EP1399366B1 - Closing device with a piercing element - Google Patents

Closing device with a piercing element Download PDF

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Publication number
EP1399366B1
EP1399366B1 EP02727153A EP02727153A EP1399366B1 EP 1399366 B1 EP1399366 B1 EP 1399366B1 EP 02727153 A EP02727153 A EP 02727153A EP 02727153 A EP02727153 A EP 02727153A EP 1399366 B1 EP1399366 B1 EP 1399366B1
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EP
European Patent Office
Prior art keywords
cutting
displacing
closure device
piercing element
piercing
Prior art date
Legal status (The legal status 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 status listed.)
Expired - Lifetime
Application number
EP02727153A
Other languages
German (de)
French (fr)
Other versions
EP1399366A1 (en
Inventor
Werner Fritz Dubach
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Bericap Holding GmbH
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Bericap Holding GmbH
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Filing date
Publication date
Application filed by Bericap Holding GmbH filed Critical Bericap Holding GmbH
Publication of EP1399366A1 publication Critical patent/EP1399366A1/en
Application granted granted Critical
Publication of EP1399366B1 publication Critical patent/EP1399366B1/en
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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D5/00Rigid or semi-rigid containers of polygonal cross-section, e.g. boxes, cartons or trays, formed by folding or erecting one or more blanks made of paper
    • B65D5/42Details of containers or of foldable or erectable container blanks
    • B65D5/72Contents-dispensing means
    • B65D5/74Spouts
    • B65D5/746Spouts formed separately from the container
    • B65D5/747Spouts formed separately from the container with means for piercing or cutting the container wall or a membrane connected to said wall
    • B65D5/748Spouts formed separately from the container with means for piercing or cutting the container wall or a membrane connected to said wall a major part of the container wall or membrane being left inside the container after the opening
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D2251/00Details relating to container closures
    • B65D2251/0003Two or more closures
    • B65D2251/0006Upper closure
    • B65D2251/0015Upper closure of the 41-type
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D2251/00Details relating to container closures
    • B65D2251/0003Two or more closures
    • B65D2251/0037Intermediate closure(s)
    • B65D2251/0056Intermediate closure(s) of the 47-type
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D2251/00Details relating to container closures
    • B65D2251/0003Two or more closures
    • B65D2251/0068Lower closure
    • B65D2251/0093Membrane
    • B65D2251/0096Membrane integral with the container

Definitions

  • the present invention relates to a closure device made of plastic, which is attachable via a pierceable body of a closed container and consists of a bung-shaped lower part with a cylindrical spout, which is connected to the container or connectable, and a screw cap which can be pushed onto the lower part, and a cylindrical piercer, which is open on both sides in the axial direction and is displaceably mounted in the lower part, wherein in the screw cap means are provided which move the piercer helically downward during the first unscrewing movement of the screw cap.
  • Closure devices made of plastic consisting of the three parts, as described above, namely a bung-shaped base with cylindrical spout, a movable therein cylindrical fürstosser and a screw cap, which has means to move the piercer, are known in various embodiments.
  • Such closure devices are on Soft packaging containers attached.
  • the containers consist of multilayer films, which usually have one or more paper or cardboard layers, one or more plastic film layers and at least one barrier layer, for example of aluminum.
  • the packages In the area of the closure devices to be applied, the packages have correspondingly pre-punched puncture points.
  • the piercing device of the closure device usually only the innermost, compact plastic film layer and the aluminum layer have to be severed.
  • the piercer is guided so that the piercer exerts only a translational movement toward the interior of the package.
  • EP-A-0'328'652 (Toppan Printing Co. Ltd.) discloses a solution in which a slide-like helix is centrally mounted on an inner wall in the screw cap, while the piercer has a similar counter-rotating thread while at the same time the piercing is provided with cams, which prevent rotation relative to Ausgussspund.
  • a virtually identical solution is also known from WO 99/62776 (Crown Cork and Seal Technologies Corp.).
  • a closure device is known with a bung-shaped spout, in which a piercer with guide cam runs, wherein the guide cam in axial engage extending grooves, while at the same time the piercer has an internal thread which cooperates with a central annular wall in the screw cap, wherein the central wall has an external thread. At the same time there is a threaded connection between the screw cap and the spout.
  • WO 95/05996 International Paper Company shows a closure device in which the piercer is not only a clean performs translatory movement but a screwing.
  • the piercer correspondingly has an external thread, which is guided engaging into an internal thread in the pouring spout.
  • the piercer can be displaced by means of entrainment in the screw cap in a corresponding screwing. If the screw cap is unscrewed, the piercer simultaneously moves downward in a screwing movement into the container to be opened.
  • the piercer also has a multiplicity of perforation teeth along its lower edge.
  • the teeth dig into areas of the package, which are not pre-punched. Not only does this require much more force, but at the same time there is no longer any perforation of the film, but a pure pulling movement takes place on the film. While films tend to be sensitive to perforations, most films are extremely resistant to tensile forces.
  • the offset angle ⁇ is ensured at a size of less than 180 °, that no complete separation of the packaging area can be done, while the choice of the offset angle by more than 100 ° ensures that at the moment because the displacement element is effective, more as half the circumference is severed and thus the already severed part is folded away. The latter would already be given, even if the displacement angle would be less than 100 °, but on the one hand, the danger would be great that the displacement element not only pushes the already separated area to the side but would also bring the not yet severed area to tearing , Finally, however, even with a displacement angle of less than 100 °, the open spout area would be restricted too much.
  • the entire structure of the closure device 1 is shown consisting of three parts for a better understanding. These are a lower part 2, which is adhesively attached to a container B, a screw-mounted therein pierced body 3 and a Lower part 2 cross-screw 4.
  • the lower part 2 has a cylindrical spout 20 which merges terminally into a lower flange 21 and an internal thread 22 and an external thread 23 has.
  • the flange 21 serves for the adhesive connection with the container B.
  • This container consists of a multilayer, made of films soft pack, wherein the multilayer film has a so-called pre-punching V, which penetrates one or more layers at least partially, thus defining a desired opening.
  • the pre-punch V defines a circular area which has to lie within the opening of the cylindrical spout 20.
  • the diameter of the pre-punching V is smaller than the diameter of the pouring spout 20 by a few percent.
  • the diameter of the pre-punching V corresponds almost exactly to the diameter of the piercer 3 or the circular path which the cutting elements of the piercer define during their movement.
  • the internal thread 22 of the cylindrical spout 20 is a coarse thread.
  • the thread height is relatively large and the thread has a high pitch.
  • the piercer 3 is replaced by its original mounting position, as in FIG 1, moved into the lower use position according to FIG.
  • the external thread 23 is realized as a so-called fine thread. Accordingly, the thread 23 has only a small height of the thread flanks and the pitch of the thread is flat. To unscrew the screw cap 4, this must therefore make several turns.
  • the actuation of the penetrator 3 is effected by means of the screw cap 4.
  • the screw cap 4 has a cover surface 40, on which a circumferential casing wall 41 is adjacent.
  • the jacket wall 41 has an internal thread 42, which is designed as a fine thread, matching the external thread 23 of the cylindrical spout.
  • At the bottom of the top surface 40 a concentric with the jacket wall 41 extending annular wall 43 is formed.
  • this concentric annular wall 43 which has a diameter which is smaller than the inner diameter of the piercer, means are formed in the form of drivers 44.
  • the drivers 44 drive the piercer 3 in an opposite direction.
  • the piercer 3 which is advantageously made in one piece with the lower part, as shown in FIG. 3, essentially consists of a cylindrical annular wall part 31 with an external thread 32 which, in turn, is designed as a coarse thread, matching the internal thread 22 of the lower part 2.
  • the displacement element 34 can be combined with the cutting element 33 or, as can be seen in FIGS. 2 to 4, designed as a separate element 35.
  • only one cutting element 33 can be seen in each case. Only in the side view according to FIG. 4 are both cutting elements 33 visible.
  • the cutting elements 33 which have approximately a triangular shape, open into a terminal perforation tooth 36.
  • An arrow D indicates in each case the direction of rotation of the piercer.
  • a cutting edge 37 is formed directly on the perforation tooth 36.
  • the cutting edge 37 is here in the preferred embodiment in a displacement edge 38, which thus forms here the displacement element 34 and thus part of the cutting element 33 is.
  • a Mitauerverdickung 39 integrally formed, on which a driver 44 during the initial Abschraubterrorism the screw cap 4 rests and thus the fürstosser 3 in a screwing motion.
  • the solution with the displacement edge 38 is merely optional. As already mentioned, and also realized here, an additional separate displacement element 35 may be present.
  • the displacement element 35 is made shorter in the axial direction of the penetrator 3 than the cutting element 33. Accordingly, the displacement element 35 comes into contact with the film of the container B only when the two cutting elements 33 have formed at least approximately a continuous cutting line.
  • the separate displacement element 35 otherwise has approximately the shape of the cutting elements 33, but is truncated-edged and has no perforation tooth but runs in a rounded arc.
  • the two cutting elements 33 are arranged trailing one another at an offset angle ⁇ .
  • the two perforation teeth 36 of the two cutting elements 33 are located on the positions a 'and b'. After a certain feed angle ⁇ , the two perforation teeth 36 touch the foil of the container to be cut at the points A and B.
  • FIGS Direction of rotation D runs the perforation tooth of a cutting element before the perforation tooth of the second cutting element by an offset angle ⁇ .
  • the perforating teeth 36 pierce the film and subsequently sever the film, with one cutting element passing the cutting path from point A to point B while the other cutting element from point B to point C applies a cutting line.
  • a coherent cutting line of 2 ⁇ results, which extends from point A to point C.
  • the cutting edge 37 has penetrated through the film of the container inside and from point C now acts on the one hand the displacement edge 38 and / or the displacement element 35.
  • the displacement edge now acts from the point C, while the displacement element 35 in the area VB which is relatively close to the pre-punching V in the not yet severed area.
  • the cut-free area is pushed down into the container.
  • the pre-punching V practically serves as a bending line.
  • the feed angle ⁇ must be at least 90 °, but this is practically not enough and the actual minimum size of the Displacement angle ⁇ must be greater than 100 °.
  • the offset angle ⁇ must also be less than 180 ° to ensure that the cut line is not circumferential and consequently an entire roundel is cut out of the film which could fall into the container.
  • the maximum displacement angle ⁇ should be about 170 °.
  • the perforation takes place here only at two points. This has the advantage that the required power is lower.
  • the cutting edge 37 performs both a movement component perpendicular to the cutting line and a component in the direction of the cutting line. But because the pre-punching V also relatively close to the relatively rigid connection of the film with the flange 21 of the lower part 2 runs, there is a certain shearing force.
  • the steepness of the coarse thread between the piercer 3 and the lower part 2 must be aligned with the geometry of the cutting elements.
  • the purely vertical length of the cutting edge 37 must be equal to the thread pitch, which corresponds to the angle ⁇ . The latter applies in particular when the displacement element is combined with the cutting element.

Abstract

A closing device arranged above a pierceable point of a closed container including a lower part with a cylindrical discharge nozzle, a screw cover and a piercing element. The piercing element, which is open on both sides, is displaced downwards in an axial direction in a screw-like manner in a screw cover in the lower part of the closing device. The piercing element has two cutting elements offset at an angle which produce a continuous, interconnected cutting line, and a displacing element which shifts a partially cut-out tab of the container from a region of the discharge nozzle.

Description

Die vorliegende Erfindung betrifft eine Verschlussvorrichtung aus Kunststoff, die über einer durchstossbaren Stelle eines geschlossenen Behältnisses anbringbar ist und aus einem spundförmigen Unterteil mit zylindrischem Ausgussstutzen besteht, der mit dem Behältnis verbunden oder verbindbar ist, und einer Schraubkappe, die auf das Unterteil aufschiebbar ist, sowie einem zylindrischen Durchstosser, der in axialer Richtung beidseitig offen ist und im Unterteil verschiebbar gelagert ist, wobei in der Schraubkappe Mittel vorhanden sind, die bei der erstmaligen Abschraubbewegung der Schraubkappe den Durchstosser schraubenförmig nach unten bewegen.The present invention relates to a closure device made of plastic, which is attachable via a pierceable body of a closed container and consists of a bung-shaped lower part with a cylindrical spout, which is connected to the container or connectable, and a screw cap which can be pushed onto the lower part, and a cylindrical piercer, which is open on both sides in the axial direction and is displaceably mounted in the lower part, wherein in the screw cap means are provided which move the piercer helically downward during the first unscrewing movement of the screw cap.

Verschlussvorrichtungen aus Kunststoff bestehend aus den drei Teilen, wie oben beschrieben, nämlich einem spundförmigen Unterteil mit zylindrischem Ausgussstutzen, einem darin beweglichen zylindrischen Durchstosser und einer Schraubkappe, welche Mittel aufweist, um den Durchstosser zu bewegen, sind in verschiedensten Ausführungsvarianten bekannt. Solche Verschlussvorrichtungen werden auf Weichverpackungsbehältnissen angebracht. Die Behältnisse bestehen aus mehrlagigen Folien, die üblicherweise eine oder mehrere Papier- oder Kartonschichten, eine oder mehrere Kunststofffolienschichten und mindestens eine Sperrschicht, beispielsweise aus Aluminium besitzen. Im Bereich der anzubringenden Verschlussvorrichtungen weisen die Verpackungen entsprechend vorgestanzte Durchstossstellen auf. Üblicherweise muss entsprechend der Durchstosser der Verschlussvorrichtung meist nur noch die zuinnerst liegende, kompakte Kunststofffolienschicht und die Aluminiumschicht durchtrennen.Closure devices made of plastic consisting of the three parts, as described above, namely a bung-shaped base with cylindrical spout, a movable therein cylindrical Durchstosser and a screw cap, which has means to move the piercer, are known in various embodiments. Such closure devices are on Soft packaging containers attached. The containers consist of multilayer films, which usually have one or more paper or cardboard layers, one or more plastic film layers and at least one barrier layer, for example of aluminum. In the area of the closure devices to be applied, the packages have correspondingly pre-punched puncture points. Usually, according to the piercing device of the closure device, usually only the innermost, compact plastic film layer and the aluminum layer have to be severed.

Bei den meisten bekannten Ausführungsformen ist der Durchstosser so geführt, dass der Durchstosser lediglich eine translatorische Bewegung zum Innern der Verpackung hin ausübt. Beispielsweise zeigt die EP-A-0'328'652 (Toppan Printing Co. Ltd.) eine Lösung auf, bei der in der Schraubkappe eine kulissenartige Schraubenlinie zentrisch auf einer inneren Wand angebracht ist, während der Durchstosser ein ähnliches gegenläufiges Gewinde aufweist, während gleichzeitig der Durchstosser mit Nocken versehen ist, die ein Verdrehen relativ zum Ausgussspund verhindern. Eine praktisch gleich wirkende Lösung ist auch aus der WO 99/62776 (Crown Cork and Seal Technologies Corp.) bekannt. Auch aus der GB-A-2241224 ist eine Verschlussvorrichtung bekannt mit einem spundförmigen Ausguss, in dem ein Durchstosser mit Führungsnocken läuft, wobei die Führungsnocken in axial verlaufenden Nuten eingreifen, während gleichzeitig der Durchstosser ein Innengewinde aufweist, welches mit einer zentrischen Ringwand in der Schraubkappe zusammenwirkt, wobei die zentrische Wand ein Aussengewinde aufweist. Gleichzeitig besteht eine Gewindeverbindung zwischen der Schraubkappe und dem Ausgussspund.In most known embodiments, the piercer is guided so that the piercer exerts only a translational movement toward the interior of the package. For example, EP-A-0'328'652 (Toppan Printing Co. Ltd.) discloses a solution in which a slide-like helix is centrally mounted on an inner wall in the screw cap, while the piercer has a similar counter-rotating thread while at the same time the piercing is provided with cams, which prevent rotation relative to Ausgussspund. A virtually identical solution is also known from WO 99/62776 (Crown Cork and Seal Technologies Corp.). Also from GB-A-2241224 a closure device is known with a bung-shaped spout, in which a piercer with guide cam runs, wherein the guide cam in axial engage extending grooves, while at the same time the piercer has an internal thread which cooperates with a central annular wall in the screw cap, wherein the central wall has an external thread. At the same time there is a threaded connection between the screw cap and the spout.

Diese letztgenannte Lösung gemäss der GB-A-2241224 arbeitet nicht mit einer durchstossbaren Stelle in der Verpackung sondern der Ausgussspund ist bereits von innen an der Verpackungsinnenwand angeschweisst und eine zusätzliche Folie ist auf dem Flansch des Ausgussspundes innen angebracht. Eine solche Verschlussfolie kann beliebige Eigenschaften aufweisen, die von der eigentlichen Verpackung abweichen. Entsprechend kann die Gestalt des Durchstossers praktisch beliebig sein, wie beispielsweise in der Lösung gemäss der Figur 1 jener Publikation, oder es können auch mehrere Perforationszähne am Umfang des Durchstossers vorgesehen sein. Völlig analog ist auch in der Ausführungsform gemäss der EP-A-0'328'652 ein Durchstosser gezeigt, der eine Vielzahl von Perforationszähnen am unteren Rand aufweist. Selbiges trifft auch zu auf die ebenfalls bereits genannte WO 99/62776.This latter solution according to GB-A-2241224 does not work with a puncture site in the package but the pouring spout is already welded from the inside to the packaging inner wall and an additional film is mounted on the inside of the spout of the spout. Such a sealing film may have any properties that differ from the actual packaging. Accordingly, the shape of the puncture can be practically arbitrary, as for example in the solution according to FIG. 1 of that publication, or several perforation teeth can also be provided on the circumference of the puncture. Completely analogously, a piercer is also shown in the embodiment according to EP-A-0'328'652, which has a plurality of perforation teeth at the lower edge. The same applies to the also already mentioned WO 99/62776.

Im Gegensatz zu den vorgenannten Schutzrechten zeigt die WO 95/05996 (International Paper Company) eine Verschlussvorrichtung, bei der der Durchstosser nicht nur eine rein translatorische Bewegung durchführt sondern eine Schraubbewegung. Der Durchstosser weist entsprechend ein Aussengewinde auf, welches in ein Innengewinde im Ausgussspund eingreifend geführt ist. Der Durchstosser ist durch Mitnehmemittel in der Schraubkappe in eine entsprechende Schraubbewegung versetzbar. Wird die Schraubkappe abgeschraubt, so bewegt sich gleichzeitig der Durchstosser in einer Schraubbewegung abwärts in das zu öffnende Behältnis. Völlig analog den bisher bekannten Lösungen hat auch hier der Durchstosser entlang seinem unteren Rand eine Vielzahl von Perforationszähnen.In contrast to the aforementioned protective rights, WO 95/05996 (International Paper Company) shows a closure device in which the piercer is not only a clean performs translatory movement but a screwing. The piercer correspondingly has an external thread, which is guided engaging into an internal thread in the pouring spout. The piercer can be displaced by means of entrainment in the screw cap in a corresponding screwing. If the screw cap is unscrewed, the piercer simultaneously moves downward in a screwing movement into the container to be opened. Completely analogous to the previously known solutions, the piercer also has a multiplicity of perforation teeth along its lower edge.

Praktisch sämtliche auf dem Markt heute erhältlichen Verschlussvorrichtungen der hier interessierenden Art haben zu grossen Problemen Anlass gegeben. Während erste, hier nicht dokumentierte, Lösungen praktisch ohne Perforationszähne arbeiteten und bei denen die Behältniswand irgendwo zerstört wurde, glaubte man mit den Perforationszähnen das Problem in den Griff zu bekommen. Dies trifft jedoch nicht zu. Einer der Hauptgründe liegt darin, dass sämtliche Lösungen einen grossen Kraftaufwand beim Öffnen erfordern. Praktisch bei sämtlichen Lösungen werden über den gesamten Umfang gleichzeitig viele Stellen der Folien perforiert. Würden sich die Zähne genau an jenen Stellen befinden, die sich vertikal über der vorgetrennten Folie befinden, so wäre vermutlich eine solche Lösung gangbar. Dies würde jedoch eine auf praktisch einen Zehntel Millimeter genaue Befestigung der Verschlussvorrichtung auf das Behältnis verlangen. Dies ist aber schlicht unmöglich. Entsprechend graben sich die Zähne auch in Bereiche der Verpackung ein, die nicht vorgestanzt sind. Hierzu ist nicht nur wesentlich mehr Kraft erforderlich, sondern gleichzeitig findet gar keine Perforation der Folie mehr statt, sondern es erfolgt eine reine Zugbewegung auf die Folie. Während Folien meistens sensibel auf Perforationen reagieren, sind die meisten Folien ausserordentlich widerstandsfähig gegenüber Zugkräften.Virtually all closure devices of the type of interest available on the market today have given rise to great problems. While the first solutions, which were not documented here, worked practically without perforation teeth and where the wall of the container was destroyed somewhere, it was believed that the perforation teeth could be used to tackle the problem. This is not true. One of the main reasons is that all solutions require a lot of effort when opening. Virtually all solutions simultaneously perforate many parts of the film over the entire circumference. If the teeth were located exactly in those places that are vertically above the pre-separated film, so would probably be such a solution. However, this would be an accurate to a tenth of a millimeter attachment of the Require closure device on the container. But this is simply impossible. Accordingly, the teeth dig into areas of the package, which are not pre-punched. Not only does this require much more force, but at the same time there is no longer any perforation of the film, but a pure pulling movement takes place on the film. While films tend to be sensitive to perforations, most films are extremely resistant to tensile forces.

Bei der Ausführung gemäss der WO 95/05996 wurde nicht erkannt, dass bei der hier gezeigten Lösung im wesentlichen eine Schneidwirkung erzielt wird statt einer Durchstosswirkung. Entsprechend ist an und für sich bereits das Konzept mit einer Vielzahl von Perforationszähnen widersinnig. Hinzu kommt, dass bereits mit einem kleinen Drehwinkel der gesamte innere Bereich aus der Verpackung herausgeschnitten ist und in den Inhalt des Behältnisses fällt. Dies ist nicht nur unerwünscht und unhygienisch, sondern führt zusätzlich dazu, dass während des Ausschenkens der lose Teil immer wieder in den Ausgussbereich gelangt und zu unkontrollierbaren Ausgusseigenschaften führt.In the embodiment according to WO 95/05996 it was not recognized that in the solution shown here essentially a cutting effect is achieved instead of a piercing effect. Accordingly, the concept with a multiplicity of perforation teeth is in itself contradictory. In addition, even with a small angle of rotation, the entire inner area is cut out of the packaging and falls into the contents of the container. This is not only undesirable and unhygienic, but also leads to the fact that during the pouring the loose part repeatedly reaches the spout area and leads to uncontrollable pouring properties.

Es ist folglich die Aufgabe der vorliegenden Erfindung, eine Verschlussvorrichtung der eingangs genannten Art derart zu verbessern, dass ein leichtes Öffnen möglich ist, bei dem gleichzeitig die weiteren vorher beschriebenen Nachteile vermieden werden können.It is therefore the object of the present invention to improve a closure device of the type mentioned in such a way that easy opening is possible, in which while the other disadvantages described above can be avoided at the same time.

Diese Aufgabe löst eine Verschlussvorrichtung, welche die Merkmale des Patentanspruches 1 aufweist.This object is achieved by a closure device which has the features of claim 1.

Bei der Wahl des Versetzungswinkels α ist bei einer Grösse von weniger als 180° sichergestellt, dass keine vollständige Heraustrennung des Verpackungsbereiches erfolgen kann, während bei der Wahl des Versetzungswinkels um mehr als 100° sichergestellt ist, dass im Moment da das Verdrängungselement wirksam wird, mehr als der halbe Umfang durchtrennt ist und somit der bereits durchtrennte Teil wegklappbar ist. Letzteres wäre an sich bereits gegeben, auch dann wenn der Versetzungswinkel weniger als 100° betragen würde, doch wäre einerseits die Gefahr gross, dass das Verdrängungselement nicht nur den bereits abgetrennten Bereich zur Seite schiebt sondern gleichzeitig auch den noch nicht durchtrennten Bereich zum Reissen bringen würde. Schliesslich aber würde auch bei einem Versetzungswinkel von unter 100° der offene Ausgussbereich zu stark eingeschränkt.When choosing the offset angle α is ensured at a size of less than 180 °, that no complete separation of the packaging area can be done, while the choice of the offset angle by more than 100 ° ensures that at the moment because the displacement element is effective, more as half the circumference is severed and thus the already severed part is folded away. The latter would already be given, even if the displacement angle would be less than 100 °, but on the one hand, the danger would be great that the displacement element not only pushes the already separated area to the side but would also bring the not yet severed area to tearing , Finally, however, even with a displacement angle of less than 100 °, the open spout area would be restricted too much.

Weitere vorteilhafte Ausgestaltungsformen des Erfindungsgegenstandes gehen aus den abhängigen Ansprüchen hervor und deren Bedeutung und Wirkungsweise ist in der nachfolgenden Beschreibung unter Bezug auf die beiliegende Zeichnung erläutert.Further advantageous embodiments of the subject invention will become apparent from the dependent claims and their meaning and effect is explained in the following description with reference to the accompanying drawings.

In der Zeichnung ist eine bevorzugte Ausführungsform des Erfindungsgegenstandes dargestellt. Es zeigt:

Figur 1
einen Vertikalschnitt durch die Verschlussvorrichtung im montierten Zustand auf einem Behältnis vor der erstmaligen Öffnung und
Figur 2
dieselbe Verschlussvorrichtung nach der erstmaligen Öffnung mit abgeschraubter Schraubkappe wiederum im montierten Zustand in einem diametralen Vertikalschnitt.
Figur 3
zeigt den Durchstosser in der Herstellungslage einstückig verbunden mit dem Unterteil wiederum als diametralen Vertikalschnitt, während
Figur 4
die Verschlussvorrichtung im montierten Zustand in der Gebrauchslage zeigt, wobei lediglich die Verpackung teilweise geschnitten dargestellt ist.
Figur 5 und Figur 6
stellen schematische Schneid- und Biegepläne dar für zwei verschiedene Versetzungswinkel α.
In the drawing, a preferred embodiment of the subject invention is shown. It shows:
FIG. 1
a vertical section through the closure device in the assembled state on a container before the first opening and
FIG. 2
the same closure device after the first opening with unscrewed screw cap again in the mounted state in a diametrical vertical section.
FIG. 3
shows the piercer in the manufacturing position integrally connected to the lower part in turn as a diametrical vertical section, while
FIG. 4
shows the closure device in the assembled state in the position of use, with only the packaging is shown partially cut.
FIG. 5 and FIG. 6
represent schematic cutting and bending plans for two different displacement angle α.

Obwohl sich die Erfindung im wesentlichen nur mit der Ausgestaltung des Durchstossers beschäftigt, ist zum besseren Verständnis der gesamte Aufbau der Verschlussvorrichtung 1 bestehend aus drei Teilen dargelegt. Dies sind ein Unterteil 2, der haftend auf ein Behältnis B angebracht ist, ein schraubbeweglich darin gelagerter Durchstosser 3 und eine den Unterteil 2 übergreifende Schraubkappe 4. Der Unterteil 2 hat einen zylindrischen Ausgussstutzen 20, der endständig in einen unteren Flansch 21 übergeht und ein Innengewinde 22 sowie ein Aussengewinde 23 aufweist. Der Flansch 21 dient der haftenden Verbindung mit dem Behältnis B. Dieses Behältnis besteht aus einer mehrlagigen, aus Folien gefertigten Weichpackung, wobei die mehrlagige Folie eine sogenannte Vorstanzung V aufweist, die eine oder mehrere Lagen mindestens teilweise durchsetzt und so eine Sollöffnung definiert. Zur Öffnung des Behältnisses B muss folglich die mehrlagige Folie im Bereiche der Vorstanzung V noch vollständig durchtrennt werden. Der Flansch 21 des Unterteiles 2 kann auf der mehrlagigen Folie des Behältnisses B aufgeschweisst oder aufgeklebt sein. Die Vorstanzung V definiert eine Kreisfläche, die innerhalb der Öffnung des zylindrischen Ausgussstutzens 20 zu liegen hat. Der Durchmesser der Vorstanzung V ist um einige Prozente kleiner als der Durchmesser des Ausgussstutzens 20. Hingegen entspricht der Durchmesser der Vorstanzung V ziemlich genau dem Durchmesser des Durchstossers 3 beziehungsweise der Kreisbahn, den die Schneideelemente des Durchstossers bei ihrer Bewegung definieren. Das Innengewinde 22 des zylindrischen Ausgussstutzens 20 ist ein Grobgewinde. Dies bedeutet, dass einerseits die Gewindehöhe relativ gross ist und das Gewinde eine hohe Steigung aufweist. Folglich wird bereits durch eine Drehung von rund 360° oder weniger der Durchstosser 3 von seiner ursprünglichen Montagelage, wie in Figur 1 dargestellt, in die untere Benutzungslage gemäss Figur 2 bewegt. Demgegenüber ist das Aussengewinde 23 als sogenanntes Feingewinde realisiert. Entsprechend weist das Gewinde 23 nur eine geringe Höhe der Gewindeflanken auf und die Steigung des Gewindes ist flach. Um die Schraubkappe 4 abzudrehen, muss diese folglich mehrere Umdrehungen machen.Although the invention is concerned essentially only with the configuration of the piercer, the entire structure of the closure device 1 is shown consisting of three parts for a better understanding. These are a lower part 2, which is adhesively attached to a container B, a screw-mounted therein pierced body 3 and a Lower part 2 cross-screw 4. The lower part 2 has a cylindrical spout 20 which merges terminally into a lower flange 21 and an internal thread 22 and an external thread 23 has. The flange 21 serves for the adhesive connection with the container B. This container consists of a multilayer, made of films soft pack, wherein the multilayer film has a so-called pre-punching V, which penetrates one or more layers at least partially, thus defining a desired opening. Consequently, in order to open the container B, the multilayer film in the region of the pre-punching V must still be severed completely. The flange 21 of the lower part 2 may be welded or glued on the multilayer film of the container B. The pre-punch V defines a circular area which has to lie within the opening of the cylindrical spout 20. The diameter of the pre-punching V is smaller than the diameter of the pouring spout 20 by a few percent. On the other hand, the diameter of the pre-punching V corresponds almost exactly to the diameter of the piercer 3 or the circular path which the cutting elements of the piercer define during their movement. The internal thread 22 of the cylindrical spout 20 is a coarse thread. This means that on the one hand the thread height is relatively large and the thread has a high pitch. As a result, even by a rotation of about 360 ° or less, the piercer 3 is replaced by its original mounting position, as in FIG 1, moved into the lower use position according to FIG. In contrast, the external thread 23 is realized as a so-called fine thread. Accordingly, the thread 23 has only a small height of the thread flanks and the pitch of the thread is flat. To unscrew the screw cap 4, this must therefore make several turns.

Die Betätigung des Durchstossers 3 erfolgt mittels der Schraubkappe 4. Die Schraubkappe 4 hat eine Deckfläche 40, an der eine umlaufende Mantelwand 41 angrenzt. Die Mantelwand 41 weist ein Innengewinde 42 auf, welches als Feingewinde gestaltet ist, passend zum Aussengewinde 23 des zylindrischen Ausgussstutzens. An der Unterseite der Deckfläche 40 ist eine konzentrisch zur Mantelwand 41 verlaufende Ringwand 43 angeformt. An dieser konzentrischen Ringwand 43, die einen Durchmesser aufweist, der kleiner ist als der Innendurchmesser des Durchstossers, sind Mittel angeformt in der Gestalt von Mitnehmern 44. Bei einer Drehung der Schraubkappe 4 treiben die Mitnehmer 44 den Durchstosser 3 in eine gegenläufige Richtung. Während die Schraubkappe 4 sich nach oben bewegt, wird der Durchstosser nach unten bewegt, weil die Gewinde zwischen Schraubkappe 4 und Unterteil 2 gegenläufig orientiert sind zur Drehrichtung des Gewindes zwischen Durchstosser 3 und Unterteil 2. Unten an der Mantelwand 41 ist über Sollbruchstellenbrücken 46 ein Garantieband 45 angeformt. Dieses wird von Rückhaltenocken 24 in der gesicherten Lage gehalten und das Garantieband 45 verbleibt hier auch nach der erstmaligen Öffnung, wie dies in der Figur 2 ersichtlich ist.The actuation of the penetrator 3 is effected by means of the screw cap 4. The screw cap 4 has a cover surface 40, on which a circumferential casing wall 41 is adjacent. The jacket wall 41 has an internal thread 42, which is designed as a fine thread, matching the external thread 23 of the cylindrical spout. At the bottom of the top surface 40 a concentric with the jacket wall 41 extending annular wall 43 is formed. At this concentric annular wall 43, which has a diameter which is smaller than the inner diameter of the piercer, means are formed in the form of drivers 44. Upon rotation of the screw cap 4, the drivers 44 drive the piercer 3 in an opposite direction. While the screw cap 4 moves upward, the piercer is moved downwards, because the threads between the screw cap 4 and lower part 2 are oriented in opposite directions to the direction of rotation of the thread between piercer 3 and lower part 2. At the bottom of the shell wall 41 is via predetermined breaking point bridges 46 a guarantee band 45 molded. This is held by retaining cam 24 in the secured position and the guarantee band 45th remains here after the first opening, as can be seen in Figure 2.

Der Durchstosser 3, der wie in Figur 3 dargestellt, vorteilhafterweise einstückig mit dem Unterteil gefertigt ist, besteht im wesentlichen aus einem zylindrischen Ringwandteil 31 mit einem Aussengewinde 32, das wiederum als Grobgewinde gestaltet ist, passend zum Innengewinde 22 des Unterteiles 2. An diesen Ringwandteil 31 angeformt sind mindestens zwei Schneideelemente 33 und mindestens ein Verdrängungselement 34,35. Das Verdrängungselement 34 kann mit dem Schneideelement 33 kombiniert sein oder, wie in den Figuren 2 bis 4 ersichtlich, als separates Element 35 gestaltet sein. In den Schnittzeichnungen gemäss den Figuren 1 bis 3 ist jeweils nur ein Schneideelement 33 erkennbar. Lediglich in der Seitenansicht gemäss der Figur 4 sind beide Schneideelemente 33 sichtbar. Die Schneideelemente 33, die etwa eine dreieckige Form haben, münden in einen endständigen Perforierungszahn 36. Ein Pfeil D zeigt jeweils die Drehrichtung des Durchstossers an. An der der Drehrichtung vorderen Kante ist direkt am Perforierungszahn 36 anschliessend eine Schneidekante 37 angeformt. Die Schneidekante 37 geht hier bei der bevorzugten Ausführungsform in eine Verdrängungskante 38 über, die somit hier das Verdrängungselement 34 bildet und somit Teil des Schneideelementes 33 ist. Auf der Innenfläche des Schneideelementes 33 oberhalb der Schneidekante 37 ist eine Mitnehmerverdickung 39 angeformt, an der ein Mitnehmer 44 während der erstmaligen Abschraubbewegung der Schraubkappe 4 anliegt und somit den Durchstosser 3 in eine Schraubbewegung versetzt. Die Lösung mit der Verdrängungskante 38 ist lediglich optional. Wie bereits erwähnt, und hier ebenfalls realisiert, kann ein zusätzliches separates Verdrängungselement 35 vorhanden sein. Das Verdrängungselement 35 ist in axialer Richtung des Durchstossers 3 kürzer ausgestaltet als das Schneideelement 33. Entsprechend kommt das Verdrängungselement 35 mit der Folie des Behältnisses B erst in Berührung, wenn die beiden Schneideelemente 33 mindestens annähernd eine zusammenhängende Schneidelinie gebildet haben. Das separate Verdrängungselement 35 hat ansonsten etwa die Form der Schneideelemente 33, ist jedoch stumpfkantig gestaltet und weist keinen Perforierungszahn auf sondern verläuft in einen gerundeten Bogen.The piercer 3, which is advantageously made in one piece with the lower part, as shown in FIG. 3, essentially consists of a cylindrical annular wall part 31 with an external thread 32 which, in turn, is designed as a coarse thread, matching the internal thread 22 of the lower part 2. At this annular wall part 31 are formed at least two cutting elements 33 and at least one displacement element 34,35. The displacement element 34 can be combined with the cutting element 33 or, as can be seen in FIGS. 2 to 4, designed as a separate element 35. In the sectional drawings according to FIGS. 1 to 3, only one cutting element 33 can be seen in each case. Only in the side view according to FIG. 4 are both cutting elements 33 visible. The cutting elements 33, which have approximately a triangular shape, open into a terminal perforation tooth 36. An arrow D indicates in each case the direction of rotation of the piercer. At the front edge of the direction of rotation, a cutting edge 37 is formed directly on the perforation tooth 36. The cutting edge 37 is here in the preferred embodiment in a displacement edge 38, which thus forms here the displacement element 34 and thus part of the cutting element 33 is. On the inner surface of the cutting element 33 above the cutting edge 37 is a Mitnehmerverdickung 39 integrally formed, on which a driver 44 during the initial Abschraubbewegung the screw cap 4 rests and thus the Durchstosser 3 in a screwing motion. The solution with the displacement edge 38 is merely optional. As already mentioned, and also realized here, an additional separate displacement element 35 may be present. The displacement element 35 is made shorter in the axial direction of the penetrator 3 than the cutting element 33. Accordingly, the displacement element 35 comes into contact with the film of the container B only when the two cutting elements 33 have formed at least approximately a continuous cutting line. The separate displacement element 35 otherwise has approximately the shape of the cutting elements 33, but is truncated-edged and has no perforation tooth but runs in a rounded arc.

Mit Bezug auf die Figuren 5 und 6 ist nachfolgend die Wirkungsweise der erfindungsgemässen Verschlussvorrichtung erläutert. Die beiden Schneideelemente 33 sind um einen Versetzungswinkel α einander nachlaufend angeordnet. In der Ausgangsposition vor der erstmaligen Öffnung der Verschlussvorrichtung befinden sich die beiden Perforierungszähne 36 der beiden Schneideelemente 33 auf den Positionen a' und b'. Nach einem gewissen Vorlaufswinkel β berühren die beiden Perforierungszähne 36 die zu durchtrennende Folie des Behältnisses an den Punkten A und B. In Bezug auf die Drehrichtung D läuft der Perforierungszahn des einen Schneideelementes dem Perforierungszahn des zweiten Schneideelementes um einen Versetzungswinkel α vor. Bei der weiteren Drehung in Richtung D durchstossen die Perforierungszähne 36 die Folie und im weiteren Verlauf durchtrennen sie die Folie, wobei das eine Schneideelement den Schneideweg vom Punkt A zum Punkt B durchläuft, während das andere Schneideelement vom Punkt B zum Punkt C eine Schneidelinie anlegt. Sobald der Durchstosser somit um den Versetzungswinkel α verdreht worden ist, ergibt sich eine zusammenhängende Schneidelinie von 2α, die sich von Punkt A bis zum Punkt C erstreckt. In dieser Position ist mindestens annähernd vollständig die Schneidekante 37 durch die Folie des Behältnisses nach innen eingedrungen und ab Punkt C wirkt nun einerseits die Verdrängungskante 38 und/oder das Verdrängungselement 35. Die Verdrängungskante wirkt nun ab dem Punkt C, während das Verdrängungselement 35 im Bereich VB der relativ nahe der Vorstanzung V im noch nicht durchgetrennten Bereich liegt. Einer Klappe gleich wird nun der freigeschnittene Bereich nach unten in das Behältnis gedrückt. Hierbei dient die Vorstanzung V praktisch als Biegelinie. Deutlich ist diese Situation beispielsweise in der Figur 2 ersichtlich. Je nach Wahl des Versetzungswinkels α ist der verbleibende, nicht durchtrennte Bereich der Vorstanzung V grösser oder kleiner. Theoretisch muss der Vorlaufswinkel α mindestens 90° betragen, doch genügt dies praktisch nicht und die tatsächliche Mindestgrösse des Versetzungswinkels α muss grösser als 100° sein. Der Versetzungswinkel α muss selbstverständlich aber auch kleiner als 180° sein, um sicherzustellen, dass die Schnittlinie nicht umlaufend ist und folglich eine gesamte Rondelle aus der Folie herausgeschnitten wird, die in das Behältnis hinein fallen könnte. Realistischerweise dürfte der maximale Versetzungswinkel α etwa 170° sein. Die in den Figuren 5 und 6 gezeigten Lösungen entsprechen realistischen Angaben. Wird mit einem separaten Verdrängerelement 35 gearbeitet, so kann der Versetzungswinkel α eher kleiner sein, weil in diesem Fall das Verdrängungselement bereits auf die Folie drücken kann kurz bevor das in Drehrichtung vordere Schneidelement den Punkt C erreicht hat, wodurch die Folie geringfügig nach unten gedrückt wird und somit eine etwas längere zusammenhängende Schneidlinie entsteht als die theoretische Schneidlinie.With reference to Figures 5 and 6, the operation of the inventive closure device is explained below. The two cutting elements 33 are arranged trailing one another at an offset angle α. In the starting position before the first opening of the closure device, the two perforation teeth 36 of the two cutting elements 33 are located on the positions a 'and b'. After a certain feed angle β, the two perforation teeth 36 touch the foil of the container to be cut at the points A and B. With reference to FIGS Direction of rotation D runs the perforation tooth of a cutting element before the perforation tooth of the second cutting element by an offset angle α. Upon further rotation in direction D, the perforating teeth 36 pierce the film and subsequently sever the film, with one cutting element passing the cutting path from point A to point B while the other cutting element from point B to point C applies a cutting line. As soon as the piercer has thus been rotated by the offset angle α, a coherent cutting line of 2α results, which extends from point A to point C. In this position, at least approximately completely, the cutting edge 37 has penetrated through the film of the container inside and from point C now acts on the one hand the displacement edge 38 and / or the displacement element 35. The displacement edge now acts from the point C, while the displacement element 35 in the area VB which is relatively close to the pre-punching V in the not yet severed area. Like a flap now, the cut-free area is pushed down into the container. Here, the pre-punching V practically serves as a bending line. Clearly, this situation can be seen for example in FIG. Depending on the choice of the offset angle α is the remaining, not severed region of the pre-punching V larger or smaller. Theoretically, the feed angle α must be at least 90 °, but this is practically not enough and the actual minimum size of the Displacement angle α must be greater than 100 °. Of course, the offset angle α must also be less than 180 ° to ensure that the cut line is not circumferential and consequently an entire roundel is cut out of the film which could fall into the container. Realistically, the maximum displacement angle α should be about 170 °. The solutions shown in Figures 5 and 6 correspond to realistic information. If you work with a separate displacement element 35, the displacement angle α may be rather small, because in this case, the displacement element can already press on the film just before the front in the direction of rotation cutting element has reached the point C, whereby the film is pressed slightly downwards and thus a slightly longer contiguous cutting line is formed as the theoretical cutting line.

Im Vergleich zu den bisher bekannten Durchstossern mit einer Vielzahl von Perforierungszähnen erfolgt die Perforation hier nur an zwei Punkten. Dies hat den Vorteil, dass die erforderliche Kraft geringer ist. Gleichzeitig erfolgt hier auch eine echte Schneidbewegung. Die Schneidkante 37 führt nämlich sowohl eine Bewegungskomponente senkrecht zur Schneidelinie als auch eine Komponente in Richtung der Schneidelinie durch. Weil aber die Vorstanzung V auch relativ nahe der relativ starren Verbindung der Folie mit dem Flansch 21 des Unterteiles 2 verläuft, erfolgt eine gewisse Scherkraft.In comparison to the previously known punctures with a multiplicity of perforating teeth, the perforation takes place here only at two points. This has the advantage that the required power is lower. At the same time there is also a real cutting motion here. Namely, the cutting edge 37 performs both a movement component perpendicular to the cutting line and a component in the direction of the cutting line. But because the pre-punching V also relatively close to the relatively rigid connection of the film with the flange 21 of the lower part 2 runs, there is a certain shearing force.

Selbstverständlich muss die Steilheit des Grobgewindes zwischen dem Durchstosser 3 und dem Unterteil 2 auf die Geometrie der Schneideelemente ausgerichtet sein. Die rein vertikale Länge der Schneidkante 37 muss gleich der Gewindesteigung sein, die dem Winkel α entspricht. Letzteres trifft insbesondere dann zu, wenn das Verdrängungselement mit dem Schneidelement kombiniert ist.Of course, the steepness of the coarse thread between the piercer 3 and the lower part 2 must be aligned with the geometry of the cutting elements. The purely vertical length of the cutting edge 37 must be equal to the thread pitch, which corresponds to the angle α. The latter applies in particular when the displacement element is combined with the cutting element.

Liste der BezugszahlenList of reference numbers

11
Verschlussvorrichtungclosure device
22
Unterteillower part
33
Durchstosserpiercing
44
Schraubkappescrew cap
2020
Ausgussstutzen zylindrischSpout cylindrical
2121
Flanschflange
2222
Innengewindeinner thread
2323
Aussengewindeexternal thread
2424
RückhaltenockenRetaining cams
3131
Ringwandteil zylindrischRing wall part cylindrical
3232
Aussengewindeexternal thread
3333
Schneideelementecutting elements
3434
Verdrängungselementdisplacement element
3535
Separates VerdrängungselementSeparate displacement element
3636
PerforierungszahnPerforierungszahn
3737
Schneidekantecutting edge
3838
Verdrängungskantedisplacement edge
3939
MitnehmerverdickungMitnehmerverdickung
4040
Deckflächecover surface
4141
Mantelwandshell wall
4242
Innengewindeinner thread
4343
Konzentrische RingwandConcentric ring wall
4444
Mitnehmertakeaway
4545
Garantiebandguarantee strip
4646
SollbruchstellenbrückenWeakened bridges
BB
Behältniscontainer
VV
Vorstanzungprecut

Claims (8)

  1. A closure device (1) of plastic which may be attached above a piercable location of a closed receptacle (B) and which consists of a bung-like lower part (2) with a cylindrical pouring spout (20) which is connected or connectable to the receptacle, and of a screw cap (4) which may be screwed onto the lower part (2), as well as of a cylindrical piercing element (3) which in the axial direction is open on both sides and which is displaceably mounted in the lower part, wherein in the screw cap (4) there are present means (44) which during the screwing-off movement of the screw cap for the first time move the piercing element (3) helically downwards,
    characterised in that the piercing element (3) is equipped with at least two cutting elements (33) which are arranged running after one another by an offset angle (α) of less than 180° and more than 100° so that after a rotation of the piercing element by the offset angle a continuous cutting line of 2α has arisen, and that now a displacing element (34, 35, 38) acts in the non-separated region, which pushes the partly cut-out lobe of the receptacle out of the region of the pour-out spout (20).
  2. A closure device according to claim 1, characterised in that the displacing element is combined with the leading cutting element (33), into a single element (34, 38).
  3. A closure device according to claim 2, characterised in that the leading cutting element (33) has a cutting edge (37) which merges into a displacing edge (38) acting as a displacing element, wherein the cutting element (37) is so long that with the screwing movement after one rotation (D) of the piercing element (3) by at least approximately the offset angle α the displacing edge (38) pushes the non-separated region of the receptacle (B) out of the region of the pour-out spout (20).
  4. A closure device according to claim 1, characterised in that in the rotational direction of the piercing element (3) there is present a displacing element (35) which is separated from the cutting element and which runs ahead of the leading cutting element (33).
  5. A closure device according to claim 4, characterised in that in the two cutting elements (33) and the displacing element (35) are integrally connected with the piercing element (3).
  6. A closure device according to claim 1, characterised in that the two cutting elements (33) and the displacing element (34) are offset concentrically to the outer wall of the cylindrical piercing element (3) towards the centre approximately by the wall thickness of the annular wall part (31).
  7. A closure device according to claim 1, characterised in that the piercing element (3) including the cutting elements (33) has an axial length which corresponds maximally to the axial length of the cylindrical pouring spout (20).
  8. A closure element according to claim 4, characterised in that the displacing element (35) is shorter than the two cutting elements (33) by the axial distance which corresponds to the axial movement path which the two cutting elements (33) have travelled with a rotation of the piercing element (3) by the offset angle α.
EP02727153A 2001-06-27 2002-06-10 Closing device with a piercing element Expired - Lifetime EP1399366B1 (en)

Applications Claiming Priority (3)

Application Number Priority Date Filing Date Title
CH118201 2001-06-27
CH11822001 2001-06-27
PCT/CH2002/000307 WO2003002419A1 (en) 2001-06-27 2002-06-10 Closing device with a piercing element

Publications (2)

Publication Number Publication Date
EP1399366A1 EP1399366A1 (en) 2004-03-24
EP1399366B1 true EP1399366B1 (en) 2006-10-04

Family

ID=4561817

Family Applications (1)

Application Number Title Priority Date Filing Date
EP02727153A Expired - Lifetime EP1399366B1 (en) 2001-06-27 2002-06-10 Closing device with a piercing element

Country Status (13)

Country Link
US (1) US6851576B2 (en)
EP (1) EP1399366B1 (en)
CN (1) CN1251932C (en)
AT (1) ATE341494T1 (en)
AU (1) AU2002257483B2 (en)
BR (1) BR0210540A (en)
CA (1) CA2451751A1 (en)
DE (1) DE50208344D1 (en)
DK (1) DK1399366T3 (en)
ES (1) ES2274030T3 (en)
IL (2) IL159592A0 (en)
RU (1) RU2288146C2 (en)
WO (1) WO2003002419A1 (en)

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Also Published As

Publication number Publication date
RU2288146C2 (en) 2006-11-27
CN1522216A (en) 2004-08-18
US20040149786A1 (en) 2004-08-05
AU2002257483B2 (en) 2006-11-30
ATE341494T1 (en) 2006-10-15
ES2274030T3 (en) 2007-05-16
IL159592A0 (en) 2004-06-01
DK1399366T3 (en) 2007-01-15
IL159592A (en) 2008-04-13
RU2004102050A (en) 2005-03-10
WO2003002419A1 (en) 2003-01-09
BR0210540A (en) 2004-06-22
US6851576B2 (en) 2005-02-08
EP1399366A1 (en) 2004-03-24
DE50208344D1 (en) 2006-11-16
CN1251932C (en) 2006-04-19
CA2451751A1 (en) 2003-01-09

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