Atomization 3D flame simulation electric fireplace
By designing an atomized 3D flame simulation electric fireplace, combined with display, simulation, humidification and heating components, the existing electric fireplace has been solved, and a more realistic flame effect and effective indoor humidification are achieved.
Patent Information
- Application Number
- CN202421687066.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-17
- Publication Date
- 2025-06-27
- Estimated Expiration
- 2034-07-17
AI Technical Summary
When used, the existing electric fireplace has poor simulation effect and cannot effectively humidify the indoor air, resulting in excessive drying of the room.
Design an atomized 3D flame simulation electric fireplace that includes display components, simulation components, humidification components and heating components. The water is atomized through atomizer and discharged under the background of simulated flame to achieve the smoke effect; at the same time, the PCT heater and fan are used to heat and humidify the air.
It improves the flame simulation effect, can effectively humidify indoor air, improve indoor humidity, and enhance aesthetics and functionality.
Smart Images

Figure CN223036494U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of electric fireplaces, in particular to an atomized 3D flame simulation electric fireplace. Background Technique
[0002] The fireplace has become a dedicated heating device: With the development of the times, new changes have taken place in the fireplace. In terms of form, the fireplace has evolved from traditional wood-burning fireplaces, gas fireplaces, charcoal fireplaces, etc. to a new category of electric fireplaces. The electric fireplace incorporates European classical fireplace production techniques and modern sound and optics principles, greatly improving the design of the traditional fireplace and achieving green environmental protection and a more intense real wood burning effect without losing elegance.
[0003] When the existing electric fireplace is in use, although it can achieve the purpose of heating, its simulation effect is poor, reducing the aesthetic degree. At the same time, it does not have the function of humidifying the indoor air, and it is easy to cause the indoor environment to be overly dry due to heating. Therefore, we need to propose an atomized 3D flame simulation electric fireplace. Content of the Utility Model
[0004] The purpose of the utility model is to provide an atomized 3D flame simulation electric fireplace, which has the advantages of improving the simulation degree and humidifying at the same time, so as to solve the problems put forward in the above background technique.
[0005] To achieve the above purpose, the utility model provides the following technical solution: An atomized D flame simulation electric fireplace, including a housing, on the front of the housing is installed a display component for conveniently displaying the simulated flame;
[0006] Inside the housing is installed a simulation component for simulating the flame effect, and the simulation component is arranged corresponding to the display component;
[0007] On one side inside the housing is installed a humidifying component for simulating grinding smoke and humidifying the air;
[0008] One side of the housing is inlaid with a water tank, and one end of the humidifying component is communicated with the inside of the water tank;
[0009] On the other side inside the housing is installed a heating component for heating the air, and on the back of the housing is installed a back panel.
[0010] Preferably, the display component includes a panel, the panel is installed on the surface of the housing, and a transparent plate is inlaid inside the panel.
[0011] Preferably, the simulation component includes a display screen installed on one side inside the housing. The display screen is electrically connected to a storage module. Fixed seats are installed at the four corners of the display screen. The fixed seats are connected to the back of the panel by bolts, and an air gap is formed between the panel and the display screen.
[0012] Preferably, first sealing strips that fit the display screen are installed on both the upper and lower sides of the panel, and second sealing strips that fit the display screen are installed on both the left and right sides of the panel.
[0013] Preferably, the humidification component includes an atomizer installed inside the housing. The water inlet end of the atomizer communicates with the bottom on one side of the water tank. The exhaust end of the atomizer communicates with a first pipe body. One end of the first pipe body communicates with a second pipe body. Both ends of the second pipe body communicate with third pipe bodies. The third pipe bodies are respectively located on both sides of the second sealing strip. One side of the third pipe body communicates with a first shunt pipe. One end of the first shunt pipe penetrates through the second sealing strip and extends to both sides inside the air gap.
[0014] Preferably, the humidification component further includes a fourth pipe body connected to the top of the water tank. The fourth pipe body is located above the display screen. One side of the fourth pipe body communicates with a second shunt pipe. The second shunt pipe penetrates through the first sealing strip and extends above the inside of the air gap. An inlet pipe is connected to the upper part outside the water tank, and a sealing cover is installed on the external thread of the inlet pipe.
[0015] Preferably, the heating component includes a heat insulation box installed inside the housing. A PCT heater, a fan, and a filter are respectively installed inside the heat insulation box. The air inlet end of the filter extends to the outside of the housing. The air exhaust end of the filter communicates with the air inlet end of the fan. The air exhaust end of the fan communicates with the air inlet end of the PCT heater.
[0016] Preferably, the air exhaust end of the PCT heater communicates with a fifth pipe body. The other end of the fifth pipe body communicates with an exhaust hood. The exhaust hood is installed inside the housing, and the top of the exhaust hood communicates with the outside of the housing.
[0017] Compared with the prior art, the beneficial effects of the present utility model are:
[0018] In the present utility model, a flame simulation video is stored inside the storage module and can be played through the display screen. By playing the flame combustion effect in real time, with the fog set off by the simulated flame, the effect of simulated smoke can be achieved, thereby making the flame effect more realistic.
[0019] In the present utility model, the mist can enter the interior of the water tank under the suction of negative pressure. When it is necessary to humidify the indoor air, the water inlet pipe is opened, and the mist will be discharged to the outside through the water inlet pipe, thereby achieving the purpose of humidifying the air. After being filtered by the filter, it enters the PCT heater for heating. The heated gas enters the exhaust hood through the fifth pipe body and is then discharged to the outside through the exhaust hood, thereby achieving the purpose of heating and warming. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 is a schematic structural diagram of the present utility model;
[0021] Figure 2 is a schematic side view structural diagram of the present utility model;
[0022] Figure 3 is a schematic structural diagram of the third pipe body of the present utility model;
[0023] Figure 4 is a schematic side view structural diagram of the water tank of the present utility model;
[0024] Figure 5 is a schematic top view structural diagram of the water tank of the present utility model;
[0025] Figure 6 is a schematic structural diagram of the heat insulation box of the present utility model.
[0026] In the figure: 1, outer shell; 2, water tank; 3, back panel; 4, transparent panel; 5, display screen; 6, fixing seat; 7, first sealing strip; 8, second sealing strip; 9, atomizer; 10, first pipe body; 11, second pipe body; 12, third pipe body; 13, first shunt pipe; 14, fourth pipe body; 15, second shunt pipe; 16, water inlet pipe; 17, heat insulation box; 18, PCT heater; 19, fan; 20, filter; 21, fifth pipe body; 22, exhaust hood; 23, panel. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0027] The technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts shall fall within the protection scope of the present utility model.
[0028] Please refer to Figure 1-6, the present utility model provides a technical solution: an atomizing 3D flame simulation electric fireplace, including a housing 1, on the front of the housing 1 is installed a display component for conveniently displaying the simulated flame; the display component includes a panel 23, the panel 23 is installed on the surface of the housing 1, and a transparent plate 4 is embedded inside the panel 23. The setting of the transparent plate 4 enables people to externally observe the simulated flame.
[0029] Further, inside the housing 1 is installed a simulation component for simulating the flame effect, and the simulation component is arranged corresponding to the display component; the simulation component includes a display screen 5 installed on one side inside the housing 1, the display screen 5 is electrically connected to a storage module, and fixing seats 6 are installed at the four corners of the display screen 5. The fixing seats 6 are connected to the back of the panel 23 by bolts, and an air gap is formed between the panel 23 and the display screen 5. The storage module stores a flame simulation video and can play it through the display screen 5. By playing the 3D simulated flame combustion effect in real time.
[0030] Specifically, on one side inside the housing 1 is installed a humidifying component for simulating grinding smoke and humidifying the air; first sealing strips 7 that fit the display screen 5 are installed on both the upper and lower sides of the panel 23, and second sealing strips 8 that fit the display screen 5 are installed on both the left and right sides of the panel 23. By setting the first sealing strips 7 and the second sealing strips 8, they are used to seal the air gap. The humidifying component includes an atomizer 9 installed inside the housing 1, the water inlet end of the atomizer 9 is communicated with the bottom of one side of the water tank 2, the exhaust end of the atomizer 9 is communicated with a first pipe body 10, one end of the first pipe body 10 is communicated with a second pipe body 11, both ends of the second pipe body 11 are communicated with third pipe bodies 12, the third pipe bodies 12 are respectively located on both sides of the second sealing strip 8, and one side of the third pipe body 12 is communicated with a first shunt pipe 13, and one end of the first shunt pipe 13 penetrates through the second sealing strip 8 and extends to both sides inside the air gap.
[0031] By injecting water into the water tank 2 and starting the atomizer 9, the atomizer 9 extracts and atomizes the water in the water tank 2, and the atomized gas enters both sides inside the air gap through the first pipe body 10, the second pipe body 11, the third pipe bodies 12 and the first shunt pipe 13. Against the backdrop of the simulated flame, this mist can achieve the effect of simulating smoke, thus making the flame effect more realistic.
[0032] It is worth mentioning that: a water tank 2 is embedded in one side of the shell 1, one end of the humidifying component is connected to the interior of the water tank 2, the humidifying component also includes a fourth tube body 14 connected to the top of the water tank 2, the fourth tube body 14 is located above the display screen 5, one side of the fourth tube body 14 is connected to a second diversion pipe 15, the second diversion pipe 15 passes through the first sealing strip 7 and extends to the top of the air gap, the top of the outer side of the water tank 2 is connected to a water inlet pipe 16, the external thread of the water inlet pipe 16 is installed with a sealing cover, the mist gradually rises in the air gap and enters the fourth tube body 14, and then enters the water tank 2, after the mist gathers, it condenses into water again and merges into the water tank 2.
[0033] As the water in the water tank 2 gradually drains away, negative pressure is formed in the water tank 2, so the mist can enter the water tank 2 under the attraction of the negative pressure. When the indoor air needs to be humidified, the water inlet pipe 16 is opened, and the mist is discharged to the outside through the water inlet pipe 16, thereby achieving the purpose of humidifying the air.
[0034] Furthermore, a heating assembly for achieving air heating is installed on the other side of the shell 1, and a back plate 3 is installed on the back of the shell 1. The heating assembly includes a heat insulation box 17 installed inside the shell 1, and a PCT heater 18, a fan 19 and a filter 20 are installed inside the heat insulation box 17 respectively. The air inlet end of the filter 20 extends to the outside of the shell 1, and the exhaust end of the filter 20 is connected to the air inlet end of the fan 19, and the exhaust end of the fan 19 is connected to the air inlet end of the PCT heater 18. The exhaust end of the PCT heater 18 is connected to the fifth pipe body 21, and the other end of the fifth pipe body 21 is connected to the exhaust hood 22. The exhaust hood 22 is installed inside the shell 1, and the top of the exhaust hood 22 is connected to the outside of the shell 1. The outside air is sucked by the fan 19, filtered by the filter 20, and then enters the PCT heater 18 for heating. The heated gas enters the exhaust hood 22 through the fifth pipe body 21, and then is discharged to the outside through the exhaust hood 22, thereby achieving the purpose of heating.
[0035] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. An atomized 3D flame simulation electric fireplace, comprising a housing (1), characterized in that: A display component for conveniently displaying simulated flames is installed on the front of the housing (1); A simulation component for simulating a flame effect is installed inside the housing (1), and the simulation component and the display component are arranged correspondingly; A humidifying component for simulating grinding smoke and humidifying the air is installed on one side of the interior of the housing (1); A water tank (2) is embedded in one side of the housing (1), and one end of the humidifying component is in communication with the interior of the water tank (2); A heating component for achieving air heating is installed on the other side of the interior of the outer shell (1), and a back plate (3) is installed on the back of the outer shell (1).
2. The atomized 3D flame simulation electric fireplace according to claim 1, characterized in that: The display assembly comprises a panel (23), the panel (23) being mounted on the surface of the housing (1), and a transparent plate (4) being embedded inside the panel (23).
3. The atomized 3D flame simulation electric fireplace according to claim 2, characterized in that: The simulation component comprises a display screen (5) installed on one side inside the housing (1), the display screen (5) being electrically connected to a storage module, and fixing seats (6) being installed at four corners of the display screen (5), the fixing seats (6) being connected to the back side of a panel (23) via bolts, and an air gap being formed between the panel (23) and the display screen (5).
4. The atomized 3D flame simulation electric fireplace according to claim 3, characterized in that: The upper and lower sides of the panel (23) are both provided with first sealing strips (7) that fit the display screen (5), and the left and right sides of the panel (23) are both provided with second sealing strips (8) that fit the display screen (5).
5. The atomized 3D flame simulation electric fireplace according to claim 4, characterized in that: The humidifying assembly comprises an atomizer (9) installed inside the housing (1); the water inlet end of the atomizer (9) is connected to the bottom of one side of the water tank (2); the exhaust end of the atomizer (9) is connected to a first tube body (10); one end of the first tube body (10) is connected to a second tube body (11); both ends of the second tube body (11) are connected to a third tube body (12); the third tube body (12) is respectively located on both sides of the second sealing strip (8); one side of the third tube body (12) is connected to a first shunt pipe (13); one end of the first shunt pipe (13) passes through the second sealing strip (8) and extends to both sides of the air gap.
6. The atomized 3D flame simulation electric fireplace according to claim 5, characterized in that: The humidifying assembly further comprises a fourth tube body (14) connected to the top of the water tank (2), the fourth tube body (14) being located above the display screen (5), one side of the fourth tube body (14) being connected to a second shunt tube (15), the second shunt tube (15) penetrating the first sealing strip (7) and extending to the top of the air gap, the top of the outer side of the water tank (2) being connected to a water inlet pipe (16), the outer thread of the water inlet pipe (16) being provided with a sealing cover.
7. The atomized 3D flame simulation electric fireplace according to claim 6, characterized in that: The heating assembly comprises a heat-insulating box (17) installed inside the housing (1), a PCT heater (18), a fan (19) and a filter (20) are respectively installed inside the heat-insulating box (17), an air inlet end of the filter (20) extends to the outside of the housing (1), an air outlet end of the filter (20) is connected to the air inlet end of the fan (19), and an air outlet end of the fan (19) is connected to the air inlet end of the PCT heater (18).
8. The atomized 3D flame simulation electric fireplace according to claim 7, characterized in that: The exhaust end of the PCT heater (18) is connected to a fifth tube body (21), the other end of the fifth tube body (21) is connected to an exhaust hood (22), the exhaust hood (22) is installed inside the outer shell (1), and the top of the exhaust hood (22) is connected to the outside of the outer shell (1).