Mixed hot fog humidifier

By introducing a cooling element into the humidifier to cool the hot mist discharged from the mist guide tube, the problem of easy burns from existing humidifiers is solved, and a safe and reliable humidification effect is achieved.

CN223610278UActive Publication Date: 2025-11-28BEAR ELECTRICAL APPLIANCE CO LTD +1
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202423307559.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-30
Publication Date
2025-11-28
Estimated Expiration
2034-12-30

AI Technical Summary

Technical Problem

Existing humidifiers pose a significant risk of burns from high-temperature steam during use, especially for households with children or the elderly.

Method used

A hybrid hot mist humidifier was designed, including a shell, a water tank, a mist guide tube, and a cooling component. The hot mist discharged from the mist guide tube is cooled by the cooling component in the air duct, and the mist temperature is reduced before being discharged.

Benefits of technology

It effectively avoids burns during use and improves safety.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223610278U_ABST
    Figure CN223610278U_ABST
Patent Text Reader

Abstract

The embodiment of the utility model provides a mixed hot fog humidifier, and relates to the technical field of humidifier structures. The mixed hot fog humidifier comprises a shell, a water tank, a fog guide pipe and a cooling piece, the shell is provided with a fog outlet nozzle, the water tank is installed in the shell, an air duct is arranged between the shell and the water tank and communicated with the fog outlet nozzle, the fog guide pipe is installed in the water tank, an outlet of the fog guide pipe is communicated with the air duct, the fog guide pipe is used for guiding out hot fog, and the cooling piece is communicated with the air duct. And the air duct is used for blowing air towards the air duct so as to cool the hot fog guided out by the fog guide pipe, and the cooled hot fog is discharged through the fog outlet nozzle. The water tank can provide water used for heating and atomizing, the mist guide pipe can guide out high-temperature mist, due to the fact that the temperature of the mist is too high, the mist can pass through the air channel before being exhausted from the mist outlet nozzle, the cooling piece in the air channel can cool the mist, the temperature of the mist is reduced, and the cooled mist is exhausted from the mist outlet nozzle. The scald phenomenon in the use process is avoided, and the use safety is improved.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to humidifier structure technical field, specifically, relate to a mixed hot fog humidifier. BACKGROUND

[0002] In the prior art, the humidifier produces water vapor by heating the water in the atomization cavity to the boiling point, and then blows it out into the air through a fan or similar device, thereby achieving the effect of humidifying the air. This humidifier is favored by many users due to its high humidification capacity and simple operation. However, due to its working principle, the temperature of the blown water vapor is relatively high, and the temperature at the mist outlet is still maintained at a high level. Although this feature can improve the humidification efficiency, it also poses a potential safety hazard. If the user accidentally touches the mist outlet during use, they may be scalded by the high-temperature steam or the surface of the mist outlet, especially for users with children or elderly people in the family, such risk is particularly significant.

[0003] Therefore, the humidifier in the prior art has the technical problem of being easily scalded and causing safety accidents. SUMMARY

[0004] The utility model provides a mixed hot fog humidifier, which can avoid the phenomenon of being scalded during use and provide use safety.

[0005] The embodiments of the utility model can be implemented as follows:

[0006] The embodiments of the utility model provide a mixed hot fog humidifier, which comprises:

[0007] A housing having a mist outlet;

[0008] A water tank installed in the housing, a wind channel between the housing and the water tank, and the wind channel and the mist outlet being in communication;

[0009] A mist guide pipe installed in the water tank, the outlet of the mist guide pipe being in communication with the wind channel, and the mist guide pipe being used for guiding hot mist;

[0010] A cooling member in communication with the wind channel, used for blowing air towards the wind channel to cool the hot mist guided by the mist guide pipe, and the cooled hot mist being discharged through the mist outlet.

[0011] Optionally, the wind channel comprises a mixing chamber and an air chamber in communication, the cooling member is arranged in the air chamber, the mist guide pipe and the mist outlet are both in communication with the mixing chamber, the position of the outlet of the mist guide pipe corresponds to the position of the mist outlet, and the hot mist guided by the mist guide pipe is used for cooling in the mixing chamber.

[0012] Optionally, the air cavity is arranged in a vertical direction, the mixing cavity is arranged in a horizontal direction, the outlet of the mist guide pipe is communicated with the top of the water tank, and the outlet of the mist guide pipe is located in the mixing cavity.

[0013] Optionally, the mixed hot mist humidifier further comprises a base, the base is detachably connected with the bottom of the water tank, the cooling member is arranged in the base, the base has a atomizing cavity, a water inlet of the atomizing cavity is communicated with the water tank, an inlet of the mist guide pipe is communicated with the atomizing cavity, and the mist in the atomizing cavity is guided out through the mist guide pipe.

[0014] Optionally, the mist guide pipe comprises a first pipe section and a second pipe section which are communicated with each other, the first pipe section is communicated with the atomizing cavity, the second pipe section is communicated with the top of the water tank, the pipe diameter of the first pipe section is larger than that of the second pipe section, and the first pipe section and the second pipe section are smoothly connected.

[0015] Optionally, the mixed hot mist humidifier further comprises a guide device, the guide device is arranged at the water inlet of the atomizing cavity, and the guide device is used for communicating or blocking the atomizing cavity and the water tank.

[0016] Optionally, the guide device comprises a valve core and a switching member, the switching member is connected with the valve core, the valve core is arranged at the water inlet of the atomizing cavity, and the switching member is used for driving the valve core to communicate or block the water inlet in the case that the water level in the atomizing cavity changes.

[0017] Optionally, the switching member comprises a lever, a floating ball and an elastic member, the floating ball is connected to one end of the lever, the floating ball is used for floating on the liquid surface, the elastic member is connected with the valve core, the position of the other end of the lever corresponds to the position of the valve core, the lever is used for lifting the valve core in the case that the floating ball follows the liquid level to drop, so as to open the water inlet of the atomizing cavity, and the lever is used for separating from the valve core in the case that the floating ball follows the liquid level to rise, so that the valve core drops under the elastic force of the elastic member, thereby blocking the water inlet of the atomizing cavity.

[0018] Optionally, the mixed hot mist humidifier further comprises a heating body, the heating body is arranged in the base and is used for heating the liquid in the atomizing cavity.

[0019] Optionally, the mixed hot mist humidifier further comprises a filter element, and the filter element is arranged in the water tank.

[0020] The beneficial effects of the mixed hot mist humidifier of the embodiments of the present application include, for example:

[0021] The mixed hot mist humidifier comprises a shell, a water tank, a mist guide pipe and a cooling member, the shell is provided with a mist outlet, the water tank is installed in the shell, an air duct is formed between the shell and the water tank, the air duct is communicated with the mist outlet, the mist guide pipe is installed in the water tank, the outlet of the mist guide pipe is communicated with the air duct, the mist guide pipe is used for guiding hot mist, the cooling member is communicated with the air duct and is used for blowing air to the air duct so as to cool the hot mist guided by the mist guide pipe, and the cooled hot mist is discharged through the mist outlet. BRIEF DESCRIPTION OF DRAWINGS

[0022] In order to more clearly illustrate the technical scheme in the embodiments of the present application, the drawings needed to be used in the embodiments will be briefly introduced as follows. It should be understood that the following drawings only show some embodiments of the present application, and therefore should not be regarded as a limitation to the scope. For those skilled in the art, other related drawings can also be obtained without creative labor on the basis of these drawings.

[0023] Fig. 1 The first perspective structural schematic view of the mixed hot mist humidifier is provided for the embodiment;

[0024] Fig. 2 The second perspective structural schematic view of the mixed hot mist humidifier is provided for the embodiment;

[0025] Fig. 3 The third perspective structural schematic view of the mixed hot mist humidifier is provided for the embodiment.

[0026] Fig. 10 is a water tank; Fig. 20 is a base; Fig. 201 is a misting cavity; Fig. 30 is a mist guide pipe; Fig. 31 is a first pipe section; Fig. 32 is a second pipe section; Fig. 40 is a guide; Fig. 41 is a valve core; Fig. 42 is a switch member; Fig. 421 is a lever; Fig. 422 is a floating ball; Fig. 423 is an elastic member; Fig. 50 is a shell; Fig. 501 is an air duct; Fig. 5011 is a mixing cavity; Fig. 5012 is an air cavity; Fig. 502 is a mist outlet; Fig. 60 is a cooling member; Fig. 70 is a heating body; Fig. 80 is a filter element; and Fig. 100 is a mixed hot mist humidifier. DETAILED DESCRIPTION

[0027] In order to make the purpose, technical scheme and advantages of the embodiments of the present application clearer, the technical scheme of the embodiments of the present application will be described clearly and completely below in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are part of the embodiments of the present application, rather than all the embodiments. The components of the embodiments of the present application described and shown in the drawings herein can be arranged and designed in various different configurations.

[0028] Therefore, the following detailed description of the embodiments of the present application provided in the drawings is not intended to limit the scope of the claimed present application, but only represents selected embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative labor fall within the scope of the present application.

[0029] It should be noted that: similar reference numbers and letters represent similar items in the following drawings, therefore, once an item is defined in one drawing, it does not need to be further defined and explained in subsequent drawings.

[0030] In the description of the present application, it should be noted that if the terms "upper", "lower", "inner", "outer" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, or the orientation or positional relationship when the product of the present application is usually placed, which is only for the convenience of describing the present application and simplifying the description, and therefore cannot be understood as indicating or implying that the indicated device or element must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application.

[0031] In addition, if the terms "first", "second" and the like appear, they are only used for differentiation in description, and cannot be understood as indicating or implying relative importance.

[0032] It should be noted that the features in the embodiments of the present application can be combined with each other without conflict.

[0033] In the prior art, the humidifier generates water vapor by heating the water in the atomization cavity to the boiling point, and then blows it out into the air through a fan or similar device, thereby achieving the effect of humidifying the air. Such a humidifier is favored by many users due to its high humidification capacity and simple operation. However, due to its working principle, the temperature of the blown water vapor is relatively high, and the temperature at the mist outlet is still maintained at a relatively high level. This feature can improve the humidification efficiency, but at the same time it also brings potential safety hazards. If the user accidentally touches the mist outlet during use, he or she may be scalded by the high-temperature steam or the surface of the mist outlet, especially for users with children or the elderly in the family, such risks are particularly significant.

[0034] Therefore, the humidifier in the prior art has the technical problem of being easy to be scalded and thus causing safety accidents.

[0035] Please refer to Figs. 1-3 The present embodiment provides a hybrid hot mist humidifier 100 which can effectively improve the above-mentioned technical problems, avoid the phenomenon of being scalded during use, and provide use safety.

[0036] The hybrid hot mist humidifier 100 comprises a shell 50, a water tank 10, a mist guide pipe 30, a base 20, and a cooling member 60. The shell 50 has a mist outlet nozzle 502. The water tank 10 is installed in the shell 50. The shell 50 and the water tank 10 have an air duct 501 therebetween. The air duct 501 and the mist outlet nozzle 502 are in communication. The mist guide pipe 30 is installed in the water tank 10. The outlet of the mist guide pipe 30 and the air duct 501 are in communication. The mist guide pipe 30 is used for guiding hot mist. The cooling member 60 is in communication with the air duct 501 and is used for blowing air towards the air duct 501, so as to cool the hot mist guided by the mist guide pipe 30. The cooled hot mist is discharged through the mist outlet nozzle 502. The base 20 and the bottom of the water tank 10 are detachably connected. The cooling member 60 is arranged on the base 20. The base 20 has an atomizing cavity 201. The water inlet of the atomizing cavity 201 and the water tank 10 are in communication. The inlet of the mist guide pipe 30 and the atomizing cavity 201 are in communication. The mist in the atomizing cavity 201 is guided out through the mist guide pipe 30.

[0037] In the present embodiment, the air duct 501 comprises a mixing cavity 5011 and an air cavity 5012 in communication. The cooling member 60 is arranged in the air cavity 5012. The mist guide pipe 30 and the mist outlet nozzle 502 are both in communication with the mixing cavity 5011. The position of the outlet of the mist guide pipe 30 corresponds to the position of the mist outlet nozzle 502. The hot mist guided by the mist guide pipe 30 is used for cooling in the mixing cavity 5011.

[0038] Specifically, the air cavity 5012 is arranged along the vertical direction. The mixing cavity 5011 is arranged along the horizontal direction. The outlet of the mist guide pipe 30 is in communication with the top of the water tank 10. The outlet of the mist guide pipe 30 is located in the mixing cavity 5011. The mist outlet nozzle 502 is arranged on the top surface of the shell 50. The inner wall of the top surface of the shell 50 and the outer side of the top wall of the water tank 10 jointly define the mixing cavity 5011. The inner side wall of the shell 50 and the outer side wall of the water tank 10 jointly define the air cavity 5012. The air cavity 5012 and the mixing cavity 5011 are both strip-shaped cavity structures. The fan is arranged at the bottom end of the air cavity 5012. The top ends of the mixing cavity 5011 and the air cavity 5012 are in communication.

[0039] In the embodiment, the diameter of the mist guide pipe 30 gradually decreases from bottom to top. The mist guide pipe 30 is arranged in the vertical direction, the bottom end of the mist guide pipe 30 is the inlet, the top end of the mist guide pipe 30 is the outlet, and the diameter of the mist guide pipe 30 gradually decreases from bottom to top along the mist outlet direction, so that the mist flowing out of the atomizing cavity 201 gradually flows from the area with large diameter to the area with small diameter, thereby increasing the flow rate of the mist, helping the liquid to be better broken into fine mist droplets, thereby improving the atomization effect; and also enabling the mist to flow more smoothly, reducing energy loss and saving energy.

[0040] Specifically, the mist guide pipe 30 includes a first pipe section 31 and a second pipe section 32 in communication with each other, the first pipe section 31 communicates with the atomizing cavity 201, and the second pipe section 32 communicates with the top of the water tank 10. The diameter of the first pipe section 31 is larger than that of the second pipe section 32, and the first pipe section 31 and the second pipe section 32 are smoothly connected.

[0041] In the embodiment, the water tank 10 is a cylindrical hollow structure and can contain water to be atomized. The mist guide pipe 30 is arranged at the midpoint of the water tank 10, and the two ends of the mist guide pipe 30 penetrate through the top and bottom of the water tank 10, respectively. The base 20 is arranged at the bottom of the water tank 10 and detachably connected with the water tank 10. The base 20 is directly clamped with the water tank 10 and is a cylindrical structure. The atomizing cavity 201 communicates with the top of the base 20.

[0042] Specifically, the mist guide pipe 30 directly communicates with the atomizing cavity 201, thereby separating the water tank 10 and the atomizing cavity 201. The water in the water tank 10 can only enter the atomizing cavity 201 through the water inlet. Only the water in the atomizing cavity 201 is heated when the mixed hot mist humidifier 100 is working, avoiding continuous heating of all the water in the water tank 10, so that the water in the water tank 10 remains clean, and the cleanliness of the atomized gas is improved. The valve core 41 and the switch piece 42 are connected, the valve core 41 is arranged at the water inlet of the atomizing cavity 201, and the switch piece 42 is used to drive the valve core 41 to communicate or block the water inlet under the condition that the water level in the atomizing cavity 201 changes. When water needs to be added, the switch piece 42 drives the valve core 41 to move away from the water inlet, thereby communicating the atomizing cavity 201 and the water tank 10. The water in the water tank 10 enters the atomizing cavity 201 through the water inlet, thereby adding water to the atomizing cavity 201. After the water is added, the switch piece 42 drives the valve core 40 to block the water inlet, thereby separating the atomizing cavity 201 and the water tank 10, so that only the water in the atomizing cavity 201 is heated and atomized, and then the mist is guided out through the mist guide pipe 30 to achieve the humidifying effect.

[0043] In the embodiment, the mixed hot-fog humidifier 100 further comprises a filter element 80 arranged in the water tank 10, the filter element 80 is arranged at the water inlet position of the atomization cavity 201, and is used for filtering the water entering the atomization cavity 201 to filter out dust, bacteria or other particulate matters in the water, so that the filtered water enters the atomization cavity 201 for atomization and heating, and the cleanliness of the atomized gas is further ensured.

[0044] Specifically, the mixed hot-fog humidifier 100 further comprises a through device 40 arranged at the water inlet of the atomization cavity 201, and used for connecting or blocking the atomization cavity 201 and the water tank 10. The through device 40 comprises a valve core 41 and a switch element 42, the switch element 42 is connected with the valve core 41, the valve core 41 is arranged at the water inlet of the atomization cavity 201, and the switch element 42 is used for driving the valve core 41 to connect or block the water inlet in the case of water level change in the atomization cavity 201.

[0045] The switch element 42 comprises a lever 421, a floating ball 422 and an elastic element 423, the floating ball 422 is connected to one end of the lever 421, the floating ball 422 is used for floating on the liquid surface, the elastic element 423 is connected with the valve core 41, the position of the other end of the lever 421 corresponds to the position of the valve core 41, and the lever 421 is used for lifting the valve core 41 in the case that the floating ball 422 follows the liquid level to drop, and then the water inlet of the atomization cavity 201 is opened; the lever 421 is used for separating from the valve core 41 in the case that the floating ball 422 follows the liquid level to rise, so that the valve core 41 is lowered under the elastic force of the elastic element 423, thereby blocking the water inlet of the atomization cavity 201.

[0046] Specifically, the end of the lever 421 away from the floating ball 422 is provided with a convex point, the convex point is arranged towards the valve core 41, and the convex point can lift the valve core 41 in the case of moving on the lever 421.

[0047] In the embodiment, the elastic element 423 is a spring, and the spring is sleeved on the valve core 41.

[0048] It can be understood that the mixed hot-fog humidifier 100 further comprises a heating body 70 arranged on the base 20, and used for heating the liquid in the atomization cavity 201. The heating body 70 can heat the liquid in the atomization cavity 201, so that the liquid is atomized to form fine mist droplets, and the heating body 70 can heat the liquid in the atomization cavity 201 to 100℃, so as to achieve the sterilization effect, thereby further improving the cleanliness of the atomized gas.

[0049] In the embodiment, the cooling element 60 is a fan.

[0050] The mixed hot-fog humidifier 100 provided in the embodiment has at least the following advantages:

[0051] The mixed hot fog humidifier 100 provided by the embodiment is provided with the guide fog pipe 30 arranged along the vertical direction, the bottom end of the guide fog pipe 30 is the inlet, the top end of the guide fog pipe 30 is the outlet, the pipe diameter of the guide fog pipe 30 gradually decreases from bottom to top along the fog outlet direction, so that the fog flowing out of the atomization cavity 201 gradually flows from the area with large pipe diameter to the area with small pipe diameter, thereby increasing the flow rate of the fog, which helps the liquid to be better broken into fine fog droplets, thereby improving the atomization effect; and the guide fog pipe 30 can also make the fog flow more smoothly, thereby reducing the energy loss and saving energy.

[0052] In the prior art, when the mixed hot fog humidifier is used, dust, bacteria and other particulate matters in the air are often mixed in the atomized gas, these impurities not only reduce the purity of the atomized gas, but also may have adverse effects on human health, especially for people sensitive to the respiratory system. In order to solve this technical problem, the mixed hot fog humidifier 100 provided by the embodiment comprises the guide fog pipe 30 and the guide-through device 40, the guide fog pipe 30 is directly communicated with the atomization cavity 201, thereby separating the water tank 10 and the atomization cavity 201, the water in the water tank 10 can only enter the atomization cavity 201 through the water inlet, only the water in the atomization cavity 201 is heated when the mixed hot fog humidifier 100 works, thereby avoiding continuous heating of all the water in the water tank 10, so that the water in the water tank 10 remains clean, and the cleanliness of the atomized gas is improved; and the guide-through device 40 comprises the valve core 41 and the switch piece 42, the switch piece 42 is connected with the valve core 41, the valve core 41 is arranged at the water inlet of the atomization cavity 201, the switch piece 42 is used to drive the valve core 41 to communicate or block the water inlet in the case of water level change in the atomization cavity 201, the switch piece 42 drives the valve core 41 to move away from the water inlet in the case of water addition, thereby communicating the atomization cavity 201 and the water tank 10, the water in the water tank 10 enters the atomization cavity 201 through the water inlet, thereby adding water to the atomization cavity 201; after the water addition is completed, the switch piece 42 drives the guide-through device 40 to block the water inlet, thereby separating the atomization cavity 201 and the water tank 10, so that only the water in the atomization cavity 201 is heated and atomized, and then the fog is guided out through the guide fog pipe 30 to realize the humidification effect.

[0053] In summary, the utility model discloses an embodiment provides a kind of mixed hot fog humidifier 100, the mixed hot fog humidifier 100 includes shell 50, water tank 10, guide fog pipe 30 and cooling piece 60, shell 50 has mist outlet 502, water tank 10 is installed in shell 50, shell 50 and water tank 10 between air duct 501, air duct 501 and mist outlet 502 are communicated, guide fog pipe 30 is installed in water tank 10, the outlet of guide fog pipe 30 and air duct 501 are communicated, guide fog pipe 30 is used to guide hot fog, cooling piece 60 and air duct 501 are communicated, for air blowing towards air duct 501, to cool the hot fog that guide fog pipe 30 guides, the hot fog after cooling is discharged via mist outlet 502.When using, water tank 10 can provide for heating atomized water, guide fog pipe 30 can guide high temperature fog, because the temperature of fog is too high, fog is passed through air duct 501 before fog is discharged from mist outlet 502, cooling piece 60 in air duct 501 can cool fog, reduce the temperature of fog, fog after temperature reduction is discharged via mist outlet 502, avoid the phenomenon that being scalded during use, provide use safety.

[0054] The above is only the specific implementation manner of the utility model, but the protection scope of the utility model is not limited to this, any skilled person in the art can easily think of the change or replacement within the technical range disclosed by the utility model, which should be covered in the protection scope of the utility model. Therefore, the protection scope of the utility model should be subject to the protection scope of claims.

Claims

1. A hybrid hot-fog humidifier, characterized in that, The application relates to a mixed hot mist humidifier (100), which comprises the following parts: an outer shell (50) with a mist outlet (502); a water tank (10) installed in the outer shell (50), wherein the outer shell (50) and the water tank (10) are connected through an air duct (501), and the air duct (501) and the mist outlet (502) are communicated; a mist guide pipe (30) installed in the water tank (10), wherein the outlet of the mist guide pipe (30) is communicated with the air duct (501), and the mist guide pipe (30) is used for guiding hot mist; a cooling part (60) communicated with the air duct (501) and used for blowing air towards the air duct (501) so as to cool the hot mist guided by the mist guide pipe (30), and the cooled hot mist is discharged through the mist outlet (502).

2. The hybrid thermal fog humidifier of claim 1, wherein, The air duct (501) comprises a mixing cavity (5011) and an air cavity (5012) communicated with each other, the cooling part (60) is arranged in the air cavity (5012), the mist guide pipe (30) and the mist outlet (502) are communicated with the mixing cavity (5011), the position of the outlet of the mist guide pipe (30) corresponds to the position of the mist outlet (502), and the hot mist guided by the mist guide pipe (30) is used for being cooled in the mixing cavity (5011).

3. The hybrid thermal fog humidifier of claim 2, wherein, The air cavity (5012) is arranged in a vertical direction, the mixing cavity (5011) is arranged in a horizontal direction, the outlet of the mist guide pipe (30) is communicated with the top of the water tank (10), and the outlet of the mist guide pipe (30) is located in the mixing cavity (5011).

4. The hybrid thermal fog humidifier of claim 1, wherein, The mixed hot mist humidifier (100) further comprises a base (20) which is detachably connected with the bottom of the water tank (10), the cooling part (60) is arranged in the base (20), the base (20) is provided with an atomizing cavity (201), the water inlet of the atomizing cavity (201) is communicated with the water tank (10), the inlet of the mist guide pipe (30) is communicated with the atomizing cavity (201), and the mist in the atomizing cavity (201) is guided out through the mist guide pipe (30).

5. The hybrid thermal fog humidifier of claim 4, wherein, The mist guide pipe (30) comprises a first pipe section (31) and a second pipe section (32) communicated with each other, the first pipe section (31) is communicated with the atomizing cavity (201), the second pipe section (32) is communicated with the top of the water tank (10), the pipe diameter of the first pipe section (31) is larger than that of the second pipe section (32), and the first pipe section (31) and the second pipe section (32) are smoothly connected.

6. The hybrid thermal fog humidifier of claim 4, wherein, The mixed hot mist humidifier (100) further comprises a guide device (40) arranged at the water inlet of the atomizing cavity (201) and used for connecting or blocking the atomizing cavity (201) and the water tank (10).

7. The hybrid thermal fog humidifier of claim 6, wherein, The on-off device (40) comprises a valve core (41) and a switching piece (42), the switching piece (42) is connected with the valve core (41), the valve core (41) is arranged at a water inlet of the atomizing cavity (201), and the switching piece (42) is used for driving the valve core (41) to communicate or block the water inlet when the water level in the atomizing cavity (201) changes.

8. The hybrid thermal fog humidifier of claim 7, wherein, The switching piece (42) comprises a lever (421), a floating ball (422) and an elastic piece (423), the floating ball (422) is connected to one end of the lever (421), the floating ball (422) is used for floating on the liquid surface, the elastic piece (423) is connected with the valve core (41), the position of the other end of the lever (421) corresponds to the position of the valve core (41), the lever (421) is used for lifting the valve core (41) when the floating ball (422) follows the liquid level to drop, thereby opening the water inlet of the atomizing cavity (201); the lever (421) is used for separating from the valve core (41) when the floating ball (422) follows the liquid level to rise, so that the valve core (41) is lowered under the elastic force of the elastic piece (423), thereby blocking the water inlet of the atomizing cavity (201).

9. The hybrid thermal fog humidifier of claim 4, wherein, The mixed hot-fog humidifier (100) further comprises a heating body (70), the heating body (70) is arranged in the base (20) and is used for heating the liquid in the atomizing cavity (201).

10. The hybrid thermal mist humidifier of any one of claims 1-9, wherein, The mixed hot-fog humidifier (100) further comprises a filter element (80), the filter element (80) is arranged in the water tank (10).