IP Library Granted Patent US 10,306,905
Granted Patent B2
US 10,306,905 · App. 14/956,797 · Granted Jun 4, 2019

Machine and method for making and dispensing liquid food products

Inventor: Andrea Cocchi (Calderara di Reno, IT)
Assignee: ALI GROUP S.R.L.—CARPIGIANI
A23G9/045A23G9/12A23G9/228A23G9/281
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Quick Facts
Patent No.
US 10,306,905
App. No.
14/956,797
Granted
Jun 4, 2019
Kind
B2
Abstract

A machine for making and dispensing iced food products such as granitas, slush drinks and the like including: at least one closed and sealed chamber for containing and processing the product to be dispensed; a corresponding tank for feeding the basic ingredients needed for obtaining the product to be dispensed; a connecting pipe between an outlet of the tank and the inlet of the chamber; and a flow meter positioned along said pipe.

Claims (48)

1. A machine for making and dispensing a liquid or semi-liquid food product, comprising:

a chamber for containing and processing the food product to be dispensed and which is closed during use,

a dispensing tap positioned near a bottom of the chamber,

a stirring unit including a motor and a stirrer driven by the motor,

an evaporator of a refrigerating circuit positioned inside the chamber;

wherein the chamber includes an inlet,

a feeding tank, including an outlet, for feeding into the chamber basic ingredients needed for obtaining the food product to be dispensed;

a connecting pipe between the outlet of the feeding tank and the inlet of the chamber; and

a flow meter positioned along the connecting pipe;

a base structure to which the chamber can be coupled,

wherein the feeding tank is positioned over at least a portion of the chamber to feed the basic ingredients into the chamber by gravity;

wherein the chamber is delimited by at least two walls which are separable from each other and uncouplable from the base structure,

a locking mechanism including an engagement surface for engaging a surface of the chamber for holding the at least two walls together in a mutually coupled operating position;

wherein the locking mechanism further includes a slotted coupling element at a front of the locking mechanism and a stop element at a back of the locking mechanism;

wherein the slotted coupling element includes a tongue which projects as a cantilever from an upper edge of a first wall of the at least two walls and a slot positioned on an edge of a second wall of the at least two walls;

wherein the stop element includes a cap supported by a shoulder of the base structure, the cap for receiving and coupling the at least two walls in the mutually coupled operating position to prevent the at least two walls of the chamber from being lifted from the base when the at least two walls are in the mutually coupled operating position;

wherein the chamber includes an opening in a rear wall thereof shaped and sized to receive the evaporator internally of the chamber when the chamber is coupled to the base structure;

a processing unit including a processor, the processor connected to the flow meter and programmed to receive from the flow meter a signal relating to a flow of basic ingredients along the connecting pipe, and the processor also connected to a memory and programmed to update a value of the flow of basic ingredients memorized in the memory based on the signal received from the flow meter to keep track of an amount of the basic ingredients which flows through the connecting pipe over a defined period of time.

2. The machine according to claim 1 , and further comprising a controller for checking a correct mutual coupling of the at least two walls and for enabling machine operation after the checking.

3. The machine according to claim 2 , and further comprising a solenoid valve positioned along the connecting pipe and controlled by the controller.

4. The machine according to claim 3 , wherein the solenoid valve is a three-way solenoid valve comprising a path in leading to the outlet of the feeding tank, a first path out leading to the inlet of the chamber and a second path out leading to a duct for drainage outside the chamber.

5. The machine according to claim 1 , wherein the at least two walls are respectively a cup-shaped lower wall and an upper lid.

6. The machine according to claim 1 , and further comprising a display operatively connected to the flow meter for displaying a flow quantity measured.

7. A method for making and dispensing a liquid or semi-liquid food product, comprising:

providing a machine for making and dispensing the liquid or semi-liquid food product, comprising:

a chamber for containing and processing the food product to be dispensed and which is closed during use,

a dispensing tap positioned near a bottom of the chamber,

a stirring unit including a motor and a stirrer driven by the motor,

an evaporator of a refrigerating circuit positioned inside the chamber;

wherein the chamber includes an inlet,

a feeding tank, including an outlet, for feeding into the chamber basic ingredients needed for obtaining the food product to be dispensed;

a connecting pipe between the outlet of the feeding tank and the inlet of the chamber; and

a flow meter positioned along the connecting pipe;

a base structure to which the chamber can be coupled,

wherein the feeding tank is positioned over at least a portion of the chamber to feed the basic ingredients into the chamber by gravity;

wherein the chamber is delimited by at least two walls which are separable from each other and uncouplable from the base structure,

a locking mechanism including an engagement surface for engaging a surface of the chamber for holding the at least two walls together in a mutually coupled operating position;

wherein the locking mechanism further includes a slotted coupling element at a front of the locking mechanism and a stop element at a back of the locking mechanism;

wherein the slotted coupling element includes a tongue which projects as a cantilever from an upper edge of a first wall of the at least two walls and a slot positioned on an edge of a second wall of the at least two walls;

wherein the stop element includes a cap supported by a shoulder of the base structure, the cap for receiving and coupling the at least two walls in the mutually coupled operating position to prevent the at least two walls of the chamber from being lifted from the base when the at least two walls are in the mutually coupled operating position;

wherein the chamber includes an opening in a rear wall thereof shaped and sized to receive the evaporator internally of the chamber when the chamber is coupled to the base structure;

placing basic ingredients in the feeding tank;

transferring the basic ingredients through the connecting pipe from the feeding tank to the chamber for containing and processing the food product to be dispensed;

measuring, during the transferring step, using the flow meter, a parameter representing a quantity of basic ingredients transferred through the connecting pipe;

saving the parameter representing the quantity of basic ingredients transferred;

activating the stirring unit and the refrigerating circuit to process the basic ingredients in the chamber;

receiving from the flow meter a signal relating to a flow of basic ingredients along the connecting pipe, and connecting to a memory to update a value of the flow of basic ingredients memorized in the memory based on the signal received from the flow meter to keep track of an amount of the basic ingredients which flows through the connecting pipe over a defined period of time.

8. The method according to claim 7 , and further comprising displaying an indication representing the quantity of basic ingredients transferred through the connecting pipe in a defined period of time.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 8, 2019
From: ALI S.P.A. - CARPIGIANI GROUP
To: ALI GROUP S.R.L. - CARPIGIANI
Reel/Frame 048288/0459 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 2, 2015
From: COCCHI, ANDREA
To: ALI S.P.A. - CARPIGIANI GROUP
Reel/Frame 037190/0041 →
Priority Claims (1)
IT BO2014A0682 · Dec 3, 2014 · national
Continuity (1)
Related Publication 20160157509A1 · Jun 9, 2016
Cited By (14)
US 1,076,573 US 1,076,580 US 1,091,236 US 1,143,781 US 12,279,629 US 12,285,028 US 12,414,578 US 12,446,594 US 12,514,262 US 12,520,857 US 12,527,334 US 12,575,698 US 12,593,855 US 12,714,123