Multilayer flame electrical fireplace with internal and external imaging panels
An imaging screen and electric fireplace technology, which is applied to electric light sources, household stoves/stoves, electric heating fuels, etc., can solve the problems of small depth range, less flame layers, and monotonous flame color, so as to solve the problem that the flame color is relatively monotonous and deep. Large range and strong stereoscopic effect
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Embodiment 1
[0025] In such figure 1 image 3 In the shown embodiment 1, the inner and outer imaging screen multilayer flame electric fireplace includes a housing 11, a heating device 14 arranged on the housing, an imaging light source 13, a light processing device 8 arranged above the imaging light source, a simulated carbon bed and The imaging screen next to the simulated carbon bed, the imaging screen includes an inner imaging screen 1 and an outer imaging screen 2, the inner imaging screen 1 and the outer imaging screen 2 are transflective structures, the inner imaging screen 1 and the outer imaging screen 2 The light transmittance is 80%, the light reflectivity is 20%, and the cross section of the inner imaging screen 1 is a single broken line structure (see Figure 7 ), the outer imaging screen 2 is a planar structure. The simulated carbon bed 3 is set at the bottom of the inner and outer imaging screens. The simulated carbon bed 3 is a number of spherical light-emitting blocks 4 with ...
Embodiment 2
[0029] in figure 2 Figure 4 In the illustrated embodiment 2, the simulated carbon bed 3 is a translucent strip structure with a simulated carbon surface on the upper part of the front and vacant lower parts on the rear. The artificial carbon bed 3 is arranged between the inner and outer imaging screens and on the front side of the outer imaging screen 2, and the artificial carbon bed arranged between the inner and outer imaging screens is higher than the artificial carbon bed arranged on the front side of the outer imaging screen 2. The carbon surface on the cross section of the front and rear simulated carbon beds is generally a curved structure, and the curved structure of the front simulated carbon bed is connected with the curved structure of the rear simulated carbon bed. The cross section of the internal imaging screen adopts a curved structure ( see Figure 8 ), the light transmittance of the inner imaging screen 1 and the outer imaging screen 2 is 75%, and the light r...
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