Incense fumigating and atomizing device with lamplight
Technical Field
The application belongs to the technical field of atomization devices, and relates to a fumigating and atomizing device with lamplight.
Background
The atomizer is a device for spraying liquid and discharging the liquid into the air, and is generally used for humidifying the indoor air, so that the indoor air is kept at proper humidity, the comfort of a user is improved, fragrant liquid with fragrance is added into the liquid, fragrance can be added into the indoor air, and the atomizer is popular with modern people. However, the atomized gas discharged by the atomizer is colorless, and lacks visual perception, so that the problem to be solved by the application is to increase the light visual effect in the discharged atomized gas.
Disclosure of utility model
The application aims to provide a fragrance atomization device with lamplight, which can increase the visual effect of the lamplight in discharged atomized gas.
The application is realized by the following technical scheme.
The technical scheme is that the fragrance atomization device with the lamplight comprises a shell, a liquid storage tank body, a luminous component, an atomization component and a fan, wherein an air outlet is formed in the shell, the atomization component is arranged at the bottom of the liquid storage tank body and is used for atomizing liquid in the liquid storage tank body, the fan is arranged inside the shell and is communicated with the inside of the liquid storage tank body, and the fan is used for discharging atomized gas in the liquid storage tank body from the air outlet;
The bottom of the liquid storage tank body is provided with a protruding portion, a light transmission area is arranged on the protruding portion corresponding to the air outlet, and the light-emitting component is arranged below the protruding portion, so that light generated by the light-emitting component can pass through the light transmission area and be emitted from the air outlet.
According to the fumigating and atomizing device, lamplight and atomizing gas come out from the air outlet simultaneously, the atomizing gas presents the visual effect of mist rising under the irradiation of lamplight, and the atomizing gas has colorful effect by changing the color of the lamplight.
In a specific embodiment of the technical scheme, a concave cavity which is concavely formed inwards is formed at a position, corresponding to the convex part, on the outer side of the liquid storage tank body, and the light-emitting component is arranged in the concave cavity.
In a specific embodiment of this technical solution, the light-transmitting area is located on an upper end face of the protruding portion, and the upper end face is disposed at a distance corresponding to the air outlet.
In a specific embodiment of this aspect, a through hole is provided at the bottom of the liquid storage tank, and the atomizing member is provided in the through hole, so that the atomizing member can atomize the liquid in the liquid storage tank.
In a specific embodiment of this technical scheme, the bottom of the liquid storage tank body is further provided with an air inlet pipeline, the fan is arranged in the shell, the shell is provided with an air inlet communicated with the fan, and the fan is used for driving air to enter the liquid storage tank body through the air inlet pipeline.
In a specific embodiment of this technical solution, the housing includes an upper shell and a bottom shell that are combined with each other, the liquid storage tank is disposed between the upper shell and the bottom shell, the upper shell is capped above the liquid storage tank, and the air outlet is disposed in the upper shell.
In a specific embodiment of the technical scheme, a control board and a battery are arranged in the shell, the control board is electrically connected with the battery, the light-emitting part, the atomizing part and the fan respectively, and at least one key is arranged on the control board.
In a specific implementation manner of the technical scheme, the control board is further provided with an audio receiving module, the audio receiving module is used for receiving audio signals to the control board, and the control board is further used for controlling the light emitting component to generate different light rays according to the change of the audio signals.
In a specific implementation manner of the technical scheme, the control panel is further provided with an infrared receiving module, and the infrared receiving module is used for receiving infrared signals to the control panel so as to realize remote control operation.
In a specific embodiment of this aspect, the light emitting component includes a substrate and a plurality of LED light emitting chips disposed on the substrate.
In a specific embodiment of this aspect, the atomizing member is an ultrasonic atomizing sheet.
It is to be understood that both the foregoing general description and the following detailed description are exemplary and explanatory only and are not restrictive of the application as claimed.
Drawings
The foregoing and other objects, features and advantages of the application will be apparent from the following more particular descriptions of exemplary embodiments of the application as illustrated in the accompanying drawings wherein like reference numbers generally represent like parts throughout the exemplary embodiments of the application.
Fig. 1 is a schematic view showing an external structure of a fragrance atomizing device with light according to an embodiment of the present application.
Fig. 2 is a schematic cross-sectional view of a fumigating and atomizing device with light according to an embodiment of the present application.
Fig. 3 is a schematic diagram of an exploded structure of a lamplight-containing fumigating device according to an embodiment of the present application.
Fig. 4 is a schematic diagram of another exploded structure of the fumigating device with light according to an embodiment of the present application.
Reference numerals illustrate:
11-an upper shell; 111-an air outlet; 12-bottom shell; 13-a liquid storage tank body; 131-a boss; 132-light-transmitting areas; 133-cavities; 134-through holes; 135-an air inlet pipeline; 14-a light emitting component; 15-an atomizing member; 151-a stent; 16-a fan; 17-a cover; 18-control panel; 181-key; 182 an audio receiving module; 183-an infrared receiving module; 184-charging interface; 19-battery.
Detailed Description
The following description of the embodiments of the present application will be made with reference to the accompanying drawings, in which it is evident that the embodiments described are some, but not all embodiments of the present application. All other embodiments, which can be made by those skilled in the art based on the embodiments of the application without making any inventive effort, are intended to be within the scope of the application.
The following describes the technical scheme of the embodiment of the present application in detail with reference to the accompanying drawings.
As shown in fig. 1 to 4, the present embodiment provides a fumigating and atomizing device with light, which includes a housing, a liquid storage tank 13, a light emitting component 14, an atomizing component 15 and a fan 16, wherein the housing is provided with an air outlet 111, the atomizing component 15 is arranged at the bottom of the liquid storage tank 13, the atomizing component 15 is used for atomizing liquid in the liquid storage tank 13, the fan 16 is arranged inside the housing and is communicated with the inside of the liquid storage tank 13, and the fan 16 is used for discharging atomized gas in the liquid storage tank 13 from the air outlet 111;
The bottom of the liquid storage tank 13 is provided with a bulge 131, a light transmission area 132 is arranged on the bulge corresponding to the air outlet 111, and the light emitting component 14 is arranged below the bulge 131, so that light generated by the light emitting component 14 can pass through the light transmission area 132 and be emitted from the air outlet 111.
Thus, the lamplight and the atomized gas come out from the air outlet 111 simultaneously, the atomized gas presents the visual effect of mist rising under the irradiation of the lamplight, and the atomized gas has colorful effect by changing the color of the lamplight.
The liquid storage tank 13 is used for containing liquid, the liquid can be fumigated liquid, pure water can also be used as a humidifier, the liquid storage tank 13 is provided with a light transmission area 132 on the protruding part, the whole liquid storage tank 13 can be made of a light transmission material, and the liquid storage tank 13 is arranged in the shell.
In this embodiment, a concave cavity 133 is formed on the outer side of the liquid storage tank 13 corresponding to the convex portion 131, and the light emitting component 14 is disposed inside the concave cavity 133. The presence of the cavity 133 causes the boss 131 to assume a shell structure similar to a rectangular parallelepiped or a trapezoid having a narrow upper portion and a wide lower portion.
In this embodiment, the light-transmitting area 132 is located on an upper end surface of the protruding portion 131, where the upper end surface is disposed at a distance corresponding to the air outlet 111, and the upper end surface may be a plane or an arc surface. The light emitting part 14 includes a substrate and a plurality of LED light emitting chips provided on the substrate, which can generate light of various colors.
In this embodiment, a through hole 134 is formed at the bottom of the liquid storage tank 13, the atomizing unit 15 is disposed in the through hole 134, the atomizing unit 15 is mounted on the liquid storage tank 13 through a bracket 151, and the liquid in the liquid storage tank 13 flows into the through hole 134 and contacts with the atomizing unit 15, so that the atomizing unit 15 can atomize the liquid in the liquid storage tank 13.
In this embodiment, the atomizing member 15 is an ultrasonic atomizing sheet.
In this embodiment, the bottom of the liquid storage tank 13 is further provided with two air intake pipes 135, the upper ends of the air intake pipes 135 are higher than the liquid level, the upper end outlets of the air intake pipes 135 are further provided with a cover 17, the cover 17 folds back the air coming out of the upper end outlets of the air intake pipes 135 and blows the air downwards to the surface of the liquid, the fan 16 is arranged in the casing, the fan 16 is arranged at the lower end inlet of the air intake pipes 135, the casing is provided with an air inlet communicated with the fan 16, and the fan 16 is used for driving the air to enter the liquid storage tank 13 through the air intake pipes 135 and further discharging atomized gas from the air outlet 111.
In this embodiment, the housing includes an upper shell 11 and a bottom shell 12 combined with each other, a liquid storage tank 13 is disposed between the upper shell 11 and the bottom shell 12, the upper shell 11 is covered above the liquid storage tank 13, and an air outlet 111 is disposed in the upper shell 11.
In this embodiment, a control board 18 and a battery 19 are disposed inside the housing, the control board 18 is electrically connected to the battery 19, the light emitting component 14, the atomizing component 15 and the fan 16, and a charging interface 184 and at least one key 181 are disposed on the control board 18. The number and type of the keys 181 can be selected and set according to the actual control requirement.
In this embodiment, the control board 18 is further provided with an audio receiving module 182, the audio receiving module 182 is configured to receive an audio signal to the control board 18, and the control board 18 is further configured to control the light emitting component 14 to generate different light according to the change of the audio signal. Preferably, the audio receiving module 182 is a microphone.
In this embodiment, the control board 18 is further provided with an infrared receiving module 183, and the infrared receiving module 183 is configured to receive infrared signals to the control board 18 to realize remote control operation. Preferably, the infrared receiving module 183 is a red receiving sensor, and may receive an infrared signal emitted from a remote controller.
The foregoing description of embodiments of the application has been presented for purposes of illustration and description, and is not intended to be exhaustive or limited to the embodiments disclosed. Many modifications and variations will be apparent to those of ordinary skill in the art without departing from the scope and spirit of the various embodiments described. The terminology used herein was chosen in order to best explain the principles of the embodiments, the practical application, or the improvement of technology in the marketplace, or to enable others of ordinary skill in the art to understand the embodiments disclosed herein.