1. Field of the Invention
This invention relates to a system for the attachment of an igniter electrode to a gas burner, and an electrode and burner body shaped for such attachment.
In greater detail the subject matter of this invention relates to an attachment system for a flame ignition electrode which is easy to assemble on a support on the body of a burner during the process of manufacture, in particular during the process of manufacturing a hob, a gas cooker or a boiler, and which can easily be removed in the event of repair.
2. Description of the Related Art
Gas burners in which the flame igniter electrode is attached to a support extending from the body of the gas burner by means of a metal clip are known in the art. As illustrated in
In addition to requiring an operation of assembling the gas hob after the electrode has been assembled with the burner body, this known method of attachment also requires there to be a certain amount of lateral space for insertion of the clip by the operator, which typically requires two separate manual movements—namely inserting the igniter and holding the igniter in position while attaching the clip. Finally, because of its dimensions, the clip restricts possible configurations for mounting burners fitted with an igniter electrode, especially where the profile of the electrode together with that of the burner body has to be particularly compact in order not to project greatly from the surface of the hob. These configurations are normally referred to as flat burners.
A gas burner which has an annular base provided with a housing and an external support of ceramic shaped in such a way as to engage the housing, and which provides a support for the burner igniter electrode, is known from document GB-A-225633. This solution requires an additional annular base which extends around the body of the burner, but which is not of one piece with the burner body itself, because this base has to be fitted above the working surface, on the side opposite the burner body. With regard to the previously-described solution the position of the electrode on the annular support makes electrical connection of the electrode to the high voltage current generating unit which produces the discharge more complex. In fact in the solutions previously described the electrode already connected to the cable can be pre-assembled to the burner body and can be immediately connected to the unit through a single connection. In this complex configuration two electrical cable connections are however necessary: the first to the unit and the second to the electrode. In addition to this the connection to the electrode can be made, with difficulty, only when the working surface is enclosed, because the annular base and the electrode are of one piece with it. Incorporation of the annular base into the burner body is not therefore possible.
Finally, a solution which provides for mere bonding or irreversible attachment of the electrode to the burner body is not a solution which can be applied to hobs and boilers because if the electrode has to be repaired it would be necessary to replace the entire block, rather than replace the individual component.
The limitations deriving from known solutions have been overcome in the present invention thanks to the features according to the appended claims.
Further advantages and features of this invention will be apparent from the following detailed description provided by way of example with reference to the appended drawings in which:
With reference to the figures mentioned, the body of an atmospheric burner CB is attached, preferably in a removable manner, to the frame CH of a built-in hob PG. This body is normally a die-cast part of metal material, preferably of aluminium or aluminium alloy, which is preferably of circular shape. A pipe TG for feeding gas and a gas delivery nozzle in fluid connection with the feed pipe, calibrated according to the type and according to the flow of gas which has to be delivered, are attached to said burner body CB.
A flame spreader SA and the overlying cap (not shown) are subsequently connected to the said burner body.
A support SR for additional components extends laterally from the said burner body in a radial direction. The said support SR, which is preferably of one piece with burner body CB, has a seat SL for housing a flame igniter electrode ET, and may have a seat SD for housing a heat-sensitive element for detecting flame ignition, typically a thermocouple TC with an outer coating of metal material.
The seat of the electrode ET normally comprises a hole of circular cross-section passing through the support from the top of the support LSU to the bottom thereof LIN.
The seat preferably has a longitudinal notch INT which places the interior of the hole in communication with the outer part of the support. The said notch INT is provided to assist fitting of electrode ET which has previously been fitted with the corresponding electrical connection cables CE. The said seat may possibly have a circular groove (shown in
Similarly, seat SD for heat-sensitive element TC comprises a second through hole, preferably parallel to that of the seat for the electrode and a second notch. The longitudinal section of the through hole may have a tapering profile so that the parts mate together through insertion under pressure applied by the operator during the manufacturing process of assembling the hob.
According to the invention, electrode ET has a cylindrical profile along the longitudinal axis of which is provided a conductor COND for delivering the ignition sparks, around which there is concentrically provided a ceramic coating RIV. The ceramic coating is necessary to insulate the conductor from the metal body of the burner. An insulated electrical cable CE for connecting the conductor to a unit generating electrical discharges is connected to the lower extremity of electrode ET.
The longitudinal section of the electrode in
According to the invention the ceramic lining has a groove LC which preferably extends along its entire perimeter. When the electrode is inserted in seat SL said groove LC remains within the seat and is preferably opposite the groove, when present (as shown in
The groove comprises a seat housing a seal G of elastomer material which is resistant to high temperatures, for example silicone resistant to a working temperature within the range 150 and 200° C., preferably 170° C.
The seal G preferably has a circular section to assist fitting in groove LC. Seal G is for example a ring of the O-ring type of silicone rubber.
In the process of assembling a hob or gas cooker seal G is fitted onto electrode ET and positioned in groove LC before being assembled onto the body of gas burner CB.
During the operation of assembling the hob, electrode ET fitted with its seal G is slid into its seat and secured by deformation of the seal against the body of the burner by the operator exerting a pressure on the component in the axial direction of insertion. The elasticity of seal G ensures that electrode ET is stably positioned in seat SL.
Although a resilient seal of elastomer material has been described so far, for the purposes of the invention it is also possible to use a resilient seal of metal material whose shape may also be of the semicircular type.
The system according to the invention permits simpler and quick insertion of the electrode, eliminating use of fixing clip M.
In addition to this, because less space is required for attaching the electrode it is also possible to use electrodes of this type in hob configurations in which such spaces are not available, in particular in the flat hobs also known as “flat burners”.
In order to render the electrode interchangeable with the electrodes already present on the market the latter may also have a further groove LC3 of a known type, in addition to groove LC, for attaching the electrode through the previously known method using clip M.
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