Atomization device
By designing a atomization device with a smoke runner and airflow-driven one, the problem of low ornamentality after the mist is emitted by the existing aromatherapy instrument is solved, and the smoke flows back and forth in the runner, improving the ornamentality of the device.
Patent Information
- Application Number
- CN202421460644.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-21
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2034-06-21
AI Technical Summary
After the mist is generated, existing aromatherapy instruments usually emit directly into the surrounding air, which is less ornamental.
An atomization device is designed, including a housing, an atomization assembly and a first airflow driving member. A smoke flow channel is formed inside the housing. The smoke generated by the atomization assembly enters the smoke flow channel from the mist outlet, and the smoke is driven back and forth in the smoke flow channel through the first airflow driving member to improve ornamentality.
By allowing smoke to flow back and forth in the smoke runner, the ornamentality of the atomization device is enhanced, making it have a dynamic aesthetic during use.
Smart Images

Figure CN222855799U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of smoke generation, in particular to an atomization device. Background Art
[0002] Atomizers are devices used to convert liquid into smoke, and are generally used in aromatherapy devices, atomizers, etc. Take the car aromatherapy device as an example. The interior space of the car is relatively closed, which easily causes air pollution. Therefore, people like to place an aromatherapy device in the car to improve the air quality in the car. The aromatherapy device eliminates the odor in the car by releasing fragrance and keeps the air fresh. At the same time, the fragrance released by the aromatherapy device also has the effect of refreshing the mind, which helps the driver keep a clear mind.
[0003] However, although the existing aromatherapy apparatus has the effects of purifying the air and refreshing the mind, after the mist is generated, it is usually directly emitted into the surrounding air, which has low ornamental value. Utility Model Content
[0004] In view of this, the utility model provides an atomizing device with ornamental value.
[0005] The present application provides an atomization device, including a shell, an atomization component and a first airflow driving component. A smoke flow channel is formed inside the shell, and the smoke flow channel has a first end and a second end arranged opposite to each other. The atomization component is provided with a mist outlet, and the mist outlet corresponds to the first end. The first airflow driving component is used to drive the smoke to move from the second end toward the first end.
[0006] In some embodiments, an air outlet channel is provided in the shell, and the air outlet channel is arranged corresponding to the second end of the smoke flow channel, and the air outlet channel is connected to the first airflow driving component and the smoke flow channel.
[0007] In some embodiments, the first airflow driving member includes a fan located in the housing, an air inlet is provided on the housing, and the fan is connected to the air inlet.
[0008] In some embodiments, a second airflow driving member is further included. The second airflow driving member is arranged corresponding to the first end and is used to drive the smoke to move from the first end toward the second end.
[0009] In some embodiments, a mist outlet channel is provided in the atomization assembly, the mist outlet channel is communicated with the mist outlet, and the second airflow driving member is arranged corresponding to the mist outlet channel.
[0010] In some embodiments, the second airflow driving member includes an air pump located in the housing, and the air pump is connected to an end of the mist outlet channel away from the mist outlet.
[0011] In some embodiments, a guide member is further included, the smoke flow channel is arranged on the guide member, the first end and the second end are respectively arranged on the guide member, the first end is arranged corresponding to the mist outlet, and the second end is arranged corresponding to the air outlet channel.
[0012] In some embodiments, the shell includes a base and an upper cover arranged on the base, a smoke chamber is formed in the upper cover, an installation chamber is formed in the base, the guide member is arranged in the smoke chamber, and the atomization assembly and the first airflow driving member are arranged in the installation chamber.
[0013] In some embodiments, the base includes a bottom shell and a mounting frame connected to the bottom shell to form the mounting cavity, the mounting frame includes a base connected to the bottom shell and a main frame protruding from one side of the base, the main frame is disposed in the smoke cavity, and the atomization assembly is disposed in the main frame.
[0014] In some embodiments, the mounting frame is provided with a guide channel connecting the mist outlet and the smoke flow channel, the guide channel is arranged on the main frame body near the top of the upper cover, and the air outlet channel is arranged on the side of the mounting frame near the bottom shell.
[0015] In some embodiments, the main frame includes a protective cover, the guide member is connected to the protective cover, the guide channel is arranged in the protective cover, the air outlet channel has an air outlet, and the air outlet is arranged on the protective cover.
[0016] The utility model provides an atomizing device, an atomizing component is provided with a mist outlet, and the mist outlet is arranged corresponding to the first end of the smoke flow channel. The smoke generated by the atomizing component flows from the mist outlet to the first end of the smoke flow channel, and then flows in the smoke flow channel; the atomizing device is provided with a first airflow driving member to drive the smoke to flow from the second end to the first end, so that the smoke can flow back and forth in the smoke channel, giving it a dynamic beauty, thereby improving the ornamental value of the atomizing device during use. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 A schematic diagram of the structure of an atomization device provided in one embodiment of the utility model;
[0018] Figure 2 for Figure 1 An exploded schematic diagram of the atomization device shown in;
[0019] Figure 3 for Figure 1 A cross-sectional view of the atomizing device shown in;
[0020] Figure 4 for Figure 1 A schematic diagram of the structure of the atomization device without the upper cover and the atomization assembly;
[0021] Figure 5 for Figure 4 A schematic structural diagram of the atomization device from another perspective;
[0022] Figure 6 for Figure 2 Schematic diagram of the assembly of the mounting frame, the first airflow driving member and the second airflow driving member shown in ;
[0023] Figure 7 for Figure 6 Exploded view of the mounting bracket shown in .
[0024] In the figure: 10, atomizing device; 12, shell; 14, atomizing assembly; 16, first air flow driving member; 18, smoke flow channel; 20, mist outlet; 22, first end; 24, second end; 26, air outlet; 28, air inlet; 29, fragrance outlet; 30, second air flow driving member; 32, mist outlet channel; 34, base; 36, upper cover; 38, smoke chamber; 40, mounting chamber; 42, mounting frame; 43, main frame; 44, base; 46, supporting portion; 48, mounting hole; 50, first avoidance port; 52, second avoidance port; 54, third avoidance port; 56, protective cover; 58, air outlet channel; 60, protrusion; 62, guide channel; 64, guide member. DETAILED DESCRIPTION
[0025] The present invention is further described below in conjunction with the accompanying drawings and specific implementation methods. It should be noted that, under the premise of no conflict, the various embodiments or technical features described below can be arbitrarily combined to form a new embodiment.
[0026] It should be noted that all directional indications in the embodiments of the present invention (such as up, down, left, right, front, back, inside, outside, top, bottom...) are only used to explain the relative position relationship between the components under a certain specific posture (as shown in the accompanying drawings). If the specific posture changes, the directional indication will also change accordingly.
[0027] It should also be noted that when an element is referred to as being "fixed on" or "disposed on" another element, the element may be directly on the other element or there may be an intermediate element at the same time. When an element is referred to as being "connected to" another element, it may be directly connected to the other element or there may be an intermediate element at the same time.
[0028] See also Figures 1 to 7An atomizing device 10 provided by an embodiment of the utility model includes a shell 12, an atomizing assembly 14 and a driving assembly. A smoke flow channel 18 is formed inside the shell 12. The atomizing assembly 14 is used to generate smoke and is provided with a mist outlet 20. The mist outlet 20 is connected to the smoke flow channel 18 so that the smoke generated by the atomizing assembly 14 can enter the smoke flow channel 18 through the mist outlet 20. The driving assembly is used to drive the smoke to move back and forth in the smoke flow channel 18. That is, the smoke generated by the atomizing assembly 14 enters the smoke flow channel 18 from the mist outlet 20 and flows to any position. The driving assembly can make the smoke flow along the same path in the smoke flow channel 18 and flow from any position to the mist outlet. The position of the shell 12 corresponding to the smoke flow channel 18 is a transparent area, so that the user can observe the effect of the smoke flowing in the smoke flow channel 18 through the shell 12.
[0029] The atomizing device 10 is generally used in products such as aromatherapy machines and atomizers, and the specific use scenario is not limited. For example, it can be used indoors or in a car. In this embodiment, the atomizing device 10 takes a car aromatherapy machine as an example.
[0030] The specific shape of the atomizer 10 is not limited, such as square, truncated cone, cylindrical, etc. In the present embodiment, the atomizer 10 is cylindrical, forming a cup-shaped aromatherapy device, so that it can be placed in the cup holder of the central armrest of the car to reduce the abruptness of the atomizer 10 in the car, and also prevent the risk of the atomizer 10 moving or tipping over when braking. The aromatherapy shell is at least partially made of transparent material to observe the smoke landscape inside the shell. In the cup-shaped aromatherapy device, the lower half of the shell is made of non-transparent material, and the upper half is made of transparent material. The lower half of the aromatherapy device is placed in the car cup holder, and only the upper half is exposed, so the user can observe the smoke landscape inside the aromatherapy device through the upper transparent material shell.
[0031] The smoke flow channel 18 has a first end 22 and a second end 24 that are relatively arranged. The smoke flow channel 18 is relatively arranged to be the initial end flowing out of the mist outlet 20 and any position after the smoke flows out of the mist outlet 20 and passes through the first end 22, forming two corresponding positions; specifically, for example, the smoke flow channel 18 is arranged on the guide member 64, the first end 22 and the second end 24 of the smoke flow channel 18 are arranged on the guide member 64, and the first end 22 and the second end 24 of the smoke flow channel 18 that are relatively arranged are the first end 22 and the second end 24 that are relatively arranged on the guide member 64. It can be understood that the first end 22 and the second end 24 that are relatively arranged are the head and tail ends of the guide member 64. The mist outlet 20 corresponds to the first end 22, that is, the mist outlet 20 is close to the first end 22 and is connected to the first end 22, and the smoke discharged from the mist outlet 20 moves from the first end 22 toward the second end 24. The driving assembly includes a first airflow driving member 16, and the first airflow driving member 16 is used to drive the smoke to move from the second end 24 toward the first end 22. After the atomizing assembly 14 generates smoke, the smoke enters the first end 22 of the smoke flow channel 18 through the mist outlet 20 and moves toward the second end 24. After the smoke moves to the second end 24, the first airflow driving member 16 drives the smoke to move from the second end 24 toward the first end 22, forming an effect of the smoke flowing back and forth in the smoke flow channel 18, making it have a dynamic aesthetic, thereby improving the ornamental value of the atomizing device 10 during use. In some embodiments, the smoke can flow out of the first end 22 but does not reach the second end 24, and the first airflow driving member 16 is activated to drive the smoke to move in the opposite direction.
[0032] An air outlet channel 58 is provided in the housing 12, and the air outlet channel 58 is connected to the smoke flow channel 18 and the first air flow driving member 16. The air outlet channel 58 is arranged corresponding to the second end 24 of the smoke flow channel 18, that is, the air outlet channel 58 is arranged close to the second end 24 and is connected to the second end 24, and the first air flow driving member 16 is located outside the smoke flow channel 18 and is arranged corresponding to the air outlet channel 58. When the first air flow driving member 16 is working, it can drive the airflow to move, and the airflow moves from the air outlet channel 58 to the second end 24 of the smoke flow channel 18, and moves from the second end 24 toward the first end 22. During the flow process, the airflow will drive the smoke to move together, so that the smoke moves from the second end 24 toward the first end 22. By arranging the first airflow driving member 16 outside the smoke flow channel 18 and arranging the air outlet channel 58 on the housing 12 to communicate with the smoke flow channel 18, the risk of the first airflow driving member 16 contacting with the smoke can be reduced, and the electrical reliability of the first airflow driving member 16 can be ensured.
[0033] The specific type of the first airflow driving member 16 is not limited, as long as it can drive the airflow to move, such as a fan, an air pump, etc. In this embodiment, the first airflow driving member 16 includes a fan located in the housing 12, and the housing 12 is provided with an air inlet 28, and the fan is connected to the air inlet 28 and the air outlet channel 58 respectively. When the fan is working, the outside air enters the housing 12 through the air inlet 28, and then enters the smoke flow channel 18 through the air outlet channel 58.
[0034] The housing 12 is provided with a fragrance diffusion port 29, which is close to the first end 22 of the smoke flow channel 18 and communicates with the first end 22. The first airflow driving member 16 drives the smoke to move from the second end 24 toward the first end 22, and finally is discharged from the fragrance diffusion port 29 to the outside of the atomizing device 10 to purify the air. Specifically, the housing 12 is cylindrical, and the fragrance diffusion port 29 is located at the top of the housing 12.
[0035] It can be understood that after the smoke enters the smoke flow channel 18 from the smoke outlet 20, it moves from the first end 22 toward the second end 24, which can be done under the action of gravity or driven by a driving member.
[0036] In one embodiment, the driving assembly further includes a second airflow driving member 30, and the second airflow driving member 20 is used to drive the smoke to move from the first end 22 toward the second end 24. When the second airflow driving member 30 is in operation, it can drive the airflow to move from the first end 22 toward the second end 24, and the airflow drives the smoke to move together during the flow, so that the smoke flows from the first end 22 to the second end 24.
[0037] A mist outlet channel 32 is provided in the atomizing assembly 14, and the mist outlet channel 32 is connected to the mist outlet 20, and the second airflow driving member 30 is arranged corresponding to the first end 22. It can be understood that the second airflow driving member 30 is in communication with the mist outlet channel 32, and the mist outlet channel 32 is in communication with the mist outlet 20, and since the mist outlet 20 is arranged corresponding to the first end 22, the second airflow driving member 30 is arranged corresponding to the first end 22, and it is understood that the second airflow driving member 30 drives the smoke to flow from the mist channel 32 to the mist outlet 20 and then flows from the first end 22 of the smoke flow channel 18. The smoke generated when the atomizing assembly 14 is working is gathered in the mist outlet channel 32. After the second airflow driving member 30 is started, the airflow is driven to pass through the mist outlet channel 32, and the airflow drives the smoke in the mist outlet channel 32 to move toward the direction of the mist outlet 20, and finally enters the first end 22 of the smoke flow channel 18 through the mist outlet 20.
[0038] The specific type of the second airflow driving member 30 is not limited, as long as it can drive the airflow to move, such as a fan, an air pump, etc. In the present embodiment, the second airflow driving member 30 includes an air pump located in the housing 12, and the air pump is connected to an end of the mist outlet channel 32 away from the mist outlet 20. Since the volume of the mist outlet 20 is relatively small, when the smoke passes through the mist outlet 20, a water film or condenses to form droplets at the mist outlet 20, thereby affecting the flow of the smoke, and the air pump can generate a larger pressure in a smaller volume, so that there is enough thrust to push away the water film or droplets to prevent them from affecting the flow of the smoke, and at the same time, the flow rate of the gas driven by the air pump is relatively slow, so as to control the flow rate of the smoke.
[0039] In one embodiment, the housing 12 includes a base 34 and an upper cover 36 covering the base 34, a smoke chamber 38 is formed in the upper cover 36, a mounting chamber 40 is formed in the base 34, the smoke channel 18 and the atomizer assembly 14 are located in the smoke chamber, the first airflow driving member 16, the second airflow driving member 30 and the atomizer assembly 14 are located in the mounting chamber 40, and the mist outlet 20 is located at one end of the atomizer assembly 14 away from the base 34. The upper cover 36 is made of a transparent material and has a transparent effect, so that the user can observe the effect of smoke flowing inside it through the upper cover 36, and by respectively arranging the smoke channel 18 and the first airflow driving member 16 and the second airflow driving member 30 in different spaces, the influence of smoke on electrical components such as the first airflow driving member 16 and the second airflow driving member 30 can be reduced.
[0040] The base 34 includes a mounting frame 42, and the mounting frame 42 divides the interior of the housing 12 into a smoke chamber 38 and a mounting chamber 40, that is, the smoke chamber 38 and the mounting chamber 40 are respectively located on opposite sides of the mounting frame 42, and the first airflow driving member 16 and the second airflow driving member 30 are installed on the mounting frame 42. By providing the mounting frame 42, the first airflow driving member 16, the second airflow driving member 30 and the atomizing assembly 14 can be installed. Therefore, during the assembly process, the first airflow driving member 16 and the second airflow driving member 30 can be first installed on the mounting frame 42, and then the mounting frame 42 can be fixed on the base 34, and finally the upper cover 36 is covered. The mounting frame is also provided with a mounting hole 48, and the upper cover 36 is provided with a fragrance diffusion port 29 connected to the mounting hole 48; the atomizing assembly 14 is inserted into the mounting frame 42 from the fragrance diffusion port 29 of the upper cover 36, which is simple to operate and convenient to assemble.
[0041] The base 34 also includes a bottom shell connected to the mounting frame 42, and the mounting frame 42 includes a base 44 and a main frame body 43. The base 44 is connected to the bottom shell to form a mounting cavity 40, and the mounting cavity 40 is located below the base 44. The smoke cavity 38 is located above the base 44. The main frame body 43 is convexly arranged on one side of the base 44 and is located in the smoke cavity 38. The atomizer assembly 14 is arranged in the main frame body 43, and the first airflow driving member 16 and the second airflow driving member 30 are arranged on a side of the base 44 away from the main frame body 43. Specifically, the main frame body 43 is cylindrical, and a mounting hole 48 is provided at one end of the main frame body 43 away from the base 44, and the atomizer assembly 14 is detachably arranged in the mounting hole 48.
[0042] It is understandable that the base 44 and the main frame body 43 can be integrally formed or assembled separately. In this embodiment, the base 44 and the main frame body 43 are integrally formed to ensure the overall strength of the mounting frame 42.
[0043] The base 44 is provided with a first avoidance opening 50 and a second avoidance opening 52 spaced apart from each other. The first avoidance opening 50 and the second avoidance opening 52 are both connected to the installation cavity 40. The first avoidance opening 50 is connected to the air outlet channel 58. The second avoidance opening 52 extends into the main frame 43 and is connected to the mist outlet channel 32 of the atomization assembly 14. The first airflow driving member 16 is arranged corresponding to the first avoidance opening 50 so that the airflow generated by the first airflow driving member 16 can enter the smoke flow channel 18 through the first avoidance opening 50 and the air outlet channel 58. The second airflow driving member 30 is arranged corresponding to the second avoidance opening 52 so that the airflow generated by the second airflow driving member 30 can enter the mist outlet channel 32 through the second avoidance opening 52.
[0044] The end of the main frame 43 away from the base 44 is provided with a guide channel 62, which is arranged corresponding to and connected to the mist outlet 20 of the atomizer assembly 14. The guide channel 62 is arranged near the top of the upper cover 36, so that the smoke flows out from the top of the upper cover 36 and flows towards the base 44 under the action of gravity. The air outlet channel 58 is arranged on the side of the mounting frame 42 near the base 44.
[0045] The main frame 43 includes a support portion 46 and a protective cover 56 sleeved outside the support portion 46. The guide channel 62 and the air outlet channel 58 both penetrate the side wall of the mounting frame 42, that is, penetrate the side wall of the protective cover 56 and the side wall of the support portion 46 or the side wall of the base 44. The guide channel 62 and the air outlet channel 58 are connected to the drive assembly and the smoke flow channel 18 respectively. Among them, the air outlet 26 is one port of the air outlet channel 58, and the air outlet 26 is arranged on the protective cover 56. The first avoidance port 50 is another port of the air outlet channel 58, and the air outlet channel 58 connects the first avoidance port 50 and the air outlet 26, and the first avoidance port 50 is connected to the installation cavity 40. The air outlet channel 58 is connected to the second end 24 of the smoke flow channel 18, and the air outlet 26 is arranged close to the second end 24. Therefore, when the first airflow driving member 16 is working, the external airflow enters the installation cavity 40 through the air inlet 28, then enters the air outlet channel 58 through the first avoidance port 50, and finally enters the smoke flow channel 18 from the air outlet 26.
[0046] The support portion 46 is provided with a third avoidance opening 54, which is in communication with the mist outlet 20. A protrusion 60 is provided on the outer side of the protective cover 56, which is located at one end of the protective cover 56 away from the base 44 and is arranged near the top of the upper cover 36. The protrusion 60 is provided with a guide channel 62, and the two ends of the guide channel 62 are respectively in communication with the third avoidance opening 54 and the smoke flow channel 18. After the smoke generated by the atomization assembly 14 is discharged from the mist outlet 20, it flows through the third avoidance opening 54 and the guide channel 62, and finally enters the smoke flow channel 18. Specifically, the protective cover 56 is roughly cylindrical, and the protrusion 60 extends along the radial direction of the protective cover 56.
[0047] Preferably, the opening direction of the end of the guide channel 62 close to the smoke flow channel 18 is consistent with the movement direction of the smoke when it moves from the first end 22 toward the second end 24, and the direction of the air outlet channel 58 is consistent with the direction of the smoke when it moves from the second end 24 toward the first end 22, so that the airflow generated by the first airflow driving member 16 and the second airflow driving member 30 can flow directly along the movement path of the smoke after entering the smoke flow channel 18, without changing the movement direction after entering the smoke flow channel 18, which can make the smoke flow smoother.
[0048] In one embodiment, the smoke flow channel 18 extends in a curved manner in the housing 12 , so that when the smoke flows in the smoke flow channel 18 , a dynamic landscape of curved flow is formed, further enhancing the dynamic beauty and ornamental value of the atomization device 10 .
[0049] The specific shape of the smoke flow channel 18 is not limited, for example, it can be bent to form a spiral shape, a snake shape, Chinese characters, numbers, letters, etc. In this embodiment, the smoke flow channel 18 extends in a spiral shape in the vertical direction, so when the smoke flows back and forth in the smoke flow channel 18, a dynamic effect of spiral rise and spiral descent can be formed, further enhancing the dynamic beauty and ornamental value.
[0050] The specific formation method of the smoke flow channel 18 is not limited. For example, the smoke flow channel 18 can be formed by setting a guide groove on the shell 12 to guide the smoke flow, or by setting a guide member 64 inside the shell 12, setting the smoke flow channel 18 inside or on the surface of the guide member 64, or using a guide element to cooperate with the shell 12 to form the smoke flow channel 18.
[0051] In this embodiment, the atomizing device 10 further includes a guide member 64 located in the smoke chamber 38, the guide member 64 is located between the main frame 43 and the upper cover 36 and is fixed relative to the side wall of the protective cover 56, and the guide member 64 cooperates with the mounting frame 42 and the upper cover 36 to form a smoke flow channel 18. The smoke flow channel 18 is arranged on the guide member 64, the guide member 64 corresponds to the smoke flow channel 18, and the first end 22 and the second end 24 are arranged on the guide member 64; it can be understood that the first end 22 and the second end 24 of the smoke flow channel 18 are both the first end 22 and the second end 24 of the guide member 64. The first end 22 of the guide member 64 is connected to the guide channel 62, and the second end 24 of the guide member 64 is arranged near the air outlet 26. The guide member 64 has a guiding effect, and can guide the smoke to flow on the guide member 64. Specifically, the guide member extends in a spiral shape in the vertical direction.
[0052] In other embodiments, the smoke flow channel 18 may also be directly arranged on the guide member 64. For example, the guide member 64 may be a tubular structure, and its internal space forms the smoke flow channel 18, or the surface of the guide member 64 is concave downward to form a groove, and the groove constitutes the smoke flow channel 18.
[0053] The above-mentioned implementation modes are only preferred implementation modes of the present invention, and cannot be used to limit the protection scope of the present invention. Any non-substantial changes and substitutions made by technicians in this field on the basis of the present invention shall fall within the scope of protection required by the present invention.
Claims
1. An atomizing device, characterized in that: It includes a shell, an atomization component and a first airflow driving component. A smoke flow channel is formed inside the shell. The smoke flow channel has a first end and a second end that are relatively arranged. The atomization component is provided with a mist outlet, and the mist outlet corresponds to the first end. The first airflow driving component is used to drive the smoke to move from the second end toward the first end.
2. The atomizing device according to claim 1, characterized in that: An air outlet channel is provided in the shell, and the air outlet channel is arranged corresponding to the second end of the smoke flow channel. The air outlet channel is connected with the first airflow driving member and the smoke flow channel.
3. The atomizing device according to claim 1, characterized in that: The first airflow driving component includes a fan located in the housing, an air inlet is provided on the housing, and the fan is connected to the air inlet.
4. The atomizing device according to claim 1, characterized in that: It also includes a second airflow driving member, which is arranged corresponding to the first end and is used to drive the smoke to move from the first end toward the second end.
5. The atomizing device according to claim 4, characterized in that: A mist outlet channel is provided in the atomizing assembly, the mist outlet channel is communicated with the mist outlet, and the second airflow driving member is arranged corresponding to the mist outlet channel.
6. The atomizing device according to claim 5, characterized in that: The second airflow driving member comprises an air pump located in the housing, and the air pump is connected to an end of the mist outlet channel away from the mist outlet.
7. The atomizing device according to claim 2, characterized in that: It also includes a guide member, the smoke flow channel is arranged on the guide member, the first end and the second end are respectively arranged on the guide member, the first end is arranged corresponding to the mist outlet, and the second end is arranged corresponding to the air outlet channel.
8. The atomizing device according to claim 7, characterized in that: The shell includes a base and an upper cover arranged on the base, a smoke chamber is formed in the upper cover, an installation chamber is formed in the base, the guide member is arranged in the smoke chamber, and the atomization assembly and the first airflow driving member are arranged in the installation chamber.
9. The atomizing device according to claim 8, characterized in that: The base includes a bottom shell and a mounting frame connected to the bottom shell to form the mounting cavity, the mounting frame includes a base connected to the bottom shell and a main frame protruding from one side of the base, the main frame is arranged in the smoke cavity, and the atomization assembly is arranged in the main frame.
10. The atomizing device according to claim 9, characterized in that: The mounting frame is provided with a guide channel connecting the mist outlet and the smoke flow channel. The guide channel is arranged on the main frame body close to the top of the upper cover, and the air outlet channel is arranged on the side of the mounting frame close to the bottom shell.
11. The atomizing device according to claim 10, characterized in that: The main frame includes a protective cover, the guide member is connected to the protective cover, the guide channel is arranged in the protective cover, the air outlet channel has an air outlet, and the air outlet is arranged on the protective cover.