The invention can be better understood and carried into effect with reference to the attached drawings, which illustrate an embodiment thereof by way of non-limiting example, in which:
According to the invention, a nebulizing device is provided for an oven provided with a cooking chamber and with a fan device, comprising a supplying device for introducing into said cooking chamber a liquid to be nebulized and a rotating nebulizing member, suitable for receiving said liquid from said supplying device, wherein said nebulizing member comprises a plurality of blades arranged for nebulizing at least partially said liquid and for directing said liquid towards said fan device so as to be further nebulized.
Owing to the invention, it is possible to obtain a nebulizing device suitable for effectively and appropriately nebulizing and atomising a liquid, such as water for cooking foods or a washing/polishing liquid for automatically washing the oven. The blades of the nebulizing member enable in fact the liquid flow exiting the supplying device to be fragmented and nebulized, projecting the liquid droplets towards the blades of the fan device for further fragmenting and nebulization. The nebulization of the liquid is thus achieved in two successive steps: a pre-atomisation performed by the nebulizing member and a final atomisation performed by the fan device.
Shape and dimensions of the supplying device ensure the absence of blockages and/or clogging due to deposits of limestone and/or impurities that may be present in the liquid. Furthermore, possible encrustation or deposits on the blades of the nebulizing member do not compromise nebulization functionality and efficacy of the device.
Owing to shape and arrangement of the blades of the nebulizing member, which generates a vacuum in the air flow at an inlet section of the fan device, it is also possible to obtain a noticeable improvement in the operating efficiency thereof and thus a better circulation of the mixture of nebulized liquid and air in the oven.
With reference to
The device 1 comprises a nebulizing member 2 provided with a plurality of blades 11 and rotatably mounted inside the blading 25 of the fan device 23, at a hub 24 thereof, in which the air inlet or suction section is located. In particular, the nebulizing member 2 is integrally fixed, by a pin 4, to the hub 24 of the fan device 23, in such a way as to rotate therewith around a rotation axis X.
With reference to
A second shaft 47 is provided that is rotatably supported by the frame 26 of the oven 20 and arranged for supporting a third pulley 45 and a fourth pulley 46. A first belt 41 connects the first pulley 43 and the third pulley 45, whilst a second belt 42 connects the second pulley 44 to the fourth pulley 46. The diameter or number of teeth of the pulleys can be suitably selected in such a way as to obtain a specified transmission ratio. In particular, this ratio is a gearing-up ratio to increase the rotation speed of the nebulizing member 2 and obtain better nebulization of the liquid 10.
Another embodiment of device 1, which is not shown, is provided that differs in that it comprises conical smooth pulleys arranged for making a variable transmission ratio between nebulizing member 2 and fan device 23.
In a further embodiment of the device 1, which is not shown, pulleys and belts are replaced by cogwheels engaging one another.
The device 1 further comprises a supplying device 3 of the liquid to be nebulized arranged for conveying to the nebulizing member 2 said liquid 10 coming from an external source consisting, for example, of tanks 30, 31, and/or of a mains water supply 38.
The supplying device 3 comprises at least a conduit 5 suitable for pouring the liquid 10 onto the blades 11. The conduit 5 has an outlet end 5a that is inserted inside the blading of the nebulizing member 2, i.e. in a chamber defined by blades 11.
In an embodiment of the device 1, which is not shown, the outlet end 5a of the conduit 5 comprises a nozzle or injector having a calibrated passage section for precisely controlling the flow of water delivered into the cooking chamber 21.
The conduit 5 is supplied by a manifold 32 connected by respective valves 33, 34 and pumping devices 35, 36 to tanks 30, 31 containing washing liquids for cleaning and sanitising internal surfaces of oven 20. For example, a first tank 30 containing water and/or polishing liquid and a second tank 31 containing a washing liquid are provided.
Furthermore, the manifold 32 is connected by a respective further valve 37 to an external source of water 38, for example a mains water supply, in order to introduce into the cooking chamber 21 water required for generating steam/humidity.
In the embodiment illustrated in
The device 1 may also be devoid of a connection to the mains water supply 38 and be suitable only for automatic washing of the cooking chamber 21. In this case, there are provided an embodiment of the device 1, which is not shown, having a manifold and a single conduit, and a further embodiment, which is not shown, devoid of manifold and having separate conduits for the two tanks.
A further embodiment of the device 1 is also provided, which is not shown, devoid of tanks and respective conduits and therefore suitable for delivering to the cooking chamber 21 water taken from the mains water supply, in order to generate steam/humidity.
The nebulizing member 2, as illustrated in detail in
The blades 11 are parallel to the rotation axis X, are angularly spaced from one another and are arranged on radial planes passing through the rotation axis X. The blades 11 are arranged along a substantially cylindrical surface, in such a way as to form an internal chamber suitable for receiving the outlet end 5a of the conduit 5.
In an embodiment of the device 1 which is not shown, the blades 11 of the nebulizing member 2 are fixed to the supporting element 12 with a defined tilt angle with respect to the radial direction.
In a further embodiment of the device 1 which is not shown, the blades 11 have an elongated and twisted shape, to give greater turbulence to the air flow.
The supporting element 12 is provided with a hole 12a for connection to the pin 4.
In still another embodiment of the device 1 illustrated in
During operation of oven 20, when it is desired to increase the quantity of steam in the cooking chamber 21, water is introduced inside the oven 20 through the supplying device 3 in communication with the mains water supply 38.
The water flow exiting the outlet end 5a of the conduit 5, continuously or discontinuously by drops, hits the blades 11 of the rotating nebulizing member 2 and is fragmented, nebulized by the latter and 360° projected to the exterior, against the blades 25 of the fan device 23, through the effect of centrifugal force. The water drops generated by the rotation of the nebulizing member 2 are thus further fragmented and nebulized into drops of finer dimensions.
Nebulization of water is thus effectively achieved in two subsequent steps: a pre-atomisation step, achieved by the nebulizing member 2, and a final atomisation step performed by the fan device 23.
The nebulized drops thrown by the blades 11 move along a trajectory that is tilted with respect to the radial direction as they have a speed V obtained from a component of radial speed VR, i.e. directed orthogonally to the rotation axis X, and a component of tangential speed VT, directed tangentially to a circumference passing through the blade 11 and centring on the rotation axis X (
The speed of drops can be varied, with the same rotation speed of the nebulizing member 2, also by acting on the tilt angle of the blades 11 and/or the shape thereof.
The mixture of nebulized water and air is then conveyed to the heating arrangement 22 that surrounds the fan device 23 and transforms the water into steam.
The supply pressure requested to introduce the water by the supplying device 3 into the oven is not high, but has a value that is sufficient to overcome the flow resistances of the supplying device 3 and to provide the required water flow.
The conduit 5 has dimensions that are such as to be unlikely subject to obstructions because of deposit of salts contained in the water.
Similarly, encrustations, and deposits of limestone scale on the blades 11 of the nebulizing member 2 do not compromise the functionality and efficacy of nebulization.
The nebulizing member 2 is further made of material resistant to high temperatures and to corrosion, such as for example stainless steel or plastics.
The nebulizing device 1 can also be used in the automatic washing step of oven 20 for nebulizing inside the latter a washing liquid, such as water and/or washing liquid and/or polishing liquid. In this case, the supplying device 3 introduces the washing liquid inside the oven, taking it from the tanks 30, 31.
The liquid is atomised by the nebulizing member 2 and by the fan device 23 according to the operation explained in the case of water.
Owing to the fine nebulization of washing liquid that is achievable with the device 1 of the invention, it is also possible to reach zones that are more difficult to clean and sanitise, in which food elements may gather and form dangerous bacterial charges.
The use of the nebulizing device 1 considerably improves the operating efficiency of the fan device 23. In effect, the blades 11 of the nebulizing member 2, which are arranged radially or tilted, by rotating generate at the inlet section of the fan device 23 a vacuum in the air flow that improves the efficiency of the fan device 3. In this way, it is possible to obtain better circulation and distribution of the mixture of nebulized liquid and air in the cooking chamber 21.
Number | Date | Country | Kind |
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MO2006A000306 | Sep 2006 | IT | national |