This is a National Stage of International Application No. PCT/PT2012/000012, filed Mar. 30, 2012, claiming priority from Portuguese Patent Application No. 105599, filed Mar. 30, 2011, the contents of all of which are incorporated herein by reference in their entirety.
The present invention refers to the field of capsules of aromatic substances used for the preparation of beverages by extraction by means of their crossing by a pressurized fluid flow, in general, and to the field of the capsules for obtaining coffee of the espresso type, in particular.
The present invention further refers to a method of processing said recipient, as well as to a device for executing this method of processing.
There are presently known many solutions of capsules meant for use in beverage extraction machines, such as espresso coffee, including of the pod type, provided in a substantially air un-tight material, and of the capsule type, provided in substantially airtight materials. The opening of such kind of recipients, for passage of the extraction flow, raises several questions from the technical point of view, both in terms of the control upon the moments of entry and exit (and, therefore, of the flow residence period in its interior) as well as in terms of the configuration of the section of flow passage (format, dimension, distribution) for the entry and for the exit of said pressurized fluid flow. In fact, these parameters have a substantial influence upon the final quality of the beverage obtained and, in general, vary according to the type of aromatic substance being used. Moreover, it is further important to consider the set of forces required by an extraction device, notably in a respective extraction chamber, to carry out said opening of entry and exit of the capsule, as well as an eventual variation of the latter for different types of substances being used.
The solution usually practiced for the opening of the capsule relates to a certain form of rupture of a certain material used in a construction element in a certain zone of the capsule, usually as a result of the application of a certain mechanical force. Moreover, one frequently tries to use the hydraulic force generated inside the capsule by the pressurized fluid flow, to also actuate, at least in part, the exit out of it.
Document EP 1975087 presents a capsule including a tubular element disposed inside and participating in the distribution of the pressurized fluid flow, from the entry in the capsule to the exit therefrom. Also in this case the opening of the flow entry and exit is carried out by means of perforating the construction material in respective zones. Moreover, in this case, the tubular element is not actuated so as to carry out any displacement. The tubular element provides, in a passive manner, an assisting function to the flow distribution inside the capsule, but does not carry out any flow actuation function.
The goal of the present invention is to make a capsule available, or recipients of the capsule type, that provides better flow conditions at the entry and at the exit, thereby minimizing the associated pressure losses, a better flow distribution inside the capsule, that way maximizing the efficacy of the extraction process, as well as, in particular, a better control upon and use of the forces necessary to carry out the flow entry and exit that way better controlling the flow residence period inside the capsule, and with the possibility of adjusting the latter to different types of aromatic substances and beverages, with minimal constructive changes.
The aforementioned goal is solved by means of a capsule, produced in a substantially flexible or rigid material, and substantially gas un-tight or gastight, containing at least one aromatic substance, for production of a beverage by means of its crossing by a pressurized fluid flow, whereby said capsule is built by at least one construction element defining at least one zone of capsule facing the flow upstream and a zone of capsule facing the flow downstream disposed in opposition between each other, and presenting an actuation element that extends over part, preferentially a substantial part, of the distance between the zones facing the flow upstream and downstream, and retained in a removable manner in a respective element fixture, provided in each case in said zones facing the flow upstream and downstream. According to a first inventive aspect, said actuation element and respective element fixture are configures in such a way that they include and/or define a flow accumulation chamber on the side of the zone facing the flow downstream, and at least one previously defined flow passageway of exit, for flow discharge out of said accumulation chamber and out of the capsule. In terms of the mechanism of forces, this discharge unfolds at least in part, as a result of the flow accumulation in said flow accumulation chamber.
According to another inventive aspect, said actuation element executes at least two successive displacements, in each case as a result of the application of a certain actuation force, in each case resulting in at least one previously defined flow passageway for the flow to entry in the capsule, and said, at least one, previously defined flow passage out of the capsule, respectively.
According to another inventive aspect, as a result of the displacement of the actuation element there is released at least one previously defined flow passageway for the flow to enter inside the accumulation chamber.
In this sense, the present invention points to advantageous configurations of the actuation element and respective element fixture, in view of the respective actuation effectiveness and simplicity of the construction means involved.
According to another inventive aspect, the actuation element and/or the element fixture are therefore advantageously provided with at least one, preferentially a plurality of passageways and/or at least one permeable material and/or with filtering effect, whereby at least the flow passageways through the accumulation chamber are preferentially made available when said passageways, provided in each case in the actuation element and/or element fixture, are in each case un-obstructed or get in substantial fluid communication with each other.
According to another inventive aspect, the parts of the actuation element are configured so as to interact at least temporarily with each other, preferentially so that they move in isolation relative to the other, along at least part of the distance between the zone facing upstream flow and the zone facing downstream flow.
Further within this scope, according to a preferred embodiment, the actuation element is provided in two actuation parts, each being retained at least initially by at least one respective removable union, preferentially in an union by means of positive locking. Moreover, at least the one part of the actuation element on the side of the zone facing the flow downstream, is retained so that it can be displaced in a respective element fixture, preferentially by means of two unions disposed successively along the prevailing flow direction, whereby at least the first thereof is configured as a removable union.
One other goal of the present invention is to be able to adjust said capsule to the use of different types of substances, different average dimension of respective grains and different quantity of beverage to be produced, only by means of a variation of the configuration and/or previous dimensioning of said actuation element, thereby always ensuring a high extraction efficacy.
This goal is solved according to an inventive aspect in such way that the total displacement of the actuation element and/or the volume of the accumulation chamber, preferentially the respective interior height, are previously defined as a function at least of the type of aromatic substance, or of the dimension of the grain of said substance, or of the interior volume of the capsule.
According to another inventive aspect, the configuration at least of the flow passages of entry n the accumulation chamber and of exit from the capsule, preferentially including the form, the dimension and/or the distribution of respective passageways, is previously defined as a function at least of the type of aromatic substance and/or of the dimension of the grain of said substance and/or of the interior volume of the capsule.
According to a preferred embodiment, and so as to increase the options of control upon the residence period of the flow inside the capsule, notably in view of different aromatic substances, there are provided at least two flow passages, at least in the exit chamber of the actuation element and in the exit cavity, respectively, which result in substantial fluid communication with each other as a result of removing one removable union.
According to a preferred embodiment, the flow passages are provided in the form of a plurality of passageways and/or of liquid permeable material and/or with filtering effect. Preferred embodiments of such material include materials with a fibre-based structure, preferentially biodegradable materials.
One other goal of the invention is to provide a certain flow pattern inside the capsule, in view of higher effectiveness of extraction of the aromatic substance in its interior.
To this purpose, according to another inventive aspect, it is provided a plurality of flow passages, disposed successively along the prevailing flow direction, whereby the distance between successive flow passages is previously dimensioned and the respective passageways develop in a substantially uniform manner radially, preferentially in asymmetric manner radially, relative to the central symmetry axis of the capsule.
According to another inventive aspect, the parts of the actuation element are provided so that at least one may move at least partially along the other, or at least one may move along at least part of the respective element fixture, at least along the flow prevailing direction.
According to a preferred embodiment, the extension of the actuation element, preferentially at least of the part of the actuation element disposed on the side of the zone facing the flow upstream, is previously defined as a function at least of the type of aromatic substance and/or of the measured dimension of the grain and/or of the global volume of the capsule.
According to another preferred embodiment, the capsule is provided with identification means of a certain previously defined operating position, in particular of a certain relative orientation when the crossing flow should be carried out along a substantially horizontal direction, such as for example so that an identifying element is facing upwards.
One other goal of the present invention is to provide a method of production of an aromatic beverage from a capsule according to the present invention.
The goal above is solved by means of a method comprising the steps of introducing a capsule into an extraction chamber, mechanical fixation clamping of the capsule in the extraction chamber, that way exerting a first actuation force upon the actuation element, at least on the side of the zone facing the flow upstream, of injecting a fluid flow under a previously defined pressure and during a period of time, thereby exerting a second actuation force upon the actuation element, at least on the side of the zone facing the flow downstream, so that the first force of actuation is sufficient to displace the actuation element in such a way that at least reduces the second actuation force, still necessary to provide a flow passage out of the capsule.
According to another inventive aspect, by means of the mechanical clamping of the capsule in the extraction chamber, at least part of the first actuation force applied upon the actuation element disposed on the side of the zone facing the flow upstream, is transmitted by the latter to the actuation element disposed on the side of the zone facing the flow downstream, so that the latter is displaced out of its initial retention.
According to another preferred embodiment, after beginning the injection of pressurized fluid flow the latter is immediately introduced inside the capsule through a flow passage.
According to another preferred embodiment, by means of the mechanical clamping of the capsule in the extraction chamber, the actuation elements are displaced from an initial blocking situation to a following situation of opening of at least one in each case respective flow passage.
According to another preferred embodiment, by means of crossing the capsule, the pressurized fluid flow accumulates at least during a certain period in the accumulation chamber, thereby exerting an increasing hydraulic actuation force upon the actuation element disposed on the side of the zone facing the flow downstream, until reaching a minimum value that provokes the displacement of the actuation element and that way releases at least one respective flow passage.
According to another preferred embodiment of the method according to the invention, the capsule is introduced along a previously defined orientation inside the extraction chamber, preferentially so that the flow passage out of the capsule results oriented downwards.
One other goal of the present invention is to provide a beverage extraction device, whereby this goal is solved by means of a device for use of a capsule according to the invention that comprises at least one extraction chamber for executing the method according to the invention.
The invention shall now be explained in greater detail based upon preferred embodiments and upon the attached Figures.
The Figures show:
This type of capsules (1, 1′) collects an aromatic substance in its interior and is meant for the production of an aromatic beverage by means of its crossing by a pressurized fluid flow, such as for example hot water. Typically, the capsule (1) comprises at least one, preferentially two construction elements, in particular in this case one element of the container type and one element of the lid type, that define at least one zone (2) facing the flow upstream and one zone (3) facing the flow downstream.
In the case of the present invention, the capsule (1, 1′) further includes at least one actuation element (5) disposed in its interior so that it is retained in a removable manner, preferentially in an airtight manner under pressure, in a respective element fixture (7) disposed in each case both in the zone (2) of upstream flow as well as in the zone (3) of downstream flow. The capsule (1, 1′) is processed by a respective device by means of its placement inside an extraction chamber (10) with the zone (2) of upstream flow oriented to a fluid injection (11) that feeds the pressurized flow to the interior of the capsule (1, 1′), and the zone (3) of downstream flow facing an infusion discharge (12) that gathers the flow from the interior of the capsule (1, 1′)—vide
In a first example (
In a second example (
According to a preferred embodiment of the invention, the volume of the accumulation chamber (6) is previously dimensioned so that a certain hydraulic actuation force (FH) is generated in such a location, corresponding to the actuation force (F) necessary to carry out the displacement of the actuation element (5s).
On a first moment (drawing to the left), the actuation elements (5e, 5s) are retained in such a way in the element fixture (7) that there is no flow passage available through the capsule (1). On a second moment (drawing in the centre), by means of applying a certain first actuation force (F1), the actuation elements (5e, 5s) are jointly displaced along such a distance that passageways (8) become in fluid communication with respective zones (9) of permeable material provided in each case in the element fixture (7). As a result there are provided flow passages (S1, S3) for entry in the capsule and in an accumulation chamber (6) defined in the interior of the actuation element (5s). In this respect, particular attention is called upon the fact that said passageways (8) present a variable dimension and are disposed at certain distances in-between and in asymmetrical manner radially, so that it results a more effective flow distribution through the aromatic substance. In this case, as an example, the openings of the entry in the capsule (1) are disposed in a perimeter zone of the actuation element (5e) that is oriented upwards, whereas the openings of entry in the accumulation chamber (6) are disposed in a perimeter zone of the actuation element (5s) that is oriented downwards. On a third moment, as a result of a second actuation force (F2), the actuation element (5s) is moved along such an extension that a flow passage (S2) is released of exit from the capsule (1), in this case provided by a plurality of passageways (8) disposed on a perimeter zone thereof that is oriented downwards, and in the interior of a cavity correspondingly provided in part of the perimeter of the element fixture (7).
Number | Date | Country | Kind |
---|---|---|---|
105599 | Mar 2011 | PT | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
---|---|---|---|---|
PCT/PT2012/000012 | 3/30/2012 | WO | 00 | 9/30/2013 |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO2012/134313 | 10/4/2012 | WO | A |
Number | Name | Date | Kind |
---|---|---|---|
5656316 | Fond | Aug 1997 | A |
7243597 | Hu | Jul 2007 | B2 |
7946217 | Favre | May 2011 | B2 |
20030056661 | Hu | Mar 2003 | A1 |
20030096038 | Cai | May 2003 | A1 |
20040115317 | Doglioni | Jun 2004 | A1 |
20090223375 | Verbeek | Sep 2009 | A1 |
20100147156 | Colantonio et al. | Jul 2010 | A1 |
20100180774 | Kollep et al. | Jul 2010 | A1 |
20120263829 | Kamerbeek | Oct 2012 | A1 |
Number | Date | Country |
---|---|---|
10 2010 030 988 | Jan 2012 | DE |
1 975 087 | Oct 2008 | EP |
2 210 826 | Jul 2010 | EP |
WO 2010137948 | Dec 2010 | NL |
WO 2010137949 | Dec 2010 | NL |
2008132571 | Nov 2008 | WO |
2010137947 | Dec 2010 | WO |
2011035942 | Mar 2011 | WO |
2011138405 | Nov 2011 | WO |
Entry |
---|
International Search Report for PCT/PT2012/000012, dated Jul. 23, 2012. |
Number | Date | Country | |
---|---|---|---|
20140020565 A1 | Jan 2014 | US |