EP1836104B1 - Pressurised dispenser for discharging a multi-component substance contained therein - Google Patents

Pressurised dispenser for discharging a multi-component substance contained therein Download PDF

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Publication number
EP1836104B1
EP1836104B1 EP05804249A EP05804249A EP1836104B1 EP 1836104 B1 EP1836104 B1 EP 1836104B1 EP 05804249 A EP05804249 A EP 05804249A EP 05804249 A EP05804249 A EP 05804249A EP 1836104 B1 EP1836104 B1 EP 1836104B1
Authority
EP
European Patent Office
Prior art keywords
container
tappet
spacer
pressure
operating
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.)
Not-in-force
Application number
EP05804249A
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German (de)
French (fr)
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EP1836104A1 (en
Inventor
Walter Koch
Jürg Vogelsang
Norbert Schramm
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.)
Nanosys GmbH
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Nanosys GmbH
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Publication date
Application filed by Nanosys GmbH filed Critical Nanosys GmbH
Publication of EP1836104A1 publication Critical patent/EP1836104A1/en
Application granted granted Critical
Publication of EP1836104B1 publication Critical patent/EP1836104B1/en
Not-in-force legal-status Critical Current
Anticipated expiration legal-status Critical

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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
    • B65D83/00Containers or packages with special means for dispensing contents
    • B65D83/14Containers or packages with special means for dispensing contents for delivery of liquid or semi-liquid contents by internal gaseous pressure, i.e. aerosol containers comprising propellant for a product delivered by a propellant
    • B65D83/68Dispensing two or more contents, e.g. sequential dispensing or simultaneous dispensing of two or more products without mixing them
    • B65D83/682Dispensing two or more contents, e.g. sequential dispensing or simultaneous dispensing of two or more products without mixing them the products being first separated, but finally mixed, e.g. in a dispensing head
    • B65D83/687Dispensing two or more contents, e.g. sequential dispensing or simultaneous dispensing of two or more products without mixing them the products being first separated, but finally mixed, e.g. in a dispensing head the products being totally mixed on, or prior to, first use, e.g. by breaking an ampoule containing one of the products
    • 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
    • B65D83/00Containers or packages with special means for dispensing contents
    • B65D83/14Containers or packages with special means for dispensing contents for delivery of liquid or semi-liquid contents by internal gaseous pressure, i.e. aerosol containers comprising propellant for a product delivered by a propellant
    • B65D83/16Containers or packages with special means for dispensing contents for delivery of liquid or semi-liquid contents by internal gaseous pressure, i.e. aerosol containers comprising propellant for a product delivered by a propellant characterised by the actuating means
    • B65D83/22Containers or packages with special means for dispensing contents for delivery of liquid or semi-liquid contents by internal gaseous pressure, i.e. aerosol containers comprising propellant for a product delivered by a propellant characterised by the actuating means with a mechanical means to disable actuation

Definitions

  • the present invention relates to a pressure cell for discharging multicomponent substance contained therein, in particular a multicomponent substance for forming a hardening layer when coating a substrate, according to the preamble of patent claim 1.
  • a pressure cell of the type mentioned is partially made WO 85/00157 and partly also off WO02 / 076852 known.
  • This known pressure box is formed as an elongated container with a dome arranged at a discharge end thereof and a bottom arranged at the other end thereof.
  • Dom is, coaxial with the container, arranged a valve for discharging the multi-component substance.
  • an elongated inner sleeve which is secured at one end thereof to the bottom and sealed thereto, while the other end of the inner sleeve is exposed within the container and sealed by a cover which can be deflashed by the inner sleeve
  • an elongate plunger is arranged, of which there is an inner-side longitudinal section within the inner sleeve and an outer-side longitudinal section outside the container. The plunger goes through the floor at a transition point between said lengths and is there on the one hand sealed against the ground and thus relative to the container, on the other hand on the ground and thus rotatable relative to the container but not axially displaceable.
  • the plunger is provided at least on a part of its inner longitudinal portion with an external thread, with a corresponding internal thread of a bore of a relative to the inner sleeve slidably threaded nut part cooperates to axially displace the Gewindemutterteil upon rotation of the plunger and to remove the latter by the interaction with the latter of the inner sleeve, wherein an actuating handle for rotating the plunger is mounted coaxially on the outer side longitudinal portion of the plunger.
  • a component of the substance contained in the inner sleeve can come into contact with a component of the substance contained in the container outside the inner sleeve, whereupon the two components mix with one another in the container and thereby the ready-to-use multicomponent substance ready for dispensing is provided to be applied to the substrate when opening the valve of the pressure cell.
  • the rotation of the actuating handle relative to the container causes an "activation" of the pressure box in the sense that separately present components mix with each other during activation and thereby the ready-to-use multi-component substance is provided.
  • the object of the invention is therefore to prevent a unintentional "activation" of the pressure cell in a pressure cell of the type mentioned and to make a wanton unauthorized "activation” on the pressure cell recognizable.
  • a pressure cell of the type mentioned is characterized according to the invention by the combination of the features specified in claim 1.
  • Advantageous developments of the inventive pressure box are defined in the dependent claims.
  • the inventive pressure box of the actuating handle on the plunger axially between a safety position and a Sliding actuating position.
  • the actuating handle In the safety position, the actuating handle is located at an axial distance from the container, and it is freely rotatable on the plunger.
  • the actuating handle In the actuated position, the actuating handle is in the immediate axial vicinity of the container, and it is rotatably connected to the plunger. Only in the safety position is thus between the operating handle and the container around the plunger around a securing gap.
  • suitable spacer is provided in the securing gap suitable spacer is provided. This spacer is insertable into the securing gap to prevent displacement of the actuating handle on the plunger from the safety position to the actuation position. To release said shift from the securing gap, the spacer is removable from the securing gap.
  • the operating handle can not rotate the plunger when the spacer at the pressure box, i. in the safety gap: thus, thanks to the invention, an unintentional "activation" of the inventive pressure cell is prevented.
  • the spacer comprises a clamp member which, when the spacer is in the securing gap, is seated clamped to the ram.
  • the spacer is detachably attached to the plunger, i. attached to the pressure cell.
  • the spacer has a designed as a handle, tab or the like pull-out, which facilitates its removal from the securing gap, this pull-out may optionally formed as arranged on the spacer flexible tab and can be brought back by lightest stress in the wall profile of the container.
  • this has around its axis radially arranged radial arms and indentations formed therebetween, in which the spacer located in the securing gap for the fingers of an operator can be reached.
  • This allows the operator to easily remove it from the securing gap by pressing on the spacer.
  • the pressure box advantageously has a regular representational form, which the packaging, for example, with labels and quite generally supplying the pressure cell and in particular the installation of the pressure cell on the shelf of a department store easier.
  • the actuating handle located in the actuation position is rotatably connected to the plunger by press fitting, which allows a particularly favorable production.
  • the operating handle by pushing it towards the container in overcoming the friction of the press-fit in the operating position is displaced, this also leads to a particularly simple operation of the pressure cell in their "activation": you need only the Press the bottom of the pressure box axially, if necessary by striking a suitable hard object.
  • the operating handle located in the operating position with the plunger by cooperation of at least one survey with a corresponding recess rotatably connected, elevation and depression are mutually arranged on the operating handle and plunger, for example, with the survey as inwardly projecting flattening in an axial bore on the operating handle and with the recess as milled flattening on the plunger.
  • the displacement of the actuating handle from the safety position to the actuation position is irreversible: as a significant advantage is achieved in that it is not possible to reverse the recognizability of a willful unauthorized "activation" on the pressure cell.
  • the irreversibility of the displacement of the actuating handle from the safety position to the actuating position is ensured by a press fit between the actuating handle and the plunger.
  • the pressure cell 01 has an elongate tubular container 02, whose longitudinal axis is designated A.
  • a discharge side end 03 of the container 02 is provided with a dome 04 disposed thereon.
  • the other, bottom end 05 of the container 02 is provided with a bottom 06 arranged thereon.
  • a generally designated 07 valve is arranged, through which the substance contained in the pressure cell 01 can be applied.
  • Within the container 02 and coaxially with an elongated tubular inner sleeve 08 is arranged.
  • the inner sleeve 08 is fixed to the bottom 06 and sealed against this. With its other, dome-axial End 10, the inner sleeve 08 is free within the container 02.
  • the inner sleeve 08 is sealed at its dome-side end 10 by a cover 11, said cover 11 is absprengbar of the inner sleeve 08.
  • an elongated plunger 12 is arranged. An inside longitudinal portion 13 of the plunger 12 is located within the inner sleeve 08 and the container 02, and an outer longitudinal portion 14 of the plunger 12 is located outside of the inner sleeve 08 and the container 02.
  • the plunger 12 passes through the bottom 06 of the container 02. At this transition point 15 of the plunger 12 relative to the bottom 06 and thus sealed relative to the container 02 and held axially displaceable on the bottom 06 and thus relative to the container 02.
  • a Securing gap 23 forms, in which a matching spacer 24 is used, as in Fig. 2a and 2 B is shown.
  • the operating handle 20 on the plunger 12 can be moved axially from its safety position 21 to its actuating position 22.
  • the insertion and insertion of a spacer 24 in the securing gap 23 thus prevents the displacement of the actuating handle 20 on the plunger 12 from the safety position 21 to the actuating position 22, while the removal of the inserted spacer 24 from the securing gap 23, the displacement of the actuating handle 20 on the plunger 12 of the Safety position 21 to the operating position 22 releases.
  • the actuating handle 20 is freely rotatable in its safety position 21 on the plunger 12. This is achieved by a corresponding design of the seat of the operating handle 20 on the plunger 12 in its safety position 21, for example according to an in Fig. 2a and 2 B illustrated training variant by the operating handle 20 is seated in its safety position 21 with clearance on the plunger 12.
  • the operating handle 20 is rotatably connected in its operating position 22 with the plunger 12. This is achieved by a corresponding design of the seat of the actuating handle 20 on the plunger 12 in its operating position 22, for example according to an in Fig. 3 illustrated training variant by the operating handle 20 is seated in its operating position 22 with a press fit on the plunger 12.
  • the displacement of the actuating handle 20 on the plunger 12 from the safety position 21 to the actuation position 22 is irreversible in order to make the activation of the pressure cell permanently recognizable.
  • a simple approach to this is to form the seat of the operating handle 20 on the plunger 12 as a press fit, so that the displacement of the actuating handle 20 to its operating position 22 take place only by firmly pressing the operating handle 20 to the container 02 in overcoming the friction of the interference fit can and the operating handle 20 could be withdrawn only by force in its safety position 21.
  • the irreversibility of the displacement of the operating handle 20 is promoted from its safety position 21 to its actuation position 22 by the measure described below.
  • a groove 29 is provided in the vicinity of the end of its outer side longitudinal portion 14, which is an annular recess on the plunger 12 in the Fig. 5a and 5b designated and in the Fig. 2a . 2 B and 3 is recognizable.
  • a substantially annular cam 28 is provided, which consists in the illustrated embodiment of four on the actuating handle 20 integrally molded ring segments which protrude in the axial bore 27 of the actuating handle 20 inwardly and in Fig. 4a all are recognizable while in Fig. 4b only two of them are recognizable.
  • the actuating handle 20 has an axial wall profile which coincides in the radial viewing direction at least in places with a wall profile of the container 02 approximately, but otherwise within the Wandungsprofils of the container 02 and nowhere protrudes radially from the wall profile of the container 02.
  • Fig. 2a and 2 B Recognizable also located in the securing gap 23 spacers 24 an axial wall profile 30, which also, at least in places, in the radial viewing direction with the wall profile of the container 02 approximately matches, so that the present in the securing gap 23 spacers 24 at least in places with the container 02 and the operating handle 20 is approximately flush.
  • the spacer 24, to facilitate its removal from the Sich. réellesspalt 23, designed as a handle, tab or the like pull-out, which may not, so that it does not protrude substantially from the wall profile of the container 02 radially, as on the spacer 24 arranged flexible tab may be formed, which is Nielsenbringbar by slightest stress in the wall profile of the container 02.
  • a spacer 24 is made in one piece of elastic material such as plastic, and it has a clamp member 31, which, when the spacer 24 as in Fig. 2a and 2 B shown in the securing gap 23 is seated clamped on the plunger 12.
  • the actuating handle 20 may have around its axis radially arranged radially arms 32 and recesses 33 formed therebetween.
  • spacer 24 is accessible to the fingers of an operator. The operator allows this measure to act on the spacer 24 or press to remove the latter from the securing gap 23 or wegzuallerice without for this purpose the wall profile of the spacer used 24 would have to protrude radially from the wall profile of the container 02.
  • a butterfly-shaped configuration of the spacer 24 ' is shown with a central annular socket 34 and two breakable wings 35 disposed thereon, the axial wall profiles of the container (not shown), the wings 35 of the spacer 24' (with wall profile 30 ') and the actuating handle 20 and its arms 32 approximately agree.
  • the spacer 24 ' can be broken off at intended break points 36 thereof and on the actuating handle 20 past the plunger 12 and removed therefrom.
  • the operating handle 20 is to push the plunger 12 until it engages in the operating position.
  • Fig. 10 is a pin-shaped configuration of the spacer 24 '' shown, in which an elongated body 37 of the spacer 24 '' at one end with a head 38 and at the other end with an elastic fork 39 is provided.
  • the pin-shaped spacer 24 "' is inserted with its body 37 in a corresponding diametrical through-bore 40 of the plunger 12 and holds therein by means of the elastic fork 39, wherein the axial wall profiles of the container (not shown), the head 38 of the spacer 24"' (
  • the spacer 24 with the help of his serving as a handle head 38 from the plunger 12 to remove by pulling away and Thereafter, the actuating handle 20 on the plunger 12 is to be pressed until it engages in the actuation position 22.
  • the head 38 of the spacer 24 ' additionally designed as a handle, tab or the like pull-out, which the removal of the spacer 24 "

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  • Chemical & Material Sciences (AREA)
  • Dispersion Chemistry (AREA)
  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Containers And Packaging Bodies Having A Special Means To Remove Contents (AREA)
  • Extraction Or Liquid Replacement (AREA)

Abstract

An inner sleeve (08) and a tappet (12), which is disposed therein, are arranged in a coaxial manner in relation to the container (02) of the pressurised dispenser (Ol). The tappet (12) extends through the base (06) to the transition point (15) where it is sealed and maintained in a rotationally displaceable but not axially displaceable manner. The threaded nut part (19) is displaced in an axial manner when the tappet (02) is rotated such that it is removed from the inner sleeve (08) of the cover (11). An actuating handle (20) is placed in a coaxial manner therewith on the tappet (12), where it can be displaced axially between a safety position (21) and an actuating position (22), wherein it can be rotated freely in the safety position (21) and is actively connected thereto in a rotationally fixed manner in the actuating position (22). A safety gap (23) and a spacer (24), which can be removed therefrom, are disposed between the actuating handle (20) in the safety position (21) and the container (02) about the tappet (12). Said spacer comprises, preferably, a clamping part (31) which, when said spacer is arranged in the safety gap (23), sits in a firmly clamped manner on the tappet (12). Preferably, the actuating handle (20), which is arranged in the actuating position (22), is rotationally connected to the tappet (12) by means of a drive fit.

Description

Technisches GebietTechnical area

Die vorliegende Erfindung betrifft eine Druckdose zum Ausbringen von darin enthaltener mehrkomponentiger Substanz, insbesondere einer mehrkomponentigen Substanz zur Bildung einer aushärtenden Schicht beim Beschichten eines Substrats, gemäss dem Oberbegriff des Patentanspruchs 1.The present invention relates to a pressure cell for discharging multicomponent substance contained therein, in particular a multicomponent substance for forming a hardening layer when coating a substrate, according to the preamble of patent claim 1.

Stand der TechnikState of the art

Eine Druckdose der eingangs genannten Art ist teilweise aus WO-85/00157 und teilweise auch aus WO-02/076852 bekannt. Diese bekannte Druckdose ist als länglicher Behälter mit einem an einem abgabeseitigen Ende davon angeordneten Dom und einem am anderen Ende davon angeordneten Boden ausgebildet. Am Dom ist, koaxial zum Behälter, ein Ventil zum Ausbringen der mehrkomponentigen Substanz angeordnet. Innerhalb des Behälters und koaxial zu dessen Achse ist eine längliche Innenhülse angeordnet, die an einem Ende davon am Boden befestigt und diesem gegenüber abgedichtet ist, während das andere Ende der Innenhülse innerhalb des Behälters frei steht und von einem von der Innenhülse absprengbaren Deckel dicht verschlossen ist. Koaxial zum Behälter ist ein länglicher Stössel angeordnet, von dem sich ein innenseitiger Längenabschnitt innerhalb der Innenhülse und ein aussenseitiger Längenabschnitt ausserhalb des Behälters befindet. Der Stössel geht an einer Übergangsstelle zwischen den genannten Längenabschnitten durch den Boden und ist dort einerseits gegenüber dem Boden und folglich gegenüber dem Behälter abgedichtet, andererseits am Boden und folglich gegenüber dem Behälter drehbar aber axial nicht verschiebbar gehalten.A pressure cell of the type mentioned is partially made WO 85/00157 and partly also off WO02 / 076852 known. This known pressure box is formed as an elongated container with a dome arranged at a discharge end thereof and a bottom arranged at the other end thereof. On Dom is, coaxial with the container, arranged a valve for discharging the multi-component substance. Within the container and coaxially with the axis thereof is disposed an elongated inner sleeve which is secured at one end thereof to the bottom and sealed thereto, while the other end of the inner sleeve is exposed within the container and sealed by a cover which can be deflashed by the inner sleeve , Coaxially to the container, an elongate plunger is arranged, of which there is an inner-side longitudinal section within the inner sleeve and an outer-side longitudinal section outside the container. The plunger goes through the floor at a transition point between said lengths and is there on the one hand sealed against the ground and thus relative to the container, on the other hand on the ground and thus rotatable relative to the container but not axially displaceable.

Bei einem in Prospekten öffentlich dokumentierten Stand der Technik (beispielsweise in Prospekten betreffend Druckdosen für "Nano-Fix 200", zu beziehen von Atheco AG, CH-7000 Chur, oder für "Samicolor® Nanobois", zu beziehen von Kälin & Co. AG, CH-8404 Winterthur), welcher sämtliche Merkmale des Oberbegriffs des Anspruchs 1 aufweist, ist der Stössel zumindest auf einem Teil seines innenseitigen Längenabschnitts mit einem Aussengewinde versehen, das mit einem entsprechenden Innengewinde einer Bohrung eines gegenüber der Innenhülse verschiebbaren Gewindemutterteils zusammenwirkt, um bei Drehung des Stössels das Gewindemutterteil axial zu verschieben und durch dessen Zusammenwirkung mit dem Deckel letzteren von der Innenhülse zu entfernen, wobei ein Betätigungsgriff zur Drehung des Stössels koaxial am aussenseitigen Längenabschnitt des Stössels aufgesetzt ist. Beim Entfernen des Deckels von der Innenhülse kann eine in der Innenhülse enthaltene Komponente der Substanz mit einer im Behälter ausserhalb der Innenhülse enthaltenen Komponente der Substanz in Kontakt kommen, worauf sich im Behälter die beiden Komponenten miteinander vermischen und dadurch die gebrauchsfertige d.h. zum Ausbringen bereite mehrkomponentige Substanz bereitgestellt wird, um beim Öffnen des Ventils der Druckdose auf das Substrat ausgebracht zu werden. Somit bewirkt die Drehung des Betätigungsgriffes relativ zum Behälter eine "Aktivierung" der Druckdose in dem Sinne, dass getrennt vorliegende Komponenten sich bei der Aktivierung miteinander vermischen und dadurch die gebrauchsfertige mehrkomponentige Substanz bereitgestellt wird.In a state of the art publicly documented in brochures (for example, in brochures concerning pressurized cans for "Nano-Fix 200", available from Atheco AG, CH-7000 Chur, or for "Samicolor® Nanobois", available from Kälin & Co. AG , CH-8404 Winterthur), which has all the features of the preamble of claim 1, the plunger is provided at least on a part of its inner longitudinal portion with an external thread, with a corresponding internal thread of a bore of a relative to the inner sleeve slidably threaded nut part cooperates to axially displace the Gewindemutterteil upon rotation of the plunger and to remove the latter by the interaction with the latter of the inner sleeve, wherein an actuating handle for rotating the plunger is mounted coaxially on the outer side longitudinal portion of the plunger. When the cover is removed from the inner sleeve, a component of the substance contained in the inner sleeve can come into contact with a component of the substance contained in the container outside the inner sleeve, whereupon the two components mix with one another in the container and thereby the ready-to-use multicomponent substance ready for dispensing is provided to be applied to the substrate when opening the valve of the pressure cell. Thus, the rotation of the actuating handle relative to the container causes an "activation" of the pressure box in the sense that separately present components mix with each other during activation and thereby the ready-to-use multi-component substance is provided.

Bekanntlich ist jedoch die gebrauchsfertige mehrkomponentige Substanz im Behälter der "aktivierten" Druckdose nur begrenzte Zeit haltbar, ihre Gebrauchsfähigkeit lässt im Laufe der Zeit nach. Es ist also ein Nachteil des vorerwähnten Standes der Technik, dass die unbeabsichtigte oder mutwillige unbefugte "Aktivierung" der Druckdose weder verhindert werden kann, noch an der Druckdose erkennbar ist - dabei denke man beispielsweise an spielerische Manipulation von Ware im Regal eines Warenhauses.As is well known, however, the ready-to-use multicomponent substance in the container of the "activated" pressure cell is only stable for a limited time, its usability deteriorates over time. It is therefore a disadvantage of the aforementioned prior art that the unintentional or willful unauthorized "activation" of the pressure cell can neither be prevented, nor is recognizable at the pressure can - think, for example, playful manipulation of goods on the shelf of a department store.

Aufgabe der Erfindung ist es demnach, bei einer Druckdose der eingangs genannten Art eine unbeabsichtigte "Aktivierung" der Druckdose zu verhindern und eine mutwillige unbefugte "Aktivierung" an der Druckdose erkennbar zu machen.The object of the invention is therefore to prevent a unintentional "activation" of the pressure cell in a pressure cell of the type mentioned and to make a wanton unauthorized "activation" on the pressure cell recognizable.

Darstellung der ErfindungPresentation of the invention

Zur Lösung dieser Aufgabe ist eine Druckdose der eingangs genannten Art erfindungsgemäss gekennzeichnet durch die Kombination der im Anspruch 1 angegebenen Merkmale. Vorteilhafte Weiterbildungen der erfindungsgemässen Druckdose sind in den abhängigen Ansprüchen definiert.To solve this problem, a pressure cell of the type mentioned is characterized according to the invention by the combination of the features specified in claim 1. Advantageous developments of the inventive pressure box are defined in the dependent claims.

Insbesondere ist bei der erfindungsgemässen Druckdose der Betätigungsgriff am Stössel axial zwischen einer Sicherheitsposition und einer Betätigungsposition verschiebbar. In der Sicherheitsposition befindet sich der Betätigungsgriff im axialen Abstand vom Behälter, und er ist am Stössel freilaufend drehbar. In der Betätigungsposition befindet sich der Betätigungsgriff in unmittelbarer axialer Nähe des Behälters, und er ist mit dem Stössel drehfest verbunden. Nur in der Sicherheitsposition befindet sich somit zwischen dem Betätigungsgriff und dem Behälter um den Stössel herum ein Sicherungsspalt. Bei der erfindungsgemässen Druckdose ist auch noch ein in den Sicherungsspalt passender Abstandhalter vorgesehen. Dieser Abstandhalter ist in den Sicherungsspalt einführbar, um eine Verschiebung des Betätigungsgriffes am Stössel von der Sicherheitsposition zur Betätigungsposition zu verhindern. Zur Freigabe der genannten Verschiebung aus dem Sicherungsspalt ist der Abstandhalter aus dem Sicherungsspalt entfernbar.In particular, in the inventive pressure box of the actuating handle on the plunger axially between a safety position and a Sliding actuating position. In the safety position, the actuating handle is located at an axial distance from the container, and it is freely rotatable on the plunger. In the actuated position, the actuating handle is in the immediate axial vicinity of the container, and it is rotatably connected to the plunger. Only in the safety position is thus between the operating handle and the container around the plunger around a securing gap. In the inventive pressure box also in the securing gap suitable spacer is provided. This spacer is insertable into the securing gap to prevent displacement of the actuating handle on the plunger from the safety position to the actuation position. To release said shift from the securing gap, the spacer is removable from the securing gap.

Aus dem Vorstehenden geht hervor, dass der Betätigungsgriff den Stössel nicht drehen kann, wenn sich der Abstandhalter an der Druckdose d.h. im Sicherungsspalt befindet: somit wird dank der Erfindung eine unbeabsichtigte "Aktivierung" der erfindungsgemässen Druckdose verhindert.From the foregoing it can be seen that the operating handle can not rotate the plunger when the spacer at the pressure box, i. in the safety gap: thus, thanks to the invention, an unintentional "activation" of the inventive pressure cell is prevented.

Aus dem Vorstehenden geht ebenfalls hervor, dass sich der Abstandhalter nicht mehr an der Druckdose d.h. im Sicherungsspalt befindet, wenn der Stössel mit Hilfe des Betätigungsgriffes gedreht wurde: somit wird dank der Erfindung eine "Aktivierung" an der Druckdose erkennbar gemacht, gleichgültig, ob sie unbewusst, bewusst oder gar mutwillig und unbefugt stattgefunden hat.From the foregoing, it also appears that the spacer is no longer attached to the pressure box, i. in the safety gap is when the plunger was rotated by means of the actuating handle: thus, thanks to the invention, an "activation" made on the pressure box recognizable, regardless of whether it has taken place unconsciously, consciously or even wantonly and without authorization.

Vorzugsweise umfasst der Abstandhalter einen Klammerteil, weicher, wenn sich der Abstandhalter im Sicherungsspalt befindet, am Stössel festgeklammert sitzt. Dadurch wird der Abstandhalter lösbar am Stössel d.h. an der Druckdose befestigt.Preferably, the spacer comprises a clamp member which, when the spacer is in the securing gap, is seated clamped to the ram. As a result, the spacer is detachably attached to the plunger, i. attached to the pressure cell.

Wenn der Betätigungsgriff ein axiales Wandungsprofil aufweist, das in radialer Betrachtungsrichtung zumindest stellenweise mit einem Wandungsprofil des Behälters in etwa übereinstimmt, sonst aber innerhalb des Wandungsprofils des Behälters liegt und nirgends aus dem Wandungsprofil des Behälters radial hervorragt, dann weist der im Sicherungsspalt befindliche Abstandhalter auf vorteilhafte Weise ein axiales Wandungsprofil auf, das in radialer Betrachtungsrichtung zumindest stellenweise mit dem Wandungsprofil des Behälters in etwa übereinstimmt. Daraus ergibt sich, dass der im Sicherungsspalt befindliche Abstandhalter zumindest stellenweise mit dem Behälter und dem Betätigungsgriff in etwa bündig ist, was der Druckdose auf vorteilhafte Weise eine regelmässige gegenständliche Form gibt, welche die Konfektionierung beispielsweise mit Etiketten und ganz generell das Versorgen der Druckdose und insbesondere das Aufstellen der Druckdose im Regal eines Warenhauses erleichtert.If the actuating handle has an axial wall profile which at least in places coincides in the radial direction at least with a wall profile of the container, but otherwise within the Wandungsprofils of the container and nowhere projecting radially from the wall profile of the container, then the spacer located in the securing gap on advantageous Way an axial wall profile, which in the radial viewing direction at least in places with the wall profile of the Container roughly matches. It follows that the spacer located in the securing gap is at least in places approximately flush with the container and the operating handle, which gives the pressure box advantageously a regular representational form, which confectioning example with labels and quite generally the supply of the pressure cell and in particular the installation of the pressure cell on the shelf of a department store easier.

Vorzugsweise weist der Abstandhalter eine als Griff, Lasche oder dergleichen ausgebildete Ausziehhilfe auf, die seine Entfernung aus dem Sicherungsspalt erleichtert, wobei diese Ausziehhilfe gegebenenfalls als am Abstandhalter angeordnete flexible Lasche ausgebildet und durch leichteste Beanspruchung in das Wandungsprofil des Behälters zurückbringbar sein kann.Preferably, the spacer has a designed as a handle, tab or the like pull-out, which facilitates its removal from the securing gap, this pull-out may optionally formed as arranged on the spacer flexible tab and can be brought back by lightest stress in the wall profile of the container.

Bei einer bevorzugten Ausbildung des Betätigungsgriffes weist dieser um seine Achse sternförmig angeordnete radiale Arme und dazwischen gebildete Einbuchtungen auf, in denen der im Sicherungsspalt befindliche Abstandhalter für die Finger einer Betätigungsperson erreichbar ist. Dies ermöglicht der Betätigungsperson, durch Drücken auf den Abstandhalter diesen mit Leichtigkeit aus dem Sicherungsspalt zu entfernen. Ist zudem auf bevorzugte Weise dafür gesorgt, dass das Wandungsprofil des im Sicherungsspalt befindlichen Abstandhalters nirgends aus dem Wandungsprofil des Behälters radial hervorragt, so hat auch hier die Druckdose auf vorteilhafte Weise eine regelmässige gegenständliche Form, welche die Konfektionierung beispielsweise mit Etiketten und ganz generell das Versorgen der Druckdose und insbesondere das Aufstellen der Druckdose im Regal eines Warenhauses erleichtert.In a preferred embodiment of the actuating handle, this has around its axis radially arranged radial arms and indentations formed therebetween, in which the spacer located in the securing gap for the fingers of an operator can be reached. This allows the operator to easily remove it from the securing gap by pressing on the spacer. In addition, if it is ensured in a preferred manner that the wall profile of the spacer located in the securing gap nowhere protrudes radially from the wall profile of the container, so here too the pressure box advantageously has a regular representational form, which the packaging, for example, with labels and quite generally supplying the pressure cell and in particular the installation of the pressure cell on the shelf of a department store easier.

Vorzugsweise ist der in der Betätigungsposition befindliche Betätigungsgriff mit dem Stössel durch Presspassung drehfest verbunden, was eine besonders günstige Herstellung ermöglicht. Ist zudem auf bevorzugte Weise dafür gesorgt, dass der Betätigungsgriff durch Drücken darauf zum Behälter hin bei Überwindung der Reibung der Presspassung in die Betätigungsposition verschiebbar ist, so führt dies auch zu einer besonders einfachen Betätigung der Druckdose bei deren "Aktivierung": man braucht nur den Boden der Druckdose axial einzudrücken, nötigenfalls durch Aufschlagen auf einen passend harten Gegenstand.Preferably, the actuating handle located in the actuation position is rotatably connected to the plunger by press fitting, which allows a particularly favorable production. In addition, if it is ensured in a preferred manner that the operating handle by pushing it towards the container in overcoming the friction of the press-fit in the operating position is displaced, this also leads to a particularly simple operation of the pressure cell in their "activation": you need only the Press the bottom of the pressure box axially, if necessary by striking a suitable hard object.

In einer anderen bevorzugten Ausbildung kann der in der Betätigungsposition befindliche Betätigungsgriff mit dem Stössel durch Zusammenwirkung mindestens einer Erhebung mit einer entsprechenden Vertiefung drehfest verbunden sein, wobei Erhebung und Vertiefung wechselseitig an Betätigungsgriff und Stössel angeordnet sind, beispielsweise mit der Erhebung als nach innen ragende Verflachung in einer axialen Bohrung am Betätigungsgriff und mit der Vertiefung als angefräste Verflachung am Stössel. Diese Ausbildung gewährleistet den Kraftschluss zwischen dem Betätigungsgriff und dem Stössel bei dessen Drehung besonders gut.In another preferred embodiment, the operating handle located in the operating position with the plunger by cooperation of at least one survey with a corresponding recess rotatably connected, elevation and depression are mutually arranged on the operating handle and plunger, for example, with the survey as inwardly projecting flattening in an axial bore on the operating handle and with the recess as milled flattening on the plunger. This training ensures the adhesion between the operating handle and the plunger during its rotation particularly well.

Ausserdem kann auf bevorzugte Weise dafür gesorgt sein, dass die Verschiebung des Betätigungsgriffes von der Sicherheitsposition zur Betätigungsposition irreversibel ist: als bedeutender Vorteil wird damit erreicht, dass es nicht möglich ist, die Erkennbarkeit einer mutwilligen unbefugten "Aktivierung" an der Druckdose rückgängig zu machen. Mit Vorteil wird dabei die Irrreversibilität der Verschiebung des Betätigungsgriffes von der Sicherheitsposition zur Betätigungsposition durch eine Presspassung zwischen dem Betätigungsgriff und dem Stössel gewährleistet.In addition, it can be ensured in a preferred manner that the displacement of the actuating handle from the safety position to the actuation position is irreversible: as a significant advantage is achieved in that it is not possible to reverse the recognizability of a willful unauthorized "activation" on the pressure cell. Advantageously, the irreversibility of the displacement of the actuating handle from the safety position to the actuating position is ensured by a press fit between the actuating handle and the plunger.

Kurze Beschreibung der ZeichnungenBrief description of the drawings

Nachstehend wird die Erfindung unter Bezugnahme auf die Zeichnungen näher beschrieben, wobei einander entsprechende Teile in den Zeichnungen mit gleichen Bezugszeichen bezeichnet sind.The invention will be described in more detail below with reference to the drawings, wherein corresponding parts in the drawings are designated by like reference numerals.

Zunächst zeigt Fig. 1 eine Druckdose gemäss dem Stand der Technik nach WO-85/00157 im axialen Schnitt. Danach zeigen:

Fig. 2a und 2b
eine Ausbildung einer Aktivierungsvorrichtung als Teil einer erfindungsgemässen Druckdose bei abgebrochenen Behälter und mit dem Betätigungsgriff in einer Sicherheitsposition, in Fig. 2a im axialen Schnitt bzw. in Fig. 2b grösstenteils in Perspektivansicht und bei einem axialen Quadrant im axialen Schnitt;
Fig. 3
die gleiche Ausbildung einer Aktivierungsvorrichtung in der gleichen Darstellungsweise wie in Fig. 2a, jedoch hier mit dem Betätigungsgriff in einer Betätigungsposition;
Fig. 4a
und 4b eine Ausbildung eines Betätigungsgriffes, in Fig. 4a in Untersicht bzw. in Fig. 4b im axialen Schnitt;
Fig. 5a und 5b
eine Ausbildung eines Stössels, in zwei jeweils rechtwinklig zu dessen Längsachse und dabei rechtwinklig zueinander orientierten Ansichten;
Fig. 6
eine Perspektivansicht einer Ausbildung eines Abstandhalters als entfernbarer Teil einer erfindungsgemässen Druckdose;
Fig. 7
eine Perspektivansicht des auf der Druckdose montierten Abstandhalters gemäss Fig. 6, bei entferntem Behälter;
Fig. 8a und 8b
je eine Perspektivansicht, in verschiedene Richtungen, einer weiteren Ausbildung eines als entfernbarer Teil auf der Druckdose montierten Abstandhalters, bei entferntem Behälter;
Fig. 9
eine Perspektivansicht einer noch weiteren Ausbildung eines Abstandhalters als entfernbarer Teil einer Druckdose; und
Fig. 10
eine Perspektivansicht einer noch weiteren Ausbildung eines Abstandhalters als entfernbarer Teil einer Druckdose.
First shows Fig. 1 a pressure cell according to the prior art according to WO-85/00157 in axial section. Then show:
Fig. 2a and 2b
an embodiment of an activation device as part of an inventive pressure cell with broken container and with the operating handle in a safety position, in Fig. 2a in axial section or in Fig. 2b mostly in perspective view and with an axial quadrant in axial section;
Fig. 3
the same construction of an activation device in the same representation as in Fig. 2a but here with the operating handle in an operating position;
Fig. 4a
and FIG. 4b shows an embodiment of an operating handle, in FIG Fig. 4a in lower view or in Fig. 4b in axial section;
Fig. 5a and 5b
a design of a plunger, in two in each case at right angles to its longitudinal axis and thereby oriented at right angles to each other views;
Fig. 6
a perspective view of an embodiment of a spacer as a removable part of a pressure cell according to the invention;
Fig. 7
a perspective view of the mounted on the pressure cell spacer according Fig. 6 with the container removed;
Fig. 8a and 8b
each a perspective view, in different directions, a further embodiment of a removable part mounted on the pressure cell spacer, with the container removed;
Fig. 9
a perspective view of yet another embodiment of a spacer as a removable part of a pressure cell; and
Fig. 10
a perspective view of yet another embodiment of a spacer as a removable part of a pressure box.

Wege zur Ausführung der ErfindungWays to carry out the invention

Die in Fig. 1 dargestellte Druckdose zum Ausbringen von darin enthaltener mehrkomponentiger Substanz gemäss dem Stand der Technik nach WO-85/00157 ist allgemein mit dem Bezugszeichen 01 bezeichnet. Die Druckdose 01 weist einen länglichen rohrförmigen Behälter 02 auf, dessen Längsachse mit A bezeichnet ist. Ein abgabeseitiges Ende 03 des Behälters 02 ist mit einem daran angeordneten Dom 04 versehen. Das andere, bodenseitige Ende 05 des Behälters 02 ist mit einem daran angeordneten Boden 06 versehen. Am Dom 04 ist, koaxial zum Behälter 02, ein allgemein mit 07 bezeichnetes Ventil angeordnet, durch welches die in der Druckdose 01 enthaltene Substanz ausgebracht werden kann. Innerhalb des Behälters 02 und koaxial dazu ist eine längliche rohrförmige Innenhülse 08 angeordnet. An ihrem einen, bodenseitigen axialen Ende 09 ist die Innenhülse 08 am Boden 06 befestigt und diesem gegenüber abgedichtet. Mit ihrem anderen, domseitigen axialen Ende 10 steht die Innenhülse 08 innerhalb des Behälters 02 frei. Die Innenhülse 08 ist an ihrem domseitigen Ende 10 von einem Deckel 11 dicht verschlossen, wobei dieser Deckel 11 von der Innenhülse 08 absprengbar ist. Koaxial zum Behälter 02 ist ein länglicher Stössel 12 angeordnet. Ein innenseitiger Längenabschnitt 13 des Stössels 12 befindet sich innerhalb der Innenhülse 08 und des Behälters 02, und ein aussenseitiger Längenabschnitt 14 des Stössels 12 befindet sich ausserhalb der Innenhülse 08 und des Behälters 02. An einer Übergangsstelle 15 zwischen seinem innenseitigen Längenabschnitt 13 und seinem aussenseitigen Längenabschnitt 14 geht der Stössel 12 durch den Boden 06 des Behälters 02. An dieser Übergangsstelle 15 ist der Stössel 12 gegenüber dem Boden 06 und folglich gegenüber dem Behälter 02 abgedichtet sowie am Boden 06 und folglich gegenüber dem Behälter 02 axial verschiebbar gehalten.In the Fig. 1 illustrated pressure cell for dispensing therein contained multi-component substance according to the prior art according to WO-85/00157 is generally designated by the reference 01. The pressure cell 01 has an elongate tubular container 02, whose longitudinal axis is designated A. A discharge side end 03 of the container 02 is provided with a dome 04 disposed thereon. The other, bottom end 05 of the container 02 is provided with a bottom 06 arranged thereon. On Dom 04, coaxial with the container 02, a generally designated 07 valve is arranged, through which the substance contained in the pressure cell 01 can be applied. Within the container 02 and coaxially with an elongated tubular inner sleeve 08 is arranged. At its one, bottom axial end 09, the inner sleeve 08 is fixed to the bottom 06 and sealed against this. With its other, dome-axial End 10, the inner sleeve 08 is free within the container 02. The inner sleeve 08 is sealed at its dome-side end 10 by a cover 11, said cover 11 is absprengbar of the inner sleeve 08. Coaxial with the container 02, an elongated plunger 12 is arranged. An inside longitudinal portion 13 of the plunger 12 is located within the inner sleeve 08 and the container 02, and an outer longitudinal portion 14 of the plunger 12 is located outside of the inner sleeve 08 and the container 02. At a transition point 15 between its inner longitudinal portion 13 and its outer side longitudinal section 14, the plunger 12 passes through the bottom 06 of the container 02. At this transition point 15 of the plunger 12 relative to the bottom 06 and thus sealed relative to the container 02 and held axially displaceable on the bottom 06 and thus relative to the container 02.

Nicht in Fig. 1, jedoch in Fig. 2a und 2b sichtbar, ist der eingangs erwähnte, in Prospekten öffentlich dokumentierte Stand der Technik, wonach der Stössel 12 zumindest auf einem Teil seines innenseitigen Längenabschnitts 13 mit einem Aussengewinde 16 versehen ist, das mit einem entsprechenden Innengewinde 17 einer Bohrung 18 eines gegenüber der Innenhülse 08 verschiebbaren Gewindemutterteils 19 zusammenwirkt, so dass sich bei Drehung des Stössels 12 das .Gewindemutterteil 19 axial verschiebt, worauf bei geeigneter Drehrichtung des Stössels 12 das Gewindemutterteil 19 mit dem Deckel 11 zusammenwirkt, um den Deckel 11 von der Innenhülse 08 zu entfernen (diese Zusammenwirkung ergibt sich im vorliegenden Ausbildungsbeispiel von selbst aus der integral-einstückigen Anformung des Gewindemutterteils 19 am Deckel 11). Zur Betätigung d.h. zur Drehung des Stössels 12 ist ein Betätigungsgriff 20 koaxial am aussenseitigen Längenabschnitt 14 des Stössels 12 aufgesetzt.Not in Fig. 1 , but in Fig. 2a and 2 B visible, is the initially mentioned, in brochures publicly documented prior art, according to which the plunger 12 is provided at least on a portion of its inner longitudinal portion 13 with an external thread 16, with a corresponding internal thread 17 a bore 18 of a relative to the inner sleeve 08 sliding threaded nut part 19 cooperates, so that upon rotation of the plunger 12, the threaded nut part 19 axially displaces, whereupon, in a suitable direction of rotation of the plunger 12, the threaded nut part 19 cooperates with the cover 11 to remove the cover 11 from the inner sleeve 08 (this interaction results in FIG present training example of itself from the integral-one-piece Anformung the threaded nut member 19 on the lid 11). For actuation, ie for rotation of the plunger 12, an actuating handle 20 is placed coaxially on the outside longitudinal section 14 of the plunger 12.

Dargestellt ist der Betätigungsgriff 20 am Stössel 12 in Fig. 2a und 2b in einer Sicherheitsposition 21, in Fig. 3 hingegen in einer Betätigungsposition 22. Wie ersichtlich befindet sich der Betätigungsgriff 20 in seiner Betätigungsposition 22 in unmittelbarer axialer Nähe des bodenseitigen Endes 05 des Behälters 02 (vgl. in Fig. 3), in seiner Sicherheitsposition 21 hingegen im axialen Abstand vom bodenseitigen Ende 05 des Behälters 02 (vgl. in Fig. 2a und 2b), wobei sich in dieser Sicherheitsposition 21 zwischen dem Betätigungsgriff 20 und dem bodenseitigen Ende 05 des Behälters 02, um den Stössel herum, ein Sicherungsspalt 23 bildet, in den ein dazu passender Abstandhalter 24 einsetzbar ist, wie dies in Fig. 2a und 2b dargestellt ist.Shown is the actuating handle 20 on the plunger 12 in Fig. 2a and 2 B in a safety position 21, in Fig. 3 However, in an operating position 22. As can be seen, the operating handle 20 is in its operating position 22 in the immediate axial vicinity of the bottom end 05 of the container 02 (see Fig. 3 ), in its safety position 21, however, at an axial distance from the bottom end 05 of the container 02 (see Fig. 2a and 2 B ), which in this safety position 21 between the actuating handle 20 and the bottom end 05 of the container 02, around the plunger around, a Securing gap 23 forms, in which a matching spacer 24 is used, as in Fig. 2a and 2 B is shown.

Wenn sich der Betätigungsgriff 20 in seiner Sicherheitsposition 21 befindet, aber kein Abstandhalter 24 sich im Sicherungsspalt 23 befindet, kann der Betätigungsgriff 20 am Stössel 12 axial von seiner Sicherheitsposition 21 zu seiner Betätigungsposition 22 verschoben werden. Das Einführen und Einsetzen eines Abstandhalters 24 in den Sicherungsspalt 23 verhindert also die Verschiebung des Betätigungsgriffes 20 am Stössel 12 von der Sicherheitsposition 21 zur Betätigungsposition 22, während das Entfernen des eingeführten Abstandhalters 24 aus dem Sicherungsspalt 23 die Verschiebung des Betätigungsgriffes 20 am Stössel 12 von der Sicherheitsposition 21 zur Betätigungsposition 22 freigibt.When the operating handle 20 is in its safety position 21, but no spacer 24 is in the securing gap 23, the operating handle 20 on the plunger 12 can be moved axially from its safety position 21 to its actuating position 22. The insertion and insertion of a spacer 24 in the securing gap 23 thus prevents the displacement of the actuating handle 20 on the plunger 12 from the safety position 21 to the actuating position 22, while the removal of the inserted spacer 24 from the securing gap 23, the displacement of the actuating handle 20 on the plunger 12 of the Safety position 21 to the operating position 22 releases.

Der Betätigungsgriff 20 ist in seiner Sicherheitsposition 21 am Stössel 12 freilaufend drehbar. Erreicht wird dies durch eine entsprechende Ausbildung des Sitzes des Betätigungsgriffes 20 am Stössel 12 in seiner Sicherheitsposition 21, beispielsweise gemäss einer in Fig. 2a und 2b dargestellten Ausbildungsvariante, indem der Betätigungsgriff 20 in seiner Sicherheitsposition 21 mit Spielpassung auf dem Stössel 12 sitzt.The actuating handle 20 is freely rotatable in its safety position 21 on the plunger 12. This is achieved by a corresponding design of the seat of the operating handle 20 on the plunger 12 in its safety position 21, for example according to an in Fig. 2a and 2 B illustrated training variant by the operating handle 20 is seated in its safety position 21 with clearance on the plunger 12.

Hingegen ist der Betätigungsgriff 20 in seiner Betätigungsposition 22 mit dem Stössel 12 drehfest verbunden. Erreicht wird dies durch eine entsprechende Ausbildung des Sitzes des Betätigungsgriffes 20 am Stössel 12 in seiner Betätigungsposition 22, beispielsweise gemäss einer in Fig. 3 dargestellten Ausbildungsvariante, indem der Betätigungsgriff 20 in seiner Betätigungsposition 22 mit Presspassung auf dem Stössel 12 sitzt.By contrast, the operating handle 20 is rotatably connected in its operating position 22 with the plunger 12. This is achieved by a corresponding design of the seat of the actuating handle 20 on the plunger 12 in its operating position 22, for example according to an in Fig. 3 illustrated training variant by the operating handle 20 is seated in its operating position 22 with a press fit on the plunger 12.

Gemäss einer anderen Ausbildungsvariante oder auch zusätzlich zur vorerwähnten Ausbildungsvariante mit Presspassung wird in der Betätigungsposition 22 des Betätigungsgriffes 20 dessen drehfeste Verbindung mit dem Stössel 12 durch die Zusammenwirkung mindestens einer Erhebung 25 mit einer entsprechenden Vertiefung 26 drehfest verbunden, wobei Erhebung 25 und Vertiefung 26 wechselseitig an Betätigungsgriff 20 und Stössel 12 angeordnet sind. Beispielsweise sind in Fig. 3 auf der einen Hälfte des axialen Schnitts und noch viel besser in den Figuren 4a, 4b, 5a und 5b die Erhebung 25 als nach innen ragende Verflachung innerhalb einer axialen Bohrung 27 des Betätigungsgriffes 20 und die Vertiefung 26 als angefräste Verflachung am Stössel 12 erkennbar. Es dürfte aber klar sein, dass ein Kraftschluss gleicher Güte zwischen dem Betätigungsgriff 20 und dem Stössel 12 bei dessen Drehung gewährleistet wird, wenn die Erhebung 25 am Stössel 12 und die Vertiefung 26 am Betätigungsgriff 20 angebracht sind, auch und noch besser, wenn paarweise einander entsprechend mehr als nur eine Erhebung wie 25 und eine Vertiefung wie 26 jeweils am Stössel 12 und am Betätigungsgriff 20 vorgesehen sind.According to another variant of the training or in addition to the above-mentioned training variant with press fit in the operating position 22 of the actuating handle 20 whose rotatable connection with the plunger 12 by the interaction of at least one elevation 25 rotatably connected to a corresponding recess 26, wherein elevation 25 and recess 26 alternately Operating handle 20 and plunger 12 are arranged. For example, in Fig. 3 on one half of the axial section and even better in the FIGS. 4a, 4b . 5a and 5b the elevation 25 as an inwardly projecting flattening within an axial bore 27 of the actuating handle 20 and the recess 26 as milled Flattening on the plunger 12 recognizable. However, it should be clear that an adhesion of equal quality between the operating handle 20 and the plunger 12 is ensured during its rotation when the elevation 25 on the plunger 12 and the recess 26 are mounted on the actuating handle 20, and even better, if in pairs Accordingly, more than just a survey such as 25 and a recess 26 are provided on each of the plunger 12 and the actuating handle 20.

Es ist von Vorteil vorzusehen, dass die Verschiebung des Betätigungsgriffes 20 am Stössel 12 von der Sicherheitsposition 21 zur Betätigungsposition 22 irreversibel ist, um die Aktivierung der Druckdose dauerhaft erkennbar zu machen. Ein einfachster Ansatz dazu besteht darin, den Sitz des Betätigungsgriffes 20 auf dem Stössel 12 als Presspassung auszubilden, so dass die Verschiebung des Betätigungsgriffes 20 zu seiner Betätigungsposition 22 erst durch festes Drücken auf den Betätigungsgriff 20 zum Behälter 02 hin bei Überwindung der Reibung der Presspassung stattfinden kann und der Betätigungsgriff 20 nur mit Gewalt in seine Sicherheitsposition 21 zurückgezogen werden könnte. Zusätzlich wird die Irrreversibilität der Verschiebung des Betätigungsgriffes 20 von seiner Sicherheitsposition 21 zu seiner Betätigungsposition 22 durch die nachfolgend beschriebene Massnahme gefördert.It is advantageous to provide that the displacement of the actuating handle 20 on the plunger 12 from the safety position 21 to the actuation position 22 is irreversible in order to make the activation of the pressure cell permanently recognizable. A simple approach to this is to form the seat of the operating handle 20 on the plunger 12 as a press fit, so that the displacement of the actuating handle 20 to its operating position 22 take place only by firmly pressing the operating handle 20 to the container 02 in overcoming the friction of the interference fit can and the operating handle 20 could be withdrawn only by force in its safety position 21. In addition, the irreversibility of the displacement of the operating handle 20 is promoted from its safety position 21 to its actuation position 22 by the measure described below.

Am Stössel 12 ist in Nähe des Endes seines aussenseitigen Längenabschnitts 14 eine Nut 29 vorgesehen, die als ringförmige Vertiefung am Stössel 12 in den Fig. 5a und 5b bezeichnet und in den Fig. 2a, 2b und 3 erkennbar ist. Am Betätigungsgriff 20 ist ein dazu passender, im Wesentlichen ringförmiger Nocken 28 vorgesehen, der im dargestellten Ausbildungsbeispiel aus vier am Betätigungsgriff 20 integral angeformten Ringsegmenten besteht, die in der axialen Bohrung 27 des Betätigungsgriffes 20 nach innen ragen und in Fig. 4a alle erkennbar sind, während in Fig. 4b nur zwei davon erkennbar sind. Diese Aufteilung des Nockens 28 in vier Ringsegmente verleiht diesem, bei entsprechender Ausbildung des Betätigungsgriffes 20 aus hinreichend elastischem Material, eine gewisse radiale Elastizität. In der Sicherheitsposition 21 des Betätigungsgriffes 20 ist der Nocken 28 in der Nut 29 eingerastet. Um den Betätigungsgriff 20 von der Sicherheitsposition 21 zur Betätigungsposition 22 zu verschieben, muss zunächst d.h. am Anfang der Verschiebung der Nocken 28 aus der Nut 29 herausgehebelt werden, was dank der erwähnten Elastizität möglich ist, jedoch einen axialen Widerstand bietet, der dann plötzlich nachlässt, wenn der Nocken 28 die Nut 29 verlässt. Daraufhin überträgt sich der axiale Kraftaufwand der Bedienungsperson zum Überwinden des erwähnten axialen Widerstandes plötzlich auf die Überwindung der Reibung der Presspassung bei der Verschiebung des Betätigungsgriffes 20. Unter solchen Umständen kann eine ziemlich grosse Reibung der Presspassung vorgesehen werden, welche faktisch die Irrreversibilität der Verschiebung des Betätigungsgriffes 20 von seiner Sicherheitsposition 21 zu seiner Betätigungsposition 22 gewährleistet. Auch hier dürfte klar sein, dass ein gleiches Resultat erreicht wird, wenn umgekehrt der Nocken am Stössel 12 beispielsweise als ringförmige Erhebung und die Nut am Betätigungsgriff 20 als Vertiefung angebracht sind.On the plunger 12, a groove 29 is provided in the vicinity of the end of its outer side longitudinal portion 14, which is an annular recess on the plunger 12 in the Fig. 5a and 5b designated and in the Fig. 2a . 2 B and 3 is recognizable. On the actuating handle 20 is a matching, substantially annular cam 28 is provided, which consists in the illustrated embodiment of four on the actuating handle 20 integrally molded ring segments which protrude in the axial bore 27 of the actuating handle 20 inwardly and in Fig. 4a all are recognizable while in Fig. 4b only two of them are recognizable. This division of the cam 28 in four ring segments gives this, with a corresponding design of the actuating handle 20 of sufficiently elastic material, a certain radial elasticity. In the safety position 21 of the actuating handle 20, the cam 28 is engaged in the groove 29. In order to move the operating handle 20 from the safety position 21 to the actuation position 22, the cam 28 must first be levered out of the groove 29 at the beginning of the displacement, which is possible thanks to the mentioned elasticity, but offers an axial resistance which then suddenly diminishes when the cam 28 leaves the groove 29. Thereupon, the axial force of the operator to overcome the mentioned axial resistance suddenly transfers to overcoming the friction of the interference fit in the displacement of the operating handle 20. In such circumstances, a fairly large friction of the press fit can be provided, which in fact the irreversibility of the displacement of the operating handle 20 ensures its safety position 21 to its actuation position 22. Again, it should be clear that the same result is achieved when, conversely, the cam on the plunger 12, for example, as an annular elevation and the groove on the operating handle 20 are mounted as a recess.

Besonders aus Fig. 3, jedoch auch aus Fig. 2a und 2b ist erkennbar, dass der Betätigungsgriff 20 ein axiales Wandungsprofils aufweist, das in radialer Betrachtungsrichtung zumindest stellenweise mit einem Wandungsprofil des Behälters 02 in etwa übereinstimmt, sonst aber innerhalb des Wandungsprofils des Behälters 02 liegt und nirgends aus dem Wandungsprofil des Behälters 02 radial hervorragt.Especially out Fig. 3 , but also out Fig. 2a and 2 B It can be seen that the actuating handle 20 has an axial wall profile which coincides in the radial viewing direction at least in places with a wall profile of the container 02 approximately, but otherwise within the Wandungsprofils of the container 02 and nowhere protrudes radially from the wall profile of the container 02.

Vorzugsweise weist, wie aus Fig. 2a und 2b erkennbar, ebenfalls der im Sicherungsspalt 23 befindliche Abstandhalter 24 ein axiales Wandungsprofil 30 auf, das ebenfalls, zumindest stellenweise, in radialer Betrachtungsrichtung mit dem Wandungsprofil des Behälters 02 in etwa übereinstimmt, so dass der im Sicherungsspalt 23 befindliche Abstandhalter 24 zumindest stellenweise mit dem Behälter 02 und dem Betätigungsgriff 20 in etwa bündig ist. Dabei kann vorgesehen sein, dass der Abstandhalter 24, zur Erleichterung seiner Entfernung aus dem Sich.erungsspalt 23, eine als Griff, Lasche oder dergleichen ausgebildete Ausziehhilfe aufweist, die gegebenenfalls, damit auch sie nicht wesentlich aus dem Wandungsprofil des Behälters 02 radial hervorragt, als am Abstandhalter 24 angeordnete flexible Lasche ausgebildet sein kann, welche durch leichteste Beanspruchung in das Wandungsprofil des Behälters 02 zurückbringbar ist.Preferably, as shown Fig. 2a and 2 B Recognizable, also located in the securing gap 23 spacers 24 an axial wall profile 30, which also, at least in places, in the radial viewing direction with the wall profile of the container 02 approximately matches, so that the present in the securing gap 23 spacers 24 at least in places with the container 02 and the operating handle 20 is approximately flush. It can be provided that the spacer 24, to facilitate its removal from the Sich.erungsspalt 23, designed as a handle, tab or the like pull-out, which may not, so that it does not protrude substantially from the wall profile of the container 02 radially, as on the spacer 24 arranged flexible tab may be formed, which is zurückbringbar by slightest stress in the wall profile of the container 02.

Bei einer in Fig. 2a, 2b, 6 und 7 dargestellten bevorzugten Ausbildungsform eines Abstandhalters 24 ist dieser einstückig aus elastischem Material wie Kunststoff gefertigt, und er weist einen Klammerteil 31 auf, welcher, wenn sich der Abstandhalter 24 wie in Fig. 2a und 2b dargestellt im Sicherungsspalt 23 befindet, am Stössel 12 festgeklammert sitzt.At an in Fig. 2a . 2 B . 6 and 7 illustrated preferred embodiment of a spacer 24, this is made in one piece of elastic material such as plastic, and it has a clamp member 31, which, when the spacer 24 as in Fig. 2a and 2 B shown in the securing gap 23 is seated clamped on the plunger 12.

Wie in Fig. 4a, 7 und 8a dargestellt, kann der Betätigungsgriff 20 um seine Achse sternförmig angeordnete radiale Arme 32 und dazwischen gebildete Einbuchtungen 33 aufweisen. In diesen Einbuchtungen 33 ist der im Sicherungsspalt 23 befindliche Abstandhalter 24 für die Finger einer Betätigungsperson erreichbar. Der Betätigungsperson ermöglicht diese Massnahme, auf den Abstandhalter 24 einzuwirken bzw. zu drücken, um letzteren aus dem Sicherungsspalt 23 zu entfernen bzw. wegzudrücken, ohne dass zu diesem Zweck das Wandungsprofil des eingesetzten Abstandhalters 24 aus dem Wandungsprofil des Behälters 02 radial hervorragen müsste.As in Fig. 4a . 7 and 8a illustrated, the actuating handle 20 may have around its axis radially arranged radially arms 32 and recesses 33 formed therebetween. In these indentations 33 located in the securing gap 23 spacer 24 is accessible to the fingers of an operator. The operator allows this measure to act on the spacer 24 or press to remove the latter from the securing gap 23 or wegzudrücken without for this purpose the wall profile of the spacer used 24 would have to protrude radially from the wall profile of the container 02.

In Fig. 8a und 8b ist eine schmetterlingförmige Ausbildung des Abstandhalters 24' mit einer zentralen ringförmigen Fassung 34 und zwei daran angeordneten abbrechbaren Flügeln 35 dargestellt, wobei die axialen Wandungsprofile des (nicht dargestellten) Behälters, der Flügel 35 des Abstandhalters 24' (mit Wandungsprofil 30') und des Betätigungsgriffes 20 bzw. dessen Arme 32 in etwa übereinstimmen. Bei dieser Ausbildung ist vorgesehen, dass der Abstandhalter 24' an vorgesehenen Bruchstellen 36 davon und am Betätigungsgriff 20 vorbei vom Stössel 12 abgebrochen und davon entfernt werden kann. Zur Aktivierung der Druckdose ist dann der Betätigungsgriff 20 am Stössel 12 bis hin zum Einrasten in der Betätigungsposition zu drücken.In Fig. 8a and 8b a butterfly-shaped configuration of the spacer 24 'is shown with a central annular socket 34 and two breakable wings 35 disposed thereon, the axial wall profiles of the container (not shown), the wings 35 of the spacer 24' (with wall profile 30 ') and the actuating handle 20 and its arms 32 approximately agree. In this embodiment it is provided that the spacer 24 'can be broken off at intended break points 36 thereof and on the actuating handle 20 past the plunger 12 and removed therefrom. To activate the pressure cell then the operating handle 20 is to push the plunger 12 until it engages in the operating position.

In Fig. 9 ist eine radförmige Ausbildung des Abstandhalters 24" dargestellt. Der radförmige Abstandhalter 24" ist auf dem Stössel 12 zwischen dem bodenseitigen Ende des Behälters der Druckdose und dem Betätigungsgriff aufgesteckt, wobei die axialen Wandungsprofile des (nicht dargestellten) Behälters, des Abstandhalters 24" (mit Wandungsprofil 30") und des Betätigungsgriffes 20 bzw. dessen Arme 32 in etwa übereinstimmen. Bei dieser Ausbildung ist vorgesehen, dass sowohl der Betätigungsgriff 20 wie auch der Abstandhalter 24" vom Stössel 12 abnehmbar sind. Zur Aktivierung der Druckdose sind nacheinander der Betätigungsgriff 20 und der Abstandhalter 24" vom Stössel 12 abzunehmen, dann der Betätigungsgriff 20 (jetzt ohne den Abstandhalter 24") wieder auf den Stössel 12 aufzusetzen, und schliesslich der Betätigungsgriff 20 auf dem Stössel 12 bis hin zur Betätigungsposition 22 zu drücken.In Fig. 9 The wheel-shaped spacer 24 "is mounted on the plunger 12 between the bottom end of the container of the pressure cell and the operating handle, the axial wall profiles of the (not shown) container, the spacer 24" (with Wandungsprofil 30 ") and the actuating handle 20 and its arms 32 approximately match. In this embodiment it is provided that both the actuating handle 20 and the spacer 24 "are detachable from the plunger 12. To activate the pressure box, the actuating handle 20 and the spacer 24" are to be removed one after the other from the plunger 12, then the actuating handle 20 (now without the Spacer 24 ") again put on the plunger 12, and finally the operating handle 20 on the plunger 12 to push to the operating position 22.

In Fig. 10 ist eine splintförmige Ausbildung des Abstandhalters 24"' dargestellt, bei der ein länglicher Körper 37 des Abstandhalters 24"' am einen Ende mit einem Kopf 38 und am anderen Ende mir einer elastischen Gabel 39 versehen ist. Der splintförmige Abstandhalter 24"' steckt mit seinem Körper 37 in einer entsprechenden diametralen Durchgangsbohrung 40 des Stössels 12 und hält darin mit Hilfe der elastischen Gabel 39, wobei die axialen Wandungsprofile des (nicht dargestellten) Behälters, des Kopfes 38 des Abstandhalters 24"' (mit Wandungsprofil 30"') und des Betätigungsgriffes 20 bzw. dessen Arme 32 in etwa übereinstimmen. Bei dieser Ausbildung ist vorgesehen, dass zur Aktivierung der Druckdose der Abstandhalter 24 mit Hilfe seines als Griff dienenden Kopfes 38 aus dem Stössel 12 durch Wegziehen zu entfernen und danach der Betätigungsgriff 20 am Stössel 12 bis hin zum Einrasten in der Betätigungsposition 22 zu drücken ist. Gegebenenfalls kann (in einer nicht dargestellten Variante) am Kopf 38 des Abstandhalters 24'" zusätzlich eine als Griff, Lasche oder dergleichen ausgebildete Ausziehhilfe angeordnet sein, welche die Entfernung des Abstandhalters 24"' erleichtert.In Fig. 10 is a pin-shaped configuration of the spacer 24 '' shown, in which an elongated body 37 of the spacer 24 '' at one end with a head 38 and at the other end with an elastic fork 39 is provided. The pin-shaped spacer 24 "'is inserted with its body 37 in a corresponding diametrical through-bore 40 of the plunger 12 and holds therein by means of the elastic fork 39, wherein the axial wall profiles of the container (not shown), the head 38 of the spacer 24"' ( With this design it is provided that to activate the pressure cell, the spacer 24 with the help of his serving as a handle head 38 from the plunger 12 to remove by pulling away and Thereafter, the actuating handle 20 on the plunger 12 is to be pressed until it engages in the actuation position 22. Optionally (in a variant, not shown) on the head 38 of the spacer 24 '"additionally designed as a handle, tab or the like pull-out, which the removal of the spacer 24 "'facilitates.

BezugszeichenlisteLIST OF REFERENCE NUMBERS

AA
Achseaxis
0101
DruckdoseVacuum unit
0202
Behältercontainer
0303
abgabeseitiges Ende von 02tax end of 02
0404
Domcathedral
0505
bodenseitiges Ende von 02bottom end of 02
0606
Bodenground
0707
VentilValve
0808
Innenhülseinner sleeve
0909
bodenseitiges Ende von 08bottom end of 08
1010
domseitiges Ende von 08dom-end of 08
1111
Deckel für 08Cover for 08
1212
Stösseltappet
1313
innenseitiger Längenabschnitt von 12inside length section of 12
1414
aussenseitiger Längenabschnitt von 12outside length section of 12
1515
Übergangsstelle von 12Transition point of 12
1616
Aussengewindeexternal thread
1717
Innengewindeinner thread
1818
Bohrungdrilling
1919
GewindemutterteilThreaded nut part
2020
Betätigungsgriffoperating handle
2121
Sicherheitspositionsafety position
2222
Betätigungspositionoperating position
2323
Sicherungsspaltbackup gap
2424
Abstandhalterspacer
2525
Erhebungsurvey
2626
Vertiefungdeepening
2727
Bohrung in 20Bore in 20
2828
Nockencam
2929
Nutgroove
3030
Wandungsprofil von 24Wall profile of 24
3131
Klammerteilclamp part
3232
Arm von 20Arm of 20
3333
Einbuchtung in 20Indentation in 20
3434
Fassung von 24Version of 24
3535
Flügel von 24Wing of 24
3636
Bruchstellen von 24Cracks of 24
3737
Körper von 24Body of 24
3838
Kopf von 24Head of 24
3939
Gabel von 24Fork of 24
4040
Durchgangsbohrung in 12Through hole in 12th

Claims (11)

  1. A pressure can for dispensing a multi-component substance contained therein, particularly a multi-component substance for generating a layer that hardens upon coating of a substrate, wherein
    the pressure can (01) is configured as an oblong container (02) with a longitudinal axis (A) and with a dome (04) arranged at a dispensing sided end (03) thereof and with a base (06) arranged at the other end (05) thereof,
    a valve (07) for dispensing the multi-component substance is arranged at the dome coaxially to the container,
    an inner sleeve (08) is arranged within the container and coaxially thereto, which inner sleeve is attached at an axial end (09) thereof to the base and sealed against the same, whereas the other axial end (10) of the inner sleeve is freely arranged within the container and is tightly closed by a cap (11) that can snap off from the inner sleeve,
    an oblong tappet (12) is arranged coaxially to the container, the oblong tappet having an inner elongate section (13) arranged within the inner sleeve and an outer elongate section (14) arranged outside of the container, the tappet passing through the base at a transition region (15) between said elongate sections and being sealed against the base and consequently against the container, and also being held rotatably but not axially displaceable at the base and consequently against the container,
    the tappet is provided at least at one portion of its inner elongate section with an outer thread (16) that cooperates with a corresponding inner thread (17) of a borehole (18) of a threaded nut portion (19) that is displaceable against the inner sleeve, in order to axially displace the threaded nut portion upon rotation of the tappet and to remove the cap from the inner sleeve by cooperation of the tappet with the cap, and
    an operating knob (20) for rotating the tappet is coaxially attached to the outer elongate section of the tappet,
    characterized in that
    the operating knob (20) is axially displaceable with respect to the tappet (12) between a secured position (21) and an operating position (22), wherein
    in the secured position (21) the operating knob (20) is freely rotatable with respect to the tappet (12) whereas in the operating position (22) it is coupled with the tappet (12) in rotationally locked manner,
    in the operating position (22) the operating knob (20) is arranged in close axial proximity of the container (02), whereas in the secured position (21) the operating knob (20) is arranged axially displaced from the container (02) so that between the operating knob (20) in the secured position (21) and the container (02) there is a safety gap (23) around the tappet (12), and
    a spacer (24) that fits into the safety gap (23) is provided that can be inserted into the safety gap (23) for preventing a displacement of the operating knob (20) at the tappet (12) from the secured position (21) to the operating position (22) and that can be removed from the safety gap (23) for enabling said displacement.
  2. Pressure can according to claim 1, characterized in that the spacer (24) comprises a clamp portion (31) that is tightly clamped to the tappet (12) when the spacer is inserted into the safety gap (23)
  3. Pressure can according to claim 2, characterized in that the operating knob (20) has an axial wall profile that, seen in radial direction, approximately matches at least in certain portions with a wall profile of the container (02), but otherwise lies within the wall profile of the container and does not radially protrude from the wall profile of the container anywhere, wherein the spacer (24) arranged in the safety gap (23) has an axial wall profile (30) that, seen in radial direction, approximately matches at least in certain portions with a wall profile of the container (02) so that the spacer (24) arranged in the safety gap (23) is approximately flush with the container (02) and the operating knob (20) at least in certain portions thereof.
  4. Pressure can according to claim 3, characterized in that the operating knob (20) comprises radial arms (32) arranged in starlike manner around its axis (A) and recesses (33) formed therebetween (33) in which the spacer (24) arranged in the safety gap (23) is accessible for the fingers of an operating person, in order to enable the same to act on the spacer (24) so as to remove the same out of the safety gap (23).
  5. Pressure can according to claim 4, characterized in that the wall profile (30) of the spacer (24) arranged in the safety gap does not radially protrude from the wall profile of the container (02) anywhere.
  6. Pressure can according to claim 3, characterized in that the spacer (24) comprises an extraction aid configured as grip, strap or the like for facilitating the removal of the spacer out of the safety gap (23).
  7. Pressure can according to claim 1, characterized in that the operating knob (20) arranged in the operating position (22) is coupled in rotationally locked manner with the tappet (12) by means of a press fit.
  8. Pressure can according to claim 7, characterized in that the operating knob (20) upon being pressed onto towards the container (02) is displaceable to the operating position (22) while overcoming the friction of the press fit.
  9. Pressure can according to claim 1, characterized in that the operating knob (20) arranged in the operating position (22) is coupled in rotationally locked manner with the tappet (12) by cooperating of at least one elevation (25) with a corresponding recess (26), wherein the elevation and the recess are alternatingly arranged at the operating knob and the tappet.
  10. Pressure can according to any one of claims 7 to 9, characterized in that the displacement of the operating knob (20) from the secured position (21) to the operating position (22) is irreversible.
  11. Pressure can according to claim 10, characterized in that the irrreversibility is achieved by means of press fit between the operating knob (20) and the tappet (12).
EP05804249A 2004-12-28 2005-12-01 Pressurised dispenser for discharging a multi-component substance contained therein Not-in-force EP1836104B1 (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CH21572004 2004-12-28
PCT/CH2005/000716 WO2006069458A1 (en) 2004-12-28 2005-12-01 Pressurised dispenser for discharging a multi-component substance contained therein

Publications (2)

Publication Number Publication Date
EP1836104A1 EP1836104A1 (en) 2007-09-26
EP1836104B1 true EP1836104B1 (en) 2009-01-21

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Family Applications (1)

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EP05804249A Not-in-force EP1836104B1 (en) 2004-12-28 2005-12-01 Pressurised dispenser for discharging a multi-component substance contained therein

Country Status (4)

Country Link
EP (1) EP1836104B1 (en)
AT (1) ATE421471T1 (en)
DE (1) DE502005006557D1 (en)
WO (1) WO2006069458A1 (en)

Cited By (4)

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Publication number Priority date Publication date Assignee Title
US8504305B2 (en) 1998-12-17 2013-08-06 Hach Company Anti-terrorism water quality monitoring system
US8920619B2 (en) 2003-03-19 2014-12-30 Hach Company Carbon nanotube sensor
US8958917B2 (en) 1998-12-17 2015-02-17 Hach Company Method and system for remote monitoring of fluid quality and treatment
US9056783B2 (en) 1998-12-17 2015-06-16 Hach Company System for monitoring discharges into a waste water collection system

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
ITMI20150015U1 (en) * 2015-01-28 2016-07-28 Polycan Aerosols D O O AEROSOL CYLINDER WITH UNIDIRECTIONAL HANDLING DEVICE
KR200481197Y1 (en) * 2016-06-01 2016-08-26 박량호 Lid for cooking veseel
US11148872B2 (en) 2017-11-27 2021-10-19 Sika Technology Ag Two-component pressurized can

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Publication number Priority date Publication date Assignee Title
FR2105332A5 (en) * 1970-09-01 1972-04-28 Oreal
DE3322811C2 (en) * 1983-06-24 1996-12-12 Miczka Silvia Containers, in particular pressure cans for dispensing single or multi-component substances
DE3731365A1 (en) * 1987-09-18 1989-04-06 Wella Ag Aerosol container
GB9823029D0 (en) * 1998-10-22 1998-12-16 Giltech Ltd Packaging system
DE10114624B4 (en) * 2001-03-23 2006-05-04 Peter Kwasny Gmbh Pressure cell and its use for 2-component systems

Cited By (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US8504305B2 (en) 1998-12-17 2013-08-06 Hach Company Anti-terrorism water quality monitoring system
US8577623B2 (en) 1998-12-17 2013-11-05 Hach Company Anti-terrorism water quality monitoring system
US8958917B2 (en) 1998-12-17 2015-02-17 Hach Company Method and system for remote monitoring of fluid quality and treatment
US9015003B2 (en) 1998-12-17 2015-04-21 Hach Company Water monitoring system
US9056783B2 (en) 1998-12-17 2015-06-16 Hach Company System for monitoring discharges into a waste water collection system
US9069927B2 (en) 1998-12-17 2015-06-30 Hach Company Anti-terrorism water quality monitoring system
US9588094B2 (en) 1998-12-17 2017-03-07 Hach Company Water monitoring system
US8920619B2 (en) 2003-03-19 2014-12-30 Hach Company Carbon nanotube sensor
US9739742B2 (en) 2003-03-19 2017-08-22 Hach Company Carbon nanotube sensor

Also Published As

Publication number Publication date
ATE421471T1 (en) 2009-02-15
DE502005006557D1 (en) 2009-03-12
WO2006069458A1 (en) 2006-07-06
EP1836104A1 (en) 2007-09-26

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