EP3347138B1 - Dosiervorrichtung mit zwei pumpen - Google Patents

Dosiervorrichtung mit zwei pumpen Download PDF

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Publication number
EP3347138B1
EP3347138B1 EP16785183.1A EP16785183A EP3347138B1 EP 3347138 B1 EP3347138 B1 EP 3347138B1 EP 16785183 A EP16785183 A EP 16785183A EP 3347138 B1 EP3347138 B1 EP 3347138B1
Authority
EP
European Patent Office
Prior art keywords
outlet channel
dispenser
dispenser according
actuator rod
bearing elements
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.)
Active
Application number
EP16785183.1A
Other languages
English (en)
French (fr)
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EP3347138A1 (de
Inventor
Alex Milian
Yannick Pointel
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.)
Aptar France SAS
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Aptar France SAS
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Aptar France SAS filed Critical Aptar France SAS
Publication of EP3347138A1 publication Critical patent/EP3347138A1/de
Application granted granted Critical
Publication of EP3347138B1 publication Critical patent/EP3347138B1/de
Active legal-status Critical Current
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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05BSPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
    • B05B11/00Single-unit hand-held apparatus in which flow of contents is produced by the muscular force of the operator at the moment of use
    • B05B11/01Single-unit hand-held apparatus in which flow of contents is produced by the muscular force of the operator at the moment of use characterised by the means producing the flow
    • B05B11/10Pump arrangements for transferring the contents from the container to a pump chamber by a sucking effect and forcing the contents out through the dispensing nozzle
    • B05B11/1081Arrangements for pumping several liquids or other fluent materials from several containers, e.g. for mixing them at the moment of pumping
    • B05B11/1084Arrangements for pumping several liquids or other fluent materials from several containers, e.g. for mixing them at the moment of pumping each liquid or other fluent material being pumped by a separate pump

Definitions

  • the present invention relates to a dual dispenser comprising two tanks for different fluid products, two pumps and a common dispensing head, this common dispensing head comprising an outlet channel forming an outlet orifice, this outlet channel being supplied with the fluid products from the two pumps.
  • the preferred fields of application of the present invention are those of cosmetics and pharmacy, or even perfumery. See as an example DE3911089 .
  • FR2654016 describes a dual dispenser comprising a rotary shim which is movable above the actuating rod of one of the pumps to vary the depression of the actuating rod, and therefore the dose to be mixed with the dose expelled by the other pump.
  • the present invention does not aim to vary the dose dispensed by the pumps by acting on the stroke of one of the actuating rods, but rather to phase the distribution of the fluid products at the end of the stroke, so that a only fluid is dispensed through the dispenser orifice at the end of the dispensing phase.
  • the dispensing orifice is only in contact with a single fluid product outside of the dispensing phase, or else the dispenser orifice is only in contact with the two fluid products during the dispensing phases.
  • the present invention provides a dispenser as described in claim 1.
  • the two support elements travel, from the rest position of the common dispensing head, first an identical, symmetrical and synchronous path, then, when the second actuating rod having a short stroke has been fully depressed, the support elements begin to move by pivoting / rotation of the pivoting member, so that the support element associated with the first actuating rod having a long stroke continues its axial path until the first actuation rod is fully depressed.
  • the actuation forces of the two actuation rods are substantially or perfectly identical. Otherwise, it is necessary to provide axial guide means which allow identical, symmetrical and synchronous movement of the two support elements.
  • the two support elements are integral with the outlet channel. Even more preferably, the two support elements extend on either side of the outlet channel, advantageously symmetrically.
  • the outlet channel can for example be rectilinear over at least part of its length, and the two support elements can extend symmetrically in opposite directions from the channel.
  • the two support elements pivot around the outlet channel. This induces a slight rotation of the outlet channel on itself, since it acts as a pivot axis for the two support elements.
  • the pivoting member can comprise at least one thrust transmission zone, and advantageously two, so that an axial thrust exerted on this thrust transmission zone firstly causes the displacement translative of the two support elements and the outlet channel on the short stroke, then a slight rotation of the outlet channel on itself and the pivoting of the support elements to complete the long stroke.
  • the outlet channel and its two support elements first move translatively over the short stroke, then pivot around the point of contact of the support element which is in abutment at the level of the second actuation rod fully depressed.
  • the support element associated with the first actuating rod continues its downward movement, not in a translative manner, but on the contrary by describing an arc of circle whose radius corresponds to the spacing between the contact points of the two supporting elements.
  • the outlet channel also describes a slight arc, but of a smaller radius, namely half that of the supporting elements.
  • the common dispensing head comprises a cover which comes into bearing contact on the thrust transmission zones.
  • the outlet channel comprises a thrust transmission zone close to each of its ends.
  • the support elements extend substantially perpendicular to the outlet channel between the two thrust transmission zones.
  • the first actuating rod having the long stroke can be connected to the outlet channel closer to the dispensing orifice than the second actuating rod having the stroke short.
  • the fluid product from the first actuating rod (having a long stroke) will pass alone and lastly through the dispensing orifice during each dispensing phase, so that in the rest position, there is no 'There is only the fluid product from the first actuating rod at the dispensing orifice.
  • This is particularly advantageous when the fluid product from the second actuating rod is sensitive, "denaturable” or “deterioratable” in contact with air.
  • each actuating rod can be capped with a cap defining a support plate for its respective support element and a connection end piece receiving a flexible conduit which connects the outlet channel.
  • This cap can simply be force fitted onto the free end of the actuating rod.
  • the spirit of the invention resides on the principle of actuating the two pumps by means of a rotary member which first moves translatively on the stroke common to the two pumps, then then by rotation or pivoting to complete the actuation of the pump with the longest stroke.
  • one of the pumps will dispense the fluid product after the other pump at the end of the dispensing phase to expose the dispensing orifice, and a section of the outlet channel, only to a single fluid product, which will advantageously have stable properties. , disinfectant and / or bactericide.
  • FIG. 1 to 3 We will independently refer to Figures 1 to 3 to describe in detail the structure of a duo dispenser according to the invention capable of simultaneously dispensing two fluid products of different natures, textures and / or properties.
  • the entire dispenser will be described, with the exception of the two fluid product tanks containing the different fluid products.
  • An optional shell containing the two tanks is also not shown. In any case, the two tanks and the shell are not critical to the present invention, which is located at the top of the dispenser.
  • the dispenser of the invention comprises two pumps P1 and P2 each comprising a pump body P10 and P20 as well as two actuating rods P11 and P21 which are axially movable back and forth in their respective pump bodies P10 and P20 against a return spring not shown.
  • the actuating rods P11 and P21 which project upwards out of the bodies P10 and P20, can be moved to heights of different strokes, namely a long stroke for the actuating rod P11 and a shorter stroke for the rod P21.
  • the pumps P1 and P2 each define a pump chamber of identical or different volumes.
  • the actuating rods P11 and P21 may have a resistance which is substantially or perfectly identical to the penetration. Otherwise, it would be necessary to provide, within the framework of the invention, specific means to compensate for any difference in resistance to sinking of the two actuating rods.
  • Each pump P1, P2 also includes a fixing ring P12, P22 to mount the pump in a fixed and sealed manner on the neck of a respective reservoir (not shown).
  • the type of attachment is not critical to the present invention.
  • the dual dispenser of the invention also includes a bezel 3 defining two receiving housings 3P1 and 3P2, respectively for the pumps P1 and P2.
  • the fixing rings P12 and P22 are received with a tight fit inside the two receiving housings 3P1 and 3P2, in order to lock the rings on the necks of the tanks.
  • the bezel 3 can cooperate with a shell (not shown) in which the two tanks (not shown) are received.
  • the dual dispenser of the invention also includes two caps C1 and C2 which respectively cover the free ends of the actuating rods P11 and P21, as can be seen on the figure 2 .
  • the caps C1 and C2 may be identical, or slightly different, for example to adapt to actuating rods of different diameters.
  • Each cap C1, C2 comprises a support plate C11, C21 as well as a lateral connection endpiece C12, C22. This connection endpiece communicates directly with the actuation rods P11, P21, so that the fluid products discharged through the actuation rods reach its two connection ends C12, C22.
  • the support plates C11, C21 extend substantially perpendicular to the axis of movement of the actuating rods P11, P21.
  • each support plate is partially surrounded by a notched crown C13, C23.
  • the dual dispenser of the invention also comprises a pivoting member 1, which can advantageously be made in one piece.
  • This pivoting member 1 comprises an outlet channel 10, which here has a straight configuration.
  • This outlet channel 10 is closed at one of its ends and defines at its other end an opening 12 in which is embedded a nozzle 13 which defines a dispensing orifice 14.
  • the fluid which arrives in the outlet channel 10 exits through the dispensing orifice 14 of the nozzle 13 which closes the opening 12.
  • the two ends of the channel 10 are reinforced so as to define two zones of thrust transmission 11, as will be explained below.
  • the outlet channel 10 comprises two connection end pieces 16, 17 which each receive a flexible conduit 18, 19 respectively connected to the connection end pieces C12, C22 of the two caps C1 and C2.
  • the flexible conduits 18 and 19 can be embedded in the end pieces 16, 17, C12 and C22, or, as a variant, be made in one piece either with the pivoting member 1, or with the caps C1 and C2.
  • the fluid product coming from the pump P2 must on the contrary travel through the whole the length of the duct of the outlet channel 10.
  • the pivoting member 1 also forms two support elements 1C1 and 1C2 which extend perpendicular to the outlet channel 10 in a symmetrical and opposite manner.
  • the outlet channel 10 and the two support elements 1C1 and 1C2 have an overall configuration in the form of a cross. Therefore, the two support elements 1C1 and 1C2 are integral with one another via the outlet channel 10.
  • Each support element is in the form of an elongated tab which defines its free end, a support head 15 which is oriented downwards, and which comes into contact with the support plate C11, C21 of the caps C1, C2, as shown in the figure 2 .
  • the support elements 1C1 and 1C2 extend through the notches of the notched crowns C13 and C23 to allow their respective support heads 15 to come into contact with the support plates C11, C21.
  • support heads 15 extend in the extension of the actuating rods P11, P21. It can also be noted that the support elements 1C1 and 1C2 are connected to the outlet channel 10 substantially halfway between the two thrust transmission zones 11 situated at the two opposite ends of the channel 10.
  • the dual dispenser of the invention also comprises a cover 2, here of oval shape, which defines an upper support surface 21 as well as a peripheral skirt 22 which is pierced with a hole 23 which will come opposite the nozzle 13
  • the cover 2 also comprises a retaining socket 24 in which the cap C1 is received fixedly.
  • the cover 2 also includes a guide sleeve 25 which surrounds the cap C2, allowing it to slide inside.
  • the skirt 22 of the cover 2 extends around the bezel 3, so as to completely hide the caps C1, C2 as well as the distribution and support member 1.
  • the two caps C1 and C2, the pivoting member 1 and the cover 2 together form a head for dispensing fluid products, which is common to the two pumps P1 and P2.
  • the distributor is in its rest configuration, with the two actuating rods P11 and P21 in their extended position as far as possible outside their respective pump bodies P10, P20.
  • the two support plates C11 and C21 are located substantially or perfectly at the same height. It is obviously the same for the two support heads 15 of the two support elements 1C1 and 1C2.
  • the underside of the bearing surface 21 of the cover 2 is in contact with the outlet channel 10 at the two thrust transmission zones 11. From this rest position, the user can press using one or more fingers on the bearing surface 21 of the cover 2 with a sufficient pushing force to move the cover 2 towards the bezel 3. The thrust thus exerted on the cover 2 is transmitted to the outlet channel 10 at these two thrust transmission zones 11.
  • the thrust force is transmitted through the two thrust elements 1C1 and 1C2 to the support heads 15 which are in pressed contact on the support plates C11 and C21.
  • the thrust is then transmitted to the actuating rods P11 and P21, which are forced to sink inside their respective pump bodies P10 and P20. Because the actuating rods P11 and P21 have an identical or almost identical penetration resistance, and because the support elements 1C1 and 1C2 are symmetrically identical, the two actuating rods P11 and P21 sink simultaneously until the actuating rod P21, which has the smallest stroke, is fully depressed. This intermediate and instantaneous position is represented on the figure 4 .
  • the two actuating rods P11 and P21 then performed the same stroke, namely the short stroke which is the maximum stroke of the actuating rod P21.
  • the different fluid products from the two pumps P1 and P2 were then routed simultaneously in parallel through their respective actuating rods P11, P21, their respective caps C1, C2, their respective flexible conduits 18, 19 to reach the channel. outlet 10 or the two fluid products are mixed before being dispensed through the single common dispensing orifice 14. Simultaneous dispensing of the two fluid products took place in the rest configuration of the figure 2 up to the intermediate configuration of the figure 4 .
  • the pump P1 alone distributes fluid product at the end of the dispensing phase eliminates the fluid product from the pump P2 when the distributor is in the rest position.
  • the fluid product from the pump P2 is present at the distribution orifice 14 only during the distribution phase, and again, not in its entirety, since at the end of the distribution phase only the product from the pump P1 passes through the dispensing orifice 14.
  • the fluid product from the pump P1 is injected into the outlet channel 10 near the nozzle 13, at the connection end piece 16, as can be seen on the figure 3 . This implies that a very small amount of fluid from the pump P1 is sufficient to remove the fluid from the pump P2 at the dispensing orifice 14, at the end of the dispensing phase.
  • the fluid product from the pump P2 fills almost all of the outlet channel 10, with the exception of its end close to the nozzle 13.
  • the dual dispenser of the present invention is particularly advantageous for the distribution of two fluid products of different natures and / or properties.
  • the fluid product dispensed by the pump P2 can be a sensitive or easily degradable fluid product
  • the fluid product dispensed by the pump P1 can be a more stable, more resistant fluid product or even having bactericidal or disinfectant properties.
  • the dispensing orifice 14 is cleaned by passing a tiny dose of alcoholic solution which ensures perfect cleanliness of the nozzle 13.
  • a dual dispenser is available, the dispensing orifice of which cannot be the seat of a proliferation of microbes or bacteria, which could be harmful to the fluid products dispensed or even to the user.

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  • Containers And Packaging Bodies Having A Special Means To Remove Contents (AREA)
  • Basic Packing Technique (AREA)

Claims (10)

  1. Dosiervorrichtung mit zwei Pumpen (P1, P2), die mit zwei Behältern für unterschiedliche Flüssigprodukte verbunden sind, und einem gemeinsamen Spenderkopf, wobei dieser gemeinsame Spenderkopf einen Ausgangskanal (10) aufweist, der eine Abgabeöffnung (14) bildet, wobei diesem Ausgangskanal (10) die aus den beiden Pumpen (P1, P2) austretenden Flüssigprodukte zugeführt werden,
    dadurch gekennzeichnet, dass
    - die beiden Pumpen (P1, P2) Betätigungsstangen (P11, P21) umfassen, die über unterschiedlich lange Hübe axial verschiebbar sind, d.h. eine erste Betätigungsstange (P11) über einen langen Hub und eine zweite Betätigungsstange (P21) über einen kurzen Hub,
    - der gemeinsame Spenderkopf ein schwenkbares Element (1) umfasst, das zwei bewegungseinheitlich miteinander verbundene Stützelemente (1C1, 1C2) zur gleichzeitigen Verschiebung der beiden Betätigungsstangen (P11, P21) über eine dem kurzen Hub entsprechende axiale Höhe bildet,
    - die Stützelemente (1C1, 1C2) dann ihre jeweilige Bewegung durch Schwenken/Drehen des schwenkbaren Elements (1) um das Stützelement (1C2) herum fortsetzen, das dadurch in seiner Position verriegelt ist, dass die zweite Betätigungsstange (P21) bereits vollständig niedergedrückt ist, so dass das Stützelement (1C1), das der ersten Betätigungsstange (P11) mit einem langen Hub zugeordnet ist, seinen axialen Weg fortsetzt, bis die erste Betätigungsstange (P11) vollständig niedergedrückt ist.
  2. Dosiervorrichtung nach Anspruch 1, bei der die beiden Stützelemente (1C1, 1C2) fest mit dem Ausgangskanal (10) verbunden sind.
  3. Dosiervorrichtung nach Anspruch 1 oder 2, bei der die beiden Stützelemente (1C1, 1C2) beidseitig des Ausgangskanals (10), vorzugsweise symmetrisch, verlaufen.
  4. Dosiervorrichtung nach einem der vorhergehenden Ansprüche, bei der die beiden Stützelemente (1C1, 1C2) um den Ausgangskanal (10) herum schwenkbar sind.
  5. Dosiervorrichtung nach einem der vorhergehenden Ansprüche, bei der das schwenkbare Element (1) mindestens einen Schubübertragungsbereich (11) aufweist, so dass ein auf diesen Schubübertragungsbereich (11) ausgeübter Axialschub zunächst die translatorische Verschiebung der beiden Stützelemente (1C1, 1C2) und des Ausgangskanals (10) über den kurzen Hub, dann eine leichte Drehung des Ausgangskanals (10) um sich selbst herum und das Schwenken der Stützelemente (1C1, 1C2) zur Beendigung des langen Hubs bewirkt.
  6. Dosiervorrichtung nach Anspruch 5, bei der der gemeinsame Spenderkopf eine Kappe (2) aufweist, die mit den Schubübertragungsbereichen (11) in Anlagekontakt kommt.
  7. Dosiervorrichtung nach Anspruch 6, bei der der Ausgangskanal (10) einen Schubübertragungsbereich in der Nähe jedes seiner Enden aufweist.
  8. Dosiervorrichtung nach Anspruch 7, bei der die Stützelemente (1C1, 1C2) im Wesentlichen senkrecht zum Ausgangskanal (10) zwischen den beiden Schubübertragungsbereichen (11) verlaufen.
  9. Dosiervorrichtung nach einem der vorhergehenden Ansprüche, bei der die erste Betätigungsstange (P11) mit dem langen Hub näher an der Abgabeöffnung (14) mit dem Ausgangskanal (10) verbunden ist als die zweite Betätigungsstange (P21) mit dem kurzen Hub.
  10. Dosiervorrichtung nach einem der vorhergehenden Ansprüche, bei der auf jeder Betätigungsstange (P11, P21) eine Kappe (C1, C2), die eine Auflageplatte (C11, C21) für ihr jeweiliges Stützelement (1C1, 1C2) definiert, und ein Anschlussstutzen (C12, C22), der eine flexible Leitung (18, 19) aufnimmt, die mit dem Ausgangskanal (10) verbunden ist, angebracht ist.
EP16785183.1A 2015-09-09 2016-09-08 Dosiervorrichtung mit zwei pumpen Active EP3347138B1 (de)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
FR1558351A FR3040639B1 (fr) 2015-09-09 2015-09-09 Distributeur duo
PCT/FR2016/052240 WO2017042492A1 (fr) 2015-09-09 2016-09-08 Distributeur duo.

Publications (2)

Publication Number Publication Date
EP3347138A1 EP3347138A1 (de) 2018-07-18
EP3347138B1 true EP3347138B1 (de) 2020-05-27

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
EP16785183.1A Active EP3347138B1 (de) 2015-09-09 2016-09-08 Dosiervorrichtung mit zwei pumpen

Country Status (4)

Country Link
US (1) US10335818B2 (de)
EP (1) EP3347138B1 (de)
FR (1) FR3040639B1 (de)
WO (1) WO2017042492A1 (de)

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CN112351765B (zh) 2018-06-29 2023-09-19 宝洁公司 双相产品
EP3813768A2 (de) 2018-06-29 2021-05-05 The Procter & Gamble Company Zweiphasenprodukte
KR20210008861A (ko) 2018-06-29 2021-01-25 더 프록터 앤드 갬블 캄파니 이중상 제품
JP7148646B2 (ja) 2018-06-29 2022-10-05 ザ プロクター アンド ギャンブル カンパニー 二相製品
JP7258040B2 (ja) 2018-10-31 2023-04-14 株式会社 資生堂 噴出容器
CN114080359B (zh) 2019-07-09 2023-07-04 宝洁公司 多组合物产品分配器
KR20220007739A (ko) * 2019-07-09 2022-01-18 더 프록터 앤드 갬블 캄파니 다중-조성물 제품 분배기
JP1665824S (de) 2019-08-21 2020-08-11
US11497703B2 (en) 2019-08-30 2022-11-15 The Procter & Gamble Company Packaged hair care composition
US11752074B2 (en) 2020-10-27 2023-09-12 The Procter & Gamble Company Warming conditioner
USD1006632S1 (en) 2020-12-11 2023-12-05 The Procter & Gamble Company Container for hair care products
USD1012718S1 (en) 2020-12-21 2024-01-30 The Procter & Gamble Company Container for hair care product
FR3132651A1 (fr) * 2022-02-14 2023-08-18 Mbf Plastiques Distributeur de produit fluide
WO2023152456A1 (fr) * 2022-02-14 2023-08-17 Mbf Plastiques Distributeur de produit fluide

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Also Published As

Publication number Publication date
EP3347138A1 (de) 2018-07-18
US20180243770A1 (en) 2018-08-30
FR3040639A1 (fr) 2017-03-10
WO2017042492A1 (fr) 2017-03-16
US10335818B2 (en) 2019-07-02
FR3040639B1 (fr) 2020-01-03

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