Cap for sealing a liquid product container

Dispensing – With flow controller or closure – Rotary – axially

Reexamination Certificate

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Details

C222S548000

Reexamination Certificate

active

06334556

ABSTRACT:

The present invention relates to a capsule for closing a receptacle for a liquid and for dispensing said liquid. More precisely, the invention relates to closing flexible and elastically deformable receptacles.
Closing receptacles for liquids and, in particular, for cosmetics (milks, gels, creams . . . ) is conventionally ensured by means of a removable cap screwed or snap-fastened on the neck of a receptacle that can be flexible or rigid. However, that method of closure requires the cap to be put back on systematically after each occasion on which liquid is removed.
Unfortunately, in some circumstances, the user does not carry out that operation and/or loses the cap, thus leaving the receptacle permanently open, and thereby leading to a serious risk of the quality of the liquid deteriorating.
Furthermore, it is sometimes difficult to close the receptacle when too much liquid is deposited around the neck of the receptacle and can interfere with the cap being screwed-on or snap-fastened. It is thus necessary to clean the neck before closing the receptacle.
In addition, conventional closure methods require the neck of the receptacle to be provided with capretaining members such as threads or fastening lugs, thereby complicating the manufacturing process.
In a variant, the cap is constituted by a fixed portion provided with an outlet duct, and a moving portion connected to the fixed portion by means of a hinge and forming means for closing said duct.
However, that variant is very bulky since the two portions are disposed outside the receptacle and, in the open position, the moving portion projects from the neck.
Furthermore, dispensing of the liquid can be hindered by the moving portion which remains fixed to the fixed portion.
In embodiments having threads, the cap is sometimes constituted by a portion that is moved axially by being screwed onto a fixed portion.
The cap is thus closed by co-operation between the ejection orifice of the outlet duct and a pin.
However, during axial displacement of the moving portion to the closed position, an additional and unwanted quantity of liquid is ejected.
A variant also exists to the embodiment described in EP 0 452 196, the variant comprising:
an inner support element designed to be fixed on the neck of the receptacle and including a central bushing having a side wall provided with an ejection orifice; and
an outer closure element that is fastened onto said inner element so that it cannot be displaced axially and which includes a central ring provided with an outlet duct, said central ring being designed to surround said bushing in coaxial and rotary manner so as to establish at least one closed position in which the ejection orifice is sealed and at least one dispensing position in which said orifice is in communication with the outlet duct.
However, that variant does not make it possible to ensure that the outer closure element is locked in a position in which the outlet duct is closed and sealed.
An object of the present invention is to resolve the technical problems posed by previous closure methods.
This object of the invention is achieved by means of a capsule of the above-mentioned type, said capsule being characterized in that the inside wall of said ring is provided, over an angular sector, with a recess having both side edges that respectively form two abutments designed to co-operate with a bulge carried by the outside wall of said bushing and also a ridge suitable for co-operating resiliently with said bulge to produce a snap action corresponding to the outer element passing into the closed position in which the outlet duct defined by said recess is sealed.
According to an advantageous characteristic, on either side of the dispensing position, the inside wall of said ring is in sealed sliding contact with the outside wall of the bushing.
In these conditions, the angular distance on the bushing between the bulge and the ejection orifice is not greater than the angular length of the sector forming the outlet duct of the ring.
According to yet another characteristic, said ring is extended axially by an annular lip defining a substantially tapering conial tip.
According to other characteristics, the inner element includes a peripheral collar of U-shaped section that is fitted over and that locks onto the neck of the receptacle.
In a particularly advantageous variant, the central bushing is fully received inside the neck of the receptacle by being fastened by a spacer to the inner branch of said collar.
In another variant, the inside wall of said collar is provided with splines ensuring locking of the inner element against rotation.
In addition, the central ring is fastened laterally, via a shoulder, to a peripheral skirt provided with a fastening member for fastening onto the inner element.
In an advantageous variant, said ejection orifice is formed by a loophole made in the side wall of the central bushing.
The capsule of the invention is ergonomic by offering compactness, and it adapts very easily to standard receptacle necks.
In the closed position it ensures perfect sealing and in the open position it ensures even and accurate dispensing.
The sealed closed position is achieved by rotating the outer element on the inner element and is accompanied by a snap action which ensures that the closure is locked and sealed.
In addition, operations of assembling together the inner and outer elements and of mounting the assembly on the neck of the receptacle are quick and very easy and they can easily be automated.


REFERENCES:
patent: 3149755 (1964-09-01), Porter et al.
patent: 3204836 (1965-09-01), Joffe
patent: 5071017 (1991-12-01), Stull
patent: 5325999 (1994-07-01), Gueret
patent: 5358146 (1994-10-01), Stull
patent: 5785213 (1998-07-01), Guillot

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