opening 11.3 forming pipe end 11.1 as a central Füllgutteilstrahl 20 and on the other hand via the annular discharge opening 14 as the Füllgutteilstrahl 20 enclosing annular Füllgutteilstrahl 21 is discharged at the bottom of the filling element, as shown in the FIG. 3 indicated by the arrows there. Both Füllgutteilstrahlen 20 and 21 combine to form a common Füllgutstrahl, which then flows in the direction of the Füllelementachse FA in the respective bottle 2.

Es hat sich in überraschender Weise gezeigt, dass durch die Kombination des zentralen, aus dem unteren Rohrende 11.1 austretenden Füllgutteilstrahls 20 und des aus der Abgabeöffnung 14 austretenden ringförmigen Füllgutteilstrahls 21, der sich mit dem Füllgutteilstrahl 20 vor dem Eintritt in die Flasche 2 vereint und mit diesem mitgerissen wird, bei hoher Füllleistung ein sauberes Füllen der Flaschen 2 erreichbar ist, und zwar ohne Schaumbildung und ohne die Gefahr eines Verspritzen von Füllgut trotz der aus der Rotation des Rotors 3 resultierenden und auf die Füllgutteilstrahlen 20 und 21 sowie auf den vereinten, gemeinsamen Füllgutstrahl einwirkenden Zentrifugalkräfte.It has surprisingly been found that by the combination of the central, emerging from the lower tube end 11.1 Füllgutteilstrahls 20 and exiting the discharge opening 14 annular Füllgutteilstrahls 21, which combines with the Füllgutteilstrahl 20 before entering the bottle 2 and with this entrained, at high filling capacity, a clean filling of the bottles 2 can be achieved, without foaming and without the risk of splashing of contents despite the resulting from the rotation of the rotor 3 and the Füllgutteilstrahlen 20 and 21 and the unified, common Füllgutstrahl acting centrifugal forces.

Am Ende der Schnellfüllphase wird beispielsweise für ein Langsamfüllen, d.h. für ein Füllen mit einem reduzierten Füllgutstrom eines der beiden Flüssigkeitsventile 8 und 9 und dabei bevorzugt das Flüssigkeitsventil 9 geschlossen. Nach Erreichen der Sollfüllmenge wird auch das während des Langsamfüllens noch offene Flüssigkeitsventil, beispielsweise das Flüssigkeitsventil 8 geschlossen, sodass der Füllvorgang dann nach dem Schließen beider Flüssigkeitsventile 8 und 9 beendet ist und die mit der Sollfüllmenge gefüllte Flasche 2 von dem Füllelement 1 bzw. dem Behälterträger 19 abgenommen werden kann.At the end of the fast fill phase, for example, for slow fill, i. for a filling with a reduced Füllgutstrom one of the two liquid valves 8 and 9, and preferably the liquid valve 9 is closed. After reaching the desired filling quantity, the liquid valve still open during the slow filling is closed, for example the liquid valve 8, so that the filling process is completed after the closing of both liquid valves 8 and 9 and the bottle 2 filled with the desired filling quantity of the filling element 1 or the container carrier 19 can be removed.

Die Figuren 4 - 6 zeigen als weitere Ausführungsform ein Füllelement 1a, welches sich von dem Füllelement 1 im Wesentlichen nur dadurch unterscheidet, dass im Rohr 11 achsgleich mit der Füllelementachse FA ein Stab 22 angeordnet ist, der bei der dargestellten Ausführungsform mit seinem unteren Ende geringfügig über das untere Ende 11.1 des Rohres 11 vorsteht. Zwischen der Innenfläche des Rohres 11 und der Außenfläche des Stabes 22 ist der zusätzliche Flüssigkeitskanal 11.2 gebildet, der ringförmig ausgeführt ist und wiederum über die Querbohrung 15 zum Flüssigkeitskanal 6 hin offen ist und am unteren Rohrende 11.1 eine ringförmige Abgabeöffnung 11.3 bildet. Die sonstige Konstruktion sowie auch die Funktionsweise des Füllelementes 1a sind identisch mit dem Aufbau und der Funktionsweise des Füllelementes 1. Durch den vom Stab 22 gebildeten ringförmigen Flüssigkeitskanal 11.2 mit ringförmiger Abgabeöffnung 11.3 wird ein noch weiter verbessertes Strömungsverhalten des flüssigen Füllgutes beim Austritt am unteren Ende des Rohres 11 und damit eine weitere Verbesserung des der jeweiligen Flasche 2 während der Schnellfüllphase zufließenden Füllgutstrahles erreicht.The FIGS. 4 to 6 show as a further embodiment, a filling element 1a, which differs from the filling element 1 essentially only in that in the tube 11 coaxially with the Füllelementachse FA a rod 22 is disposed at the embodiment shown slightly protrudes with its lower end over the lower end 11.1 of the tube 11. Between the inner surface of the tube 11 and the outer surface of the rod 22, the additional liquid channel 11.2 is formed which is annular and in turn through the transverse bore 15 to the liquid channel 6 is open and at the lower end of the tube 11.1 forms an annular discharge opening 11.3. The other construction as well as the operation of the filling element 1a are identical to the structure and operation of the filling element 1. By the annular liquid channel 11.2 formed by rod 22 with annular discharge opening 11.3 is a still further improved flow behavior of the liquid filling material at the outlet at the bottom of the Tube 11 and thus achieved a further improvement of the respective bottle 2 flowing during the rapid filling phase Füllgutstrahles.

Zur Steuerung der in die jeweilige Flasche 2 über die beiden Abgabeöffnungen 14 und 11.3 eingebrachten Füllgutmenge dient beispielsweise ein in der Produktleitung 8 für jedes Füllelement 1 bzw. 1a individuell vorgesehener Durchflussmesser 23 (bevorzugt magnetisch-induktiver Durchflussmesser) und/oder eine am Behälterträger 19 ausgebildete Wägeeinrichtung zur Erfassung des aktuellen Gewichtes der dortigen Flache 2.For controlling the amount of product introduced into the respective bottle 2 via the two discharge openings 14 and 11.3, for example, a flow meter 23 (preferably a magneto-inductive flow meter) individually provided in the product line 8 for each filling element 1 or 1a is used and / or a container carrier 19 is formed Weighing device for detecting the current weight of the local area 2.

Die vorstehend beschriebene Erfindung eignet sich in ganz besonderer Weise für das Abfüllen von Säften welche Fruchtfasern und/oder Fruchtzellen beinhalten, wobei die Länge dieser Fruchtfasern bis zu 25 mm betragen kann. Diese besondere Eignung für das Abfüllen derartiger Füllgüter basiert darauf, dass das erfindungsgemäße Füllventil keine Einbauteile enthält, welche das Hindurchströmen der Feststoffe durch das Füllventil behindern würden.The invention described above is suitable in a very special way for the filling of juices which contain fruit fibers and / or fruit cells, wherein the length of these fruit fibers can be up to 25 mm. This particular suitability for the filling of such products is based on the fact that the filling valve according to the invention contains no built-in parts, which would hinder the passage of solids through the filling valve.

Ein weiterer Aspekt der vorliegenden Erfindung besteht darin, den Durchmesser des Flüssigkeitskanals im Rohr 11 so zu wählen, dass die Kapillarkräfte und/oder die Oberflächenspannung des abzufüllenden Füllgutes in Verbindung mit dem gewählten Durchmesser des Flüssigkeitskanals ein Auslaufen des Flüssigkeitskanals nach dem Schließen der Flüssigkeitsventile 8, 9 sicher verhindert ist.Another aspect of the present invention is to choose the diameter of the liquid channel in the pipe 11 so that the capillary forces and / or the surface tension of the filling material to be filled in conjunction with the selected diameter of the liquid channel leakage of the liquid channel after closing the liquid valves 8, 9 is safely prevented.

Das Auslaufen des Flüssigkeitskanals konnte beispielsweise bei einem Durchmesser von 6 mm bei der Abfüllung von Saft und bei einem Durchmesser von beispielsweise 8 bis 9 mm bei der Abfüllung von Sirup sicher verhindert werden.The leakage of the liquid channel could be safely prevented, for example, at a diameter of 6 mm in the filling of juice and a diameter of, for example, 8 to 9 mm in the filling of syrup.

Die Erfindung wurde voranstehend an Ausführungsbeispielen beschrieben. Es versteht sich, dass Änderungen sowie Abwandlungen möglich sind, ohne dass dadurch der Schutzumfang der nachfolgenden Ansprüche verlassen wird. Vorstehend wurde davon ausgegangen, dass beim Füllen sowohl über die Abgabeöffnung 14 als auch über die von dem unteren, offenen Rohrende 11.1 gebildete weitere Abgabeöffnung 11.3, d.h. mit den Füllgutteilstrahlen 20 und 21, jeweils das selbe Füllgut in den jeweiligen Behälter bzw. in die jeweilige Flasche 2 eingebracht wird. Eine Ausbildung eines nicht erfindungsgemäßen Füllelementes 1 bzw. 1a würde sich aber auch zum Einbringen wenigstens zweier unterschiedlicher Komponenten eines Füllgutes in Behälter bzw. Flaschen 2 eignen, wobei die Komponenten bereits in dem dem jeweiligen Behälter zufließenden vereinten Füllgutstrahl zumindest teilweise gemischt würden. Hiefür wäre dann z.B. der Kanal 11.2 vom Flüssigkeitskanal 6 getrennt, d.h. die Querbohrung 15 wäre nicht vorhanden, und der Kanal 11.2 wäre über eine gesonderte, ein Steuer- oder Flüssigkeitsventil enthaltende Produktleitung mit einem Kessel zur Bereitstellung einer Komponente des Füllgutes verbunden. Der Flüssigkeitskanal 6 wäre über die Produktleitung 7, die dann das Steuerventil 8 nicht aufweisen würde, mit einem Kessel zur Bereitstellung der weiteren Komponente des Füllgutes verbunden.The invention has been described above by means of exemplary embodiments. It is understood that changes and modifications are possible without thereby departing from the scope of the following claims. It has been assumed above that when filling both the discharge opening 14 and the further discharge opening 11.3 formed by the lower, open pipe end 11.1, ie with the Füllgutteilstrahlen 20 and 21, respectively, the same contents in the respective container or in the respective Bottle 2 is introduced. However, an embodiment of a filling element 1 or 1a not according to the invention would also be suitable for introducing at least two different components of a filling material into containers or bottles 2, wherein the components would already be at least partially mixed in the combined filling material stream flowing to the respective container. For this purpose, for example, the channel would be 11.2 separated from the liquid channel 6, ie the transverse bore 15 would not exist, and the channel 11.2 would be connected via a separate, a control or liquid valve containing product line with a boiler for providing a component of the contents. The liquid channel 6 would be connected via the product line 7, which would then not have the control valve 8, with a boiler for providing the further component of the filling material.

BezugszeichenlisteLIST OF REFERENCE NUMBERS

1, 1a1, 1a
Füllelementfiller
22
Flaschebottle
2.12.1
Flaschenmündungbottle mouth
2.22.2
MündungsflanschMündungsflansch
33
Rotorrotor
44
Ringkanalannular channel
55
Füllelementgehäusefilling element
66
Flüssigkeitskanalliquid channel
77
Produktleitungproduct line
7.17.1
Mündungsöffnungmouth
8, 98, 9
Flüssigkeitsventilliquid valve
1010
Ventilkörpervalve body
1111
Rohrpipe
11.111.1
Rohrendepipe end
11.211.2
Flüssigkeitskanal im Rohr 11Liquid channel in the pipe 11
11.311.3
Abgabeöffnungdischarge opening
1212
Betätigungseinrichtungactuator
1313
Ringraumannulus
1414
Abgabeöffnungdischarge opening
1515
Querbohrungcross hole
16, 1716, 17
Steuerventilcontrol valve
1818
Verschluss oder SpülkappeClosure or rinse cap
1919
Behälterträgercontainer carrier
20, 2120, 21
FüllgutteilstrahlFüllgutteilstrahl
2222
StabRod
2323
DurchflussmesserFlowmeter
FAFA
Füllelementachsefilling element

Claims (6)

  1. Filling element for a filling system for fine jet filling of containers (2) with a liquid filling product, with at least one first liquid channel (6) in a filling element housing (5), through which the liquid filling product first flows during the filling, which forms a first discharge opening (14) for the discharge of the filling product in the form of a filling product jet (21), and with a liquid valve (9) arranged in the first liquid channel (6), which, for the controlled discharge of the filling product into the respective container (2) via the at least one first discharge opening (14), can be opened and closed in a controlled manner, and for this purpose comprises at least one valve body (10), movable between a closing position and an opening position, and wherein, in addition to the first liquid channel (6), at least one second liquid channel (11.2) is provided, which extends through the valve body (10), as well as at least one further discharge opening (11.3) for the discharge of an inner second filling product part jet, wherein the further discharge opening (11.3) is configured in such a way that, in normal filling operation, the second filling product part jet connects with the at least one first filling product part jet, to form a filling product jet flowing to the container (2) in the direction of a filling element axis (FA), and wherein the at least one first discharge opening (14), in relation to the filling element axis (FA), is offset radially outwards in relation to the at least one second discharge opening,
    characterised in that
    the at least one second discharge opening (11.3) is formed from an open end (11.1) of a tubular valve tappet (11), comprising the valve body (10), that the at least one second liquid channel (11.2) is in connection by means of at least one opening (15) with at least one section of the first liquid channel (6), said section being located in the flow direction of the filling product upstream of the first liquid valve (9), and that one further liquid valve (8) is provided in a connection (7) between the first liquid channel (6) and a tank providing the filling product or a component of the filling product, or between the first liquid channel (6) and the further liquid channel (11.2).
  2. Filling element according to claim 1, characterised in that the at least one first discharge opening (14) is configured in such a way that the first filling product jet (21) emerging from it is directed away towards the filling element axis (FA) and encloses an angle of less than 90° with the filling element axis (FA), and opens against the direction of flow of the filling product.
  3. Filling element according to claim 1 or 2, characterised in that the at least one first discharge opening (14) and/or the at least one second discharge opening (11.3) is configured as ring-shaped, surrounding the filling element axis (FA), or is formed from a plurality of individual openings, and specifically in an arrangement surrounding the filling element axis (FA) in the form of a ring.
  4. Filling element according to any one of the preceding claims, characterised by a further liquid valve (8) in a tank which provides the further liquid channel (11.2) directly with the filling product or a component of the filling product.
  5. Filling element according to any one of the preceding claims, characterised in that the at least one discharge opening (14) and the at least one second discharge opening (11.3) are offset axially in relation to the filling element axis (FA), and preferably in such a way that the at least one second discharge opening (11.1) is located on a lower level than the at least one first discharge opening (14).
  6. Filling system for filling containers (2) with a liquid filling product, for example with a configuration of a filling machine of circulating type, with a plurality of filling elements (1, 1a), characterised in that the filling elements (1, 1a) are configured in accordance with any one of the preceding claims.
EP12780664.4A 2011-12-21 2012-10-27 Filling element and filling system Active EP2794462B1 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
SI201231149T SI2794462T1 (en) 2011-12-21 2012-10-27 Filling element and filling system

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE102011121968A DE102011121968A1 (en) 2011-12-21 2011-12-21 Filling element and filling system
PCT/EP2012/004509 WO2013091750A1 (en) 2011-12-21 2012-10-27 Filling element and filling system

Publications (2)

Publication Number Publication Date
EP2794462A1 EP2794462A1 (en) 2014-10-29
EP2794462B1 true EP2794462B1 (en) 2017-12-06

Family

ID=47115752

Family Applications (1)

Application Number Title Priority Date Filing Date
EP12780664.4A Active EP2794462B1 (en) 2011-12-21 2012-10-27 Filling element and filling system

Country Status (5)

Country Link
US (1) US9511986B2 (en)
EP (1) EP2794462B1 (en)
DE (1) DE102011121968A1 (en)
SI (1) SI2794462T1 (en)
WO (1) WO2013091750A1 (en)

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DE102011120164A1 (en) * 2011-12-06 2013-06-06 Khs Gmbh Filling element and filling system
ITMI20131163A1 (en) * 2013-07-10 2015-01-11 Smi Spa FILLING DEVICE
DE102014109589A1 (en) * 2014-07-09 2016-01-14 Khs Gmbh Filling system for filling bottles or similar containers
CN106365101A (en) * 2016-11-28 2017-02-01 江苏新美星液体包装工程技术研究中心有限公司 Non-contact type sterile filling valve
JP2019094098A (en) * 2017-11-22 2019-06-20 澁谷工業株式会社 Filling valve
FR3092567B1 (en) * 2019-02-08 2021-01-22 Serac Group VACUUM FILLING NOZZLE
JP7457235B2 (en) * 2020-02-18 2024-03-28 澁谷工業株式会社 filling equipment
DE102020129102A1 (en) * 2020-11-04 2022-05-05 Krones Aktiengesellschaft Filling element and device for filling a container with a filling product
CN112607688B (en) * 2020-12-15 2022-06-21 浙江绿岛科技有限公司 Full-automatic integrated static mixing filling machine
DE102022103697A1 (en) * 2022-02-17 2023-08-17 Khs Gmbh Filling device for a beverage filling machine, beverage filling machine and method

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DE102004015167B3 (en) * 2004-03-27 2005-11-03 Khs Maschinen- Und Anlagenbau Ag filler
JP4668744B2 (en) 2005-09-05 2011-04-13 株式会社ナカキン Liquid filling nozzle
DE102006017706A1 (en) * 2006-04-15 2007-10-25 Khs Ag Filling elements and filling machine with a filling element
JP5309018B2 (en) 2006-05-29 2013-10-09 カーハーエス・ゲゼルシャフト・ミト・ベシュレンクテル・ハフツング Filling part and filling machine with such filling part
DE102006045987A1 (en) * 2006-09-27 2008-04-03 Khs Ag Method for filling containers with a liquid product and filling system
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DE102009032791A1 (en) * 2009-07-10 2011-01-13 Krones Ag Device for filling multi-component drinks
DE102009053350B4 (en) * 2009-11-17 2011-09-22 Khs Gmbh filler
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DE102010024522A1 (en) * 2010-06-21 2011-12-22 Khs Gmbh Method and filling element for pressure filling of containers with a liquid product

Also Published As

Publication number Publication date
SI2794462T1 (en) 2018-01-31
US20140366982A1 (en) 2014-12-18
US9511986B2 (en) 2016-12-06
EP2794462A1 (en) 2014-10-29
DE102011121968A1 (en) 2013-06-27
WO2013091750A1 (en) 2013-06-27

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