EP1714707B1 - Refillable foam pump - Google Patents

Refillable foam pump Download PDF

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Publication number
EP1714707B1
EP1714707B1 EP20060290460 EP06290460A EP1714707B1 EP 1714707 B1 EP1714707 B1 EP 1714707B1 EP 20060290460 EP20060290460 EP 20060290460 EP 06290460 A EP06290460 A EP 06290460A EP 1714707 B1 EP1714707 B1 EP 1714707B1
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EP
European Patent Office
Prior art keywords
pump
foam
liquid
needle
container
Prior art date
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Not-in-force
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EP20060290460
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German (de)
French (fr)
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EP1714707A3 (en
EP1714707A2 (en
Inventor
Francis Poizot
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Individual
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Individual
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Publication of EP1714707A3 publication Critical patent/EP1714707A3/en
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Publication of EP1714707B1 publication Critical patent/EP1714707B1/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05BSPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
    • B05B7/00Spraying apparatus for discharge of liquids or other fluent materials from two or more sources, e.g. of liquid and air, of powder and gas
    • B05B7/0018Spraying apparatus for discharge of liquids or other fluent materials from two or more sources, e.g. of liquid and air, of powder and gas with devices for making foam
    • B05B7/0025Spraying apparatus for discharge of liquids or other fluent materials from two or more sources, e.g. of liquid and air, of powder and gas with devices for making foam with a compressed gas supply
    • B05B7/0031Spraying apparatus for discharge of liquids or other fluent materials from two or more sources, e.g. of liquid and air, of powder and gas with devices for making foam with a compressed gas supply with disturbing means promoting mixing, e.g. balls, crowns
    • B05B7/0037Spraying apparatus for discharge of liquids or other fluent materials from two or more sources, e.g. of liquid and air, of powder and gas with devices for making foam with a compressed gas supply with disturbing means promoting mixing, e.g. balls, crowns including sieves, porous members or the like
    • 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
    • B05B11/04Deformable containers producing the flow, e.g. squeeze bottles
    • B05B11/042Deformable containers producing the flow, e.g. squeeze bottles the spray being effected by a gas or vapour flow in the nozzle, spray head, outlet or dip tube
    • B05B11/043Deformable containers producing the flow, e.g. squeeze bottles the spray being effected by a gas or vapour flow in the nozzle, spray head, outlet or dip tube designed for spraying a liquid
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05BSPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
    • B05B7/00Spraying apparatus for discharge of liquids or other fluent materials from two or more sources, e.g. of liquid and air, of powder and gas
    • B05B7/0018Spraying apparatus for discharge of liquids or other fluent materials from two or more sources, e.g. of liquid and air, of powder and gas with devices for making foam
    • B05B7/0025Spraying apparatus for discharge of liquids or other fluent materials from two or more sources, e.g. of liquid and air, of powder and gas with devices for making foam with a compressed gas supply
    • B05B7/0031Spraying apparatus for discharge of liquids or other fluent materials from two or more sources, e.g. of liquid and air, of powder and gas with devices for making foam with a compressed gas supply with disturbing means promoting mixing, e.g. balls, crowns

Definitions

  • the present invention relates to the field of foam pumps, the foam being produced by a liquid base substance placed in a tank, the pump being held by hand and producing foam during manual pressure exerted on the tank. It relates more particularly to the manufacturer of foam pumps from a mixture of air with a foaming liquid product.
  • the patent application WO 2004/078359 deposited by AIRSPRAY, describes a foam pump whose foam projection head is movable in a vertical translation, a pressure on the movable head causing a foam projection.
  • a system of return by a spring allows the head to rise automatically. Inside the pump, raising the head causes the loading of a dose of liquid product and a dose of air from the environment. The support on the head then causes the expulsion of the liquid product emulsified with air, by the mixer.
  • this system makes it possible to deliver, at each support, a dose of foam calibrated according to the dimensions of the pump.
  • the US Patent 4,156,505 discloses a foam producing system for eliminating fouling and providing a constant amount of foam at each use regardless of the time between each use.
  • the US Patent 3,973,701 discloses a foam pump for rapid and repeated cycle production without the residual foam in the pump interfering with the air inlet.
  • the present invention therefore aims to overcome one or more disadvantages of the prior art by creating a system for varying the amount of foam produced, while controlling the quality, and can be recharged by the user, the system Foam production is simple to manufacture and robust.
  • the shutter valve is diaphragm.
  • the dip tube has a constriction at its end immersed in the liquid.
  • the foam forming elements consist of two grids of dimensions and shape adapted to the outlet passage and spaced from one another by a perforated cylinder.
  • the cylindrical sheath is connected at its opposite end to the dispensing orifice to the dip tube.
  • the device comprises an additional grid at the dispensing orifice.
  • the foam-forming element may be constituted by a succession of rigid wires distributed in a cylindrical space and held together by a central element to give a brush shape.
  • the cover (3) comprises a plurality of functional elements including a connecting element (17) between the cover (3) and the end piece (2), a duct chamber (12) communicating on the one hand with an outlet (18) and on the other hand with the opening (11) for dispensing the foam, as well as bumps (15) closing the orifices.
  • a device for forming the foam inside the tank (1, 2) comprises a mixer (6) opening onto the opening (11) for dispensing the foam.
  • the mixer (6) is connected to a pipe (5) immersed in liquid (9).
  • the mixer (6) is composed, inter alia, in a nonlimiting manner, of air inlets (13), sieve grids (7a, 7b), a needle (14) and a stop (16). ) of the needle.
  • a membrane (4) is located inside the tank (1, 2) vis-à-vis the air inlets (10) and rests on a holding device (22) when it is not not asked. Without limitation, the membrane (4) is made by a single annular piece.
  • the bottle (1) When the user releases the pressure on the deformable bottle (1), thanks to the elastic properties of the material, the bottle (1) returns to its initial shape causing an aspiration of air.
  • the membrane (4) which controls the air supply duct (10) will be pushed back, thus releasing the air inlet opening (10) into the tank (1, 2).
  • the tank (1, 2) then fills with ambient air.
  • a new pressure of the user again causes the production of foam.
  • the pump operates while being held in place by the user.
  • the fact of producing the foam by manual pressure on the deformable bottle (1) makes it possible to control the quality of foam. Indeed the foam has a different consistency depending on whether the user presses hard or soft. Moreover, depending on whether the user presses for a long time or for a short period of time, the quantity of foam produced is different.
  • the amount of foam produced is not unlimited but a tank (1, 2) of large capacity allows to expel a large amount of air and foaming product to produce a large amount of foam.
  • the bottle mouthpiece (2) fits onto a deformable bottle (1) by hermetically sealingly attaching it to a seal (21) at the circular opening (20) of the deformable bottle (1).
  • a particular embodiment of the mixer is represented in figure 2 .
  • the conical mixer (6) is clamped in the nozzle (2).
  • Air entrances (13) are arranged between plastic blades (23), represented by hatched elements.
  • the blades (23) make the connection between the two grids (7a, 7b) sieving.
  • the needle (14) is limited in its displacement height by the stop (16) and the conical shape of the head of the needle closes the arrival of the pipe (19) which also has a conical shape.
  • the air present in the tank (1, 2) can thus be introduced into the mixer (6) through the openings (13).
  • the pipe (5) immersed in the liquid is composed of several parts of pipe, of different diameter, nested in each other to retain the product along the conduit.
  • the pipe (5) is for example fixed to the mixer by tight fitting, to be easily removable and changeable.
  • longer or shorter pipes will be adapted to more or less deep deformable vials (1).
  • the lower end of the pipe opens at the base of the vial (1) deformable.
  • the pump remains functional as long as the pipe (5) is immersed in the liquid (9).
  • the deformable bottle (1) of the pump is designed to be removed from the mouthpiece (2) of the bottle.
  • the deformable bottle (1) comprises for example a rigid ring at its circular opening so that the tip (2) bottle can snap on.
  • the user can fill it with liquid product (9) base.
  • the pump is thus rechargeable by the user.
  • a nonlimiting embodiment comprising a horizontal mark of maximum filling on the tank showing the level of the product by transparency, or inside the tank.
  • the cover (3) can move vertically relative to the tip (2), by a helical connection (17). In a high position of the cover (3), the foam pump is used as described above and in a low position of the cover (3), it closes the air supply ducts and expulsion of the foam .
  • the bumps (15) of the cover (3) are each equidistant from the opening vis-à-vis, so that each opening is closed in the low position of the cover.
  • the cover (3) is in sliding pivot connection with the tip (2) of the bottle and the low position of the cover (3) relative to the mouthpiece (2) of the bottle is maintained by a interlocking system, replacing the helical connection.
  • a utensil is added at the foam spraying head.
  • the utensil is for example a plastic grid that filters the foam produced to change the consistency of the foam.
  • Another example of a device is a cross which separates the jet of foam for example into four smaller jets. The invention thus allows adjustments to produce quantities but also different foam consistencies according to the accessories used or added.

Description

La présente invention concerne le domaine des pompes à mousse, la mousse étant produite par une substance liquide de base placée dans un réservoir, la pompe se tenant à la main et produisant de la mousse lors d'une pression manuelle exercée sur le réservoir. Elle concerne plus particulièrement les pompes fabricant de la mousse à partir d'un mélange d'air avec un produit liquide moussant.The present invention relates to the field of foam pumps, the foam being produced by a liquid base substance placed in a tank, the pump being held by hand and producing foam during manual pressure exerted on the tank. It relates more particularly to the manufacturer of foam pumps from a mixture of air with a foaming liquid product.

La demande de brevet WO 2004/078359 , déposé par AIRSPRAY, décrit une pompe à mousse dont la tête de projection de la mousse est mobile selon une translation verticale, une pression sur cette tête mobile provoquant une projection de mousse. Un système de rappel par un ressort permet à la tête de remonter automatiquement. A l'intérieur de la pompe, la remontée de la tête provoque le chargement d'une dose de produit liquide et d'une dose d'air provenant du milieu ambiant. L'appui sur la tête provoque ensuite l'expulsion du produit liquide émulsifié avec de l'air, par le mélangeur. Cependant ce système permet de ne délivrer, à chaque appui, qu'une dose de mousse calibrée suivant les dimensions de la pompe.The patent application WO 2004/078359 , deposited by AIRSPRAY, describes a foam pump whose foam projection head is movable in a vertical translation, a pressure on the movable head causing a foam projection. A system of return by a spring allows the head to rise automatically. Inside the pump, raising the head causes the loading of a dose of liquid product and a dose of air from the environment. The support on the head then causes the expulsion of the liquid product emulsified with air, by the mixer. However, this system makes it possible to deliver, at each support, a dose of foam calibrated according to the dimensions of the pump.

Il existe d'autres systèmes de production de mousse, tels que décrit par le brevet WO 93/13829 déposé par AIRSPRAY. Ce type de système comprend au moins deux réservoirs, au moins un réservoir pour le produit liquide se mélangeant avec l'air et au moins un réservoir contenant de l'air comprimé. Ce système délivre de la mousse lorsqu'un utilisateur appuie sur la tête de projection, la quantité de mousse étant définie par la durée de l'appui. Cependant, ce système nécessite l'intégration d'un réservoir en air comprimé, qui complique le montage. De plus ce type de système ne peut pas être rechargé.There are other systems for producing foam, as described by the patent WO 93/13829 filed by AIRSPRAY. This type of system comprises at least two tanks, at least one tank for the liquid product mixing with the air and at least one tank containing compressed air. This system delivers foam when a user presses the projection head, the amount of foam being defined by the duration of the support. However, this system requires the integration of a tank of compressed air, which complicates the assembly. In addition, this type of system can not be reloaded.

Le brevet US 4 147 306 décrit un système de production de mousse pour prévenir le désamorçage de la pompe après que le système a été placé tête à l'envers. Le brevet US-4 147 306 décrit le préambule de la revendication 1.The US Patent 4,147,306 describes a foam production system to prevent defusing of the pump after the system has been placed upside down. The U.S. Patent No. 4,147,306 describes the preamble of claim 1.

Le brevet US 4 156 505 décrit un système de production de mousse permettant d'éliminer l'encrassement et d'assurer une quantité constante de mousse à chaque utilisation indépendamment du temps entre chaque utilisation.The US Patent 4,156,505 discloses a foam producing system for eliminating fouling and providing a constant amount of foam at each use regardless of the time between each use.

Le brevet US 3 973 701 décrit une pompe de production de mousse pour une production en cycles rapides et répétés sans que la mousse résiduelle dans la pompe ne gène l'entrée d'air.The US Patent 3,973,701 discloses a foam pump for rapid and repeated cycle production without the residual foam in the pump interfering with the air inlet.

La présente invention a donc pour objet de palier un ou plusieurs des inconvénients de l'art antérieur en créant un système permettant de faire varier la quantité de mousse produite, tout en contrôlant la qualité, et pouvant être rechargée par l'utilisateur, le système de production de mousse étant simple à fabriquer et robuste.The present invention therefore aims to overcome one or more disadvantages of the prior art by creating a system for varying the amount of foam produced, while controlling the quality, and can be recharged by the user, the system Foam production is simple to manufacture and robust.

Cet objectif est atteint par une pompe à mousse rechargeable selon la revendication 1.This objective is achieved by a rechargeable foam pump according to claim 1.

Selon une autre particularité, le clapet obturateur est à membrane.According to another feature, the shutter valve is diaphragm.

Selon une autre particularité, le tube plongeur comporte un resserrement à son extrémité plongeant dans le liquide.According to another feature, the dip tube has a constriction at its end immersed in the liquid.

Selon une autre particularité, les éléments de formation de mousse sont constitués de deux grilles de dimensions et de forme adaptés au passage de sortie et espacée l'une de l'autre par un cylindre ajouré.According to another feature, the foam forming elements consist of two grids of dimensions and shape adapted to the outlet passage and spaced from one another by a perforated cylinder.

Selon une autre particularité, le fourreau cylindrique est relié par son extrémité opposée à l'orifice de distribution au tube plongeur.According to another feature, the cylindrical sheath is connected at its opposite end to the dispensing orifice to the dip tube.

Selon une autre particularité, le dispositif comporte une grille supplémentaire au niveau de l'orifice de distribution.According to another feature, the device comprises an additional grid at the dispensing orifice.

Selon une autre particularité, l'élément de formation de mousse peut être constitué par une succession de fils rigides répartis dans un espace cylindrique et maintenu entre eux par un élément central pour donner une forme de goupillon.According to another feature, the foam-forming element may be constituted by a succession of rigid wires distributed in a cylindrical space and held together by a central element to give a brush shape.

Selon une autre particularité, des bosses (15) viennent boucher hermétiquement le réservoir au niveau des orifices (10) d'entrée d'air dans le réservoir.According to another feature, bumps (15) seal the tank hermetically at the air inlet orifices (10) in the tank.

Selon une autre particularité, le réservoir est composé de deux parties, une partie rigide et une partie souple, la partie rigide s'adaptant sur des parties souples de volumes différents.According to another feature, the reservoir is composed of two parts, a rigid part and a flexible part, the rigid part fitting on flexible parts of different volumes.

L'invention, ses caractéristiques et ses avantages apparaîtront plus clairement à la lecture de la description faite en référence aux figures référencées ci-dessous :

  • La figure 1 représente un exemple de réalisation de la pompe.
  • La figure 2 représente un exemple de réalisation du système de fabrication de la mousse.
The invention, its characteristics and its advantages will appear more clearly on reading the description made with reference to the figures referenced below:
  • The figure 1 represents an embodiment of the pump.
  • The figure 2 represents an embodiment of the foam manufacturing system.

L'invention va à présent être décrite en référence aux figures 1 et 2. Un flacon déformable (1) étanche comprend une ouverture circulaire (20) sur laquelle est lié un embout (2) de flacon. Une liaison étanche entre l'embout (2) et le flacon (1) est réalisée par un dispositif (21) d'étanchéité. L'embout (2) comprend des orifices (10) pour l'entrée d'air dans le réservoir et une ouverture (11) de distribution de la mousse. De manière non limitative, la pompe ne comporte pas d'autre passage entre l'intérieur du réservoir et le milieu extérieur. Un capot (3) est monté sur l'embout (2) de flacon. Le capot (3) comporte plusieurs éléments fonctionnels dont un élément de liaison (17) entre le capot (3) et l'embout (2), une chambre (12) de conduit, communicant d'une part avec une sortie (18) et d'autre part avec l'ouverture (11) de distribution de la mousse, ainsi que des bosses (15) de fermeture des orifices. Un dispositif de formation de la mousse à l'intérieur du réservoir (1, 2) comprend un mélangeur (6) débouchant sur l'ouverture (11) de distribution de la mousse. Le mélangeur (6) est en liaison avec un tuyau (5) plongeant dans du liquide (9). Le mélangeur (6) est composé, entre autres, de manière non limitative, d'arrivées d'air (13), de grilles (7a, 7b) de tamisage, d'un pointeau (14) et d'une butée (16) de pointeau. Une membrane (4) est située à l'intérieur du réservoir (1, 2) en vis-à-vis des orifices (10) d'arrivée en air et repose sur un dispositif de maintien (22) lorsqu'elle n'est pas sollicité. De manière non limitative, la membrane (4) est réalisée par une pièce annulaire unique.The invention will now be described with reference to figures 1 and 2 . A deformable vial (1) sealed comprises a circular opening (20) to which is attached a tip (2) vial. A tight connection between the tip (2) and the bottle (1) is formed by a sealing device (21). The tip (2) comprises orifices (10) for the entry of air into the reservoir and an opening (11) for dispensing the foam. Without limitation, the pump has no other passage between the inside of the tank and the outside environment. A cover (3) is mounted on the tip (2) vial. The cover (3) comprises a plurality of functional elements including a connecting element (17) between the cover (3) and the end piece (2), a duct chamber (12) communicating on the one hand with an outlet (18) and on the other hand with the opening (11) for dispensing the foam, as well as bumps (15) closing the orifices. A device for forming the foam inside the tank (1, 2) comprises a mixer (6) opening onto the opening (11) for dispensing the foam. The mixer (6) is connected to a pipe (5) immersed in liquid (9). The mixer (6) is composed, inter alia, in a nonlimiting manner, of air inlets (13), sieve grids (7a, 7b), a needle (14) and a stop (16). ) of the needle. A membrane (4) is located inside the tank (1, 2) vis-à-vis the air inlets (10) and rests on a holding device (22) when it is not not asked. Without limitation, the membrane (4) is made by a single annular piece.

Les orifices (10) d'arrivée d'air sont combinés avec un dispositif de blocage, comme par exemple une membrane, pour permettre à l'air de circuler uniquement dans le sens d'une aspiration de l'extérieur vers l'intérieur du réservoir. Dans l'exemple non limitatif de réalisation représenté sur la figure1, la membrane (4), disposée en face des orifices (10), laisse passer l'air dans le cas d'une aspiration et bloque l'air, si l'air sort du réservoir (1, 2). Lorsque la pression à l'intérieur du réservoir (1, 2) est supérieure à la pression à l'extérieur, un courant d'air sortant par les ouvertures (10) débute. Selon le phénomène physique d'aspiration, la membrane (4h) se plaque alors contre les ouvertures (10). La pression dans le réservoir maintient alors la membrane contre l'ouverture et une propriété élastique du matériau permet à la membrane (4) de réaliser l'étanchéité et d'empêcher la circulation de l'air vers l'extérieur du flacon.The air intake ports (10) are combined with a blocking device, such as a membrane, to allow air to circulate only in the direction of suction from the outside to the inside of the vehicle. tank. In the nonlimiting example of embodiment represented on the figure 1 , the diaphragm (4), disposed opposite the orifices (10), allows the air to pass in the case of suction and blocks the air, if the air comes out of the tank (1, 2). When the pressure inside the tank (1, 2) is greater than the outside pressure, a stream of air exiting through the openings (10) begins. According to the physical phenomenon of suction, the membrane (4h) is then plate against the openings (10). The pressure in the reservoir then holds the membrane against the opening and an elastic property of the material allows the membrane (4) to seal and prevent the flow of air to the outside of the bottle.

Lorsque l'utilisateur relâche sa pression sur le réservoir, celui-ci reprend sa forme initiale, grâce aux propriétés élastiques du matériau déformable du réservoir. Le retour dans sa forme initiale, crée une dépression dans le réservoir par rapport à la pression extérieure. L'air est donc aspiré dans le réservoir (1, 2). L'air pénètre par les ouvertures (10) prévues en repoussant la membrane (4b). La membrane repose alors sur le dispositif (22) de maintien. L'air ne peut donc circuler que dans le sens rentrant.When the user releases its pressure on the tank, it returns to its original shape, thanks to the elastic properties of the deformable material of the tank. The return to its original form, creates a depression in the tank relative to the external pressure. The air is sucked into the tank (1, 2). The air enters through the openings (10) provided by pushing back the membrane (4b). The membrane then rests on the holding device (22). The air can therefore circulate only in the incoming direction.

La force motrice de la pompe est la pression exercée par l'utilisateur sur le flacon (1) souple. Lorsque l'utilisateur presse le flacon (1) déformable, une pression s'exerce à l'intérieur du réservoir et la membrane (4) bouche l'ouverture (10) d'arrivée d'air. Le volume d'air compressé va exercer une pression sur le liquide (9) de base qui va être propulsé dans le mélangeur (6) par le tuyau (5) plongeur. D'autre part, une partie de l'air s'échappe par le mélangeur (6) en passant par les ouvertures (13) d'arrivée d'air du mélangeur (6). De la mousse est produite en sortie (11) du mélangeur (6), la sortie (11) du mélangeur (6) étant connectée au chambre (12) de distribution de la mousse. Lorsque l'utilisateur relâche la pression sur le flacon (1) déformable, grâce aux propriétés élastiques du matériau, le flacon (1) reprend sa forme initiale provoquant une aspiration d'air. La membrane (4) qui contrôle le conduit (10) d'alimentation en air va être repoussée, libérant ainsi l'ouverture (10) d'arrivée en air dans le réservoir (1, 2). Le réservoir (1, 2) se remplit alors avec de l'air ambiant. Une fois sa forme retrouvée, une nouvelle pression de l'utilisateur provoque de nouveau la production de mousse. De préférence, la pompe fonctionne en étant tenue à l'endroit par l'utilisateur.The driving force of the pump is the pressure exerted by the user on the flexible bottle (1). When the user presses the deformable bottle (1), a pressure is exerted inside the tank and the membrane (4) closes the opening (10) of air supply. The volume of compressed air will exert a pressure on the liquid (9) base that will be propelled into the mixer (6) by the pipe (5) plunger. On the other hand, a portion of the air escapes through the mixer (6) through the openings (13) of the air inlet of the mixer (6). Foam is produced at the outlet (11) of the mixer (6), the outlet (11) of the mixer (6) being connected to the chamber (12) for dispensing the foam. When the user releases the pressure on the deformable bottle (1), thanks to the elastic properties of the material, the bottle (1) returns to its initial shape causing an aspiration of air. The membrane (4) which controls the air supply duct (10) will be pushed back, thus releasing the air inlet opening (10) into the tank (1, 2). The tank (1, 2) then fills with ambient air. Once its shape is found again, a new pressure of the user again causes the production of foam. Preferably, the pump operates while being held in place by the user.

L'embout (2) de flacon expulse la mousse par une ouverture (11) de distribution de la mousse. La mousse passe ensuite dans le capot (3), par une chambre (12) de distribution de la mousse qui réalise le guidage, la mousse étant disponible pour l'utilisateur à la sortie du conduit (18). L'ouverture (11) de distribution de la mousse relié au mélangeur (6) et ne communique donc pas directement avec le réservoir (1, 2).The mouthpiece (2) of the bottle expels the foam through an opening (11) for dispensing the foam. The foam then passes into the hood (3), by a chamber (12) for dispensing the foam which provides guidance, the foam being available to the user at the outlet of the duct (18). The dispensing opening (11) of the foam connected to the mixer (6) and therefore does not communicate directly with the reservoir (1, 2).

Le mélangeur (6) permet l'émulsion du produit (9) liquide de base avec de l'air pour fabriquer de la mousse. Le liquide (9) de base est amené vers le mélangeur (6) par un tuyau (5) plongeur. L'air est introduit dans le mélangeur (6) par les arrivées (13) d'air. L'air entre dans la chambre du mélangeur et vient en contact avec les différents éléments du mélangeur qui sont par exemple les grilles et le pointeau. Pour produire de la mousse, de l'air et un liquide (9) contenant un agent moussant sont propulsés simultanément dans le mélangeur (6). De même, le liquide pénètre dans la chambre du mélangeur et vient en contact avec les différents éléments du mélangeur comme la grille (7a) d'entrée du tuyau (5) plongeur, la grille (7b) de sortie et le pointeau. Pour réaliser une émulsion, le flux du liquide (9) de base est d'abord perturbé par un pointeau (14) placé dans un logement. Par définition, le pointeau est un régulateur de débit. Une butée (16) maintient le pointeau (14) en place. Lorsque aucune pression n'est exercée sur le flacon par l'utilisateur, le pointeau (14) bouche le conduit du liquide par une légère pression exercée par son poids.The mixer (6) allows the emulsion of the liquid base product (9) with air to make foam. The liquid (9) base is fed to the mixer (6) by a pipe (5) plunger. The air is introduced into the mixer (6) by the arrivals (13) of air. The air enters the chamber of the mixer and comes into contact with the various elements of the mixer which are for example the grids and the needle. To produce foam, air and a liquid (9) containing a foaming agent are propelled simultaneously into the mixer (6). Similarly, the liquid enters the chamber of the mixer and comes into contact with the various elements of the mixer such as the inlet grille (7a) of the pipe (5) plunger, the gate (7b) output and the needle. To achieve an emulsion, the flow of the liquid (9) base is first disturbed by a needle (14) placed in a housing. By definition, the needle is a flow regulator. A stop (16) holds the needle (14) in place. When no pressure is exerted on the bottle by the user, the needle (14) closes the conduit of the liquid by a slight pressure exerted by its weight.

Lorsque l'utilisateur exerce une pression sur le flacon déformable, le produit (9) de base est refoulé dans le tube, le pointeau est soulevé, laissant passer le produit (9) liquide, et modifie le flux du liquide (9) en créant une perturbation qui débute l'émulsion. Plus le flux de liquide est rapide, plus le pointeau est agité. Le pointeau comprend en effet une partie inférieure plongeant dans le tube de liquide et une partie supérieure plus large pour obturer le conduit de liquide au niveau du siège de pointeau. Lors d'une pression exercée par l'utilisateur, l'air dans le réservoir exerce une pression sur le liquide qui est refoulé dans le tuyau (5) plongeur. Plus la pression de l'utilisateur est importante, plus le flux de liquide moussant est important. Plus le flux de liquide sera important et plus le pointeau sera agité violemment. L'agitation du pointeau perturbe ainsi le flux de liquide. Cette perturbation d'une part réduit le débit de liquide et d'autre part réalise une première émulsion du produit liquide et débute la formation de mousse.When the user exerts pressure on the deformable bottle, the product (9) is pushed back into the tube, the needle is lifted, allowing the liquid product (9) to pass, and modifies the flow of the liquid (9) creating a disturbance that starts the emulsion. The faster the flow of liquid, the more the needle is agitated. The needle indeed comprises a lower portion immersed in the liquid tube and a wider upper part to close the liquid duct at the needle seat. During a pressure exerted by the user, the air in the tank exerts a pressure on the liquid which is discharged into the pipe (5) plunger. The greater the pressure of the user, the greater the flow of foaming liquid is important. The higher the flow of liquid, the more the needle will be shaken violently. The agitation of the needle thus disturbs the flow of liquid. This disturbance on the one hand reduces the flow of liquid and on the other hand performs a first emulsion of the liquid product and begins the formation of foam.

D'autre part, l'air se mélange au liquide (9) en partie émulsifié au niveau de la première grille (7a) du mélangeur (6) et au niveau de la deuxième grille (7b) avant d'arriver à l'ouverture (11) de distribution. Selon la pression exercée par l'utilisateur, le liquide est plus ou moins émulsifié après le pointeau (6) agitateur et après la première ou la deuxième grille de filtrage. Selon la pression exercée, l'utilisateur obtiendra un type de mousse différent, la mousse étant plus ou moins légère. La mousse passe ensuite par la chambre (12) de distribution pour sortir par la sortie (18) de la chambre.On the other hand, the air is mixed with the liquid (9) partially emulsified at the first gate (7a) of the mixer (6) and at the second gate (7b) before reaching the opening (11) distribution. According to the pressure exerted by the user, the liquid is more or less emulsified after the needle (6) agitator and after the first or second filtering grid. Depending on the pressure exerted, the user will obtain a different type of foam, the foam being more or less light. The foam then passes through the distribution chamber (12) to exit through the outlet (18) of the chamber.

Le fait de produire la mousse par une pression manuelle sur le flacon (1) déformable, permet de contrôler la qualité de mousse. En effet la mousse a une consistance différente selon que l'utilisateur appuie fort ou doucement. De plus selon que l'utilisateur appuie longtemps ou pendant un court laps de temps, la quantité de mousse produite est différente. La quantité de mousse produite n'est pas illimitée mais un réservoir (1, 2) de grande capacité permet d'expulser une grande quantité d'air et de produit moussant pour produire une grande quantité de mousse. L'embout (2) de flacon s'adapte sur un flacon (1) déformable en se fixant de manière hermétique par un dispositif d'étanchéité (21) au niveau de l'ouverture circulaire (20) du flacon (1) déformable. Un utilisateur peut donc adapter des flacons (1) déformables ayant un volume différent, mais avec une ouverture de même dimension, sur un même embout (2) de flacon. La dimension des flacons déformables varie par exemple selon que le flacon est plus ou moins bombé ou plus ou moins haut. Les différentes tailles de réservoir s'adaptent à des usages particuliers. Pour produire une mousse en abondance, un réservoir de grande capacité sera utilisé et pour ne produire qu'une petite quantité de mousse, afin par exemple d'économiser un produit cher, un petit réservoir sera utilisé. La nature plus ou moins souple du réservoir change également le débit et le type de mousse produite.The fact of producing the foam by manual pressure on the deformable bottle (1) makes it possible to control the quality of foam. Indeed the foam has a different consistency depending on whether the user presses hard or soft. Moreover, depending on whether the user presses for a long time or for a short period of time, the quantity of foam produced is different. The amount of foam produced is not unlimited but a tank (1, 2) of large capacity allows to expel a large amount of air and foaming product to produce a large amount of foam. The bottle mouthpiece (2) fits onto a deformable bottle (1) by hermetically sealingly attaching it to a seal (21) at the circular opening (20) of the deformable bottle (1). A user can therefore adapt the deformable bottles (1) having a different volume, but with an opening of the same size, on the same mouthpiece (2) of the bottle. The size of the deformable bottles varies for example according to whether the bottle is more or less bulging or higher or lower. The different tank sizes adapt to particular uses. To produce a foam in abundance, a large capacity tank will be used and to produce only a small amount of foam, for example to save an expensive product, a small tank will be used. The more or less flexible nature of the tank also changes the flow rate and type of foam produced.

Une réalisation particulière du mélangeur est représentée en figure 2. Le mélangeur (6) de forme conique est tenu par serrage dans l'embout (2). Des arrivées d'air (13) sont aménagées entre des lames en plastique (23), représentées par des éléments hachurés. Les lames (23) font la liaison entre les deux grilles (7a, 7b) de tamisage. Le pointeau (14) est limité dans son déplacement en hauteur par la butée (16) et la forme conique de la tête du pointeau vient boucher l'arrivée du tuyau (19) qui a également une forme conique. L'air présent dans le réservoir (1, 2) peut donc s'introduire dans le mélangeur (6) en passant par les ouvertures (13).A particular embodiment of the mixer is represented in figure 2 . The conical mixer (6) is clamped in the nozzle (2). Air entrances (13) are arranged between plastic blades (23), represented by hatched elements. The blades (23) make the connection between the two grids (7a, 7b) sieving. The needle (14) is limited in its displacement height by the stop (16) and the conical shape of the head of the needle closes the arrival of the pipe (19) which also has a conical shape. The air present in the tank (1, 2) can thus be introduced into the mixer (6) through the openings (13).

Dans un exemple de réalisation, le tuyau (5) plongeant dans le liquide est composé de plusieurs parties de tuyau, de diamètre différent, emboîtées les unes dans les autres permettant de retenir le produit le long du conduit. Le tuyau (5) est par exemple fixé au mélangeur par emboîtement serré, pour être facilement démontable et changeable. Notamment des tuyaux plus ou moins longs seront adaptés à des flacons (1) déformables plus ou moins profonds. De préférence, afin d'utiliser tout le produit (9) liquide de base contenu dans le réservoir (1, 2), l'extrémité inférieure du tuyau débouche au niveau de la base du flacon (1) déformable. La pompe reste fonctionnelle tant que le tuyau (5) est plongé dans le liquide (9).In an exemplary embodiment, the pipe (5) immersed in the liquid is composed of several parts of pipe, of different diameter, nested in each other to retain the product along the conduit. The pipe (5) is for example fixed to the mixer by tight fitting, to be easily removable and changeable. In particular, longer or shorter pipes will be adapted to more or less deep deformable vials (1). Preferably, in order to use all the liquid product (9) base contained in the reservoir (1, 2), the lower end of the pipe opens at the base of the vial (1) deformable. The pump remains functional as long as the pipe (5) is immersed in the liquid (9).

Le flacon (1) déformable de la pompe est prévu pour être démonté de l'embout (2) du flacon. Le flacon (1) déformable comprend par exemple une couronne rigide au niveau de son ouverture circulaire pour que l'embout (2) de flacon puisse s'enclencher dessus. Lorsque le réservoir est démonté, l'utilisateur peut donc le remplir avec du produit (9) liquide de base. La pompe est ainsi rechargeable par l'utilisateur. Un mode de réalisation non limitatif comprenant une marque horizontale de remplissage maximum sur le réservoir laissant voir le niveau du produit par transparence, ou à l'intérieur du réservoir.The deformable bottle (1) of the pump is designed to be removed from the mouthpiece (2) of the bottle. The deformable bottle (1) comprises for example a rigid ring at its circular opening so that the tip (2) bottle can snap on. When the tank is disassembled, the user can fill it with liquid product (9) base. The pump is thus rechargeable by the user. A nonlimiting embodiment comprising a horizontal mark of maximum filling on the tank showing the level of the product by transparency, or inside the tank.

Dans un exemple de réalisation le capot (3) peut se déplacer verticalement par rapport à l'embout (2), par une liaison hélicoïdale (17). Dans une position haute du capot (3), la pompe à mousse s'utilise comme décrit précédemment et dans une position basse du capot (3), celui-ci vient boucher les conduits d'alimentation en air et d'expulsion de la mousse. Les bosses (15) du capot (3) sont chacune à égale distance de l'ouverture en vis-à-vis, de façon que chaque ouverture soit fermée dans la position basse du capot. Dans un autre mode de réalisation, le capot (3) est en liaison pivot glissant avec l'embout (2) de flacon et la position basse du capot (3) par rapport à l'embout (2) de flacon est maintenue par un système d'enclenchement, remplaçant la liaison hélicoïdale.In an exemplary embodiment the cover (3) can move vertically relative to the tip (2), by a helical connection (17). In a high position of the cover (3), the foam pump is used as described above and in a low position of the cover (3), it closes the air supply ducts and expulsion of the foam . The bumps (15) of the cover (3) are each equidistant from the opening vis-à-vis, so that each opening is closed in the low position of the cover. In another embodiment, the cover (3) is in sliding pivot connection with the tip (2) of the bottle and the low position of the cover (3) relative to the mouthpiece (2) of the bottle is maintained by a interlocking system, replacing the helical connection.

Dans un mode de réalisation, un ustensile est ajouté au niveau de la tête de projection de la mousse. L'ustensile est par exemple une grille en plastique qui filtre la mousse produite pour la changer la consistance de la mousse. Un autre exemple de dispositif est un croisillon qui sépare le jet de mousse par exemple en quatre jets plus petits. L'invention permet ainsi des réglages pour produire des quantités mais aussi des consistances de mousse différentes selon les accessoires utilisés ou ajoutés.In one embodiment, a utensil is added at the foam spraying head. The utensil is for example a plastic grid that filters the foam produced to change the consistency of the foam. Another example of a device is a cross which separates the jet of foam for example into four smaller jets. The invention thus allows adjustments to produce quantities but also different foam consistencies according to the accessories used or added.

Il doit être évident pour les personnes versées dans l'art que la présente invention permet des modes de réalisation sous de nombreuses autres formes spécifiques sans l'éloigner du domaine d'application de l'invention comme revendiqué. Par conséquent, les présents modes de réalisation doivent être considérés à titre d'illustration mais peuvent être modifiés dans le domaine défini par la portée des revendications jointes.It should be obvious to those skilled in the art that the present invention allows embodiments in many other specific forms without departing from the scope of the invention as claimed. Therefore, the present embodiments should be considered by way of illustration but may be modified in the field defined by the scope of the appended claims.

Claims (9)

  1. Refillable pump for foam including a container for a liquid substance comprising one or more foaming agents, the container being closed by a distribution device, the distribution device comprising a distribution orifice (11) communicating with an outlet passage including one or more foam forming elements (7a, b), the outlet passage communicating with an element forming, on the one hand, a closure valve for introduction of air into the container and, on the other hand, with a passage having a variable flow rate which opens into the liquid by means of a dip tube (5), the container (1) being made from deformable elastic material, the closure valve closing when the container is deformed in order to drive off the liquid through the tube, the closure valve opening in order to allow air to enter the container during phases when the container resumes its initial shape, characterised in that the tube communicates with the outlet passage via a mixer (6) by which the liquid is driven off and is transformed into foam, the passage with a variable flow rate being associated with a needle valve (14) comprising a conical head and a narrower lower part dipping into the tube, the passage with a variable cross-section consisting of a sleeve with a cylindrical external shape, the internal shape thereof being adapted in order to produce abutment elements (16) for the needle (14) at one end of the sleeve and at a distance from this end a seat (19) for the needle (14) in such a way that when the needle (14) is in the abutted position of the abutment elements (16) the flow rate of liquid is at maximum and when the needle (14) rests on the seat (19) the liquid flow rate is zero.
  2. Pump as claimed in Claim 1, characterised in that the closure valve has a membrane (4).
  3. Pump as claimed in Claims 1 and 2, characterised in that the dip tube (5) includes a constriction at its end which dips into the liquid (9).
  4. Pump as claimed in Claims 1 to 3, characterised in that the foam forming elements consist of two meshes (7a, 7b) of dimensions and shape adapted to the outlet passage and spaced from one another by a perforated cylinder.
  5. Pump as claimed in Claims 1 to 4, characterised in that the cylindrical sleeve is connected by its end opposite the distribution orifice (11) to the dip tube (5).
  6. Pump as claimed in any one of the preceding claims, characterised in that it includes an addition mesh at the level of the distribution orifice.
  7. Pump as claimed in Claims 1 to 5, characterised in that the foam forming element may consist of a succession of rigid wires distributed in a cylindrical space and are retained relative to one another by a central element to give the shape of a bottle brush.
  8. Pump as claimed in the preceding claims, characterised in that bosses (15) hermetically seal the reservoir at the orifices (10) for inlet of air into the reservoir.
  9. Pump as claimed in the preceding claims, characterised in that the reservoir is composed of two parts, a rigid part and a flexible part, the rigid part being adapted to flexible parts off different volumes.
EP20060290460 2005-04-20 2006-03-22 Refillable foam pump Not-in-force EP1714707B1 (en)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
FR0503972A FR2884737B1 (en) 2005-04-20 2005-04-20 RECHARGEABLE FOAM PUMP

Publications (3)

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EP1714707A2 EP1714707A2 (en) 2006-10-25
EP1714707A3 EP1714707A3 (en) 2009-06-03
EP1714707B1 true EP1714707B1 (en) 2012-05-16

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Application Number Title Priority Date Filing Date
EP20060290460 Not-in-force EP1714707B1 (en) 2005-04-20 2006-03-22 Refillable foam pump

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EP (1) EP1714707B1 (en)
FR (1) FR2884737B1 (en)

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US8814005B2 (en) 2012-04-27 2014-08-26 Pibed Limited Foam dispenser

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Publication number Priority date Publication date Assignee Title
FR2889263B1 (en) 2005-07-26 2007-10-26 Sannier Gerard DEVICE FOR ADAPTING THE PRODUCTION OF FOAM
FR2974741B1 (en) * 2011-05-06 2013-06-28 Francis Poizot DEVICE FOR PRODUCING FOAM
NL2009219C2 (en) * 2012-07-23 2014-01-27 Rexam Airspray Nv Squeeze foamer.
CN105750159B (en) * 2014-12-15 2018-02-23 南通中集特种运输设备制造有限公司 Gluing device

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US3973701A (en) * 1975-06-06 1976-08-10 Glasrock Products, Inc. Foam generating and dispensing device
US4156505A (en) * 1977-09-28 1979-05-29 Bennett Robert S Device for producing foam
US4147306A (en) * 1977-09-28 1979-04-03 Bennett Robert S Foam producing apparatus
US4162749A (en) * 1978-02-27 1979-07-31 Risdon Manufacturing Company Squeezable dispenser with outlet closure
US4596343A (en) * 1985-04-12 1986-06-24 Ballard Medical Products Foam dispensing device
FR2641202B1 (en) * 1989-01-03 1991-03-15 Poizot Francis FOAM PRODUCTION DEVICE
AU3258793A (en) 1992-01-17 1993-08-03 Inter Airspray Sweden Ab Foam-spraying device
JPH09276759A (en) * 1996-04-18 1997-10-28 Shiseido Co Ltd Bubble forming vessel
US6868990B2 (en) * 2002-09-26 2005-03-22 Emsar, Inc. Fluid dispenser with shuttling mixing chamber
NL1022841C2 (en) 2003-03-04 2004-09-07 Airspray Nv Dispensing device.

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US8814005B2 (en) 2012-04-27 2014-08-26 Pibed Limited Foam dispenser

Also Published As

Publication number Publication date
FR2884737B1 (en) 2007-08-03
EP1714707A3 (en) 2009-06-03
EP1714707A2 (en) 2006-10-25
FR2884737A1 (en) 2006-10-27

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