Mounting arrangement for a user interface of a gas cooking appliance
10907837 ยท 2021-02-02
Assignee
Inventors
Cpc classification
F24C3/082
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24C3/124
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24C3/126
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A gas cooking appliance includes a valve and a first pipe configured to transport gas to the valve. The appliance also includes a burner and a second pipe configured to transport gas from the valve to the burner. The appliance further includes a console and a knob. The console includes a cutout having an edge defining a shape of the cutout, and the knob includes a handle and a bezel. The knob is configured to control a state of the valve. The bezel has a rear face and a protrusion extending rearward from the rear face through the cutout, the protrusion contacting the edge of the cutout. The appliance additionally includes a bracket coupling the knob to the valve. The bracket includes a leg mating with the protrusion.
Claims
1. A gas cooking appliance comprising: a valve; a first pipe configured to transport gas to the valve; a burner; a second pipe configured to transport gas from the valve to the burner; a console including a cutout, the cutout having an edge defining a shape of the cutout; a knob including a handle and a bezel, the knob being configured to control a state of the valve, wherein the bezel has a rear face and a protrusion extending rearward from the rear face through the cutout, the protrusion contacts the edge of the cutout, and the protrusion is one of a plurality of protrusions extending rearward from the rear face of the bezel through the cutout; and a bracket coupling the knob to the valve, wherein the bracket includes a leg mating with the protrusion, the leg is one of a plurality of legs of the bracket, and each of the plurality of legs is configured to mate with a respective one of the plurality of protrusions.
2. The gas cooking appliance of claim 1, wherein: the console defines an interior space inaccessible to a user of the gas cooking appliance; the console defines an exterior space accessible to the user; the rear face of the bezel is located in the exterior space; and the protrusion extends from the exterior space to the interior space.
3. The gas cooking appliance of claim 1, wherein: the protrusion includes a hole, and the leg fits inside the hole; or the leg includes an opening, and the protrusion fits inside the opening.
4. The gas cooking appliance of claim 3, wherein the protrusion and leg have complementary shapes.
5. The gas cooking appliance of claim 1, further comprising a fastener extending through a first hole in the protrusion and threaded into a second hole in the leg.
6. The gas cooking appliance of claim 1, wherein the protrusion has a side that contacts the edge of the cutout.
7. The gas cooking appliance of claim 6, wherein the edge of the cutout defines some of but less than all of a circle.
8. The gas cooking appliance of claim 1, wherein: the plurality of protrusions contacts the edge of the cutout; the bracket is a spider bracket; and the bracket further includes a body directly coupled to the valve.
9. The gas cooking appliance of claim 1, wherein: the valve includes a valve stem; a rotational position of the valve stem determines the state of the valve; the handle is directly coupled to the valve stem; and the knob is configured to control the state of the valve via rotation of the valve stem with the handle.
10. A mounting arrangement for a user interface of a gas cooking appliance, the mounting arrangement comprising: a valve including a valve stem, wherein the valve stem has a longitudinal axis; a console including a cutout, the cutout having an edge defining a shape of the cutout; a knob including a handle and a bezel, the knob being configured to control a state of the valve, wherein the bezel has a rear face and a protrusion extending rearward from the rear face through the cutout, and wherein the protrusion contacts the edge of the cutout; and a bracket coupling the knob to the valve, wherein the bracket includes a leg mating with the protrusion, the leg has a longitudinal axis, and the longitudinal axis of the leg is radially offset from the longitudinal axis of the valve stem.
11. The mounting arrangement of claim 10, wherein: the console defines an interior space inaccessible to a user of the gas cooking appliance; the console defines an exterior space accessible to the user; the rear face of the bezel is located in the exterior space; and the protrusion extends from the exterior space to the interior space.
12. The mounting arrangement of claim 10, wherein: the protrusion includes a hole, and the leg fits inside the hole; or the leg includes an opening, and the protrusion fits inside the opening.
13. The mounting arrangement of claim 12, wherein the protrusion and leg have complementary shapes.
14. The mounting arrangement of claim 10, further comprising a fastener extending through a first hole in the protrusion and threaded into a second hole in the leg.
15. The mounting arrangement of claim 10, wherein the protrusion has a side that contacts the edge of the cutout.
16. The mounting arrangement of claim 15, wherein the edge of the cutout defines some of but less than all of a circle.
17. The mounting arrangement of claim 10, wherein: the protrusion is one of a plurality of protrusions extending rearward from the rear face of the bezel through the cutout; the plurality of protrusions contacts the edge of the cutout; the bracket is a spider bracket; the bracket further includes a body directly coupled to the valve; the leg is one of a plurality of legs of the bracket; and each of the plurality of legs is configured to mate with a respective one of the plurality of protrusions.
18. The mounting arrangement of claim 10, wherein: a rotational position of the valve stem determines the state of the valve; the handle is directly coupled to the valve stem; and the knob is configured to control the state of the valve via rotation of the valve stem with the handle.
19. A method of mounting a user interface of a gas cooking appliance comprising a valve including a valve stem, a first pipe configured to transport gas to the valve, a burner and a second pipe configured to transport gas from the valve to the burner, the method comprising: forming a cutout in a console, the cutout having an edge defining a shape of the cutout; coupling a knob to the valve using a bracket, the knob being configured to control a state of the valve, wherein the knob includes a handle and a bezel, the bezel has a rear face and a protrusion extending rearward from the rear face through the cutout, the protrusion contacts the edge of the cutout, the bracket includes a leg, the leg mates with the protrusion, the valve stem has a longitudinal axis, the leg has a longitudinal axis, and the longitudinal axis of the leg is radially offset from the longitudinal axis of the valve stem.
20. The method of claim 19, wherein coupling the knob to the valve using the bracket includes: inserting the leg into a hole of the protrusion; or inserting the protrusion into an opening of the leg.
21. The gas cooking appliance of claim 1, wherein the cutout and the plurality of protrusions are configured such that contact between the plurality of protrusions and the edge of the cutout prevents relative rotation between the bezel and the console.
22. The gas cooking appliance of claim 1, wherein the plurality of protrusions and the plurality of legs are configured such that contact between the plurality of protrusions and the plurality of legs prevents relative rotation between the bezel and the bracket.
23. The mounting arrangement of claim 10, wherein the cutout and the protrusion are configured such that contact between the protrusion and the edge of the cutout prevents relative rotation between the bezel and the console, and the protrusion and the leg are configured such that contact between the protrusion and the leg prevents relative rotation between the bezel and the bracket.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
(8) Detailed embodiments of the present invention are disclosed herein. However, it is to be understood that the disclosed embodiments are merely exemplary of the invention that may be embodied in various and alternative forms. The figures are not necessarily to scale, and some features may be exaggerated or minimized to show details of particular components. Therefore, specific structural and functional details disclosed herein are not to be interpreted as limiting, but merely as a representative basis for teaching one skilled in the art to employ the present invention.
(9) With initial reference to
(10) With reference now to
(11) Turning to
(12) More specifically, knob 125 is coupled to valve 180 using a bracket 215. Preferably, bracket 215 is a spider bracket, as illustrated in
(13) The desired alignment of knob 125 is particularly provided by the interaction between protrusions 230-232 and a cutout 275. Cutout 275 is essentially a hole in console 120 through which portions of knob 125 and valve 180 extend. In the embodiment shown, cutout 275 is in the shape of a partial circle, i.e., an edge 280 of cutout 275 defines some of, but less than all of, a circle. In a preferred form, cutout 275 has an area greater than that of a semicircle but less than than of a full circle. However, as should become clear, cutout 275 can take a variety of shapes. In any case, protrusions 230-232 are located and shaped such that protrusions 230-232 contact edge 280 of cutout 275. Since protrusions 230-232 extend rearward from rear face 235, it is the sides of protrusions 230-232 that contact edge 280. Specifically, in the embodiment shown, sides 285-287 of protrusions 230-232 contact an arcuate portion 290 of cutout 275, while sides 288 and 289 of protrusions 231 and 232 contact a straight portion 291 of cutout 275. To match the corresponding portions of edge 280, sides 285-287 are arcuate, and sides 288 and 289 are straight. The result of this arrangement is that contact between protrusions 230-232 and edge 280 forces bezel 205 into a specific, predetermined position when bezel 205 is coupled to bracket 215, thereby ensuring that knob 125 will be properly and accurately aligned.
(14) As can be best seen in
(15) An alternative mounting arrangement for use with the present invention is shown in
(16) Although two particular leg/protrusion/cutout arrangements have been described, it should be understood that a wide variety of arrangements can be used in connection with the present invention. For example, as has been demonstrated, different numbers of legs and protrusions can be used. Also, the shapes of the legs, protrusions and cutout can vary. With respect to the cutout, it should also be noted that, instead of a circle or partial circle, the cutout can be an oval or polygon, for instance. In addition, the cutout can comprise a plurality of holes through which the protrusions, valve stem and fasteners pass rather than a single hole. Similarly, instead of a plurality of protrusions having corresponding holes, a single protrusion can be used having one or more holes.
(17) Based on the above, it should be readily apparent that the present invention provides a simple, effective and economical system and method for aligning the knobs of a gas cooking appliance during manufacture. Although described with reference to preferred embodiments, it should be readily understood that various changes or modifications could be made to the invention without departing from the spirit thereof. Furthermore, even though certain objects have been described as defining a portion of a circle, for purposes of the present invention, this does not require that such objects define a portion of a perfect circle. For instance, the term circular is intended to encompass ellipses, or portions thereof. In general, the invention is only intended to be limited by the scope of the following claims.