Atomizing fan with waterway structure

By employing a method of first delivering water and then atomizing it in the atomizing fan, and utilizing a water channel structure to directly atomize and spray water onto the fan body, the problems of high spray loss rate and short range are solved, resulting in a better cooling effect.

CN224149807UActive Publication Date: 2026-04-21FOSHAN SHUNDE POYU HARDWARE PLASTIC CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
FOSHAN SHUNDE POYU HARDWARE PLASTIC CO LTD
Filing Date
2025-03-28
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

Existing atomizing fans have high spray loss rates, short spray ranges, and poor cooling effects.

Method used

The system employs a method of first conveying and then atomizing, with the atomizing structure placed on the fan body. The water tank and the atomizing structure are connected by a water channel structure, allowing the water to be directly atomized and sprayed out on the fan body, forming a circulation loop and reducing losses during the conveying process.

Benefits of technology

It reduced spray loss rate, increased spray range, and improved cooling effect.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN224149807U_ABST
    Figure CN224149807U_ABST
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Abstract

The utility model discloses an atomizing fan with a waterway structure. The atomizing fan comprises a water tank, the fan body is arranged on the upper side of the water tank through a base; the atomizing structure is arranged on the fan body, and the atomizing structure is used for atomizing a water body; the water path structure comprises a water inlet pipe used for conveying water from the water tank to the atomization structure and a backflow pipe used for enabling the water to flow back to the water tank from the atomization structure. According to the utility model, a mode of firstly conveying and then atomizing is adopted, the atomizing structure is arranged on the fan body, and the water tank and the atomizing structure are communicated through the water path structure, so that water is directly atomized and sprayed on the fan body after being conveyed to the fan body through the water path structure, the loss rate in the conveying process is reduced, and the amount of sprayed mist is kept sufficient. Compared with the prior art, the atomizing fan with the water path structure is low in loss rate, long in spraying range and good in cooling effect.
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Description

Technical Field

[0001] This utility model relates to the field of home appliances, and in particular to an atomizing fan with a water channel structure. Background Technology

[0002] Current atomizing fans typically have the atomizing structure located inside a water tank. This structure first atomizes the water in the tank into a mist, which is then transported through a water pipe to the fan body for spraying. The mist absorbs heat and vaporizes, thus cooling the environment. However, this method of atomizing before transporting results in high mist loss during transport due to the premature atomization of the water and the small size and easy vaporization of the mist. This leads to insufficient mist volume, short spray range, and poor cooling effect.

[0003] Based on the above, existing atomizing fans need further improvement. Utility Model Content

[0004] The purpose of this invention is to overcome the shortcomings of existing atomizing fans, such as high loss rate and poor cooling effect, and to provide an atomizing fan with a water channel structure. It adopts a method of first conveying and then atomizing, which reduces the loss rate during the conveying process, maintains sufficient mist volume, has a long spray range, and improves cooling efficiency.

[0005] To achieve the above objectives, the present invention adopts the following technical solution: an atomizing fan with a water channel structure, comprising a water tank; a fan body, the fan body being mounted on the upper side of the water tank via a base; an atomizing structure, the atomizing structure being mounted on the fan body, the atomizing structure being used to atomize water; and a water channel structure, the water channel structure connecting the water tank and the atomizing structure, including an inlet pipe for transporting water from the water tank to the atomizing structure and a return pipe for returning water from the atomizing structure to the water tank.

[0006] This invention employs a method of first conveying and then atomizing water. The atomizing structure is located on the fan body, and a water tank and atomizing structure are connected via a water channel. Water is conveyed to the fan body through the water channel and then directly atomized and sprayed out, reducing the loss rate during the conveying process and ensuring sufficient mist output. Compared with existing technologies, this invention's atomizing fan with a water channel structure has a lower loss rate, a longer spray range, and better cooling effect.

[0007] Preferably, the water inlet pipe is provided with a first water inlet and a first water outlet, the return pipe is provided with a second water inlet and a second water outlet, and the atomizing structure is provided with an inlet and an outlet. The first water outlet is connected to the inlet, and the second water inlet is connected to the outlet. The first water inlet and the second water outlet are located inside the water tank. A loop is formed between the water tank and the atomizing structure through the water inlet pipe and the return pipe, so that the water can be recycled and the water utilization rate is improved.

[0008] Preferably, the fan body includes a main body and a drive structure. The drive structure is rotatably mounted on the base via an internally mounted motor. The main body has a first accommodating cavity on its outer periphery, and the drive structure is configured as a hollow structure to form a second accommodating cavity. The main body and the drive structure are connected to the first and second accommodating cavities via a connection port. At least a portion of the inlet pipe and the return pipe are arranged within the first and second accommodating cavities. When the drive structure rotates, the main body rotates accordingly.

[0009] Preferably, the drive structure further includes a motor mounting base and a connecting bracket, the motor is disposed in the motor mounting base, the connecting bracket is connected to the base through the motor mounting base, and the connection port is disposed on the connecting bracket; the water inlet pipe and the return pipe extend from the base to the connecting bracket through the motor mounting base.

[0010] Preferably, a water pump is provided on the water inlet pipe, and the water pump is installed in the base. The water pump is used to draw water from the water tank to the inlet.

[0011] Preferably, the connecting bracket is arc-shaped and surrounds the lower part of the body, and the connecting port is located on the upper part of the connecting bracket; the driving structure is fixedly connected to the body through the connecting bracket, so that the driving structure drives the body to rotate when it reciprocates.

[0012] Preferably, the base has buckles on both sides and the water tank has snap-fit ​​parts on both sides. The buckles and snap-fit ​​parts match so that the base can be fixed to the water tank when it is placed upright.

[0013] Preferably, the upper edge of the base is shaped like a "└", and the upper edge of the water tank is stepped and matches the upper edge of the base, so that the base is stably inverted on the water tank; when the base is inverted, the atomizing fan is in a retracted state, and the fan body is stored in the water tank, saving space.

[0014] Preferably, the base has a recessed portion at the bottom, a handle on the recessed portion, and a hook on the handle; the hook and handle can be used to hang the fan upside down through the base, making the fan suitable for various scenarios. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of the structure of this utility model.

[0016] Figure 2 This is a partial structural schematic diagram of the present invention. Figure 1 .

[0017] Figure 3 This is a partial structural schematic diagram of the present invention. Figure 2 .

[0018] Figure 4 It is a structural diagram of the water channel structure, atomization structure and base.

[0019] Figure 5 yes Figure 4 Enlarged view of point A in the middle.

[0020] Figure 6 This is a schematic diagram of the base and part of the waterway structure. Figure 1 .

[0021] Figure 7 This is a schematic diagram of the base and part of the waterway structure. Figure 2 .

[0022] Figure 8 This is a schematic diagram of the fan body and atomizing structure.

[0023] Figure 9 This is an exploded view of the fan-shaped structure.

[0024] Figure 10 This is a structural diagram of the water tank.

[0025] Label Explanation:

[0026] Atomizing fan with water channel structure 1, water tank 2, snap-fit ​​part 21, notch 22, fan body 3, main body 31, first receiving cavity 311, drive structure 32, motor 321, motor mounting base 322, connecting bracket 323, second receiving cavity 324, connection port 33, lighting lamp 34, base 4, buckle 41, recess 42, handle 43, hook 44, control panel 45, atomizing structure 5, inlet 51, outlet 52, water channel structure 6, water inlet pipe 61, return pipe 62, first water inlet 611, first water outlet 612, second water inlet 621, second water outlet 622, water pump 7. Detailed Implementation

[0027] In the description of this utility model, it should be understood that the orientation or positional relationship indicated by terms such as "upper", "lower", "left", "right", "horizontal", "inner", and "outer" is based on the orientation or positional relationship shown in the accompanying drawings. It is only for the convenience of describing this utility model and simplifying the description, and does not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, it should not be construed as a limitation of this utility model.

[0028] See Figures 1 to 4This embodiment discloses an atomizing fan 1 with a water channel structure, including a water tank 2; a fan body 3, which is mounted on the upper side of the water tank 2 via a base 4; an atomizing structure 5, which is mounted on the fan body 3 and is used to atomize water; and a water channel structure 6, which connects the water tank 2 and the atomizing structure 5, including an inlet pipe 61 for transporting water from the water tank 2 to the atomizing structure 5 and a return pipe 62 for returning water from the atomizing structure 5 to the water tank 2.

[0029] See Figures 1 to 7 To form a circulation loop between the water tank 2 and the atomizing structure 5, the water inlet pipe 61 is provided with a first water inlet 611 and a first water outlet 612, the return pipe 62 is provided with a second water inlet 621 and a second water outlet 622, the atomizing structure 5 is provided with an inlet 51 and an outlet 52, the first water outlet 612 is connected to the inlet 51, the second water inlet 621 is connected to the outlet 52, and the first water inlet 611 and the second water outlet 622 are located inside the water tank 2.

[0030] See Figure 3 and Figure 9 To accommodate the inlet pipe 61 and the return pipe 62 on the fan body 3, the fan body 3 includes a body 31 and a drive structure 32. The drive structure 32 is rotatably mounted on the base 4 via an internally mounted motor 321. The body 31 has a first accommodating cavity 311 on its outer periphery, and the drive structure 32 is configured as a hollow structure to form a second accommodating cavity 324. The body 31 and the drive structure 32 are connected to the first accommodating cavity 311 and the second accommodating cavity 324 via a connecting port 33. At least a portion of the inlet pipe 61 and the return pipe 62 are arranged within the first accommodating cavity 311 and the second accommodating cavity 324.

[0031] See Figure 2 as well as Figures 8 to 9 The drive structure 32 further includes a motor mounting base 322 and a connecting bracket 323. The motor 321 is disposed within the motor mounting base 322, and the connecting bracket 323 is connected to the base 4 via the motor mounting base 322. The connection port 33 is disposed on the connecting bracket 323. In this design, the drive structure 32 connects the base 4 and the main body 31 via the motor mounting base 322 and the connecting bracket 323, thus providing an installation path for the inlet pipe 61 and the return pipe 62.

[0032] See Figures 2 to 3 In order to draw water from the first inlet 611 located at a low position to the first outlet 612 located at a high position, a water pump 7 is provided on the inlet pipe 61, and the water pump 7 is installed in the base 4.

[0033] See Figures 1 to 7The water inlet pipe 61 extends from the water tank 2 through the base 4, the second receiving cavity 324, the connection port 33 and the first receiving cavity 311 to the inlet 51. The return pipe 62 extends from the outlet 52 through the first receiving cavity 311, the connection port 33, the second receiving cavity 324 and the base 4 to the water tank 2.

[0034] See Figures 1 to 3 The connecting bracket 323 is arc-shaped and surrounds the lower part of the body 31. The connecting port 33 is located on the upper part of the connecting bracket 323. The inlet pipe 61 and the return pipe 62 extend from the motor mounting base 322 along the second receiving cavity 324 to the upper part of the connecting bracket 323. After entering the first receiving cavity 311 from the connecting port 33, the inlet pipe 61 extends from the first receiving cavity 311 along the edge of the body 31 to the upper part of the body 31, and then extends to the inlet 51. The return pipe 62 extends from the side of the body 31 along its edge to the lower part of the body 31, and then extends to the outlet 52.

[0035] See Figure 6 and Figure 7 The base 4 has buckles 41 on both sides, and the water tank 2 has snap-fit ​​pieces 21 on both sides. The buckles 41 and snap-fit ​​pieces 21 are matched. The buckles 41 and snap-fit ​​pieces 21 in this solution are used to lock and fix the base 4 when it is placed on the water tank 2.

[0036] See Figure 9 The upper edge of the base 4 is shaped like a "└", and the upper edge of the water tank 2 is stepped and matches the upper edge of the base 4, so that the base 4 is stably inverted on the water tank 2.

[0037] See Figure 10 The water tank 2 is provided with a notch 22, which is used to hold the water inlet pipe 61 when the base 4 is inverted on the water tank 2.

[0038] See Figure 7 The base 4 has a recessed portion 42 at its bottom, a handle 43 on the recessed portion 42, and a hook 44 on the handle 43. The handle 43 and hook 44 of this design allow the base 4 to be lifted or hung upside down, so that the fan body 3 can also be lifted, moved, or hung for use, making it convenient to use and suitable for multiple scenarios.

[0039] See Figure 9 The upper part of the fan body 3 is provided with a lighting lamp 34.

[0040] See Figure 6 The base 4 is equipped with a control panel 45, which is used to control the water pump 7, the atomizing plate 54, the motor 321 and the lighting lamp 34, etc.

[0041] This invention employs a method of first conveying and then atomizing. The atomizing structure 5 is mounted on the fan body 3, and a water tank 2 and the atomizing structure 5 are connected via a water channel structure 6. This allows water to be conveyed to the fan body 3 via the water channel structure 6 and then directly atomized and sprayed out on the fan body 3, reducing the loss rate during the conveying process and ensuring sufficient mist output. Compared with existing technologies, the atomizing fan 1 with a water channel structure of this invention has a low loss rate, a long spray range, and a good cooling effect.

[0042] Based on the disclosure and teachings of the above specification, those skilled in the art can make changes and modifications to the above embodiments. Therefore, this utility model is not limited to the specific embodiments disclosed and described above, and some modifications and changes to this utility model should also fall within the protection scope of the claims of this utility model. Furthermore, although some specific terms are used in this specification, these terms are only for convenience of explanation and do not constitute any limitation on this utility model.

Claims

1. A misting fan with a water channel structure, characterized in that, include Water tank (2); The fan body (3) is mounted on the upper side of the water tank (2) via a base (4); Atomizing structure (5) is disposed on the fan body (3) and is used to atomize water. The water passage structure (6) includes an inlet pipe (61) for conveying water from the water tank (2) to the atomizing structure (5) and a return pipe (62) for returning water from the atomizing structure (5) to the water tank (2); The fan body (3) includes a main body (31) and a drive structure (32), which is mounted on the base (4) in a reciprocating manner via a motor (321) located inside.

2. The atomizing fan of claim 1, wherein The water inlet pipe (61) is provided with a first water inlet (611) and a first water outlet (612), the return pipe (62) is provided with a second water inlet (621) and a second water outlet (622), the atomizing structure (5) is provided with an inlet (51) and an outlet (52), the first water outlet (612) is connected to the inlet (51), the second water inlet (621) is connected to the outlet (52), and the first water inlet (611) and the second water outlet (622) are located inside the water tank (2).

3. The atomizing fan of claim 1, wherein, The body (31) has a first receiving cavity (311) on its outer periphery, and the driving structure (32) is configured as a hollow structure to form a second receiving cavity (324). The body (31) and the driving structure (32) are connected to the first receiving cavity (311) and the second receiving cavity (324) through a connecting port (33). At least a portion of the water inlet pipe (61) and the return pipe (62) are arranged in the first receiving cavity (311) and the second receiving cavity (324).

4. The atomizing fan of claim 3, wherein The drive structure (32) further includes a motor mounting base (322) and a connecting bracket (323). The motor (321) is installed in the motor mounting base (322). The connecting bracket (323) is connected to the base (4) through the motor mounting base (322). The connection port (33) is installed on the connecting bracket (323).

5. The atomizing fan of claim 1, wherein, A water pump (7) is provided on the water inlet pipe (61), and the water pump (7) is installed in the base (4).

6. The atomizing fan of claim 4, wherein, The connecting bracket (323) is arc-shaped and surrounds the lower part of the body (31), and the connecting port (33) is located on the upper part of the connecting bracket (323).

7. The atomizing fan of claim 1, wherein The base (4) is provided with buckles (41) on both sides, and the water tank (2) is provided with snap fasteners (21) on both sides. The buckles (41) and snap fasteners (21) are matched.

8. The atomizing fan of claim 1, wherein, The upper edge of the base (4) is set in the shape of "└", and the upper edge of the water tank (2) is set in the shape of a step and matches the upper edge of the base (4), so that the base (4) is stably inverted on the water tank (2).

9. The atomizing fan of claim 1, wherein, The base (4) has a recess (42) at the bottom, a handle (43) on the recess (42), and a hook (44) on the handle (43).