Enhanced compacted tablet and system for extraction of beverages comprising said compacted tablet
12478075 · 2025-11-25
Assignee
Inventors
Cpc classification
International classification
Abstract
A compacted coffee tablet (1), in particular a tablet of compacted roast and ground coffee beans, presenting an advantageous configuration in terms of compaction process, maintenance of shape and efficiency of coffee extraction, in particular of espresso type coffee. A beverage preparation systems including the compacted coffee tablet (1).
Claims
1. A tablet for preparing edible products, the tablet comprising: a volume and a quantity of compacted ground coffee, a side cross-section having a total width (D.sub.T) and a symmetric shape with relation to a central longitudinal axis (XX); an upstream-oriented portion and a downstream-oriented portion, with relation to a prevailing flow direction; and an intercalary portion that extends between said upstream-oriented portion and said downstream-oriented portion and at least a portion defining said total width (D.sub.T), wherein the downstream-oriented portion comprises a downstream cavity (B) that has a curved surface extending inwardly, and wherein a perimeter region of said downstream cavity (B) extends to an exterior perimeter region of the downstream-oriented portion.
2. The tablet according to claim 1, wherein the downstream-oriented portion is configured so as to present at least one of: an exterior perimeter region of said downstream-oriented portion including a surface that is curved, and that extends from a proximity of the perimeter region of the downstream cavity (B) to the intercalary portion, the perimeter region of the downstream cavity (B) extending between the curved surface of the downstream cavity (B) and the surface of the exterior perimeter region of the downstream-oriented portion, and an extension of the perimeter region of the downstream cavity (B) between the downstream cavity (B) and the exterior perimeter region of the downstream-oriented portion, is similar to or smaller than an extension of the exterior perimeter region.
3. The tablet according to claim 1, wherein the downstream-oriented portion is configured so as to present at least one of: an exterior perimeter region of the downstream-oriented portion having a transversal dimension smaller than the total width (D.sub.T), whereby a transition surface between the downstream-oriented portion and the intercalary portion extends along an at least approximately transversal direction, and external perimeter edges of the downstream-oriented portion are rounded with a curvature radius between 1 and 6 mm.
4. The tablet according to claim 1, wherein the downstream cavity (B) is configured so as to present at least one of: a semi-spherical shape that extends between at least 50% and at most 75% of the total width (D.sub.T), or a characteristic dimension measured on a downstream-oriented surface of the downstream-oriented portion no larger than 90% of a corresponding characteristic dimension measured on a same plane of a perimeter edge of the downstream-oriented surface of the downstream-oriented portion next to the intercalary portion.
5. The tablet according to claim 1, wherein the upstream-oriented portion comprises at least one upstream cavity (A) disposed in a centered manner and that can extend at least until the intercalary portion, and wherein the at least one upstream cavity (A) occupies at least one of: a shape of linear type confining an area, and a shape of area type.
6. The tablet according to claim 1, wherein at least one of the upstream-oriented portion and the downstream-oriented portion comprises at least one respective cavity extending downstream and upstream, respectively, wherein: said respective cavities have different cavity volumes; said respective cavities have different transversal extensions; said respective cavities have different configurations; or at least one of said respective cavities extends towards the intercalary portion.
7. The tablet according to claim 1, wherein the tablet is configured so as to present at least one of the following: at least 60% of the volume of the compacted ground coffee is in a region that extends transversally until the total width (D.sub.T), including on said intercalary portion; at most 30% of the volume of the compacted ground coffee is in a region that extends transversally up to a smaller dimension than the total width (D.sub.T), including on said upstream-oriented portion; a relation between the total width (D.sub.T) and a total height of the tablet is at most 5:1.
8. The tablet according to claim 1, wherein the intercalary portion extends along a majority of a total height (H.sub.T) of the tablet, and the intercalary portion comprises perimeter transitions at an angle towards said upstream-oriented portion and said downstream-oriented portion.
9. The tablet according to a claim 1, wherein the tablet present at least one of: an asymmetric configuration, in terms of geometric shape with relation to a central transversal plane (YY), such that said intercalary portion extends in an uneven manner with relation thereto; an asymmetric configuration, in terms of total mass with relation to the central transversal plane (YY), such that a mass fraction of said intercalary portion upstream thereof is different from the mass fraction of the intercalary portion downstream thereof.
10. The tablet according to a claim 1, wherein the tablet comprises at least one of the following configurations: exterior side edges of the upstream-oriented portion define a transversal dimension smaller than the total width (D.sub.T), whereby a transition of the upstream-oriented portion to the intercalary portion includes an upstream-oriented perimeter surface, the upstream-oriented portion presents a surface that extends at least approximately transversally relative to the prevailing flow direction, along at least a portion of an extension of the upstream-oriented portion, the exterior side edges of the upstream-oriented portion are in plane surface inclined at an angle of at least 65 and at most 85 relative to the prevailing flow direction.
11. The tablet according to claim 1, wherein the tablet presents at least one of the following dimensional relations: a total height (H.sub.T) between 5 and 10 mm; a height (H.sub.11) of the upstream-oriented portion of at most 2 mm; a height (H.sub.12) of the downstream-oriented portion of at least 2 mm and at most 4 mm; a height (H.sub.13) of the intercalary portion of at most 7 mm, and the tablet has a granulometry distribution with at least 90% of particles having an average dimension between at least 100 m and up to 3000 m.
12. The tablet according to claim 5, wherein the tablet presents at least one of the following dimensional relations: the total width (D.sub.T) between 30 and 44 mm; a maximum transversal extension of the at least one upstream cavity (A) of the upstream-oriented portion between 5 and 40 mm; a maximum transversal extension of the downstream cavity (B) between 20 and 30 mm.
13. The tablet according to claim 1, wherein a region of transition from the upstream-oriented portion and downstream-oriented portion to the intercalary portion includes a surface that extends along a transversal direction and that forms an approximately right angle with an exterior wall of the intercalary portion.
14. The tablet according to claim 1, wherein the quantity of the compacted ground coffee is between 4 and 8 grams, and said quantity of the compacted ground coffee presents moisture content between 1 and 5% in mass.
15. The tablet according to claim 1, wherein the quantity of the compacted ground coffee corresponds to granulated coffee having a granulometry distribution with at least 90% of particles having an average dimension between 100 m and 3000 m.
16. A system for preparing edible products including: the tablet according to claim 1, an envelope configured to provide a gas barrier and confine the tablet; wherein said tablet can vary in at least one of: mass of the compacted ground coffee, volume of the tablet and configuration of at least one of the upstream-oriented portion and downstream-oriented portion, and said envelope can vary in at least one of: material, type, shape and dimension.
17. The system according to claim 16, wherein the envelope is at least one of: an edible material that follows a contour of the tablet; a non-edible material provided to confine the tablet but not following the contour thereof, and the individual portion comprises at least one envelope support whereby said envelope support is configured to confine at least one of: a single individual portion; a plurality of individual portions disposed successively along said envelope support.
18. The system according to claim 16, wherein the envelope is configured to provide for recognition of at least one characteristic associated with said upstream-oriented portion and said downstream-oriented portion, including by at least one of: a user, mechanical means of supply of said individual portion to an extraction device, and automatic recognition means.
Description
DESCRIPTION OF THE FIGURES
(1) The invention shall be hereinafter explained in greater detail based upon preferred embodiments and the attached Figures.
(2) The Figures show, in simplified schematic representations:
(3)
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DETAILED DESCRIPTION OF PREFERRED EMBODIMENTS OF THE INVENTION
(13)
(14) Said tablet (1) corresponds to a volume of coffee grounds that has been compacted so as to keep a corresponding three-dimensional form. Said volume corresponds to a regular geometry, including geometry that is rotation symmetric with relation to a central longitudinal axis (XX).
(15) In particular, the tablet (1) can present a quantity, or mass, of coffee ground, previously roasted and compacted, and presenting a general shape and dimension adapted so that said tablet (1) can be used as an individual portion (10) in the preparation of an aromatic beverage. In particular, said individual portion (10) is adapted so that can be supplied to an extraction device and operated therein in the preparation of coffee based beverage, such as for example espresso-type coffee.
(16) Said tablet (1) presents a transversal section with a total width (D.sub.T) and generally symmetric with relation to a central longitudinal axis (XX), and is configured so that presents an upstream-oriented portion (11) and a downstream-oriented portion (12), with relation to a prevailing flow direction, and further presents an intercalary portion (13) that extends between said upstream and downstream-oriented portions (11, 12) and in at least the most part of its extension, in the prevailing flow direction, and along said total width (D.sub.T).
(17) As represented, said individual portion (1) can present a generally circular transversal section, so that the individual portion (1) presents a general disk-like shape, or similar.
(18) According to an aspect of the invention, and as can be seen in particular in
(19) In particular, as represented in the drawing of
(20) In terms of the structural resistance of the tablet, it has been determined as advantageous when the characteristic dimension, for example diameter, of the downstream cavity (B) in the downstream-oriented surface does not exceed 95%, preferentially does not exceed 90% of the corresponding characteristic dimension measured on the same plane, for example diameter, of the perimeter edge of said downstream-oriented surface of said downstream-oriented portion (12).
(21) On the other hand, in terms of extraction of beverage, is has been demonstrated as advantageous when the characteristic dimension of the downstream cavity (B) is of at least 40%, preferentially of at least 40% of the characteristic dimension of the downstream-oriented surface of said downstream-oriented portion (12).
(22) A cavity and a closed chamber are herewith advantageously provided, together with at least one of: a package wall of said tablet (1), and a wall of the extraction device, whereby the beverage resulting downstream can temporarily accumulate. Moreover, said downstream cavity (B) is configured so that extends along only part of the downstream-oriented surface of said tablet (1), not occupying the entire transversal extension thereof.
(23) In particular, said downstream-oriented portion (12) can present a perimeter region of downstream cavity (B) that extends between the downstream cavity (B) and the exterior perimeter region of said downstream-oriented portion (12), along an at least approximately similar extension, preferentially bigger extension than the extension of the exterior perimeter region.
(24) It is preferred when the exterior perimeter region of said downstream-oriented portion (12) presents a transversal dimension smaller than said total width (D.sub.T), whereby the transition from the downstream-oriented portion (12) to said intercalary portion (13) preferentially includes a surface that extends along an at least approximately transversal direction.
(25) Moreover, it is preferred when the exterior edges of said downstream-oriented portion (12) are rounded with a curvature radius comprised between 1 and 6 mm, preferentially between 2 and 5 mm.
(26) It is herewith advantageously provided a reinforcement of the structural resistance of the tablet (1) when submitted to the force of hydraulic pressure of said pressurized flow of extraction, along a prevailing flow direction that is at least approximately orthogonal with relation to the biggest extension of volume of the tablet (1), i.e., with relation to the total width (D.sub.T).
(27) In the case of a preferred embodiment (not represented), said downstream-oriented portion (12) can present a perimeter region of the downstream cavity (B) only of rounded shape, devoid of plane surfaces, said downstream perimeter region being preferentially configured with a rounded shape at least approximately in continuous curved connection with said downstream cavity (B).
(28) As represented in
(29) According to another aspect of the present invention, and as can be observed in
(30) Moreover, it is very advantageous when the tablet (1) presents a relation between total width (D.sub.T) and total height (H) of at most 5, preferentially of at most 4.
(31) Moreover, it is advantageous when said intercalary portion (13) extends along at least the most part of the total height (H.sub.T) of tablet (1), and said intercalary portion (13) configures angled perimeter transitions, in particular reductions of width, at an towards said upstream (11) and downstream portions (12), preferentially including at an angle of at least approximately 90.
(32) A greater structural resistance of the compacted coffee tablet is herewith provided. Moreover, it is herewith provided a greater relative fraction of the total coffee mass with exposition along a maximum transversal dimension (D.sub.T) to the prevailing infusion flow direction, thereby contributing to a greater extraction efficacy of the coffee beverage.
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(34) It has been demonstrated as advantageous when the downstream cavity (B) presents a semi-spherical, spherical-cap, or ovoid-like shape.
(35) Moreover, the second embodiment presents a tablet (1) with a total height (H) that is bigger than the total height (H) associated with the tablet (1) of said first embodiment.
(36) In particular, a beverage preparation system according to the present invention can include at least two types of tablets (1, 1) presenting different heights (H), and similar heights of upstream and downstream portions (H.sub.11, H.sub.12), so that only varies the height of respective intercalary portions (H.sub.13). It is further preferred when said types of tablets (1, 1) presents similar total diameters (D.sub.T).
(37) The tablet (1) according to the present invention presents a quantity of roasted and ground coffee beans that is compacted in a compaction process that includes providing said quantity of previously roasted and ground coffee beans to a compaction mold presenting an interior shape and dimensions corresponding to the tablet (1) according to the present invention.
(38) Said quantity of coffee grounds is advantageously comprised between 4 and 8 grams, preferentially between 5 and 7 grams, particularly preferentially between 5.3 and 6.7 grams, whereas said quantity of coffee grounds presents a humidity content comprised between 1 and 5% in mass, preferentially between 2 and 4% in mass.
(39) Moreover, it has been demonstrated as particularly advantageous in tests that have been carried out when said quantity of coffee corresponds to granulated coffee presenting a granulometry distribution with at least 90% of particles with an average dimension comprised between 100 m and 3000 m, preferentially with at least 85% of the particles with an average dimension between 250 m and 2000 m.
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(41) Said at least one upstream cavity (A) can advantageously present an exterior perimeter corresponding to a geometric shape different from a circle, when seen in top view. In particular, said shape can correspond to at least one of: a polygon and an unclosed line (not represented in the drawings).
(42) It has been demonstrated as advantageous when the upstream cavity (A) that extends along at least one closed alignment confined by an exterior perimeter and an interior perimeter, both extending at the face of the upstream surface of said upstream-oriented portion (11). The upstream cavity (A) can herewith provide a preferential entry region of the upstream pressurized flow, favouring the orientation of its crossing of the compacted coffee tablet (1).
(43) In the case of the represented embodiments, said upstream cavity (A) can confine the cavity between an exterior perimeter and an interior perimeter, whereby said exterior and interior perimeters can advantageously present a geometric shape at least approximately similar, when seen in top view.
(44) In beverage preparation systems known in the prior art, it is known the use of beverage preparation apparatuses adapted so that can collect an individual portion, for example of roast and ground coffee, so as to prepare a beverage, for example of espresso type coffee.
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(46) In the case of a first type represented in
(47) In the case of a second type represented in
(48) The downstream cavity (B) in this case advantageously provides an extraction chamber, and the envelope (2) is preferentially configured, at least on the upstream-oriented side, so that temporarily retains the beverage flow that accumulated on said downstream cavity (B) against the retention of said envelope (2) until reaching a previously defined pressure value. There are known several embodiments of this type of envelope in the prior art so that one abdicates in this circumstance of a more detailed description thereof.