Humidifying tower fan

By independently setting up an atomizing module and a mist outlet pipe in the humidifying tower fan, the problem of reduced wind speed and air volume caused by the humidifying filter at the air inlet is solved, thereby improving wind speed and air volume and making the atomizing module easy to clean.

CN223580096UActive Publication Date: 2025-11-21AIRMATE ELECTRICAL (SHEN ZHEN) CO LTD
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Patent Information

Application Number
CN202422173198.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-04
Publication Date
2025-11-21
Estimated Expiration
2034-09-04

AI Technical Summary

Technical Problem

Existing humidification tower fans suffer from reduced airflow and speed due to the addition of humidification filters at the air inlet.

Method used

Design a humidifying tower fan that uses an atomizing module and a mist outlet pipe. The mist outlet and the air outlet are set independently. The water mist generated by the atomizing module is transported to the same side of the air outlet through the mist outlet pipe. The atomizing module can be detachably connected to the main body.

Benefits of technology

The humidifier tower fan has increased wind speed and air volume, and the atomizing module is detachable for easy cleaning, preventing bacterial growth and improving ease of use and flexibility.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223580096U_ABST
Patent Text Reader

Abstract

The utility model provides a humidifying tower fan which comprises a main body, an air inlet and an air outlet, the main body is provided with an air cavity, and the air inlet and the air outlet both communicate with the air cavity; the wind wheel is arranged in the wind cavity and is used for driving air to flow from the air inlet to the air outlet; the mist outlet pipeline is arranged on the main body, the mist outlet pipeline is provided with a mist outlet, the mist outlet and the air outlet are located on the same side of the main body, the mist spraying direction of the mist outlet is parallel to the air outlet direction, and the mist outlet and the air outlet are independently arranged; and the atomization module is detachably connected to the main body, and when the atomization module is installed on the main body, the atomization module can convey water mist to the mist outlet pipeline. The mist outlet does not affect the air outlet effect of the air outlet, and the air speed and the air volume of the humidifying tower fan can be increased.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of household appliances, in particular to a humidifying tower fan. BACKGROUND

[0002] The main function of the traditional humidifying tower fan is to generate airflow through the rotation of the internal fan wheel to achieve air circulation and achieve the purpose of cooling. However, in the hot summer, the natural wind generated by the fan alone may not meet the demand for comfort. Therefore, some fan products with humidifying function, namely cold mist humidifying tower fan, appear on the market. The cold mist humidifying tower fan on the market mainly increases a humidifying filter screen at the air inlet, and a water pump is used to pump up water to wet the filter screen. When the fan is turned on, the water vapor on the filter screen is taken away, thereby achieving the effect of blowing cool air.

[0003] However, the presence of the filter screen blocks the air inlet of the fan, thereby affecting the wind speed and volume of the cold mist humidifying tower fan. CONTENT OF THE UTILITY MODEL

[0004] The present application provides a humidifying tower fan to solve the technical problem that the existing fan products increase a humidifying filter screen at the air inlet, thereby blocking the air inlet of the fan and affecting the wind speed and volume of the cold mist humidifying tower fan.

[0005] In a first aspect, the present application provides a humidifying tower fan, comprising:

[0006] a main body, the main body being provided with an air cavity, an air inlet and an air outlet, the air inlet and the air outlet both being communicated with the air cavity;

[0007] a fan wheel, the fan wheel being arranged in the air cavity and being used to drive air to flow from the air inlet to the air outlet;

[0008] an air outlet pipeline, the air outlet pipeline being arranged on the main body, the air outlet pipeline being provided with an air outlet, the air outlet and the air outlet being located on the same side of the main body, the spraying direction of the air outlet being parallel to the air outlet direction, and the air outlet and the air outlet being independently arranged;

[0009] and an atomization module, the atomization module being detachably connected to the main body, when the atomization module is installed on the main body, the atomization module can deliver water mist to the air outlet pipeline.

[0010] Further, the air outlet pipeline comprises a first air outlet sub-pipeline and a second air outlet sub-pipeline arranged at intervals, the first air outlet sub-pipeline and the second air outlet sub-pipeline are arranged on both sides of the air outlet respectively, the first air outlet sub-pipeline, the second air outlet sub-pipeline and the air outlet all extend along the height direction of the main body, the first air outlet sub-pipeline and the second air outlet sub-pipeline are both provided with a plurality of air outlets, the plurality of air outlets of the first air outlet sub-pipeline and the plurality of air outlets of the second air outlet sub-pipeline are arranged in sequence and at intervals along the height direction of the main body.

[0011] A further technical solution is that the mist outlet pipe also includes a mist distribution component, which includes a cavity, a first through hole, a second through hole, and a third through hole. The first through hole connects the cavity and the atomization chamber of the atomization module, the second through hole connects the cavity and the first mist outlet branch pipe, and the third through hole connects the cavity and the second mist outlet branch pipe. The first through hole is located on the side of the mist distribution component facing the atomization module, and the second and third through holes are both located on the side of the mist distribution component away from the atomization module.

[0012] A further technical solution is that the atomizing module includes an atomizing shell and a suspended atomizing element. The atomizing shell is detachably connected to the main body. The atomizing shell is provided with an atomizing chamber that communicates with the mist outlet pipe. The suspended atomizing element is located inside the atomizing chamber and can move with the water level of the atomizing chamber.

[0013] A further technical solution is that the humidification tower fan also includes a fan, which is installed on the main body. The fan is used to drive the airflow to the atomization chamber and then through the second and third through holes to the first and second mist outlet pipes.

[0014] A further technical solution is that the main body is provided with a receiving cavity, and the atomizing module is detachably installed in the receiving cavity;

[0015] The humidifying tower fan also includes a fan bracket and a sealing ring. The fan bracket is installed above the receiving cavity, and the atomizing shell is also provided with an opening communicating with the atomizing cavity. The sealing ring is located on the side of the atomizing shell facing the fan bracket and is arranged around the opening.

[0016] The humidifying tower fan also includes a pressing component, which is movably connected to the fan bracket. When the atomizing module is in the receiving cavity, the pressing component elastically presses against the sealing ring. When the atomizing module is outside the receiving cavity, the pressing component separates from the sealing ring.

[0017] A further technical solution is that the pressing assembly includes a pressing element and an elastic element, the pressing element is movably connected to the fan bracket, and the elastic element abuts between the pressing element and the fan bracket.

[0018] A further technical solution is that the receiving cavity has an insertion port for the atomizing module to be inserted into the receiving cavity; the pressing component has an inclined surface facing the insertion port.

[0019] A further technical solution is that the atomizing shell is also provided with a water cavity and a first water inlet, the fan bracket is provided with a second water inlet, and the side of the main body is provided with a third water inlet. The first water inlet is connected to the water cavity and the second water inlet, and the second water inlet is connected to the first water inlet and the third water inlet. The side of the main body is also provided with a flip cover located at the third water inlet. The flip cover is movably connected to the main body to open or close the third water inlet.

[0020] Further, the fan support is provided with a water guide rib towards the atomization module, the water guide rib is arranged around the edge of the second water inlet hole, the second water inlet hole is arranged opposite to the first water inlet hole, and the aperture of the second water inlet hole is smaller than the aperture of the first water inlet hole.

[0021] The application has the following advantages: different from the prior art, the application sets the atomization module and the mist outlet pipeline on the humidification tower fan, i.e. uses the atomization principle of the atomization module, transports the water mist generated by the atomization module to the mist outlet pipeline, and sets the mist outlet and the air outlet on the same side of the main body, and the mist outlet and the air outlet are arranged independently, so that the mist outlet does not affect the air outlet effect, and the wind speed and the air volume of the humidification tower fan can be improved, thereby helping to solve the problem that the filter screen blocks the fan air inlet and affects the wind speed and the air volume of the humidification tower fan due to the increase of the humidification filter screen at the air inlet in the prior art.

[0022] In addition, the atomization module of the application is detachably connected to the main body, so that the user can easily clean the atomization module without professional tools to avoid bacterial growth, and the convenience and flexibility of the atomization module are improved. BRIEF DESCRIPTION OF DRAWINGS

[0023] In order to more clearly illustrate the technical solutions in the embodiments of the application, the following will briefly introduce the drawings needed in the embodiment description. Obviously, the drawings in the following description are only some embodiments of the application, and other drawings can be obtained by those skilled in the art without creative labor. Among them:

[0024] Figure 1 The assembly schematic view of an embodiment of the humidification tower fan provided by the application is shown in the figure;

[0025] Figure 2 The exploded schematic view of the main body and the atomization module provided by the application is shown in the figure;

[0026] Figure 3 The exploded schematic view of the main body and the flip cover provided by the application is shown in the figure;

[0027] Figure 4 The exploded schematic view of an embodiment of the humidification tower fan provided by the application is shown in the figure;

[0028] Figure 5 The exploded schematic view of another embodiment of the humidification tower fan provided by the application is shown in the figure;

[0029] Figure 6 The partially exploded schematic view of an embodiment of the humidification tower fan provided by the application is shown in the figure;

[0030] Figure 7 The structure schematic view of the mist separating piece provided by the application is shown in the figure;

[0031] Figure 8 A structure diagram of a first mist outlet sub-pipe provided for the present application;

[0032] Figure 9 A partial cross-sectional view of an embodiment of the humidifying tower fan provided for the present application;

[0033] Figure 10 An exploded view of an embodiment of the pressing assembly provided for the present application;

[0034] Figure 11 An exploded view of an embodiment of the atomization module provided for the present application;

[0035] Figure 12 A first state diagram of the main body and the atomization module provided for the present application when assembled;

[0036] Figure 13 A second state diagram of the main body and the atomization module provided for the present application when assembled;

[0037] Figure 14 A third state diagram of the main body and the atomization module provided for the present application when assembled;

[0038] Figure 15 A fourth state diagram of the main body and the atomization module provided for the present application when assembled.

[0039] BRIEF DESCRIPTION OF THE DRAWINGS

[0040] Humidifying tower fan 10, main body 100, air cavity 110, air inlet 120, air outlet 130, containing cavity 140, socket 141, third water inlet hole 150, flip cover 160, air wheel 200, mist outlet pipeline 300, mist outlet 310, first mist outlet sub-pipe 320, second mist outlet sub-pipe 330, mist distribution member 340, cavity 341, first through hole 342, second through hole 343, third through hole 344, atomization module 400, atomization shell 410, water tank cover 401, water tank 402, opening 411, water cavity 412, first water inlet hole 413, suspended atomization member 420, fan 500, fan bracket 510, second water inlet hole 511, water guide rib 512, sealing ring 520, pressing assembly 600, pressing member 610, inclined surface 611, elastic member 620. DETAILED DESCRIPTION

[0041] In order to make the purposes, technical solutions, and advantages of the embodiments of the present application clearer, the technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by a person of ordinary skill in the art without creative effort belong to the scope of protection of the present application.

[0042] The following disclosure provides many different embodiments, or examples, for implementing different structures of the present application. For the purpose of simplifying the present application, the components and settings of specific examples are described below. Of course, they are only examples, and the purpose is not to limit the present application. In addition, the present application can refer to the same reference numerals and / or letters in different examples. Such repetition is for the purpose of simplification and clarity, and does not indicate the relationship between the various embodiments and / or settings discussed.

[0043] The main function of the traditional humidifying tower fan is to generate airflow by rotating the internal fan wheel to achieve air circulation and achieve the purpose of cooling. However, in hot summer, natural wind generated by the fan alone may not meet the demand for comfort. Therefore, some fan products with humidifying function, namely cold mist humidifying tower fan, appear in the market. The cold mist humidifying tower fan on the market mainly increases a humidifying filter screen at the air inlet, and a water pump is used to pump water to wet the filter screen. When the fan is turned on, the water vapor on the filter screen is taken away, thereby achieving the effect of blowing cool air.

[0044] However, the presence of the filter screen blocks the air inlet of the fan, thereby affecting the wind speed and volume of the cold mist humidifying tower fan.

[0045] Therefore, in order to solve the technical problem that the existing fan product increases a humidifying filter screen at the air inlet, thereby blocking the air inlet of the fan and affecting the wind speed and volume of the cold mist humidifying tower fan, the present application provides a humidifying tower fan which can not affect the air outlet effect of the air outlet, thereby improving the wind speed and volume of the humidifying tower fan. For details, please refer to the following embodiments.

[0046] As shown in Figures 1-11 The humidifying tower fan 10 provided by the present application includes a main body 100, a fan wheel 200, an air outlet pipe 300, and an atomization module 400.

[0047] The main body 100 is provided with an air cavity 110, an air inlet 120, and an air outlet 130. The air inlet 120 and the air outlet 130 are both communicated with the air cavity 110.

[0048] The fan wheel 200 is arranged in the air cavity 110 and is used to drive air to flow from the air inlet 120 to the air outlet 130.

[0049] The mist outlet pipe 300 is arranged on the main body 100, and the mist outlet pipe 300 is provided with a mist outlet 310. The mist outlet 310 and the air outlet 130 are located on the same side of the main body 100. The spraying direction of the mist outlet 310 is parallel to the air outlet direction. The mist outlet 310 and the air outlet 130 are independently arranged.

[0050] The atomization module 400 is detachably connected to the main body 100. When the atomization module 400 is installed on the main body 100, the atomization module 400 can supply water mist to the mist outlet pipe 300.

[0051] Therefore, in this embodiment, the mist outlet pipe 300 and the atomization module 400 are arranged on the humidifying tower fan 10. The water mist generated by the atomization module 400 is supplied to the mist outlet pipe 300 by using the atomization principle of the atomization module 400. The mist outlet 310 and the air outlet 130 of the mist outlet pipe 300 are arranged on the same side of the main body 100. The mist outlet 310 and the air outlet 130 are independently arranged. In this way, the mist outlet 310 does not affect the air outlet effect of the air outlet 130. Therefore, the air speed and the air volume of the humidifying tower fan 10 can be improved, thereby solving the problem that the filter screen blocks the air inlet 120 of the fan and affects the air speed and the air volume of the humidifying tower fan 10 due to the increase of the humidifying filter screen at the air inlet 120 in the prior art.

[0052] In addition, the atomization module 400 of the present application is detachably connected to the main body 100. Therefore, the user can easily clean the atomization module 400 without professional tools to avoid bacterial growth in the atomization module 400, thereby improving the convenience and flexibility of using the atomization module 400.

[0053] In some embodiments, the mist outlet pipe 300 includes a first mist outlet sub-pipe 320 and a second mist outlet sub-pipe 330 arranged at intervals. The first mist outlet sub-pipe 320 and the second mist outlet sub-pipe 330 are arranged on both sides of the air outlet 130, respectively. The first mist outlet sub-pipe 320, the second mist outlet sub-pipe 330, and the air outlet 130 all extend along the height direction of the main body 100. The first mist outlet sub-pipe 320 and the second mist outlet sub-pipe 330 are each provided with a plurality of mist outlets 310. The plurality of mist outlets 310 of the first mist outlet sub-pipe 320 and the plurality of mist outlets 310 of the second mist outlet sub-pipe 330 are arranged in sequence and at intervals along the height direction of the main body 100.

[0054] Therefore, since the first mist outlet sub-pipe 320 and the second mist outlet sub-pipe 330 are arranged on both sides of the air outlet 130, i.e., the air outlet 130 is located in the middle, the first mist outlet sub-pipe 320 and the second mist outlet sub-pipe 330 do not block the air outlet effect of the air outlet 130 of the humidifying tower fan 10.

[0055] In addition, the plurality of mist outlets 310 of the first mist outlet sub-pipe 320 can be elongated small holes, and are arranged in sequence and at intervals along the height direction of the first mist outlet sub-pipe 320, which can make the misting uniform on the one hand, and the first mist outlet sub-pipe 320 and the second mist outlet sub-pipe 330 are arranged in a long strip shape, which can break the surface tension of water droplets, so that the water droplets condensed in the mist outlets 310 are not easy to block the mist outlets 310.

[0056] In some embodiments, the mist outlet pipeline 300 further comprises a mist dividing piece 340, the mist dividing piece 340 comprises a cavity 341, a first through hole 342, a second through hole 343 and a third through hole 344, the first through hole 342 is communicated with the atomizing cavity of the atomizing module 400 and the cavity 341, the second through hole 343 is communicated with the first mist outlet sub-pipe 320 and the cavity 341, and the third through hole 344 is communicated with the second mist outlet sub-pipe 330 and the cavity 341, the first through hole 342 is located on the side of the mist dividing piece 340 facing the atomizing module 400, and the second through hole 343 and the third through hole 344 are both located on the side of the mist dividing piece 340 away from the atomizing module 400.

[0057] In some embodiments, the atomizing module 400 comprises an atomizing shell 410 and a suspended atomizing piece 420, the atomizing shell 410 is detachably connected to the main body 100, the atomizing shell 410 is provided with an atomizing cavity communicated with the mist outlet pipeline, and the suspended atomizing piece 420 is located in the atomizing cavity and can move along with the water level of the atomizing cavity.

[0058] In this way, since the suspended atomizing piece 420 is located in the atomizing cavity and can move along with the water level of the atomizing cavity, the optimal misting effect can be maintained.

[0059] In some embodiments, the humidifying tower fan 10 further comprises a fan 500, the fan 500 is installed on the main body 100, and the fan 500 is used to drive air flow to the atomizing cavity and then to the first mist outlet sub-pipe 320 and the second mist outlet sub-pipe 330 through the second through hole 343 and the third through hole 344.

[0060] In this way, the fan 500 is independently installed, air flow is driven to the atomizing cavity, and the mist is uniformly distributed to the first mist outlet sub-pipe 320 and the second mist outlet sub-pipe 330 through the second through hole 343 and the third through hole 344, which improves the misting effect. The air outlet 130 of the fan 500 faces the atomizing cavity, which can ensure sufficient air flow driving, so that the water mist in the atomizing cavity can be effectively blown out, and the humidifying effect is enhanced.

[0061] In this way, the fan 500 is independently installed, air flow is driven to the atomizing cavity, and the mist is uniformly distributed to the first mist outlet sub-pipe 320 and the second mist outlet sub-pipe 330 through the second through hole 343 and the third through hole 344, which improves the misting effect. The air outlet 130 of the fan 500 faces the atomizing cavity, which can ensure sufficient air flow driving, so that the water mist in the atomizing cavity can be effectively blown out, and the humidifying effect is enhanced.

[0062] In some embodiments, the main body 100 is provided with a containing cavity 140, and the atomizing module 400 is detachably installed in the containing cavity 140.

[0063] In this way, by designing the atomization module 400 to be detachably installed in the accommodating cavity 140 of the main body 100, the user can easily manually detach the atomization module 400 as a whole for cleaning. This helps to improve the problem that the conventional fixed structure is difficult to clean.

[0064] In addition, since the user can autonomously detach the atomization module 400 for cleaning or replacement without the help of professional tools or service personnel, the convenience of using the humidifying tower fan 10 and the user's experience are improved.

[0065] The humidifying tower fan 10 further comprises a fan bracket 510 installed above the accommodating cavity 140, and a sealing ring 520 located on the side of the atomization shell 410 facing the fan bracket 510, the sealing ring 520 being arranged around the opening 411.

[0066] The humidifying tower fan 10 further comprises a pressing assembly 600 movably connected to the fan bracket 510, the pressing assembly 600 being elastically pressed against the sealing ring 520 when the atomization module 400 is located in the accommodating cavity 140, and the pressing assembly 600 being separated from the sealing ring 520 when the atomization module 400 is located outside the accommodating cavity 140.

[0067] In this way, by arranging the sealing ring 520 around the opening 411 of the atomization shell 410 and placing it on the side facing the fan bracket 510, the atomization cavity is effectively isolated from the outside. When the atomization module 400 is installed in the accommodating cavity 140, the pressing assembly 600 is elastically pressed against the sealing ring 520, which can form a good sealing effect and prevent water vapor leakage, thereby improving the humidification efficiency.

[0068] In addition, the design of the pressing assembly 600 makes it easy for the user to install or detach the atomization module 400. When it needs to be detached, the pressing assembly 600 is separated from the sealing ring 520, and the user can easily remove the atomization module 400 for cleaning or maintenance; when it needs to be installed, the pressing assembly 600 tightly presses the sealing ring 520 against the edge of the opening 411 through the action force of the elastic member 620, thereby improving the stability and sealing performance of the atomization module installation.

[0069] In some embodiments, the pressing assembly 600 comprises a pressing member 610 movably connected to the fan bracket 510 and an elastic member 620 abutting between the pressing member 610 and the fan bracket 510.

[0070] Therefore, since the pressing assembly 600 comprises the pressing piece 610 and the elastic piece 620, the combined design of the two makes the operation simpler. The user only needs to press the pressing piece 610 to realize the installation or dismounting of the atomization module 400, without the need of additional tools, which reduces the operation difficulty and improves the user experience.

[0071] In some embodiments, the pressing piece 610 can be a pressing block, and the elastic piece 620 can be a spring or other elastic structure.

[0072] In some embodiments, in order to further improve the sealing effect of the humidifying tower fan 10, a flexible sealing ring can also be arranged between the fan bracket 510 and the pressing piece 610, so that the pressing piece 610 and the fan bracket 510 are radially sealed.

[0073] In addition, a flexible sealing ring can also be arranged between the atomization piece 340 and the fan bracket 510, so that the atomization piece 340 and the fan bracket 510 are also sealed.

[0074] In some embodiments, the accommodating cavity 140 has a socket 141 for placing the atomization module 400 into the accommodating cavity 140; the pressing piece 610 is provided with an inclined surface 611 facing the socket.

[0075] Therefore, when the atomization module 400 is in contact with the inclined surface 611, the atomization module 400 provides an upward component force to the pressing piece 610 under the action of an external force, facilitating the pushing of the pressing piece 610.

[0076] In some embodiments, the atomization shell 410 is further provided with a water cavity 412 and a first water inlet hole 413, the fan bracket 510 is provided with a second water inlet hole 511, the side surface of the main body 100 is provided with a third water inlet hole 150, the first water inlet hole 413 is communicated with the water cavity 412 and the second water inlet hole 511, the second water inlet hole 511 is communicated with the first water inlet hole 413 and the third water inlet hole 150, and the side surface of the main body 100 is further provided with a flip cover 160 located at the third water inlet hole 150, which is movably connected to the main body 100 to open or close the third water inlet hole 150.

[0077] In some embodiments, the main body 100 can comprise a front shell and a rear shell connected to each other. The side surface of the main body 100 is further provided with the flip cover 160 located at the third water inlet hole 150, which can be a flip cover 160 arranged on the rear shell above the water tank 402.

[0078] Therefore, by arranging the flip cover 160 on the side surface of the main body 100, the user can conveniently open the flip cover 160 for water adding operation. When adding water, the water flows into the water adding groove on the fan bracket 510 from the flip cover 160, and then flows to the water cavity 412 through the second water inlet hole 511, which simplifies the water adding process and improves the user experience.

[0079] When water is not needed to be added, the flip cover 160 can close the third water inlet hole 150, effectively preventing dust and other impurities from entering the water cavity 412, thereby keeping the water in the water tank 402 clean, and improving the humidification effect and the hygiene level of the equipment.

[0080] In some embodiments, the fan bracket 510 protrudes towards the atomization module 400 with a water guide rib 512, which is arranged around the edge of the second water inlet hole 511, and the second water inlet hole 511 is arranged opposite to the first water inlet hole 413, and the aperture of the second water inlet hole 511 is smaller than that of the first water inlet hole 413.

[0081] In this way, the fan bracket 510 protrudes towards the atomization module 400 with a water guide rib 512, that is, the water guide rib 512 protrudes downward, when the user guides water into the second water inlet hole 511 through the third water inlet hole 150 of the rear shell, the water guide rib 512 of the second water inlet hole 511 can prevent water from flowing to other places along the lower surface of the fan bracket 510, and since the aperture of the second water inlet hole 511 is smaller than that of the first water inlet hole 413, it can be ensured that the water of the second water inlet hole 511 only flows to the first water inlet hole 413, the water inlet of the cover 401 of the water tank 402, and then flows into the water tank 402 from the first water inlet hole 413.

[0082] Based on the above embodiments, in combination Figures 12-15 , the present application can include the following processes when installing the atomization module 400.

[0083] 1) As shown in Figure 12 , the atomization module 400 is located outside the main body 100, at this time the pressing piece 610 protrudes downward under the action of the spring.

[0084] 2) As shown in Figure 13 , the atomization module 400 starts to be installed into the main body 100, and the pressing piece 610 starts to contact the atomization module 400. The position where the pressing piece 610 contacts the atomization module 400 is the inclined surface 611, so as to improve the smoothness of the atomization module 400 being pushed in.

[0085] 3) As shown in Figure 14 , the atomization module 400 is pushed into the main body 100, at this time the pressing piece 610 is lifted by the atomization module 400.

[0086] 4) As shown in Figure 15 , the atomization module 400 is assembled in place, and the atomization cavity is aligned with the mist outlet channel, the fan 500 air outlet 130, etc. Under the action of the spring force, the pressing piece 610 always generates downward pressure on the sealing ring 520 arranged on the atomization module 400, thereby realizing the sealing effect.

[0087] The device embodiments described above are merely illustrative, in which the units illustrated as separate components can or can not be physically separate, and the components illustrated as units can or can not be physical units, i.e., can be located in one place, or can be distributed to multiple network units. Part or all of the modules can be selected according to actual needs to achieve the purpose of the embodiment.

[0088] It is to be understood that the terminology used herein is for the purpose of describing particular example embodiments only and is not intended to be limiting. As used herein, the singular forms "a", "an" and "the" are intended to include the plural forms as well, unless the context clearly indicates otherwise. The terms "comprises", "comprising", "includes", "including" and "has" are inclusive and therefore specify the presence of stated features, steps, operations, elements, and / or components, but do not preclude the presence or addition of one or more other features, steps, operations, elements, components, and / or groups thereof.

[0089] The above merely describes specific embodiments of the present application, enabling those skilled in the art to understand or implement the present application. Various modifications to these embodiments will be apparent to those skilled in the art, and the general principles defined herein can be implemented in other embodiments without departing from the spirit or scope of the present application. Therefore, the present application will not be limited to the embodiments shown herein, but will conform to the widest scope consistent with the principles and novel features sought to be applied for herein.

Claims

1. A humidification tower fan characterized by, include: The main body is provided with a wind cavity, an air inlet and an air outlet, and the air inlet and the air outlet are both connected to the wind cavity; A wind turbine, which is disposed inside the air cavity and is used to drive air to flow from the air inlet to the air outlet; A mist outlet duct is provided on the main body. The mist outlet duct has a mist outlet and the air outlet is located on the same side of the main body. The spray direction of the mist outlet is parallel to the air outlet direction, and the mist outlet and the air outlet are independently set. And an atomizing module, which is detachably connected to the main body. When the atomizing module is installed on the main body, it can deliver water mist to the mist outlet pipe.

2. The humidification tower fan of claim 1, wherein, The mist outlet duct includes a first mist outlet branch pipe and a second mist outlet branch pipe arranged at intervals. The first mist outlet branch pipe and the second mist outlet branch pipe are respectively arranged on both sides of the air outlet. The first mist outlet branch pipe, the second mist outlet branch pipe and the air outlet all extend along the height direction of the main body. The first mist outlet branch pipe and the second mist outlet branch pipe are each provided with multiple mist outlets. The multiple mist outlets of the first mist outlet branch pipe and the multiple mist outlets of the second mist outlet branch pipe are arranged sequentially at intervals along the height direction of the main body.

3. The humidification tower fan of claim 2, wherein, The mist outlet pipe further includes a mist distributor, which includes a cavity, a first through hole, a second through hole, and a third through hole. The first through hole connects the cavity and the atomizing chamber of the atomizing module. The second through hole connects the cavity and the first mist outlet branch pipe. The third through hole connects the cavity and the second mist outlet branch pipe. The first through hole is located on the side of the mist distributor facing the atomizing module, and the second and third through holes are both located on the side of the mist distributor away from the atomizing module.

4. The humidification tower fan of claim 3, wherein, The atomizing module includes an atomizing shell and a suspended atomizing element. The atomizing shell is detachably connected to the main body. The atomizing shell has an atomizing chamber that communicates with the mist outlet pipe. The suspended atomizing element is located inside the atomizing chamber and can move with the water level in the atomizing chamber.

5. The humidification tower fan of claim 4, wherein, The humidification tower fan also includes a fan, which is installed on the main body. The fan is used to drive airflow to the atomizing chamber and through the second and third through holes to the first mist outlet pipe and the second mist outlet pipe.

6. The humidification tower fan of claim 5, wherein, The main body is provided with a receiving cavity, and the atomizing module is detachably installed in the receiving cavity; The humidification tower fan also includes a fan bracket and a sealing ring. The fan bracket is installed above the receiving cavity. The atomizing shell is also provided with an opening communicating with the atomizing cavity. The sealing ring is located on the side of the atomizing shell facing the fan bracket and is arranged around the opening. The humidifying tower fan also includes a pressing component, which is movably connected to the fan bracket. When the atomizing module is located in the receiving cavity, the pressing component elastically presses against the sealing ring. When the atomizing module is located outside the receiving cavity, the pressing component separates from the sealing ring.

7. The humidification tower fan of claim 6, wherein, The pressing assembly comprises a pressing piece and an elastic piece, the pressing piece is movably connected to the fan support, and the elastic piece abuts between the pressing piece and the fan support.

8. The humidification tower fan of claim 7, wherein, The accommodating cavity is provided with a socket for placing the atomization module in the accommodating cavity, and the pressing piece is provided with an inclined surface facing the socket.

9. The humidification tower fan of claim 6, wherein, The atomization shell is further provided with a water cavity and a first water inlet, the fan support is provided with a second water inlet, the side surface of the main body is provided with a third water inlet, the first water inlet is communicated with the water cavity and the second water inlet, the second water inlet is communicated with the first water inlet and the third water inlet, and the side surface of the main body is further provided with a flip cover located at the third water inlet, the flip cover is movably connected to the main body to open or close the third water inlet.

10. The humidification tower fan of claim 9, wherein, The fan support is provided with a water guide rib towards the atomization module, the water guide rib is arranged around the edge of the second water inlet, the second water inlet is oppositely arranged with the first water inlet, and the aperture of the second water inlet is smaller than the aperture of the first water inlet.