CAPSULE DISTRIBUTING DEVICE WITH OR WITHOUT ORIENTATION AND WITH BULK LOADING
20210259457 · 2021-08-26
Inventors
- Francesco MINERBA (Robecchetto con Induno (Milano), IT)
- Angelo BONIZZONI (Robecchetto con Induno (Milano), IT)
Cpc classification
International classification
A47J31/52
HUMAN NECESSITIES
Abstract
Disclosed is a device for distributing capsules, including a container apt to receive in bulk a plurality of capsules and an ordering assembly placed inside the container, apt to arrange the capsules vertically for subsequent distribution; wherein the ordering assembly includes a rotating helical screw for mixing capsules, mounted on a basket rotating together with it, the basket having an inclined upper wall or slide, such that its height varies gradually from a minimum to a maximum along its periphery, and an open vertical seat apt to accommodate a capsule placed vertically and to distribute it through an opening formed on the bottom wall of the container.
Claims
1. Device (100) for distributing capsules, comprising a container (10) able to receive in bulk a plurality of capsules (1) and an ordering assembly arranged inside said container (10), apt to vertically arrange said capsules (1) for the subsequent distribution; wherein said ordering assembly comprises a rotating helical screw (60) for stirring capsules, mounted on a basket (50) rotating with it, said screw (60) having a diameter growing from its upper tip as far as the base, and said basket (50) having an inclined upper wall or slide (51), having a ramp development, such that the height of the basket (50) varies gradually from a minimum to a maximum along its periphery, and an open vertical seat (54) suitable for receiving a capsule (1) arranged vertically and distributing it through an opening (16) formed on the bottom wall (14) of the container (10).
2. The device (100) according to claim 1, wherein the distance between the base of said helical screw (60) and the side wall of the container (10) is such that it can accommodate a capsule (1) only if arranged vertically, the horizontal dimension of the capsule being greater than the vertical one.
3. The device (100) according to claim 1, further comprising at least one pusher (21) projecting internally of said container (10) under the action of elastic means (22) at a level corresponding to said inclined plane (51) of the basket (50), so as to lift a capsule preventing the capsule from overlapping another said capsule present in said seat (54) of the basket, and returning when the pusher interferes with the higher part of the basket during rotation of the basket.
4. The device (100) according to claim 1, also comprising a dome-shaped body (70) arranged below said container (10) and rotating in synchronism with said basket (50), and having a through opening (74) delimited by vertical walls, in alignment with said seat (54) of the basket (50), apt to receive a capsule (1) arranged vertically.
5. The device (100) according to claim 4, wherein underneath said dome-shaped body (70) there is also provided an underlying plate (80) provided with two aligned openings (81), orientated in the same direction and reproducing the shape of a capsule (1) arranged vertically, each one apt to receive a capsule (1) from said dome-shaped body (70) during rotation of the dome-shaped body, according to the random orientation in which the capsule is arranged in the opening (74) of the dome-shaped body (70), so as to distribute the capsules with the same orientation from any one of the aforesaid two openings (81).
6. The device (100) according to claim 5, further comprising a Y-shaped conveyor (90) comprising two ducts (91) which depart from the aforesaid openings (81) of the plate (80) and flow towards a single outlet duct (92), apt to distribute the capsules with the orientation determined by said openings (81).
7. The device (100) according to claim 4, wherein said dome-shaped body (70) carries a gear (71) at a base of the dome-shaped body which can be rotated by a pinion (72) of a geared motor (73), said dome-shaped body (70) being keyed on a shaft (40) on which said basket (50) is also keyed with the helical screw (60).
8. The device (100) according to claim 7, also comprising a sensor (25), suitable for detecting the presence or passage of a capsule (1) to stop rotation of the gear (71).
9. The device (100) according to claim 6, mounted on a beverage production machine, so that said capsules (1) are fed with a predetermined orientation to the distributing assembly of such a machine.
10. The device (100) according to claim 1, further comprising a capsule orientating assembly for a distribution of said capsules with a given orientation, wherein said orientating assembly comprises a plate (80) provided with two aligned openings (81), orientated in the same direction and reproducing the shape of a capsule (1) arranged vertically, each one apt to receive a capsule (1), according to the random orientation in which the capsule is arranged on the plate (80) and made to circulate in a circle thereon, below said plate (80) being possibly provided a Y-shaped conveyor (90) comprising two ducts (91) which depart from the aforesaid openings (81) of the plate (80) and flow towards a single outlet duct (92) with the orientation determined by said openings (81).
11. The device (100) according to claim 2, further comprising at least one pusher (21) projecting internally of said container (10) under the action of elastic means (22) at a level corresponding to said inclined plane (51) of the basket (50), so as to lift a capsule preventing the capsule from overlapping another said capsule present in said seat (54) of the basket, and returning when the pusher interferes with the higher part of the basket during rotation of the basket.
12. The device (100) according to claim 2, also comprising a dome-shaped body (70) arranged below said container (10) and rotating in synchronism with said basket (50), and having a through opening (74) delimited by vertical walls, in alignment with said seat (54) of the basket (50), apt to receive a capsule (1) arranged vertically.
13. The device (100) according to claim 3, also comprising a dome-shaped body (70) arranged below said container (10) and rotating in synchronism with said basket (50), and having a through opening (74) delimited by vertical walls, in alignment with said seat (54) of the basket (50), apt to receive a capsule (1) arranged vertically.
14. The device (100) according to claim 5, wherein said dome-shaped body (70) carries a gear (71) at a base of the dome-shaped body which can be rotated by a pinion (72) of a geared motor (73), said dome-shaped body (70) being keyed on a shaft (40) on which said basket (50) is also keyed with the helical screw (60).
15. The device (100) according to claim 6, wherein said dome-shaped body (70) carries a gear (71) at a base of the dome-shaped body which can be rotated by a pinion (72) of a geared motor (73), said dome-shaped body (70) being keyed on a shaft (40) on which said basket (50) is also keyed with the helical screw (60).
16. The device (100) according to claim 7, mounted on a beverage production machine, so that said capsules (1) are fed with a predetermined orientation to the distributing assembly of such a machine.
17. The device (100) according to claim 8, mounted on a beverage production machine, so that said capsules (1) are fed with a predetermined orientation to the distributing assembly of such a machine.
18. The device (100) according to claim 11, also comprising a dome-shaped body (70) arranged below said container (10) and rotating in synchronism with said basket (50), and having a through opening (74) delimited by vertical walls, in alignment with said seat (54) of the basket (50), apt to receive a capsule (1) arranged vertically.
19. The device (100) according to claim 14, mounted on a beverage production machine, so that said capsules (1) are fed with a predetermined orientation to the distributing assembly of such a machine.
20. The device (100) according to claim 15, mounted on a beverage production machine, so that said capsules (1) are fed with a predetermined orientation to the distributing assembly of such a machine.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Further features of the invention will be made clearer by the detailed description that follows, referring to its purely example and non-limiting embodiments, illustrated in the accompanying drawings, in which:
[0015]
[0016]
[0017]
[0018]
[0019]
[0020]
[0021]
[0022]
[0023]
[0024]
DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0025] Referring to these drawings, and for the time being in particular to
[0026] A capsule that can be used in the device according to the invention is shown in
[0027] The capsule is shown in a substantially truncated cone shape, with a symmetry around an X axis (
[0028] Here below, capsule 1 will be considered horizontally placed when it is in the position shown in
[0029] Naturally, capsule 1 may have a different shape from that shown in
[0030] Here below in this description the capsule 10 will be called irregularly shaped to indicate that, when placed vertically, that is, with the X axis horizontal, it can enter a seat that reproduces the shape thereof only with a well-defined orientation and not, for example, if orientated in the opposite direction. In other words, capsule 10 is irregularly shaped in that it does not have a constant radial dimension.
[0031] Capsules 1 are loaded in bulk, therefore with completely irregular and random packing in a tank or container 10, provided with a protective cover 11, in which is placed a capsules ordering assembly that will now be described.
[0032] Container 10 has an almost parallelepiped shape, slightly tapered downwards, where it is connected to a cylindrical section 12 with a decreasing diameter, which is joined to a lower tank 13, with a substantially circular section, having a bottom wall 14, with a central circular hole 15 and a substantially rectangular opening 16 (see in particular
[0033] Naturally, container 10 can be different in shape from the one shown and is provided separate from tank 13 for simplicity of construction and ease of assembly.
[0034] The tank 13, together with other components of the device that will be mentioned here below, is housed in a cover cap 20 placed on an internally hollow base 30.
[0035] Through said central hole 15 of the bottom 14 of the tank 13, which is fixed to the cover cap 20, and then to the base 30, passes a shaft 40, on which is keyed a basket 50 with an inclined plane or upper slide 51, whose function will be described in greater detail below.
[0036] A helical screw 60 is mounted on the basket 50, also integral with the shaft 40.
[0037] The helical screw 60, which is used to mix the capsules 1 in the container 10, has an increasing diameter from its upper tip to the base which is embedded in the basket 50.
[0038] In the drawings the screw 60 is shown made in two parts that are assembled together, but it is clear that it can be made in one piece.
[0039] Basket 50 has no bottom and therefore has a side wall 52 with a circular section and the aforementioned inclined upper wall or slide 51 which has a ramp shape, such that the height of the basket 50 gradually varies from a minimum to a maximum along its periphery.
[0040] As can be seen more clearly in the enlargement of
[0041] In the cap 20, under the basket 50, a dome-shaped body 70 is placed, in which the shaft 40 is keyed, and carrying below a gear 71, which can be actuated in rotation by a pinion 72 of a geared motor 73.
[0042] The dome-shaped body 70 has a vertical through opening 74 placed in alignment with the aforementioned seat 54 of the basket 50, and apt to accommodate a capsule 1. On the side wall of the dome 70, at said vertical through opening 74, a slit 75 is provided.
[0043] Below the dome-shaped body 70 with gear 71 a plate 80 is placed, provided with two aligned openings 81 orientated in the same direction and reproducing the shape of a capsule 1 placed vertically.
[0044] Below plate 80 a Y-shaped conveyor 90 is placed, comprising two ducts 91, which start from the above-mentioned openings 81 of the plate 80 and flow towards a single outlet duct 92, from which the capsules are distributed with a very precise orientation, as will be explained in greater detail here below, and fed, for example, to the distributing assembly of a machine for the production of drinks.
[0045] In the cap 20, in approximately diametrically opposed positions, two pushers 21 are inserted, protruding inside the tank 13 under the action of elastic means 22.
[0046] As can be seen, for example, in
[0047] The operation of the device according to the invention for ordering, orientating and distributing capsules is now described.
[0048] Actuation of the geared motor 73 rotates the gear 71 of the dome-shaped body 70 by means of the pinion 72, and therefore the shaft 40 on which it is keyed, making the basket 50 and the helical screw 60 rotate synchronously.
[0049] The rotation of the helical screw 60 performs a mixing of the capsules1 inserted in the container 10, facilitating the fall thereof into the tank 13.
[0050] The increase in diameter of the screw 60 towards its base reduces the distance between it and the side wall of the tank 13, such that a capsule 1 can enter the space between the screw and the side wall of the tank and therefore in the tank 13, accompanied by the rotation movement of the helical screw, only in the vertical direction, the maximum radial dimension of the capsule being greater than the axial one.
[0051] During the rotation of the basket 50, which is clockwise with reference to the accompanying drawings, a capsule 1 falls into the seat 54 of the basket through the upper opening 51, and is dragged onto the bottom 14 of the tank.
[0052] To prevent a second capsule from partially entering the seat 54 in the basket and causing any jams, the abovementioned pushers 21 intervene, as for example shown in
[0053] In fact, such a situation could occur when, during the rotation of the basket 50, a capsule 1 in the tank 13 is in the transition zone between the part of smaller height and the part of greater height of the basket, where the seat 54 is formed.
[0054] To avoid this, pusher 21 protrudes into tank 13, where basket 50 is lower in height, and lifts a capsule 1 located in that zone, as shown in
[0055] The pusher 21 shown in
[0056] The same situation occurs with the other pusher 21 placed at about 180° from the previous one.
[0057] It has been verified that the provision of two pushers optimally solves the problem of capsule jamming.
[0058]
[0059] It should be noted that
[0060] During the rotation of the basket 50, which takes place integrally to the underlying dome-shaped body 70, the capsule 1 placed in the seat 54, at a certain point, is located at the opening 16 provided on the bottom 14 of the tank 13, falling into the corresponding opening 74 of the dome-shaped body 70, which is in perfect alignment with the seat 54. The situation is schematically shown in
[0061] Up to this point, capsule 1 is located on plate 80 located above the Y-shaped conveyor 90, in which plate two aligned openings 81 are provided, orientated in the same direction and reproducing the vertical shape of a capsule 1.
[0062] The capsules, after transiting from container 10 along the basket 50 and in the dome-shaped body 70, arrive on the plate 80 placed in a vertical position but with a random orientation, that is, in the case of capsules with a substantially truncated cone shape, as shown in the drawings, with the larger base turned indifferently in one direction or another.
[0063] Therefore, depending on how the capsule is orientated, it enters one or the other of the two shaped openings 81.
[0064] In practice, if the capsule 1 falls on the plate 80 with an orientation as shown by dotted lines in
[0065] In the position shown in
[0066] The device according to the invention can be connected to a control logic such that, for example, on command from a user, by activating an appropriate button, a capsule is distributed.
[0067] For this purpose, a presence sensor 25, shown in
[0068] In this way, a capsule 1 is prepared in order to enter one of the two ducts 91 of the Y-shaped conveyor 90 at the next command given by the user and a new capsule is prepared for the next pickup.
[0069] Naturally the position of the sensor 25 is such that the capsule is stopped on the plate 80 in a position where no shaped openings 81 are provided.
[0070] The advantages of the device according to the invention appear clear from the above which, starting from capsules loaded in bulk, is able to order and orientate them so as to be individually fed to the distributing assembly of a machine for the production of a drink.
[0071] The device described above can be used not in combination with a beverage machine, acting as a distributor of orientated capsules, distributed by the outlet duct 92 of the Y-shaped conveyor 90.
[0072]
[0073] According to this embodiment, the capsules 1, starting from container 10, where they are loaded in bulk, perform the transit previously described in order to be distributed by one or the other of the two shaped openings 81 of plate 80 with the same pre-set orientation.
[0074]
[0075] In this case, sensor 25 detects the passage of a capsule and stops rotation of the gear 71.
[0076] The functioning of the device according to the simplified embodiments of
[0077] Naturally the invention is not limited to the particular embodiments previously described and illustrated in the accompanying drawings, but numerous detail changes may be made thereto within the reach of the person skilled in the art, without thereby departing from the scope of the invention itself, as defined in the appended claims.