Coffee bean roasting equipment
By designing a coffee bean baking equipment equipped with independent flow paths and distribution equipment, the shortcomings of existing equipment in continuous baking and automatic separation and collection are solved, and a more automated and efficient baking and collection process is achieved.
Patent Information
- Application Number
- JP2023501221
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Priority Date
- 2020-07-24
- Filing Date
- 2021-07-08
- Publication Date
- 2025-05-14
- Estimated Expiration
- 2041-07-08
AI Technical Summary
The existing small coffee bean roasting equipment is not suitable for continuous roasting of different types of coffee beans, and the operation of isolating and collecting coffee grounds and roasting coffee beans during the continuous roasting process is cumbersome.
A baking equipment is designed, which includes a baking room, an air drive, a heater, a coffee ground collector and a roasted coffee bean collector. The distribution device can independently turn on or close the flow path connected to the coffee ground collector and the roasted coffee bean collector, so that the automatic separation and collection of coffee grounds and roasted coffee beans can be achieved.
The equipment enables a more automated baking operation, especially during continuous baking, which simplifies the collection and storage of coffee grounds and roasted coffee beans, suitable for baking and storage of different types of coffee beans.
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Abstract
Description
[Technical field]
[0001] The present invention relates to a coffee bean roasting device. [Background technology]
[0002] Small scale roasting of coffee beans in homes or in shops and cafes is usually carried out using small devices in which the coffee beans are stirred in hot air.
[0003] WO 2012059484, WO 2018105163 and WO 2018185453 describe compact roasting devices with a roasting chamber, in which hot air is supplied in different flows to roast the beans or to eject the roasted beans.
[0004] The green beans are manually introduced by being loaded into the loading chamber and then opening an outlet from the loading chamber to the roasting chamber.
[0005] The same flow path is used to discharge the chaff during the roasting operation and to discharge the roasted beans at the end of the roasting operation. This flow path remains open at all times and the selective discharge of the chaff or the roasted beans is operated by the selective speed of the fan, the lowest speed allowing the discharge of only the chaff and the highest speed allowing the discharge of the roasted beans. The chaff and beans are collected in a cyclone device, which allows the separation of the heavy roasted coffee beans from the light chaff in two different parts of the same collection device. These parts must be manually separated to access the roasted beans.
[0006] This simple device is useful for roasting small amounts of beans, for example for quickly sampling green beans and evaluating their characteristics after roasting. However, this device is not adapted for a continuous roasting operation of different beans to feed the roasted beans to a storage container before further grinding and brewing operations. The ability to collect the chaff and the roasted beans separately during a continuous roasting operation is an essential advantage in order to be able to quickly prepare brewed coffee therefrom, and even to prepare brewed coffee for several customers simultaneously.
[0007] Although the above described apparatus allows an operator to continuously handle batches of beans and store these batches of roasted beans, the continuous loading and disassembly and subsequent reassembly of the chaff cyclone and roasted bean collector is cumbersome.
[0008] The object of the invention is to provide a roasting device which allows a more automatic roasting operation, in particular when continuous roasting operations are carried out.
[0009] Another object is to provide a roasting device that allows for a more practical collection of the chaff and roasted beans.
[0010] Another object is to provide a roasting apparatus that allows for roasting different types of coffee beans and automatically storing the corresponding roasted coffee beans in different storage containers. Summary of the Invention
[0011] According to a first aspect of the present invention, there is provided an apparatus for roasting coffee beans, the apparatus comprising: A roasting chamber; an air driver configured to propel air into the roasting chamber through a bottom opening of the chamber; a heater configured to heat air that is propelled into the roasting chamber; a chaff collector connected to the roasting chamber through a first flow path; at least one collector for fully roasted beans, connected to the roasting chamber through at least one second flow path; Equipped with The apparatus comprises a distribution device configured to open either only the first flow path to the chaff collector or only the at least one second flow path to the at least one bean collector.
[0012] The roasting apparatus comprises a roasting chamber.
[0013] The chamber is preferably designed to allow the creation of a fluidized bed of hot air. Typically, the hot air is introduced into the bottom of the chamber through a bottom opening. The bottom opening may be equipped with a grid to retain the beans within the chamber while allowing the passage of hot air through the chamber.
[0014] The chamber can be designed to deliver hot air with a specific movement within the chamber, in one embodiment, the bottom of the chamber can be equipped with blades or have a specific internal design to direct the heated air stream in a useful flow or pattern that has the effect of customizing the trajectory of the fluidized bed and thereby the lofted beans during roasting.
[0015] The apparatus includes an air driver configured to drive an air flow into the roasting chamber, typically a blower or fan designed to draw air in from outside the housing and blow the air out a bottom opening of the roasting chamber.
[0016] The apparatus comprises a heater, preferably an electric heater, configured to heat the air flow before it is introduced into the roasting chamber.
[0017] The apparatus comprises a chaff collector connectable to the roasting chamber through a first flow channel. Typically, the chaff collector comprises a cyclone device making it possible to separate the chaff particles from the hot air and gases.
[0018] For purposes of this invention, the term "channel" refers to either a completely closed path that encloses a movable item (beans or chaff) from one end of the channel to the other end of the channel, or an open path (such as a chute) designed to direct an item from one location to another without completely enclosing it along the path.
[0019] The device comprises a bean collector for fully roasted beans, which is connectable to the roasting chamber through a second flow path.
[0020] Since the bean collector and the channel collector are connected to the roasting chamber by different channels, the operator can operate the roasted bean collector and the chaff collector independently. In particular, the operator can use the roasted beans stored in the bean collectors while a new roasting operation is started in the roasting chamber. The operator can use the roasted beans when he wants, except during the process of filling these collectors, which is very short (a few seconds) compared to the roasting time (a few minutes).
[0021] In one embodiment, the device may comprise only one fully roasted bean collector, said collector being connected to the roasting chamber by one second flow path.
[0022] In another embodiment, the device may comprise multiple collectors of fully roasted beans, each of which is connected to the roasting chamber by a dedicated second flow path.
[0023] According to another embodiment, the apparatus comprises: Multiple collectors for perfectly roasted beans; A sub-distribution device, comprising: connected to a distribution device through a second flow path; connected to each of the fully roasted bean collectors through dedicated sub-channels, a sub-distribution device configured to selectively open the dedicated sub-flow paths; and It can be provided with:
[0024] Thus, the sub-distribution device is connected upstream to the second flow path of the distribution device and downstream to the sub-flow paths, each of which is dedicated to one of the fully roasted bean collectors. The distribution sub-device avoids the design of a direct connection between the distribution device of the chamber and all the bean collectors. The connection of the chamber and the distribution device can remain simple.
[0025] Preferably, in this embodiment, the distribution device may comprise only one secondary flow path. Moreover, in order to increase the number of collectors for fully roasted beans, the distribution device may comprise two or more secondary flow paths, each of which is connected to a different sub-distribution device.
[0026] The sub-distribution device is connected to each of the fully roasted bean collectors through dedicated sub-channels and is configured to selectively open said dedicated sub-channels. Preferably, the sub-distribution device is configured to open only one dedicated sub-channel and keep the other sub-channels closed. Thus, the fully roasted beans obtained at the end of one specific roast can be directed to one specific fully roasted bean collector. If a different roast is performed, the resulting roasted beans can be directed and stored in another collector by opening its dedicated sub-channel while closing the other sub-channels.
[0027] These embodiments having multiple collectors of roasted beans allow for roasting different types of beans, or roasting the same beans with different roast profiles (such as different roast levels), and allowing each resulting batch of roasted beans to be stored in a different bean collector.
[0028] This device is Connect the roasting chamber to either the chaff collector only or one bean collector only, Distributes chaff into the chaff collector or fully roasted beans into the bean collector The present invention includes a dispensing device configured to:
[0029] This device therefore provides the functionality of connecting the chamber to the chaff collector and to the bean collector(s) and distributing the chaff and roasted beans to the corresponding collectors, i.e. chaff to the chaff collector and roasted beans to the roasted bean collector. This distribution functionality is obtained by connecting the roasting chamber to either: The dispensing device is configured to connect only to the chaff collector, in which case the connection(s) between the roasting chamber and the bean collector(s) are closed. Alternatively, the dispensing device is configured to connect to only one bean collector, in which case the connection to the chaff collector and, if other fully roasted bean collectors are present, to the other bean collector(s) are closed.
[0030] The distribution device provides a connection between the chamber and only one collector according to the following process steps. Roasting the beans and collecting the chaff during the process; Emptying the chamber and collecting the beans at the end of the roasting operation.
[0031] The collector is connected to the chamber by different flow paths, so that the collector of beans and the fully roasted beans are well separated and there is no tedious manual work for the user if he wants to discard the chaff and use the roasted beans before starting a new roasting operation.
[0032] The dispensing device may be actuated automatically by a motor, or manually (in which case a user interface may prompt the user to actuate the dispensing device).
[0033] In the simplest embodiment, the unroasted beans can be introduced manually into the roasting chamber.
[0034] According to another embodiment, the apparatus comprises: At least one container for storing green beans and at least one device for dispensing the green beans from the at least one storage container; and at least one third flow path for feeding the input beans into a roasting chamber, The distribution device is configured to open or close the at least one third flow path.
[0035] The apparatus may comprise one or more containers for storing the beans to be roasted. If multiple containers are present, they may contain different types or blends of beans. The beans to be roasted may be green coffee beans or partially roasted coffee beans.
[0036] The apparatus may comprise one or more dosing devices for dosing the beans stored in the one or more storage containers. The dosing device may be of any type including a metering cavity displaceable between a dosing position and a feed position. The dosing device may be a rotatable auger, a sliding drawer, a rotatable disk, an endless screw. The dosing device may be operated manually or automatically by a motor. Additionally or alternatively, the dosing device may comprise a weighing device such as a scale for weighing the beans dispensed from the at least one storage container.
[0037] The dosing device may be part of the storage container. If there are several containers, preferably each container comprises one dedicated dosing device. Furthermore, each container may be connected to one common dosing device, such as the above-mentioned metering device.
[0038] The dosing device comprises a bean inlet configured to feed at least one batch of green coffee beans to the roasting chamber through the third flow path. Preferably, the feeding is by gravity, for example by feeding the beans along a chute forming the third flow path. The dosing device is therefore preferably positioned at a vertical level above the roasting chamber.
[0039] When there are multiple containers of green beans and multiple dosing devices, preferably each dosing device may be arranged to feed and dosing beans in the same common chute. The apparatus may comprise a manifold configured to receive a batch of coffee beans from any of the storage and dosing containers and deliver said batch to the third flow path.
[0040] In a next preferred embodiment, when there are multiple green bean containers and multiple dosing devices, the dosing device of each container may comprise a bean inlet configured to supply at least one dose of green coffee beans to the roasting chamber through a dedicated third flow path.
[0041] The dispensing device is configured to open or close the at least one third flow path depending on whether the apparatus is in a loading operation or a roasting operation, respectively.
[0042] In one particular embodiment, the dispensing device comprises: a first fixed opening connecting the roasting chamber to the first flow path; at least one second fixed opening connecting the roasting chamber to at least one second flow path; configured to close or open the first opening or the at least one second opening; a first position in which only the first fixed opening is open; at least one second position in which only the at least one second fixed opening is open; a movable selector means configured to be disposed on the It can be provided with:
[0043] Movement of the selector means allows selective opening of only the first or second fixed opening.
[0044] In this particular embodiment, the apparatus may comprise at least one third flow path for feeding unroasted beans into the roasting chamber, The distribution device may comprise at least one third fixed opening, said third opening connecting the roasting chamber to said at least one third flow path; the movable selector means is configured to close or open the at least one third opening and configured to be placed in at least one third position; In the first and second positions of the movable selector means, at least one third fixed opening is closed; In at least one third position, the third fixed opening is open.
[0045] Thus, prior to the roasting operation, the movable selector means allows the chamber to be filled with unroasted beans. If the apparatus comprises multiple storage containers for unroasted beans, the at least one third opening allows the chamber to be filled with one particular type of bean (Arabica, Robusta or a particular storage blend) or with a blend of different beans provided from different storage containers.
[0046] In this particular embodiment, the device may comprise a plurality of collectors for fully roasted beans, The connection and distribution device may comprise a plurality of second fixed openings, each second opening connecting the roasting chamber to one dedicated roasted bean collector; The movable selector means may be configured to be positioned in a plurality of second positions, in each of which only one of the second fixed openings is open.
[0047] Thus, at the end of the roasting operation, the movable selector means allows filling one particular roasted bean collector with freshly roasted beans according to one particular roast profile (dark, medium or light roast) or with beans of a particular type (arabica, robusta or a particular blend).
[0048] Alternatively, the connection and distribution device may comprise a plurality of collectors for fully roasted beans, and the connection and distribution device may comprise one second fixed opening, said second opening being connected to one second flow path, said second flow path being connected to the sub-distribution device as described above.
[0049] Preferably, the dispensing device comprises: A stationary body, the body comprising: A first fixed opening; at least one second fixed opening; and optionally at least one third fixed opening; The movable selector means comprises an aperture configured to cooperate with the first opening, at least one second opening, or optionally at least one third opening, when the selector means is moved to the first, second, or third position, respectively.
[0050] Preferably the movable selector means includes only one aperture.
[0051] In one embodiment, the fixed body may be an upper wall of the roasting chamber, such as an upper side wall or a top wall of the roasting chamber.
[0052] In an alternative embodiment, the fixed body is connectable to the top of the roasting chamber, thus being a device distinct from the roasting chamber but attached to the top of the roasting chamber, for example to the upper edge of the side wall of the roasting chamber.
[0053] Preferably, the fixed body is removably attached to the open top of the roasting chamber.
[0054] The dispensing device can be designed to be located at the top of the chamber.
[0055] The movable selector may move in rotation or translation. Preferably the selector means is motor operated.
[0056] Preferably, the fixed body is circular and the selector means of the dispensing device is a ring, the cylindrical wall of which comprises one opening.
[0057] The ring is thus rotatably movable to allow positioning of its opening in front of one of the fixation openings of the fixation body.
[0058] In one embodiment, the first flow passage, the at least one second flow passage, and the at least one third flow passage are attached to a stationary body.
[0059] This embodiment has the advantage that it makes it possible to separate the roasting chamber from all other devices, which are dispensing devices, and to connect it to a collector or container in one operation.
[0060] Preferably, the dispensing device is designed with a double wall insulation around the first flow path and at least one second flow path: in fact, the flow of hot air in the flow paths increases the temperature of the walls of these flow paths and may burn the hands of an operator if he touches parts of the dispensing device.
[0061] Preferably the apertures have a lateral vertical bias or rounded edges, so that the risk of beans being blocked through the apertures during movement of the selector means is limited.
[0062] In a preferred embodiment, the chamber has a cylindrical side wall and the bottom inner portion of the roasting chamber is designed to create an upward vortex of hot air within the chamber.
[0063] According to this embodiment, the first flow path and the at least one second flow path of the connection and distribution device are preferably oriented tangentially to the cylindrical side wall of the chamber, such that movement of chaff or beans from the chamber to the respective flow paths is facilitated when the selector means is in the first or second position, respectively.
[0064] The relative positions of the flow channels can be designed as follows. The device is compact in some preferred dimensions, for example the flow passages can extend transversely to the chamber but not to the rear of the chamber. And / or the movement of the selector means is reduced to reach the extreme positions, thus shortening the time to reach the different positions. And / or the container and / or collector is not too close to the roasting chamber so that the heat emitted by the chamber does not heat the stored unroasted beans and the collected fully roasted beans. And / or the roasting unit is coupled to a coffee brewer (for preparing a coffee beverage from fully roasted beans), the overall architecture having some technical constraints.
[0065] Preferably, the apparatus comprises: an exit duct configured to exhaust smoke from the chaff collector; an outlet duct configured to exhaust hot air from the bean collector; Equipped with.
[0066] The outlet duct is preferably designed to propel air and smoke away from the front of the roaster, i.e. where the operator is located, and away from the dosing unit and the storage container of green beans, so as not to affect the properties of the dosing and the beans.
[0067] In a second aspect, there is provided a method for roasting coffee beans using an apparatus as previously described, the method comprising the steps of: Introducing unroasted coffee beans into a roasting chamber; Next, opening the first flow path by moving the selector means to a first position, in particular where only the first fixed opening is open; activating the airflow driver and the heater to roast the coffee beans; Next, opening the second flow path by moving the selector means to a second position, in particular where only the second fixed opening is open; activating an air flow driver to eject the beans into at least one bean collector; Includes.
[0068] If the device comprises a third flow path, and during the step of introducing the green coffee beans into the roasting chamber, the third flow path is opened, in particular by moving the selector means to the third position.
[0069] In one embodiment, the airflow driver is operated to provide a smaller airflow during roasting of the beans than during ejection of the beans.
[0070] Preferably, during roasting of the beans the air flow is adjusted to prevent the beans from flowing through the first flow path and during ejection of the beans the air flow is adjusted to allow the beans to flow through the second flow path.
[0071] In this application: The term "unroasted beans" applies to green or partially roasted beans, i.e. beans obtained by heating green coffee beans and stopping the heating process before the end of the first crack.
[0072] The term "plurality" means two or more.
[0073] The above aspects of the invention may be combined in any suitable combination. Moreover, various features herein may be combined with one or more of the above aspects to provide combinations other than those specifically shown and described. Further objects and advantageous features of the invention will become apparent from the claims, detailed description, and accompanying drawings. [Brief description of the drawings]
[0074] Particular embodiments of the invention will now be described further, by way of example, with reference to the following drawings, in which: [Figure 1] FIG. 1 is a front view of a roasting device according to the present invention. [Diagram 2] FIG. 1 is a perspective view of a roast with the dispensing and connection device removed. [Diagram 3] FIG. 2 is a vertical cross-sectional view of the roasting apparatus along the plane AA. [Figure 4] FIG. 1 is a vertical cross-sectional view of the chaff collector along plane BB. [Figure 5A] FIG. 2 shows different elements of a dispensing device. [Figure 5B] FIG. 2 shows different elements of a dispensing device. [Figure 5C] FIG. 2 shows different elements of a dispensing device. [Figure 5D] FIG. 2 shows different elements of a dispensing device. [Figure 5E] FIG. 2 shows different elements of a dispensing device. [Figure 5F] FIG. 2 shows different elements of a dispensing device. [Figure 6] FIG. 2 shows a control system for the roasting machine. DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0075] 1 and 2 are diagrams of a roasting apparatus 10 according to the present invention.
[0076] The chassis is Roasting chamber 1, Unroasted coffee bean storage and dispensing container 2 Chaff Collector 3, Roasted coffee bean collector 4, and An element 50 that combines the functions of connection with the chamber and of the dispensing device; Support the following.
[0077] Functionally, the roaster 10 is operable to store unroasted coffee beans in a container 2, to receive coffee beans from the container 2, and to roast the received coffee beans in a roasting chamber 1. Chaff generated during the roasting operation is collected in a chaff collector 3, and at the end of the roasting operation, the roasted beans are collected in a bean collector 4. Elements 50 connect the roasting chamber 1 to the container 2 and the collectors 3, 4, and distribute the beans and chaff in and out of the roasting chamber 1 depending on the stage of the roasting operation.
[0078] Roasting chamber As shown in FIG. 3, which is a vertical cross-sectional view taken along the plane AA of FIG. 1, the roasting chamber 1 is configured to receive and hold beans and to roast the beans by a current of hot air introduced into the chamber through a bottom opening 11 thereof.
[0079] The chamber 1 is adapted to receive and hold coffee beans introduced by an operator. In a preferred embodiment, the chamber 1 is removable from the frame 7 and is provided with a handle for this purpose. For the introduction or removal of coffee beans (if the machine is not provided with a bean container and a doser or if the doser is not functioning properly); or To remove the chamber for cleaning and maintenance, or To clean the housing portion below and behind the chamber: It can be placed next to the roasting device.
[0080] The bottom opening 11 of the chamber is configured to allow air to pass through, and may in particular comprise a perforated plate on which the beans can be placed and through which air can flow upwards. This perforated blade may comprise perforations designed to provide an airflow with a specific flow pattern within the chamber. Preferably, the bottom of the roasting chamber is designed to generate an upward vortex of hot air within the chamber.
[0081] Below the chamber 1 the apparatus is equipped with an airflow driver and a heater, not shown.
[0082] The airflow driver is operable to generate an airflow in the direction of the bottom of the chamber. The generated airflow is configured to heat, agitate and lift the beans, so that the beans are heated homogeneously. In particular, the airflow driver can be a fan powered by a motor.
[0083] The heater is operable to heat the air flow generated by the air flow driver. The heater is typically an electrical resistor placed between the air flow driver and the bottom opening 11 of the chamber so that the air flow is heated before it enters the chamber 1, heating and lifting the beans.
[0084] The heater 3 is operable to apply a roast profile to the beans, the roast profile being defined as a curve of temperature against time. A temperature probe is typically positioned upstream of the heater to measure the temperature of the hot air stream entering the chamber.
[0085] Storage and dispensing container for green coffee beans Figure 3 shows a storage container 2 for holding green coffee beans. A dosing device 23 cooperates with the bottom of the container to dosing and delivering a batch of green beans to the top opening 12 of the chamber, as indicated by the dotted arrow.
[0086] In this particular embodiment, the dosing device 23 is a barrel containing at least one metering cavity and is rotated by a motor 25 by tooth engagement between the barrel and the motor shaft. Other types of dosing devices can be used. The beans fall by gravity from the dosing device's feed port 24 into a chute 21 oriented towards the top opening 12 of the chamber.
[0087] Chaff Collector The chaff collector is in flow communication with the chamber and receives the chaff that is gradually separated from the beans during roasting and, due to its light density, is blown into the chaff collector along with the hot air and smoke generated during roasting.
[0088] Figure 4 is a vertical cross-section of the roasting apparatus of Figure 1 along the plane BB, showing the chaff collector 3. This collector comprises a container that receives the chaff discharged from the chamber through a passage 31 connected to the top of the container. Preferably, the chaff collector comprises a cyclone device that separates the light chaff C from the hot smoke S that carries it out of the roasting chamber. Arrow C shows the path of the chaff in the cyclone, while arrow S shows the hot smoke S that is discharged from the apparatus through a conduit 32. Preferably, this conduit 32 is oriented to direct the hot smoke S away from the front of the roasting apparatus, where the operator interacts with the apparatus.
[0089] The chaff collector 3 is removably attached to the chassis 7, for example via a retaining arm 43 (FIG. 2) extending from the chassis and provided with means (such as a pin) for removably attaching the collector to the arm.
[0090] Roasted Bean Collector A roasted bean collector 4, shown in Figure 1, is in flow communication with the chamber for receiving the beans at the end of the roasting operation.
[0091] The roasted bean collector 4 is designed similarly to a chaff collector. The beans are collected at the bottom of the collector, while hot air is exhausted through a conduit 42.
[0092] The bean collector 4 is removably mounted to the chassis 7 in the same manner as the chaff collector.
[0093] Each collector 3, 4 is therefore dedicated either to roasted beans or to chaff.
[0094] The collectors are located at different locations spaced apart from each other.
[0095] The roasted bean collector 4 can be designed to hold an amount of beans corresponding to several roasting operations, without the need to empty this container for each roasting operation, especially if the same unroasted beans are roasted successively with the same roast recipe. This collector 4 can be manipulated, for example to remove a portion of the roasted beans while a roasting operation is taking place in the roasting chamber.
[0096] Connection and Distribution Devices 5A-5F show an element 50 which holds the connection and distribution functions.
[0097] Figure 5A is an isolated top view of the element 50 removed from the roasting device 10. The top of this element is covered by a cover 53, except for the chute 21 which forms a channel towards the roasting chamber. In Figure 5A the cover 53 is shown transparent to show the two other channels 31, 41 just below it. The first channel 31 allows the connection of the roasting chamber with the chaff collector and the second channel 41 allows the connection of the roasting chamber with the bean collector.
[0098] 5B is a bottom view of the element 50 in which these two flow paths 31 and 41 are evident. When the element 50 is placed in the roasting apparatus, each of these flow paths 31, 41 emerges at one end 31a, 41a, respectively, into one collector 3 and 2, and at the other end 31b, 41b into the roasting chamber 1. The top of the roasting chamber is closed by a cover 53. In addition, the element 50 integrates a distribution device 5 configured to open either only the first flow path 31 to the chaff collector 3 or only the second flow path 41 to the bean collector 4.
[0099] The element 50 is completely removable from the apparatus 10, as shown in Figure 2. When the element 50 is placed in the apparatus as shown in Figure 1, it is held by the roasting chamber 1, and the distribution device 5 cooperates with the top opening 12 of the chamber to form the upper part of the roasting space, as is evident from Figure 3. Preferably, this cooperation is designed to avoid air leakage during the roasting operation in the space formed by the roasting chamber 1 and the distribution device 5.
[0100] When the element 50 is placed inside the apparatus as shown in Figure 1, the ends 31a, 41a of the channels are located above the respective collectors 3, 4 without being held or maintained by the collectors. Thus, the collectors 3, 4 can be removed from the apparatus without having to remove the device 50 from the apparatus, for example the collector 4 can be removed during a roasting operation.
[0101] Figures 5C to 5E show in isolation and in more detail the dispensing device 5. The dispensing device 5 comprises a fixed body 51 and a movable selector means 52, as shown in Figure 5C.
[0102] The fixed body 51 is shown alone in Fig. 5D. This body 51 comprises three fixed openings 511, 512 and 513, which respectively connect the roasting chamber 1 to the chaff collector 3 through the passage 31, to the bean collector 34 through the passage 41 or to the bean container 2 through the chute 21. The connection is established here by three fixed openings 511, 512 and 513 in the side wall of the fixed body. The selector means 52 is shown alone in Fig. 5E. The selector means 52 is a ring designed to be placed inside the fixed body 51 and comprises only one aperture 521 that can be placed in front of only one of the openings 511, 512 or 513. As shown in Fig. 5F, the selector means is made movable by attachment to a gear mechanism 522 that is actuated by a motor (not shown) and allows the movement of the aperture 521 relative to the fixed body 51. As a result, the aperture 521 can be selectively positioned as follows:
[0103] As shown in FIG. 3, in front of the aperture 513, to open the connection between the bean container 2 and the input unit 23 through the chute 21 before the roasting operation.
[0104] In front of the aperture 511 to open the connection with the chaff collector 3 through the flow passage 31 during the roasting operation. In one embodiment, the size and shape of the aperture 511 can be designed to allow only the chaff to pass through this aperture to the collector 3 and prevent the beans from passing through. A sieve or mesh can also cover the opening to sift the chaff from the beans.
[0105] In front of the aperture 512, to open the connection with the bean collector 4 through the flow passage 41 at the end of the roasting operation. The beans are transported to this collector 4 by flowing unheated air from the bottom of the chamber. The other openings 512, 513 remain closed.
[0106] In this embodiment the fixed body and the selector means have the shape of complementary rings, in alternative embodiments other shapes can be envisaged such as a flat wall with a fixed opening which can be selectively opened by at least one translating door.
[0107] In an alternative embodiment, at least one of the three fixed openings of the fixed body may be in the top wall or cover and the selector means may be a disk having one aperture slidable along the top wall to open and close the opening.
[0108] In this embodiment, the fixed body 51 and the flow paths 31, 41, and 21 are formed from a single material.
[0109] In other embodiments, these elements may be separate and assembled together or placed in close proximity to one another to achieve the same functions and operations.
[0110] In the embodiment shown, the smoke exhausts 32, 42 are attached to the connection and distribution device 50. In an alternative embodiment, these exhausts can be designed to be separate from this device 50.
[0111] Roasting Equipment Control System The control system 80 will now be discussed with reference to Figures 1, 5B and 6. The control system 80 is operable to control the components of the apparatus for roasting coffee beans. The control system 80 typically comprises, at a second level of the roasting apparatus, a user interface 104, a processing unit 8, a temperature probe 102, a power supply 105, a memory unit 101, sensors 103, optionally actuators 522 for the dispensing devices, and optionally a communication interface.
[0112] The user interface 104 includes hardware that allows a user to interface with the processing unit 8 via user interface signals. More specifically, the user interface obtains commands from the user, which the processing unit 8 forwards as inputs to. The commands may be, for example, instructions to perform a roasting process, to adjust operating parameters of the roasting apparatus 10, and / or to power the roasting apparatus 10 on or off. The processing unit 8 may also output feedback to the user interface 104 as part of the roasting process, for example to indicate that the roasting process has been started, or that parameters associated with the process have been selected, to indicate that parameters have evolved during the process, to generate an alarm, or to prompt the operator to activate one of the devices.
[0113] In certain embodiments where the roasting apparatus does not comprise actuators for the dispensing devices, the user interface can be used to prompt the operator to manually place the selector means 522 of the dispensing device in one specific position.
[0114] The user interface hardware may include any suitable device(s), for example the hardware includes one or more of the following: buttons such as joystick buttons, knobs or push buttons, a joystick, LEDs, a graphic or text LCD, a graphic screen with touch sensitive buttons and / or screen edge buttons. The user interface 20 may be formed as one unit or as multiple separate units.
[0115] Part of the user interface may also be on a mobile app if the apparatus is equipped with a communications interface 106, as described below, through which input and output may be sent to the mobile device.
[0116] The sensors are operable to provide input signals to the processing unit 8 to monitor the roasting process and / or the condition of the roasting apparatus. The input signals can be analog or digital signals. The sensors typically comprise at least one temperature probe 102 providing input signals to the processing unit 8 to monitor the roasting process, and one or more sensors 103: a bean level sensor associated with the chamber 1, an air flow sensor, a position sensor associated with the chamber, the bean collector, the bean container and / or the chaff collector, a position sensor associated with the selector means of the dispensing device.
[0117] The processing unit 8 typically comprises memory and input / output system components that are typically configured as an integrated circuit such as a microprocessor or microcontroller. The processing unit 8 may comprise other suitable integrated circuits such as, for example, programmable logic devices such as ASICs, PALs, CPLDs, FPGAs, PSoCs, systems on chips (SoCs), analog integrated circuits such as controllers, etc. With respect to such devices, the aforementioned program code may be considered as or may additionally include programmed logic, where appropriate. The processing unit 8 may also comprise one or more of the aforementioned integrated circuits. In the latter example, multiple integrated circuits are arranged to communicate with each other in a modular manner, for example a slave integrated circuit for controlling the user interface 104 communicates with a master integrated circuit for controlling the airflow driver 13, the heater 14 and / or the actuators 522.
[0118] The power supply 105 is operable to provide electrical energy to the controlled components and the processing unit 8. The power supply 105 may include various means such as a battery or a unit for receiving and regulating the mains power supply. The power supply 105 may be operatively connected to a part of the user interface 104 for powering the roasting apparatus 10 on or off.
[0119] The processing unit 8 generally comprises a memory unit 101 for storing instructions as program code and optionally data. For this purpose, the memory unit typically comprises a non-volatile memory, for example EPROM, EEPROM or Flash, for storing the program code as instructions and operating parameters, and a volatile memory (RAM) for temporarily storing data. The memory unit may comprise a separate and / or integrated memory (for example on a semiconductor die). For programmable logic devices, the instructions may be stored as programmed logic.
[0120] The instructions stored in the memory unit 101 may be idealized as including a coffee bean roasting program.
[0121] At the start of the roasting process, if the machine is equipped with motorized actuators 231 and 522 of the dosing unit and the dispensing device, respectively, the roasting program can take control of these actuators.
[0122] If the apparatus comprises an electric actuator 522 for the dispensing device, the processing unit 8 is operable to provide an output that is the actuation of this actuator until the aperture 521 is positioned in front of the third flow path 21.
[0123] If the apparatus comprises an electric actuator 231 for the dosing unit, the processing unit 8 is operable to provide an output which is the introduction of an amount of unroasted beans in the chamber 1 through the third flow path 21. This amount of beans can be determined by an input at the user interface 104.
[0124] If the apparatus does not include a dosing unit actuator, the user interface 104 may provide an output prompting the operator to introduce beans through the channel 21 or into a container connected to the chamber through the chute 21.
[0125] If the apparatus does not have a dosing unit actuator, the user interface 104 can provide an output prompting the operator to manually move the selector until the aperture 521 is positioned in front of the third flow path or chute 21.
[0126] Once the beans are introduced into the chamber, the roast program can take control of the dispensing device's motorized actuator 522 and provide an output that is the actuation of this actuator until the aperture 521 is positioned in front of the first flow path 31 to the chaff collector. Alternatively, the roast program can take control of the user interface and prompt the operator to manually move the selector until the aperture 521 is positioned in front of the first flow path 31.
[0127] The coffee bean roasting program can then use the signal of the temperature sensor 102 to perform the roasting operation by controlling the air flow driver 2 and / or the heater 3.
[0128] The processing unit 8 is Receives input from a temperature probe 102; processing the inputs in accordance with roasting program code (or programmed logic) stored in the memory unit 101 (or eventually input from an external source such as the communications interface 106); It is operable to provide an output that is a roasting process according to a roast recipe. More specifically, this output includes the operation of at least the heater 14 and the air flow driver 132.
[0129] The temperature measured by the temperature probe 102 is used in a feedback loop to adapt the power of the heater 14 and / or the power of the air driver 13 to apply a predetermined roast profile to the beans.
[0130] Depending on the type of control applied to the roaster, the heater 14 may be supplied with one pre-determined power, meaning that the heater temperature is constant, in which case the power of the air driver 13 may be controlled based on the temperature monitored by the probe 102 in order to vary the contact time of the airflow through the heater during the movement of the airflow.
[0131] Alternatively, the air driver 13 can be supplied with one predetermined power, meaning that the air flow rate is constant, in which case the power of the heater 14 can be controlled based on the temperature monitored by the probe 102 to heat more or less air as it passes through the heater.
[0132] In a final alternative, both the heater 14 and the air driver 13 can be controlled based on the monitoring of temperature by the probe 102 .
[0133] At the end of the roasting operation, the processing unit is operable to provide an output that shuts down the heater 14.
[0134] Simultaneously or subsequently, the program may take control of the motorized actuator 522 of the dispensing device and provide an output which is the actuation of this actuator until the aperture 521 is positioned in front of the second flow path 41 to the roasted bean collector. Alternatively, the roasting program may take control of the user interface and prompt the operator to manually move the selector until the aperture 521 is positioned in front of the second flow path.
[0135] During this operation, the processing unit is operable to provide an output that is the operation of the air flow driver 13 to propel the roasted beans out of the chamber.
[0136] In one embodiment, the airflow driver can operate differently during the roasting operation and during the operation of discharging the roasted beans from the roasting chamber: in particular, during roasting, the airflow driver can operate to generate an airflow allowing lifting the beans to the opened first fixed opening and the first flow path to the chaff collector, and at the end of the roast, the airflow driver can operate to generate a stronger airflow allowing lifting the beans to the opened second fixed opening and the second flow path to the bean collector.
[0137] While the invention has been described with reference to the above illustrated embodiments, it will be understood that the invention as claimed is in no way limited to those illustrated embodiments.
[0138] Variations and modifications can be made without departing from the scope of the invention as defined in the claims. Furthermore, where known equivalents exist to specific features, such equivalents are incorporated as if specifically referred to herein.
[0139] As used herein, the terms "comprises," "comprising," and similar terms should not be construed in an exclusive or exhaustive sense. In other words, they are intended to mean "including, but not limited to." [Explanation of symbols]
[0140] 1 Roasting chamber 11 Bottom opening 12 Top opening 13 Airflow Driver 14 Heater 2. Storage Containers 21 The third stream 22 Container 23 Inserting unit 231 Actuator 24 Exit 3 Chaff Collector 31 First Channel 31a, 31b Flow path end 32 Exit Duct 33 Cyclone 4. Bean Collector 41 Second Channel 41a, 41b Flow path end 42 Exit Duct 43 Arm 5 Distribution Devices 51 Main unit 511 First Opening 512 Second Opening 513 Third Opening 52 Selector means 521 Aperture 522 Actuator 53 Top cover 7 Chassis 8 Processing Unit 80 Control System 10 Roasting Equipment 101 Memory Unit 102 Temperature Probe 103 Sensors 104 User Interface 105 Power supply 106 Communication Interface S smoke C Chaff
Claims
1. An apparatus (10) for roasting coffee beans, comprising: A roasting chamber (1), an air flow driver (13) configured to propel air into the roasting chamber through a bottom opening of the roasting chamber; a heater (14) configured to heat air propelled into the roasting chamber; a chaff collector (3) connected to the roasting chamber through a first flow path (31); at least one bean collector (4) for fully roasted beans, connected to said roasting chamber through at least one second flow path (41); Equipped with the apparatus comprises a distribution device (5) configured to open either only the first flow path to the chaff collector (3) or only the at least one second flow path to the at least one bean collector (4), Apparatus (10).
2. The apparatus, a plurality of bean collectors (4) for fully roasted beans; A sub-distribution device, comprising: connected to the distribution device (5) through the second flow path, connected to each of the plurality of bean collectors (4) through a dedicated sub-channel; and selectively opening the dedicated sub-channel. A sub-distribution device; The apparatus of claim 1 , comprising:
3. the device comprises at least one container (2) for storing green beans, at least one dosing unit (23) for dosing green beans from the at least one storage container (2), and at least one third flow path (21) for feeding the dosing beans into the roasting chamber (1), the distribution device (5) is configured to open or close the at least one third flow path, 3. Apparatus according to claim 1 or 2.
4. The dispensing device (5) one first fixed opening (511) connecting the roasting chamber to the first flow path (31); at least one second fixed opening (512) connecting said roasting chamber to said at least one second flow path (41); a movable selector means (52) configured to close or open said first fixed opening or said at least one second fixed opening and configured to be arranged in at least two positions, In one first position, only the first fixed opening (511) is open, a movable selector means (52) in at least one second position, where only said at least one second fixed opening (512) is open; The apparatus according to any one of claims 1 to 3, comprising:
5. the device comprises at least one third flow path (21) for feeding unroasted beans into the roasting chamber, said distribution device (5) comprising at least one third fixed opening (513), said third fixed opening connecting said roasting chamber to said at least one third flow path; the movable selector means (52) is configured to close or open the at least one third fixed opening; the movable selector means (52) is configured to close the at least one third fixed opening when the movable selector means is disposed in the first position and when the movable selector means is disposed in the second position; the movable selector means (52) is configured to be placed in at least one third position in which the at least one third fixed opening is open; 5. The apparatus of claim 4.
6. The device comprises a number of bean collectors (4) for fully roasted beans, said distribution device (5) comprises a plurality of second fixed openings (512), each second fixed opening connecting said roasting chamber to one dedicated second flow path (41) of one bean collector; the movable selector means (52) is configured to be arranged in a plurality of second positions, in each of which only one of the second fixed openings is open (i.e. the first fixed opening and the other of the second fixed openings are closed); 6. Apparatus according to claim 4 or 5.
7. The dispensing device (5) A stationary body (51) is provided, said body comprising: The first fixed opening (511); said at least one second fixed opening (512); and optionally said at least one third fixed opening (513); said movable selector means (52) comprises an aperture (521), said aperture being configured to cooperate with said first fixed opening, said at least one second fixed opening, or optionally said at least one third fixed opening, respectively, when said movable selector means is moved to said first, second, or third position, respectively; 7. Apparatus according to claim 5 or 6.
8. 8. Apparatus according to claim 7, wherein said fixed body (51) is the upper wall of the roasting chamber.
9. 8. Apparatus according to claim 7, wherein the fixed body (51) is connected to the top (12) of the roasting chamber.
10. The device according to any one of claims 7 to 9, wherein the first flow path (31), the at least one second flow path (41) and optionally the at least one third flow path (21) are attached to the fixed body (51).
11. A method for roasting coffee beans using an apparatus (10) according to any one of claims 4 to 10, comprising: introducing green coffee beans into the roasting chamber (1); Next, opening the first flow path (31) by placing in particular the movable selector means (52) in the first position in which only the first fixed opening (511) is open, and activating the air flow driver (13) and the heater (14) to roast the coffee beans; Next, at the end of the roast, opening the second flow path (41) in particular by moving the movable selector means (52) to the second position in which only the second fixed opening (512) is open and activating the air flow driver (13) to discharge the beans into the at least one bean collector (4); A method comprising:
12. The method according to claim 11 when dependent on claim 5, wherein the device (10) comprises a third flow path (21), and wherein, during the step of introducing unroasted coffee beans into the roasting chamber, said third flow path (21) is opened, in particular by moving the movable selector means (52) to said third position.
13. 13. The method of claim 11 or 12, wherein the air flow driver is operated to provide a smaller air flow during the roasting of the beans than during the ejection of the beans.
14. 14. The method according to claim 13, wherein during the roasting of the beans, the air flow is adjusted to prevent the beans from flowing through the first flow path (31) and during the ejection of the beans, the air flow is adjusted to allow the beans to flow through the second flow path (41).
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