INLINE FLUID FOAMING DEVICE
20210076870 · 2021-03-18
Assignee
Inventors
Cpc classification
A47J31/52
HUMAN NECESSITIES
A47J31/4485
HUMAN NECESSITIES
International classification
Abstract
Inline fluid foaming device (10) for providing a foamed fluid directly into a container, the device (10) comprising an air path (120) for introducing a certain quantity of air into the device (10), and a fluid path (130) for introducing fluid into the device (10) coming from a fluid container (16), the mixture of air and fluid passing to a centrifugal pumping and foaming element (11) such that the amount of fluid into the device (10) is pumped by the centrifugal movement of the pumping and foaming element (11) and the foaming of the mixture is provided by driving it under a certain level of shear stress in the element (11), the device (10) further comprising a heating unit (14) to where the foamed mixture of fluid and air is conveyed for its optional later heating. The invention further relates to a beverage system comprising such an inline fluid foaming device (10) and a beverage dispensing machine.
Claims
1. Inline fluid foaming device for providing a foamed fluid directly into a container, the device comprising an air path for introducing a certain quantity of air into the device, and a fluid path for introducing fluid into the device coming from a fluid container, the mixture of air and fluid passing to a centrifugal pumping and foaming element such that the amount of fluid into the device is pumped by the centrifugal movement of the pumping and foaming element and the foaming of the mixture is provided by driving it under a certain level of shear stress in the element, and a heating unit to where the foamed mixture of fluid and air is conveyed for its optional later heating.
2. Inline fluid foaming device according to claim 1 wherein the air path is controlled by an air valve for introducing a certain controlled quantity of air into the device.
3. Inline fluid foaming device according to claim 1 wherein the pumping and foaming element is configured with at least two parts rotatable relative to each other.
4. Inline fluid foaming device according to claim 3 wherein the at least two parts form a gap between them so that the level of foaming of the mixture depends on the dimensions of the gap and on the relative rotational speed of the parts.
5. Inline fluid foaming device according to claim 3 wherein the amount of fluid pumped into the device depends on the relative rotational speed of the parts.
6. Inline fluid foaming device according to claim 1, wherein the pumping and foaming element is configured as a disc.
7. Inline fluid foaming device according to claim 6, wherein the disc comprises a surface selected from the group consisting of patterned or embossed surface and a flat, smooth surface, two patterned or embossed surfaces and two flat or smooth surfaces.
8. Inline fluid foaming device according to claim 1, further comprising an outlet in direct communication with the exit of a heating path in the heating unit.
9. Inline fluid foaming device according to claim 1, wherein the heating unit is configured as a heating plate, facing a heating path where the mixture flows.
10. Inline fluid foaming device according to claim 2 wherein the air valve is magnetically operated.
11. Inline fluid foaming device according to claim 1 wherein the pumping and foaming element is magnetically driven.
12. Inline fluid foaming device according to claim 1 configured connectable to a beverage dispensing machine in order to manage foamed fluid deliveries or different beverage recipes, through a commanded HMI in the device.
13. Inline fluid foaming device according to claim 12 wherein the HMI controls the operation of the device according to one or a plurality of operating parameters: rotational speed of the pumping and foaming element, duration in time of the rotation of the pumping and foaming element, temperature of the fluid, ratio of air with respect to the quantity of fluid, and type of beverage dispensed from the beverage dispensing machine.
14. Inline fluid foaming device according to claim 13 wherein a sequence of operation of the device is set by one or a plurality of operating parameters, such that a certain beverage recipe is made of one or a plurality of these sequences.
15. Inline fluid foaming device according to claim 12 wherein the foamed fluid deliveries commanded through the HMI 044 can be: liquid delivery, light foamed fluid, dense foamed fluid and/or foamed fluid with a certain ratio (%) of foam.
16. Inline fluid foaming device according to claim 12 connectable to a coffee machine.
17. Inline fluid foaming device according to claim 16 wherein the recipes commanded through the HMI are selected from the group consisting of: latte, cappuccino and latte macchiato.
18. Beverage system comprising an inline fluid foaming device for providing a foamed fluid directly into a container, the device comprising an air path for introducing a certain quantity of air into the device, and a fluid path for introducing fluid into the device coming from a fluid container, the mixture of air and fluid passing to a centrifugal pumping and foaming element such that the amount of fluid into the device is pumped by the centrifugal movement of the pumping and foaming element and the foaming of the mixture is provided by driving it under a certain level of shear stress in the element, and a heating unit where the foamed mixture of fluid and air is conveyed for its optional later heating and a beverage dispensing machine.
19. Beverage system according to claim 18 wherein the beverage dispensing machine is a coffee machine.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0024] Further features, advantages and objects of the present invention will become apparent for a skilled person when reading the following detailed description of non-limiting embodiments of the present invention, when taken in conjunction with the appended drawings, in which:
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DETAILED DESCRIPTION OF EXEMPLARY EMBODIMENTS
[0040] The present invention is directed to an inline fluid foaming device 10 providing fluid foam directly into cup. Typically, the fluid used with the device of the invention is milk. The fluid foaming device 10 comprises a pumping and foaming element 11 and an air entry 12, the air entry 12 being controlled by an air valve 13. Typically, according to the invention, the pumping and foaming element 11 is configured comprising a rotating element; the rotation of this element provides a centrifugal effect delivering the following: the pumping of the fluid and the air, and the further foaming of this mixture by passing it through a small gap where it is subjected to high shear stress forces, making this mixture to foam by Couette Flow effect. The quantity of air pumped and mixed with the fluid is controlled by the rotational speed of the element, by the opening of the air valve 13 and/or by the geometry of the air path following the air entry 12. The fluid foaming device 10 of the invention further comprises a heating unit 14: the mixture of fluid and air, when passing through this unit 14, can optionally be heated in order to provide a hot foamed fluid. When the heating unit 14 is not activated, the foamed fluid flowing through it will be delivered cold or ambient (not hot). A schematic view of the elements configuring the fluid foaming device 10 and the way they work is shown in
[0041] Different embodiments are possible according to the invention: the air entry 12 can go directly into the air path 120 without any air valve 13: therefore, the air inlet towards the device 10 will always be open and the control of the foaming will be done by acting on the rotation speed of the pumping and foaming element 11 and also on the geometry of the air path 120. Another possibility is to have an air valve 13 after the air entry 12 and before the air path 120 into the device 10, as described in the paragraph above. In this case, the air valve 13 can be controlled either manually or either automatically (when automatically controlled, there are two options: that the valve is magnetically driven or that it is directly driven).
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[0044] As shown in
[0045] Looking at
[0046] A more detailed view of the configuration of the inline fluid foaming device 10 of the invention is shown in
[0047] The rest of the details of the fluid foaming device 10 are shown in
[0048] Yet a third possible embodiment of the inline fluid foaming device 10 of the invention is shown in
[0049] The air path 120 and milk path 130 are closed tightly by means of a tightness cover 18, as represented in
[0050] Looking at
[0051] The inline fluid foaming device 10 of the invention, typically fully integrated with the fluid container 16 is preferably made connectable to a beverage dispensing machine, typically a coffee machine or the like. Such a system will therefore be able to provide different beverages and different recipes. For example, when looking at
[0052] Typically, a recipe is composed of one or several sequences for the types of foam, milk or coffee, each of these sequences including at least one or a combination of the following parameters: [0053] Motor speed [0054] Motor time [0055] Temperature [0056] Air valve duty cycle [0057] Coffee type
[0058] This has been exemplified in
[0059] As a summary, the technology of the inline fluid foaming device of the invention consists of a controlled air valve, a centrifugal pumping and foaming element and a gentle heating unit. The construction is made very simple and all technical elements are embedded in a single unit (the inline fluid foaming device 10 as defined previously in the several embodiments representing the invention). The different solutions of the device of the invention allow to efficiently deliver superior quality foam with very few parts and yet allowing a very simplified cleaning. Furthermore, a magnetic drive of the centrifugal pumping and foaming element is provided so as to simplify the cleaning and decrease the number of parts. Preferably, this pumping and foaming element is very simply configured as a single disc, having two sides differently patterned, this disc being responsible for both pumping and foaming features. In addition, an air valve accurately controls the quantity of air into the mixture, typically for the preparation of complex recipes including milk and foam. The actuation of this valve is preferably done magnetically, though it can also be electronically actuated.
[0060] In summary, some of the main advantages of the device of the invention are the following: [0061] Superior micro foam being delivered [0062] Adjustable foam density, by acting on the air entry through the adjustable air valve [0063] Simple architecture [0064] In-line system, direct to cup [0065] Embodiments allowing a very easy cleaning [0066] Possibility to deliver hot, cold or ambient preparations [0067] Machine module or accessory architectures are possible [0068] Magnetic drive allowing a simplified cleaning and reduced parts wear, and also allowing the electronic control of recipes (one-touch recipes, milk or foam) [0069] Single disc construction for the pumping and foaming element with very few parts to handle and no tubes for an easy cleaning [0070] Control of entire recipes (for example Cappuccino or Latte Macchiato) at the touch of a button
[0071] Although the present invention has been described with reference to preferred embodiments thereof, many modifications and alterations may be made by a person having ordinary skill in the art without departing from the scope of this invention which is defined by the appended claims.