The present invention relates to a system for flexible food or beverage packs, in particular to a system encoding information related to the products and to the recipe parameters to be applied by a beverage preparation machine in order to prepare a certain beverage.
Preparing beverages by introducing a capsule containing a food or beverage ingredient, such as ground coffee or instant coffee, in a beverage dispensing machine and injecting water into the capsule is known in the state of the art: the beverage or food ingredient is typically extracted or dissolved into water to form the beverage or the desired final product, which flows out of the capsule through a suitable outlet.
As such, different capsules have been developed in the past, these capsules being at least differentiated by the nature of the capsule body used for storing the food or the beverage ingredient. While most of the capsules are made of a rigid body or semi-rigid body, typically made though injection moulding or thermoforming, flexible types of packs can be made out of foil materials. Flexible packs have generally the advantage to semi-rigid and rigid capsules that less amount of material is used to pack the product which leads to overall less production cost, to lower life cycle impact shown in several life-cycle assessments and to advantages on the part of the user, who will need less available space for storing these packs, as they are more compact.
It is known in the state of the art, for example as per document WO 99/05044, a flexible beverage-producing sachet comprising a beverage ingredient in a volume formed by bonding two laminates at their edges, having a base seam into which a conduit of rigid plastics is bonded. An inlet nozzle is provided at the top of the resulting sachet for introducing water that is mixed with the beverage or food ingredient inside the inner volume of the sachet, the beverage produced being then evacuated through a beverage outlet arranged at the bottom of the pack, where closing means are provided, such that the closing means are adapted to open under pressure when pressurized water is introduced into the sachet, allowing the beverage to evacuate through the beverage outlet.
Other flexible sachets are known in the art having a container where a fitment assembly or spout is arranged on one of its edges, typically on the lower edge. Moreover, this spout is overwrapped by the flexible film configuring the container, for hygiene reasons and to ensure a proper barrier, in particular to light and moisture. A pack comprising such a spout is for example described in European Patent Application EP 16184302.4 belonging to the same applicant, where the spout comprises two parts relatively moveable with respect to each other for adopting different positioning. The spout is initially provided overwrapped by the flexible film configuring the container and, when it is arranged in a beverage preparation device, it is first pierced to be engaged with a corresponding device part and to inject a fluid, typically water, inside the container, in order to prepare the beverage; then, the two parts of the spout are moved relatively to each other in order to allow the dispensing of the beverage and then closing it back to avoid dripping.
In the sachets comprising the spouts described, it would be highly desirable to provide an encoding system providing information on the type of products prepared and also on the parameters that a beverage preparation device should apply in order to prepare and dispense a high quality food or beverage product. This information could be provided by codes or identification means but this makes the beverage preparation device more complex. Moreover, it would be desirable to provide a secondary encoding system, very simple, in parallel, to confirm the information provided to the device by other identification means or to work in case the first identification means are damaged for example or the like.
The present invention comes to provide a solution to these needs, as it will be further explained. The invention also aims at other objects and particularly at the solution of other problems as will appear in the rest of the present description.
According to a first aspect, the invention relates to a spout comprising at least two parts relatively moveable with respect to each other such that at least one of the two parts of the spout comprise means presenting a measurable resistance to being connected to an engaging part of a beverage preparation device and/or to the relative movement of the two parts of the spout, these means further comprising one or a plurality of indents or bumps.
Preferably, in the spout of the invention, the presence or not of an indent or a bump is translated into binary format for configuring a code. Typically, the profile of the indents or bumps define a digital value for configuring a code.
According to a second aspect, the invention relates to a pack for preparing a food or beverage product comprising a spout as the one described and a container configured to comprise a product to prepare the said food or beverage product, wherein the one or plurality of indents or bumps configure a code comprising the information on the product inside the container and/or on the processing of the said product.
Typically, in the pack of the invention, the container is configured by at least one flexible film folded in order to shape an enclosed space where the food or beverage product is arranged. According to a preferred embodiment, the flexible film is configured overwrapping the spout in its entirety except for the part of the spout which is in direct communication with the inner volume of the container.
Preferably, the pack of the present invention is configured for allowing the injection of a fluid through the spout and to create a jet inside the volume of the container to prepare the food or beverage product.
Yet according to another aspect, the invention relates to a system for preparing a food or beverage product comprising a pack as the one described comprising a product and a beverage preparation device that will introduce a fluid in the form of a jet inside the volume of the pack.
Preferably, in the system of the invention, the beverage preparation device comprises a control unit configured for measuring along time the resistance of the connection of the beverage preparation device to the spout and the resistance of the relative movement of the two parts of the spout, determining a code, as a function of the bumps or indents, this code providing information on the type of food or beverage product in the pack and on the parameters to process the product in the said pack.
Typically, in the system of the invention, the beverage preparation device comprises a control unit configured for measuring along time, during the food or beverage preparation, the current provided by a driving motor driving the connection of the device to the spout of the pack and also driving the movement of the two parts of the spout relative to each other, in order to determine the profile of the bumps or indents.
System according to claim 10 wherein the control unit is configured to transform the current value of the driving motor into a motor torque or a resistance force value along time, during the food or beverage preparation, in order to determine the profile of the bumps or indents.
The code in the system according to the invention can be an analog format or a digital format.
Still according to another aspect, the invention further refers to a method for preparing a food or beverage product from a pack in a system as the one described previously, the method comprising the steps of:
According to the invention, the information from the code corresponding to the type of product and to the process parameters to apply for its preparation in a corresponding food or beverage device can be comprised in the device itself (internal memory of it, for example) or in an external device to which the control unit will connect to retrieve the same, or for example in an external database or cloud.
In the method of the invention, the resistance of the connection of the device to the spout of the pack and also the resistance of the relative movement of the two parts of the spout is typically measured by monitoring the current from the driving motor driving the connection to the spout and the relative movement of the two parts of the spout.
Preferably, in the method according to the invention, the process parameters comprise one or a combination of: flow of fluid introduced in the spout, total volume of fluid introduced, temperature of the fluid, processing time, delivery time.
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:
As previously described, the invention relates to a system for flexible food or beverage packs 100: the system of the invention comprises a flexible food or beverage pack 100 and a beverage preparation machine, where the pack will be inserted and a food or beverage product will be prepared and delivered. A representative pack 100 according to the invention is shown in
The spout 10 in the pack of the invention is as the one described in document EP 16184302.4 belonging to the same applicant, and herewith incorporated by reference, in its entirety. The spout comprises two parts, 11 and 12, moveable with respect to each other, being typically injected elements in plastic. Typically, a primary part 11 is fixed to the beverage preparation device and a secondary part 12 moves linearly with respect to the said fixed part 11. When the pack 100 is in its initial position, the spout 10 is overwrapped and the communication to the outside of the pack is closed, for hygienic reasons. The pack shown in
Typically, as disclosed in EP 16184302.4, the content of the container 30 is typically a powder product that will be dissolved by the addition of water, in order to produce a food or beverage product.
Looking at
As described, the spout itself is composed of two injected plastic parts 11 and 12, which can be moved (typically translated) with respect to each other. Typically, there are two movements of the device with respect to the spout and of the parts of the spout themselves, to achieve the following two functions: 1) piercing the flexible sheet overwrapping the frontal part of the spout (piercing the displacing holes 21, 22) during a first horizontal movement of the connecting element 200 towards the pack 100, and 2) opening and/or closing actively the product path through the outlet duct 23, during the product preparation process (typically a first vertical movement downwards of the secondary part 12 with respect to the primary part 11 piercing the lower flexible sheet overwrapping the lower side of the spout 10 to allow the dispensing of the food or beverage product prepared through the duct 23 and, once the dispensing has finished, the same movement but in opposite direction, upwards, to reclose the communication of the inner volume of the container 30 to the outside of the pack through the outlet duct 23, in order to avoid any dripping (this would be the final position when the pack 100 can be removed from the beverage preparation device).
The movement in horizontal (piercing function 1) described above) and in vertical (preparation process function 2) described above) of the connecting element 200 is carried out by a driving motor (not shown) in the beverage preparation device. The torque of the driving motor is proportional to the product of the force by the distance, and the motor current thus varies according to the load torque applied. Taking this into consideration, the driving motor torque presents a peak when the connecting element 200 has to pierce the flexible film or sheet overwrapping the front part of the displacing holes 21, 22 (i. e. when a certain resistance presented by this film needs to be overcome): this is represented in
When the secondary part 12 of the spout 10 is moved downwards by the connecting element 200, the overwrapping flexible sheet that envelops the lower part of the spout 10 is tear open by an outlet piercing part 24 of the said outlet duct 23, as shown in detail in
Even when we described earlier the spout 10 with reference to
These transversal bumps 40 represent obstacles placed at pre-defined locations along the travelling path of the connecting element 200 so it is possible to know the position of the said connecting element 200 of the device with respect to the spout 10. As described, one or both of the displacing holes 21, 22 can be provided with one or more transversal bumps 40, arranged on the travelling path of the piercing elements 201, 202 transversally into the spout 10. The shape of the piercing elements 201, 202 and the configuration of the spout (the transversal bumps 40 in the displacing holes 21, 22) are made complementary so the bumps 40 configure obstacles to the transversal advance of the piercing elements 201, 202. Therefore, these obstacles require higher torque values from the driving motor so every bump that is overcome in the advance of the piercing elements 201, 202 presents a peak of torque in the driving motor that can be monitored by measuring the current of the motor (i.e. the driving motor torque) along time.
With such a configuration, the graph torque and position obtained is similar as the one shown in
In a similar manner, one or a plurality of vertical bumps 50 can also be arranged on the primary part 11 of the spout, located in the vertical movement path that will be followed by the secondary part 12 of the spout with respect to the primary part 11. A detail is shown in
Looking at
The complete transversal movement of the connecting element 200 for the engagement of the secondary part 12 of the spout and the movement for the vertical displacement of the secondary part of the spout with respect to the primary part while the preparation of the food or beverage product takes place is represented in
Depending on the measurement resolution and on the spout design constraints, the number of peaks, their height and their width can be varied depending on the design made for the obstacles, that is, depending on the design made for the transversal bumps 40 and for the vertical bumps 50.
The aim of the system of the invention is to encode information relating to the food or beverage product comprised in the pack 100 (precisely in the container 30) and information on the processing parameters (for example beverage volume, time, temperature, etc.) that need to be applied in a beverage preparation device for an optimal preparation of a food or beverage product from it. The information can be encoded digitally by attributing for example a value “1” to a torque peak (when there is a presence of a torque peak) and a value “0” for an absence of the said torque peak, as for example shown in
As it will be explained in more detail now, the device will comprise a control unit that will monitor the motor current with time, during the preparation of a food or beverage product: this will translate into monitoring the value of the motor torque with time, so a graph similar to
Therefore, in the system of the invention, the beverage preparation device will comprise a control unit (not shown) that will receive the data of the torque applied by the driving motor with time (i.e. when a beverage or food product is prepared from a pack): in fact, the control unit will receive the value of the motor current along time, that will be translated into torque value with time. The control unit will either attribute a value of “1” when a peak of torque takes place and a value of “0” when there is no torque peak, therefore receiving a digital code that will be associated to a type of product and/or processing parameters in the device, or the control unit will attribute a digital value to the height of a torque peak, the width of a torque peak and/or to the number of torque peaks detected, thus also obtaining a digital code that will be associated to a type of product and/or processing parameters in the device.
The control unit of the beverage preparation device in the system of the invention is configured to carry out the following method steps:
Although the present invention has been described with reference to preferred embodiments thereof, many modifications and alternations 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.
Number | Date | Country | Kind |
---|---|---|---|
17210603.1 | Dec 2017 | EP | regional |
Filing Document | Filing Date | Country | Kind |
---|---|---|---|
PCT/EP2018/085243 | 12/17/2018 | WO | 00 |