The present invention relates to en electric heating device for the production of hot water and/or steam.
More specifically the invention relates to an electric heating device of the type comprising an assembly which is made of heat-conducting material and has at least one associated heating resistor and in which, between an inlet orifice and an outlet orifice, there is defined a passage which follows a predetermined path, close to said resistor, for a flow of water intended to be heated and/or converted at least in part into steam.
Such electric heating devices are used in a vast range of apparatus, for example in machines for the preparation of hot beverages, for domestic or professional use, as well in apparatus of the industrial type.
In the known devices, the passage for the flow of water is normally formed in a die-cast aluminium block and is operationally in a heat-exchanging relationship with the heating resistor. In the case where the heated water is intended for alimentary use, in order to prevent toxic compounds from forming as a result of oxidisation, the surfaces of the aluminium block intended to come into contact with the water are coated with a thin film of protective material, in particular Teflon, which prevents direct contact between the water and the aluminium.
One object of the present invention is to provide an electric heating device of the type initially defined which is improved in such a way that it has both a compact size and a significantly improved energy efficiency.
This object, together with other objects, is achieved according to the invention with an electric heating device of the type initially defined, characterized in that the aforementioned assembly made of heat-conducting material comprises:
Further characteristic features and advantages of the invention will become clear from the following detailed description provided purely by way of a non-limiting example, with reference to the accompanying drawings in which:
In
This heating device 1 comprises a central body 2 which in the embodiment shown by way of example has a general substantially parallelepiped shape.
As can be seen in
Respective closing shells or covers—denoted by 3 and 4—which are preferably identical to each other are applied and connected in a liquid-tight manner to the main surface or faces 2a, 2b of the central body 2.
The central body 2 and the associated closing shells or covers 3 and 4 may be conveniently made of die-cast metallic material, in particular aluminium or an alloy thereof.
A heating resistor 5 is incorporated in the main body 2 (see for example
This resistor 5 extends in an intermediate plane of the central body 2, between its main surfaces or faces 2a and 2b.
In the embodiment shown each of said main surfaces or faces 2a, 2b of the central body 2 has, formed therein, a respective external perimetral groove 6a, 6b for seating a corresponding sealing ring.
A respective groove 7a, 7b is formed on the inside of the respective perimetral groove 6a, 6b in each main face 2a, 2b of the central body 2 (see
In the embodiment shown the grooves 7a and 7b form labyrinth-like paths, essentially in the form of spirals with rectangular turns which extend between a respective outer end 8a, 8b and a respective inner end 9a, 9b.
The labyrinth-like grooves 7a, 7b formed in the two main faces of the central body 2 communicate with each other via a through-hole 10 formed between the main faces 2a, 2b of said body 2.
The grooves 7a, 7b of the central body 2, instead of following a labyrinth-like path, could have a serpentine progression.
Said grooves 7a, 7b have a channel-like section and, in the embodiment shown, their cross-section is closed in a liquid-tight manner by means of clamping of the covers 3, 4 on the central body 2.
In an alternative embodiment, not shown in the drawings, the grooves 7a and 7b may be formed, at least partly, in the inner main surfaces or faces of the closing shells or covers 3, 4. In this case also, these grooves communicate with each other via a through-hole provided in the central body 2.
In the embodiment shown in
Conveniently, the inner surface or face of each shell or cover 3, 4 which is intended to be applied in a liquid-tight manner against a corresponding main surface or face 2a, 2b of the central body 2 has a convex shape. Owing to this feature, a reliable liquid-tight sealing action is ensured, also in the case where the heating device 1 operates at high pressures which may tend to cause flexing of the end shells or covers 3, 4.
A particular feature of the heating device 1 according to the invention consists in the possibility of positioning inlet and outlet openings or orifices for the water/steam in a vast range of possible locations.
With reference to
The wide range of possibilities for location of the inlet/outlet orifices simplifies considerably the choice as to the position and orientation of the heating device 1 depending on the specific conditions of use.
Conveniently the surfaces of the central body 2 and the shells or covers 3, 4 intended to make contact with the water/steam are provided with a protective coating consisting of ceramic material. This prevents the formation of harmful substances due to oxidisation.
Conveniently, on each main surface or face 2a, 2b the central body 2 has at least one positioning and centring formation 13 (see for example
In the embodiment shown the positioning and centring formations 13 consist of projections provided on the smaller sides of the central body 2, and the cooperating formations 14 of the associated shells or covers 3, 4 are recesses with a complementary shape (see for example
In the solution shown in
In the variants shown in
With the solutions shown in
In all the variations of embodiment described above and in those further variations which persons skilled in the art may easily formulate on the basis of the teachings according to the present invention, the provision of serpentine or labyrinth-like paths on both the main surfaces or faces of the central body 2 allows the heat produced by the heating resistor to be used more efficiently, resulting in fact in a substantial halving of the heat dissipation which otherwise would occur in the case of a single serpentine or labyrinth-like passage.
The electric heating device according to the invention is moreover extremely compact and distinguished by a particular versatility with regards to the connection or arrangement thereof.
Obviously, without affecting the principle of the invention, the embodiments and the constructional details may be significantly modified with respect to that described and illustrated purely by way of a non-limiting example, without thereby departing from the scope of the invention as defined in the accompanying claims.
Number | Date | Country | Kind |
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TO2012A000451 | May 2012 | IT | national |
Filing Document | Filing Date | Country | Kind |
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PCT/IB2013/054292 | 5/24/2013 | WO | 00 |