This application claims priority of Taiwanese Application No. 100224155, filed on Dec. 21, 2011.
1. Field of the Invention
This invention relates to a heating device, and more particularly to a heating device having light reflection effect.
2. Description of the Related Art
Referring to
A fire produced by the burner 123 is used for heating air to form hot air. The top cap 13 can block the hot air from flowing into the atmosphere. Hence, surrounding air can be heated to increase the surrounding temperature. However, due to the presence of the top cap 13, the illumination effect is limited.
The object of this invention is to provide a warming oven that includes means for reflecting light for enhancing the illumination effect.
Accordingly, a warming oven of this invention includes a base, a heating unit, a heat conducting unit, and a reflective shield. The base has an accommodating space. The heating unit is disposed within the accommodating space. The heat conducting unit includes a positioning plate, a top plate spaced apart from the positioning plate, a quartz glass tube inserted into the positioning plate and the top plate, and a plurality of upright connecting rods disposed around the positioning plate and the top plate. The reflective shield is formed with a plurality of vent holes, and includes a bottom cover that covers a top end of the heat conducting unit and that has a vertically curved outer mirror surface for reflecting light from a fire flame produced by the heating unit, thereby providing an illumination effect.
These and other features and advantages of this invention will become apparent in the following detailed description of a preferred embodiment of this invention, with reference to the accompanying drawings, in which:
Referring to
The base 3 includes a supporting plate 31, a plurality of upright supporting rods 32 disposed around and connected to the supporting plate 31, and a plurality of stop plates 33 each connected between two adjacent ones of the supporting rods 32. The supporting plate 31 cooperates with the supporting rods 32 and the stop plates 33 to define an accommodating space 34 above the supporting plate 31 and among the supporting rods 32 and the stop plates 33. In this embodiment, the supporting plate 31 is square, and has four upright side plate portions 310 disposed respectively at four sides thereof. Each of the sideplate portions 310 is formed with an inverted U-shaped slot 311 therethrough that has a horizontal slot section and two upright slot sections extending respectively and downwardly from two ends of the horizontal slot section to define a projecting plate portion 312 among the horizontal slot section and the upright slot sections. Each of the stop plates 33 has a plate body 330 and two retaining rings 331 welded to the plate body 330. Since each of the retaining rings 331 is sleeved on the corresponding plate portion 312, and since each of the lateral side surfaces of each of the stop plates 33 is in intimate contact with the corresponding supporting rod 32, the stop plates 33 can be positioned relative to the supporting plate 31 and the supporting rods 32.
The heating unit 4 is disposed within the accommodating space 34 in the base 3, and includes a fuel source 41 placed on the supporting plate 31, a heater 42 connected to the fuel source 41, and a position-limiting member 43 hooked removably on two adjacent ones of the supporting rods 32 for positioning the fuel source 41 within the accommodating space 34. The position-limiting member 43 and the roller unit 7 are adjacent to and located respectively to two opposite sides of one of the upright side plate portions 310 of the supporting plate 31. In this embodiment, the position-limiting member 43 has a curved rod portion 431 concave away from the fuel source 41 and toward the roller unit 7.
The heat conducting unit 5 is disposed on and above the base 3, and includes a positioning plate 51 formed with a first aperture 511, a top plate 52 disposed above and spaced apart from the positioning plate 51 and formed with a second aperture 521, an upright quartz glass tube 53 inserted into the first and second apertures 511, 521, a plurality of upright connecting rods 54 disposed around and connected fixedly to the positioning plate 51 and the top plate 52, and a plurality of net plates 55 surrounding the quartz glass tube 53. Each of the net plates 55 is connected fixedly between two adjacent ones of the connecting rods 54. The first aperture 511 in the positioning plate 51 is in fluid communication with the accommodating space 34.
With further reference to
With further reference to
With further reference to
Also during occurrence of the fire flame in the quartz glass tube 53, since the area of the reflective shield 6 is greater than that of the top plate 52, and since the reflective shield 6 is disposed directly above the top plate 52, when light is emitted upwardly from the fire flame, it can be reflected by the outer mirror surface 611 of the bottom cover 61 of the reflective shield 6. At this time, since the outer mirror surface 611 is vertically curved, the illuminated area, the illumination intensity, and the decorating effect can be increased. The outer mirror surface 611 is but not limited to square in cross-section.
In this embodiment, when it is desired to move the warming oven 2 by a short distance, the warming oven 2 is reclined from a vertical position shown by the solid lines in
To summarize, due to inclusion of the outer mirror surface 611 in the bottom cover 61 of the reflective shield 6, the illumination effect can be improved. Thus, the object of this invention is achieved.
With this invention thus explained, it is apparent that numerous modifications and variations can be made without departing from the scope and spirit of this invention. It is therefore intended that this invention be limited only as indicated by the appended claims.
Number | Date | Country | Kind |
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100224155 U | Dec 2011 | TW | national |
Number | Name | Date | Kind |
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20100236544 | Hall et al. | Sep 2010 | A1 |
Number | Date | Country | |
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20130160759 A1 | Jun 2013 | US |