The invention relates to gas-fired burner configurations, including pilot burner configurations, which are especially useful in the context of gas-fired appliances such as water heaters.
Gas-fired appliances that cycle on and off can have a pilot burner which provides a flame whose purpose is to light the main burner when there is a call for heat. Another purpose of the pilot burner is to provide a safety control mechanism which ensures that if the pilot flame is extinguished for any reason, then the supply of gas to the whole appliance is cut off.
Pilot burners for gas-fired appliances typically include a pilot burner tube which defines a flame opening at one end. At the opposite end of the pilot burner tube, there are structures which attach the pilot burner tube to a supply of gas such as a gas tube. The pilot burner tube is connected to the gas tube to make a gas-tight seal. In many devices, a ferrule and nut are used to make the gastight seal. However, in such a configuration, there are often two distinct seal areas and sometimes more than two seal areas where parts connect so that a seal is required to isolate the gas supply from the ambient atmosphere. In a common configuration, two distinct seal areas are located (1) between the burner tube and the ferrule, and (2) between the orifice and the ferrule. Very high temperatures are involved in the combustion chamber and the gas-tightness of the seal areas are areas of concern. Also, a reduction in the total number of parts and complexity of parts is desirable. Improved constructions for pilot burners are desired. In particular, improved constructions for pilot burners are desired that require fewer sealing junctures between parts, use fewer parts, and use parts that are easier to manufacture.
Embodiments of the invention are related to burner systems and methods that can be used in gas-fired devices. In one embodiment, an improved pilot burner includes an orifice plate defining a central orifice for metering a supply of gas and a gas tube. The gas tube includes a tube wall and defines a supply opening at a first end. The orifice plate is positioned within the gas tube at the supply opening, and the tube wall is crimped around the orifice plate to secure the orifice plate to the gas tube. The pilot burner also includes a burner tube having a first end for receiving a first end of the gas tube. The burner tube further includes a second end defining a flame opening.
In another embodiment, an improved pilot burner includes a gas tube including a tube wall and defining a supply opening at a first end. An orifice plate is positioned at the supply opening. The pilot burner further includes a burner tube having a first end for receiving a first end of the gas tube and a second end defining a flame opening, in addition to a bracket configured to hold the gas tube and burner tube in stable positions. The bracket defines a first opening and a second opening, wherein the first opening and the second opening are aligned and spaced from each other. The pilot burner further includes a clip configured to secure the burner tube and gas tube to the bracket so that a portion of the burner tube extends from the first opening of the bracket.
In another embodiment of the invention, a method of assembling a pilot burner includes providing a gas tube comprising a tube wall and defining a supply opening at a first end, where an orifice plate is positioned at the supply opening. Another step is positioning a tube holder to be surrounding the gas tube at the first end of the gas tube, wherein the orifice plate is positioned at a first end of the tube holder. Yet another step is placing a burner tube over the first end of the tube holder and the first end of the gas tube to form a burner tube assembly. The burner tube has a first flared end for receiving a first end of the gas tube and a first end of the tube holder. The burner tube has a second end defining a flame opening. Another step is inserting the burner tube assembly into at least one opening of a bracket.
The invention may be more completely understood by considering the detailed description of various embodiments of the invention that follows in connection with the accompanying drawings.
While the invention may be modified in many ways, specifics have been shown by way of example in the drawings and will be described in detail. It should be understood, however, that the intention is not to limit the invention to the particular embodiments described. On the contrary, the intention is to cover all modifications, equivalents, and alternatives following within the scope and spirit of the invention as defined by the claims.
This application relates to a burner configuration, and more particularly to a pilot burner configuration that reduces the number of areas that require a gas-tight seal. More particularly, certain embodiments of the pilot burner configuration described herein have only one gas-tight seal in the pilot burner assembly.
A pilot burner includes components that connect a source of gas, such as a gas tube, to a burner tube. The burner tube, when connected to a source of gas at a first end and having a spark source at the second end, will produce a single open gas flame at a flame opening at one end.
In one embodiment, an orifice plate is press-fit into the end of the gas tube, and this is the only gas-tight sealing connection that is required in the pilot burner assembly. In one embodiment, a mechanical clip having a spring action is used to secure the gas tube and burner tube to a bracket, so that the parts are held securely in place.
A thermopile is a device that converts thermal energy into electrical energy. It is composed of thermocouples either connected in series or in parallel. For the pilot burner 10, it is possible for a single thermocouple to be used instead of a thermopile, but it is more common for a collection of thermocouples such as a thermopile to be used with a pilot burner. When a flame is present at a flame opening 34 of the burner tube, the flame or heat from the flame is directed to the body of the thermopile 18. As a result, the thermopile 18 generates a current. The current is directed to a control mechanism such as a valve upstream on the gas line, configured so that the current holds the valve in an open position. If the flame of the pilot burner is extinguished, then the current from the thermopile ceases and the gas valve to the pilot burner and main burner will close. In this way, the pilot burner provides a safety mechanism.
Now referring to
Referring again to
The press-fit process provides a gas-tight seal around a circumference of the orifice plate 60 and between the two major surfaces and the gas tube wall. When the orifice plate 60 is in place, the gas tube 26 outer wall defines an orifice flange 64 where the outer diameter of the gas tube is larger than for the remainder of the gas tube.
The pilot burner described herein is configured to minimize the number of gas-tight sealing interfaces that must be accomplished. In the embodiment show in
Now the configuration of the bracket 20 will be described, along with the mating structures present on other components that allow securing those components to the bracket.
The first, second and third portions 70, 72, 74 of the bracket 20 each include planar elements that are angled toward each other. The angles of the planar elements of the first, second and third portions 70, 72 and 74 are configured so that the area above the flame opening of the burner tube 14 will be very close to the end of the spark source 24 and the body of the thermopile 18, as can be seen in
Now referring to
Referring again to
Part of the burner tube assembly also passes through the opening 84 in the first plate 80, including a straight portion 90 of the burner tube 14, as seen in
Referring again to
Now referring to
The present invention should not be considered limited to the particular examples described above, but rather should be understood to cover all aspects of the invention as fairly set out in the attached claims. Various modifications, equivalent processes, as well as numerous structures to which the present invention may be applicable will be readily apparent to those of skill in the art to which the present invention is directed upon review of the present specification. The claims are intended to cover such modifications and devices.
The above specification provides a complete description of the structure and use of the invention. Since many of the embodiments of the invention can be made without parting from the spirit and scope of the invention, the invention resides in the claims.
Number | Name | Date | Kind |
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2609870 | Riebman et al. | Sep 1952 | A |
2884009 | Hetherington | Apr 1959 | A |
3052286 | Kramer et al. | Sep 1962 | A |
3056450 | Loveland et al. | Oct 1962 | A |
3620849 | Thompson | Nov 1971 | A |
3825183 | Machlanski | Jul 1974 | A |
4165963 | Nozaki | Aug 1979 | A |
4177034 | Jones | Dec 1979 | A |
4565521 | Hancock | Jan 1986 | A |
5039300 | Riehl | Aug 1991 | A |
5163830 | Pfefferkorn | Nov 1992 | A |
6056540 | Newman et al. | May 2000 | A |
6547277 | Adamini et al. | Apr 2003 | B1 |
7300278 | Vandrak et al. | Nov 2007 | B2 |
Number | Date | Country |
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207311 | Nov 1923 | GB |
956326 | Apr 1964 | GB |
Entry |
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Description of Honeywell Q5000 Water Heater Pilot Hardware, at least as early as Jul. 16, 2007, 10 pages. |
Number | Date | Country | |
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20100015560 A1 | Jan 2010 | US |