This claims the benefit of Italian patent application no. 102019000010161, filed Jun. 26, 2019, hereby incorporated by reference in its entirety.
The present invention relates to a tottle or tube made of deformable plastic.
In particular, it relates to a tottle equipped with a pump for dispensing a fluid.
Members of the cosmetics packaging industry are always on the look out for new concepts for containers, as well as new ways of using and new dispensing methods for commonly known containers.
In recent years, the industry has been trying extend the use of ‘tottles’ (a term coined by combining ‘tube’ and ‘bottle’) to top-end products, in which the fluids contained in the container must be dispensed in a sophisticated manner.
Nevertheless, the use of conventional tottles, which usually feature flip-top or screw-on lids, have not been well accepted in such a high-end segment.
The object of the present invention is to provide an innovative dispensing system to apply to tottles.
This and other objects are achieved by means of a tottle according to the technical teachings of the claims appended hereto.
Further characteristics and advantages of the invention will become apparent in the description of a preferred but not exclusive embodiment of the device, illustrated—by way of a non-limiting example—in the drawings annexed hereto, in which:
With reference to the figures stated, reference number 1 is used to denote, as a whole, a tottle.
The tottle 1 is designed to contain and dispense a fluid.
In the present text, ‘fluid’ means a cosmetic or medical substance, a cream for the face or body, a cream or product to combat wrinkles, a make-up product, such as a foundation, a make-up remover, and suchlike.
The tottle comprises a container 2 equipped with a first sealed end 3 and a second end 4 featuring a neck 5.
The container 2 can be produced using a plastic mould to fashion the neck 5 thereof and a tubular side surface which is open at the base (i.e. the side opposite the neck 5), which is then compressed and welded at free end S1 (or sealed in another way) to create the sealed base 3 of the container 2 to be devoid of a resting surface at its free end S1.
The container 2 can also be formed of a simple blow-moulded bottle tapered at is free end, produced using extrusion/blow-moulded technology (still made of plastic) or with injection blow-moulding technology, using a pre-mould, but with a form which is devoid of a resting surface at its free end (i.e. the end opposed to the one where the pump is located).
In all the embodiments described above, in practice, the tottle can be placed resting on a flat surface only with the sealed end 3 thereof facing upwards (by means of a lid to be applied to the pump), or lying on a side surface.
From the drawings it can be seen that the tottle comprises a pump 6 which renders the dispensing type extremely effective and ‘high-end’. The pump must be of the hermetical kind and therefore, after each dispensing action, the container deforms, ending up completely flat when the substance dispensed is finished.
The pump 6, which may be coupled to a dispensing cap 30, features a pump body 6A (
From the pump body 6A, integral with it, a flange 10 extends.
The pump is associated (or better permanently fastened) to the neck 5 of the container by means of a collar 7 which is snap-fitted onto the neck 5.
The snap-lock system is designed so that a user, during normal use of the tottle, cannot separate the collar and the container, at least not without damaging either one or the other.
The pump 6 is associated with a gasket 8 made as a single piece.
The material which may be used to make the gasket may be chosen from: LDPE-PE-HDPE-TPU-TPE-NITRYL-SILICONE-PP-BUTYL-NATURAL RUBBER
The gasket 8 is better illustrated in
There is also a second lip 8B present, from which a sealing flange 8C extends, and an intermediate flange 8D which interconnects the first and second lip so as to form an annular groove 9 facing a flange 10 on the pump 6.
The height of the second lip 8B may be similar or equal to the height of the first lip 8A, counted for the intermediate flange 8D.
The second lip 8B (and possibly also the first lip 8A) may have a height HG (measured from the striking surface between the flange 8C and the free edge 31 of the neck) which is less (or even equal to) the height HC of the neck.
The height HG is equal or less than half the height HC of the collar. This maximizes the volume of the product that may be filled in the container.
It is also possible that the height HG is greater or similar to the height of the neck HC.
The nearer the height HG is to the height HC (or if it is greater), the less product remains inside the container 2 at the end of dispensing, i.e. when the container 2 is completely flattened in on itself.
In this way, when the collar 7 is fastened onto the neck 5 of the container 2, the sealing flange 8C of the gasket 8 is sandwiched between the flange 10 integral to the pump body 6A and a free edge 31 of the neck 5 of the container 2.
Advantageously the pump 6 is snap-fitted onto collar 7. For example, the collar 7 may feature a fastening protrusion 20 which snap-fits into a groove 21 featured on the pump body 6A near the flange 10.
The configuration described above proves particularly advantageous during the automatic assembly of the tottle.
In practice, one way of assembling may comprise the following steps:
As it may easily be imagined, a gasket like that described proves particularly effective due to the installation of a pump on the tottle.
It is worth noting that the free edge of a tottle is usually extremely narrow, and it would be essentially impossible to use a conventional gasket for coupling the pump in a sealed manner. In practice, if the gasket is not pre-fitted onto the pump in a permanent manner, it may move during assembly, creating a faulty tottle, which must be discarded.
To facilitate the premounting (but also to provide an optional seal between the gasket and the pump), the pump 6A may feature a rim 15 which engages with a seat 16 featured on the first lip 8A of the gasket 8. In this way, the coupling between the gasket and the pump is even more permanent.
The gasket 8, at a zone which interconnects the second lip 8B and the intermediate portion 8D, comprises a chamfer 18 which facilitates the insertion of the gasket 8 in the neck 5 when the gasket is coupled with the pump.
In practice, the gasket may provide three sealing zones corresponding to the first lip 8A, which forms a seal with the pump body, the second lip 8B, which forms a seal with the inner surface 32 of the neck 5 of the container, and the gasket 8C, which forms a seal with the free surface 31 of the neck 5.
Continuing with the description, it should be noted that the collar 7 features a portion 14 for coupling with a cap 12 which covers the pump and comes into contact with a step 13 on the collar 7.
The cap 12 proves to be particularly important since, as already mentioned, the tottle is positioned ‘overturned’ and therefore the latter may feature a flat surface 12A which can provide a stable resting surface for the entire tottle 1.
To end, it should be noted that the neck 5 may have a circular cross-section. The collar and the cap may also have a circular cross-section.
Various embodiments of the innovation have been disclosed herein, but further embodiments may also be conceived using the same innovative concept.
Number | Date | Country | Kind |
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102019000010161 | Jun 2019 | IT | national |
Number | Name | Date | Kind |
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5505338 | Gueret | Apr 1996 | A |
D833878 | Langdon et al. | Nov 2018 | S |
20040159681 | Crosnier | Aug 2004 | A1 |
20150144663 | Noel | May 2015 | A1 |
20190060929 | Delmon | Feb 2019 | A1 |
20200406280 | Jouan | Dec 2020 | A1 |
Number | Date | Country |
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2308604 | Apr 2011 | EP |
3431189 | Jan 2019 | EP |
2853633 | Oct 2004 | FR |
2008007160 | Jan 2008 | JP |
Entry |
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Machine Translation of FR 2853633. |
Machine Translation of EP 2308604. |
Search Report and Written Opinion dated Mar. 4, 2020 for Italian patent application No. 102019000010161. |
Number | Date | Country | |
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20200406279 A1 | Dec 2020 | US |