GAS BURNER ARRANGEMENT, COOKTOP AND STOVE
20170138606 · 2017-05-18
Inventors
- Alvaro Martinez Diez (Peñacastillo (Santander), ES)
- Luis Antonio Palacios Valdueza (Astillero, ES)
- Carlos Pelayo Alonso (Villafufre (Cantabria), ES)
- Emilio Placer Maruri (Liencres, ES)
- Roberto Saiz Gonzalez (Villapresente - Cantabria, ES)
Cpc classification
F24C3/082
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F23N5/105
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24C3/022
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24C3/126
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24C3/122
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F24C3/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24C3/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A gas burner arrangement for a hotplate includes at least two gas burners, each gas burner having operably connected thereto a gas valve for regulating a combustion gas flow to the gas burners, and a thermoelement for monitoring a flame of the gas burners. The thermoelement is coupled to the gas valve by an electrical circuit, such that when the flame of the associated gas burner is extinguished, the combustion gas flow to the gas burner is interrupted with the aid of the gas valve. Each electrical circuit includes a mechanically actuatable switch configured to couple or decouple the electrical circuit between the associated thermoelement and the associated gas valve. The mechanically actuatable switch includes a contact element having a noble metal. A shared actuation element controls the mechanically actuatable switches of the electric circuits.
Claims
1-10 (canceled)
11. A gas burner arrangement for a hotplate, comprising: at least two gas burners, gas valves, operably connected to the gas burners in one-to-one correspondence, for regulating a combustion gas flow to the gas burners; thermoelements, operably connected to the gas burners in one-to-one correspondence, for monitoring a flame of the gas burners; electrical circuits, each said electrical circuit coupling a corresponding one of the thermoelements with a corresponding one of the gas valves such that when the flame of a corresponding one of the gas burners is extinguished, the combustion gas flow to said gas burner is interrupted with the aid of said gas valve, each said electrical circuit including a mechanically actuatable switch configured to couple or decouple the electrical circuit between said thermoelement and said gas valve, each said mechanically actuatable switch comprising a contact element including a noble metal; and a shared actuation element configured to control the mechanically actuatable switches of the electric circuits.
12. The gas burner arrangement of claim 11, wherein the contact element includes gold.
13. The gas burner arrangement of claim 11, wherein the mechanically actuatable switches and the actuation element are components of a switching device.
14. The gas burner arrangement of claim 13, further comprising a spring device configured to pretension the actuation element in a direction of a closed position of the mechanically actuatable switches.
15. The gas burner arrangement of claim 14, wherein the mechanically actuatable switches are movable from the closed position into an open position by displacing the actuation element against a spring force of the spring device.
16. The gas burner arrangement of claim 15, wherein the switching device includes a housing and a guiding pin provided on the housing, said actuation element including a sliding block guide for engagement of the guiding pin.
17. The gas burner arrangement of claim 16, wherein the sliding block guide has a locking section, into which the guiding pin engages in the open position.
18. The gas burner arrangement of claim 17, wherein the guiding pin is configured to automatically move from the open position into the closed position by displacing the actuation element in a direction of the open position and by simultaneously rotating the actuation element with the aid of the spring device.
19. A hotplate, comprising a gas burner arrangement comprising at least two gas burners, gas valves, operably connected to the gas burners in one-to-one correspondence, for regulating a combustion gas flow to the gas burners, thermoelements, operably connected to the gas burners in one-to-one correspondence, for monitoring a flame of the gas burners, electrical circuits, each said electrical circuit coupling a corresponding one of the thermoelements with a corresponding one of the gas valves such that when the flame of a corresponding one of the gas burners is extinguished, the combustion gas flow to said gas burner is interrupted with the aid of said gas valve, each said electrical circuit including a mechanically actuatable switch configured to couple or decouple the electrical circuit between said thermoelement and said gas valve, each said mechanically actuatable switch comprising a contact element including a noble metal, and a shared actuation element configured to control the mechanically actuatable switches of the electric circuits.
20. The hotplate of claim 19, wherein the contact element includes gold.
21. The hotplate of claim 19, wherein the mechanically actuatable switches and the actuation element are components of a switching device.
22. The hotplate of claim 21, wherein the gas burner arrangement includes a spring device configured to pretension the actuation element in a direction of a closed position of the mechanically actuatable switches.
23. The hotplate of claim 22, wherein the mechanically actuatable switches are movable from the closed position into an open position by displacing the actuation element against a spring force of the spring device.
24. The hotplate of claim 23, wherein the switching device includes a housing and a guiding pin provided on the housing, said actuation element including a sliding block guide for engagement of the guiding pin.
25. The hotplate of claim 24, wherein the sliding block guide has a locking section, into which the guiding pin engages in the open position.
26. The hotplate of claim 25, wherein the guiding pin is configured to automatically move from the open position into the closed position by displacing the actuation element in a direction of the open position and by simultaneously rotating the actuation element with the aid of the spring device.
27. A cooker, comprising at least one member selected from the group consisting of a gas burner arrangement comprising at least two gas burners, gas valves, operably connected to the gas burners in one-to-one correspondence, for regulating a combustion gas flow to the gas burners, thermoelements, operably connected to the gas burners in one-to-one correspondence, for monitoring a flame of the gas burners, electrical circuits, each said electrical circuit coupling a corresponding one of the thermoelements with a corresponding one of the gas valves such that when the flame of a corresponding one of the gas burners is extinguished, the combustion gas flow to said gas burner is interrupted with the aid of said gas valve, each said electrical circuit including a mechanically actuatable switch configured to couple or decouple the electrical circuit between said thermoelement and said gas valve, each said mechanically actuatable switch comprising a contact element including a noble metal, and a shared actuation element configured to control the mechanically actuatable switches of the electric circuits, and a hotplate comprising said gas burner arrangement.
Description
[0027] Further advantageous embodiments and aspects of the gas burner arrangement, the hotplate and/or the cooker form the subject matter of the subclaims and the exemplary embodiments of the gas burner arrangement, the hotplate and/or the cooker described below. The gas burner arrangement, the hotplate and/or the cooker are further explained in greater detail on the basis of the preferred embodiments with reference to the appended figures.
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[0039] Elements which are the same or function the same have been provided with the same reference characters in the figures, unless specified otherwise.
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[0041] Each gas burner 4 to 8 is fluidically connected with the aid of a feed line 15 to 19 to the gas valve 9 to 13 assigned thereto. A thermoelement 20 to 23 is also assigned to each gas burner 4 to 8 (
[0042] Each thermoelement 20 to 23 is arranged adjacent to a gas burner 4 to 8 which is assigned thereto. In
[0043] Each thermoelement 20 to 23 is configured to monitor a flame 25 (
[0044] As
[0045] Each thermoelement 20 to 23 is also configured to transmit a continuous signal to the gas valve 9 to 13 assigned thereto when the flame 25 of the gas burner 4 to 8 is detected. The thermoelement 20 to 23 is also configured to interrupt the continuous signal when the flame 25 of the gas burner 4 to 8 is extinguished, so that the gas valve 9 to 13 interrupts the combustion gas flow to the gas burner 4 to 8. For this purpose each mechanically actuatable switch 27 of each electrical circuit 26 is configured to interrupt the continuous signal of the thermoelement 20 to 23 so that the gas valve 9 to 13 interrupts the combustion gas flow to the gas burner 4 to 8.
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[0048] As
[0049] The switching device 24 according to
[0050] The actuation element 28 is pretensioned in the direction of a closed position of the mechanically actuatable switches 27 with the aid of a spring device 50. The spring device 50 is preferably a compression spring. The spring device 50 is in particular mounted onto a receiving section 51 of the actuation element 28. The spring device 50 is accommodated between the actuation element 28 and a supporting section 52. The supporting section 52 is coupled to the second support 57 such that when the actuation element 28 is pressed downwards against a spring force of the spring device 50, the mechanically actuatable switches 27 are opened. A further spring device 59 is arranged between the front part 43 of the housing 30 and the supporting section 52.
[0051] The mechanically actuatable switches 27 can thus be brought from the closed position into an open position by displacing the actuation element 28 against the spring force of the spring device 50. The sliding block guide 46 has a locking section 53, in which the guiding pin 49 engages in the open position (
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REFERENCE CHARACTERS USED
[0058] 1 Cooker [0059] 2 Hotplate [0060] 3 Gas burner arrangement [0061] 4 Gas burner [0062] 5 Gas burner [0063] 6 Gas burner [0064] 7 Gas burner [0065] 8 Gas burner [0066] 9 Gas valve [0067] 10 Gas valve [0068] 11 Gas valve [0069] 12 Gas valve [0070] 13 Gas valve [0071] 14 Main gas line [0072] 15 Feed line [0073] 16 Feed line [0074] 17 Feed line [0075] 18 Feed line [0076] 19 Feed line [0077] 20 Thermoelement [0078] 21 Thermoelement [0079] 22 Thermoelement [0080] 23 Thermoelement [0081] 24 Switching device [0082] 25 Flame [0083] 26 Circuit [0084] 27 Switch [0085] 28 Actuation element [0086] 29 Actuation knob [0087] 30 Housing [0088] 31 Socket [0089] 32 Cable harness [0090] 33 Plug-in element [0091] 34 Connecting conductor [0092] 35 Connecting conductor [0093] 36 Connecting conductor [0094] 37 Connecting conductor [0095] 38 Socket [0096] 39 Socket [0097] 40 Socket [0098] 41 Socket [0099] 42 Rear part [0100] 43 Front part [0101] 44 Contact elements [0102] 45 Flat area [0103] 46 Sliding block guide [0104] 47 Guiding groove [0105] 48 Receiving section [0106] 49 Guiding pin [0107] 50 Spring device [0108] 51 Receiving section [0109] 52 Supporting section [0110] 53 Locking section [0111] 54 Contact element [0112] 55 Screw [0113] 56 Support [0114] 57 Support [0115] 58 Spring device [0116] 59 Spring device