Automatic coffee machine for preparing espresso coffee
11166585 · 2021-11-09
Assignee
Inventors
Cpc classification
A47J31/42
HUMAN NECESSITIES
International classification
A47J31/42
HUMAN NECESSITIES
Abstract
The automatic coffee machine for preparing espresso coffee comprises at least one; infusion assembly (1) having an infusion piston (2) that can be actuated by motorized means (3), at least one container containing coffee beans to be ground, grinding means (4, 5) to grind the beans for preparing doses of ground coffee, conveying means to convey the doses of ground coffee into a filter-holder element (7) arranged under the piston, the grinding means (4, 5) comprising a first and a second grinder that are actuated by a first and a second opposite motor (8, 9) arranged laterally to the infusion piston.
Claims
1. Automatic coffee machine for preparing espresso coffee, comprising at least one infusion assembly having an infusion piston that is suitable to be actuated by motorized member, at least one container coffee beans to be ground, grinding means for grinding the beans so as to prepare the doses of ground coffee, conveying means for conveying said doses of ground coffee into a filter-holder element arranged under said piston, wherein said grinding means comprise a first and a second grinder that are actuated by a first and a second opposite motor arranged laterally to said infusion piston in a backward region with respect to the infusion piston and the filter-holder wherein said conveying means comprises a telescopic conveyor with a movable end piece, said automatic coffee machine further comprising a slotted control device for activating said movable end piece, said slotted control device having a toothed head that meshes with teeth being on a bottom of said movable end piece.
2. Automatic coffee machine according to claim 1, wherein said movable end piece of said telescopic conveyor comprises a flap at one end thereof.
3. Automatic coffee machine according to claim 1, wherein said slotted control device has a slot ending with a tilted seat inside of which a slidable pin is moved vertically by a bracket connected to said infusion piston.
4. Automatic coffee machine according to claim 1, wherein said first grinder is supplied by a first container containing a first blend of coffee beans and that said second grinder is supplied by a second container containing a second blend of coffee beans.
5. Automatic coffee machine according to claim 4, wherein said second container is adapted to contain the same blend of coffee beans of the first container, or a different blend.
6. Automatic coffee machine according to claim 1, wherein said first and second grinder are activated selectively or simultaneously.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Further characteristics and advantages of the invention will become more evident from the description of a preferred, but not exclusive, embodiment of the coffee machine according to the invention, depicted for illustrative purposes only and without limitation in the attached drawings, in which:
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DETAILED DESCRIPTION OF EMBODIMENTS OF THE PRESENT INVENTION
(8) Referring particularly to the aforesaid figures, the automatic coffee machine according to the invention is able to continuously prepare espresso coffees, having the ability to select at will the coffee blend before making the desired espresso coffee.
(9) In particular, the coffee machine comprises at least one infusion assembly depicted as a whole by numeral 1, having an infusion piston 2 that can be actuated by motorized means and, in particular, by an electric motor 3.
(10) The machine further has a first and a second container for coffee beans to be ground, not shown, that respectively supply the beans to the grinding means defined by a first and a second grinder 4 and 5, in order to prepare the doses of ground coffee.
(11) The doses of ground coffee are then moved by conveying means, generally referred to with the numeral 6, inside a filter-holder element 7 arranged under the infusion piston 2.
(12) Advantageously, the first and second grinders 4 and 5 are actuated by a first and a second motor 8 and 9 laterally arranged on the opposite sides of the infusion piston 2 in a backward region with respect to the same and the filter-holder 7, so that the resulting assembly is extremely compact and there is no interference with the front part of the machine where the filter-holder is manipulated and the espresso coffee is dispensed.
(13) The first and second grinders 4 and 5 are equidistantly connected to conveying means 6 to convey the coffee powder through a first and a second curved channel 22 and 23 so that the path of the powder is equal for both grinders from their discharge outlet to the filter-holder.
(14) In this manner, the grinding times can be calculated for both grinders according to requirements, without the filling of the filter-holder being affected by the grain size of the obtained coffee powder, which can be either equal or different for the two grinders.
(15) Conveniently, the first grinder is supplied by a first container of a first blend of coffee beans and the second grinder is supplied by a second container of a second blend of coffee beans in order to ensure that the user has the possibility to choose between two blends of coffee powder which differ from each other both for taste and for grain size.
(16) For example, one of the advantages given by the invention, in addition to the availability of two different blends of coffee powder per each infusion piston, is to allow the second container to contain, instead of the coffee powder, a soluble product or a similar product able to be used either individually to make a desired beverage or together with the coffee powder of the other grinder to make a milky coffee or a coffee combined with other essences.
(17) In the case of soluble powder, the designated grinder simply acts as dispenser of the coffee powder within the conveying means.
(18) The first and the second grinders can be activated either selectively or simultaneously.
(19) In the last case, by blending different amounts of coffee powder with a different grain size and without modifying the grinders in any way, it is possible to obtain an infinite number of variations in the grain size as well as in the blend thereby attaining the organoleptic perfection of the dispensed espresso coffee.
(20) In fact, it is possible to have not only different blends and blends with different degrees of grain size but also a different impact as the infusion water passes through the powder in the filter-holder, due to possibility of delivering in the latter a first amount of coffee powder with fine grain size and then delivering in the same a second amount of coffee powder with coarse grain size and vice versa.
(21) In other words, various layers of coffee powder with different grain sizes can be produced in the filter-holder.
(22) Thanks to this flexibility in use, it is possible to have a machine able to dispense endless types of espresso coffee.
(23) In particular, the conveying means 6 to convey ground coffee comprise a telescopic conveyor 10 with a movable end piece 11 that can also be actuated by the electric motor 3.
(24) The outlets of the first and the second curved channels 22 and 23 open into a hopper 24 positioned on the top of the telescopic conveyor, in order to take the coffee powder into the filter-holder 7.
(25) In a predetermined way and by synchronizing means, the motor 3 manages the movement of the movable end piece 11 of the telescopic conveyor with the infusion piston and the first and second grinders.
(26) In particular, the synchronizing means comprise a slotted control device 13 for controlling a kinematic mechanism for activating the movable end piece 11 having at one end thereof a flap 12 which is opened or closed by means for converting the translational movement of the movable end piece 11 into a rotation of the flap 12.
(27) In more detail, the slotted device 13 has a toothed head 14 that meshes with teeth 15 on the bottom of the movable end piece 11.
(28) Advantageously, the slotted device 13 has a slot 16 ending with a tilted seat 17 inside of which a slidable pin 18 is moved vertically by a bracket 19 connected to the infusion piston 2.
(29) As a result, when the machine is activated for producing a coffee beverage, the blend is able to be selected by activating, respectively, one grinder or the other or even both the grinders, the movable end piece 11 located close to the filter-holder 7 and which begins to become filled with the predetermined amount of coffee powder.
(30) The flap 12 is in the open position and the bracket 19 with the pin 18 is in the raised position.
(31) The pin 18 is housed inside the tilted seat 17 and the slotted element is in a substantially horizontal position.
(32) When the infusion piston 2 starts to descend, at the same time the bracket 19 descends, thereby directing the pin 18 inside the slot 16 so as to cause the rotation of the slotted device 13 that returns the end piece 11 to the retracted position, by means of the toothed head 14.
(33) While the end piece 11 is rising, the flap 12 automatically closes.
(34) After the coffee has been dispensed, as the piston 2 rises it causes the end piece 11 to return to the loading position of the filter-holder, repeating the above described sequential steps.
(35) Any modifications and variations, besides the already mentioned ones, are of course possible, in particular those relating to materials, dimensions and proportions of the elements illustrated in figures.
(36) The so-designed automatic machine for preparing espresso coffees is susceptible of several modifications and variations, all falling within the inventive conception; furthermore, all the details can be replaced by technically equivalent elements.
(37) In practice, any materials or sizes can be used according to the requirements and the state of the art.