Spraying ceiling fan structure

By combining a fan and a misting component in a ceiling fan, the misting ceiling fan structure provides effective cooling and humidification under extreme high temperatures, solving the problem of poor cooling effect of ceiling fans at high temperatures and realizing intelligent air conditioning.

CN224018484UActive Publication Date: 2026-03-20SUZHOU AOBAOJIE MOTOR TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-26
Publication Date
2026-03-20

AI Technical Summary

Technical Problem

Existing ceiling fans are unable to achieve ideal cooling effects in extremely hot weather, and their functions are limited, failing to meet customers' needs for air humidification.

Method used

A misting ceiling fan structure was designed, combining a fan assembly and a misting assembly. The misting assembly releases water mist to increase air humidity and utilizes the evaporation of water mist to absorb heat, thereby enhancing the cooling effect.

Benefits of technology

It achieves effective cooling and humidification under extreme high temperatures. The spray ceiling fan structure can intelligently adjust the wind speed and spray intensity according to environmental conditions, providing all-round comfort and safety.

✦ Generated by Eureka AI based on patent content.

Smart Images

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    Figure CN224018484U_ABST
Patent Text Reader

Abstract

The utility model provides a mist spraying ceiling fan structure which comprises a fan assembly, a mist spraying assembly, a mist spraying assembly and a mist spraying assembly. The spraying assembly comprises a water spraying main pipe penetrating through the driving assembly, one end of the water spraying main pipe is fixedly connected with the driving assembly, the other end of the water spraying main pipe is connected with a plurality of water spraying branch pipes through a water segregator, the water segregator is hollow so as to communicate the water spraying main pipe with the water spraying branch pipes, and each water spraying branch pipe is provided with a plurality of atomizing nozzles. According to the mist spraying ceiling fan structure, the fan assembly and the mist spraying assembly are combined, traditional wind power cooling is provided, small water drops sprayed out of the mist spraying nozzle rapidly evaporate in air, heat of the surrounding environment is absorbed, and therefore the cooling effect is further enhanced; and meanwhile, water drops sprayed by the atomizing nozzle can effectively increase the humidity in the air.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a kind of spray ceiling fan structure, belong to fan technical field. BACKGROUND

[0002] Ceiling fan is a kind of widely used in industrial plant, logistics warehouse, waiting room, exhibition hall, gymnasium, supermarket and so on tall space, as space ventilation, personnel cooling A kind of common industrial machine. It can push a large amount of airflow to the ground, form a certain height airflow layer horizontal motion on the ground, so as to promote the whole air circulation, which has the advantages of full ground coverage and three-dimensional air circulation, Natural ventilation, super large coverage area.

[0003] However, the common ceiling fan products on the market in extremely high temperature weather, pure air flow is difficult to achieve ideal cooling effect, and some customers need air humidification and other functions, but the current ceiling fan function is single, cannot meet the needs of customers.

[0004] Therefore, it is necessary to provide a kind of spray ceiling fan structure to solve the above problems. INVENTION CONTENTS

[0005] The utility model aims at providing a kind of spray ceiling fan structure with cooling and increasing humidity function.

[0006] To achieve the above object, the utility model provides a kind of spray ceiling fan structure, comprising:

[0007] Fan assembly, including driving assembly and the fan blade that is driven by the driving assembly and rotates;

[0008] Spray assembly, including the water spraying main pipe that penetrates the driving assembly, one end of the water spraying main pipe is fixedly connected with the driving assembly, the other end is connected with multiple water spraying branch pipes by water distributor, the water distributor is hollowly arranged to communicate the water spraying main pipe and the water spraying branch pipe, and each water spraying branch pipe is provided with a plurality of atomizing nozzles.

[0009] As a further improvement of the utility model, the driving assembly includes motor, the extension direction of the water spraying main pipe is same with the extension direction of the output shaft of the motor, and the extension direction of the water spraying branch pipe is perpendicular to the extension direction of the water spraying main pipe.

[0010] As a further improvement of the utility model, the extension direction of the water distributor is same with the extension direction of the water spraying branch pipe, the water spraying branch pipe is provided with at least two, and is evenly annularly arranged on the periphery of the water spraying main pipe.

[0011] As a further improvement of the utility model, the fan assembly further comprises a connecting rod, one end of the connecting rod is connected to a roof beam or a cross beam, the other end is fixedly connected with the driving assembly, the fan blade is arranged on the side of the driving assembly facing the connecting rod, and the spraying assembly is arranged on the side of the driving assembly away from the fan blade.

[0012] As a further improvement of the utility model, the connecting rod is of a hollow structure, the water spraying main pipe is fixedly connected with the driving assembly through a water receiving connector, the other end of the water receiving connector is communicated with a water inlet pipe, and the water inlet pipe is at least partially accommodated in the connecting rod.

[0013] As a further improvement of the utility model, the utility model further comprises a booster water pump, and the outlet of the booster water pump is communicated with the water inlet pipe.

[0014] As a further improvement of the utility model, the spraying assembly further comprises a spraying controller connected with the booster water pump, and the spraying controller is used for turning on and turning off the booster water pump.

[0015] As a further improvement of the utility model, the spraying assembly further comprises a humidity sensor connected with the spraying controller, the humidity sensor is used for detecting air humidity, and when the humidity sensor detects that the air humidity is lower than a critical value, the spraying controller controls the booster water pump to supply water to the spraying assembly.

[0016] As a further improvement of the utility model, the spraying assembly further comprises a water pressure detector used for dynamically monitoring the water pressure of the booster water pump.

[0017] As a further improvement of the utility model, the fan assembly and the spraying assembly are controlled by different controllers.

[0018] Compared with the prior art, the technical scheme of the utility model has the following beneficial effects:

[0019] The spraying ceiling fan structure of the utility model combines the fan assembly and the spraying assembly, not only provides traditional wind cooling, but also absorbs the heat of the surrounding environment through the rapid evaporation of the small water droplets sprayed by the atomizing nozzle, thereby further enhancing the cooling effect, and the water droplets sprayed by the atomizing nozzle can also effectively increase the humidity in the air. BRIEF DESCRIPTION OF DRAWINGS

[0020] Figure 1 is a structural schematic view of the spraying ceiling fan structure according to the embodiment of the utility model;

[0021] Figure 2 is Figure 1 a structural schematic view of the spraying assembly. DETAILED DESCRIPTION

[0022] In order to make the purpose, technical scheme and advantages of the utility model more clear, the utility model will be described in detail below in combination with the drawings and specific embodiments.

[0023] As Figures 1-2 shown, a spray ceiling fan structure 100 provided by the utility model, which comprises a fan assembly 110 and a spray assembly 120.

[0024] The spray ceiling fan structure 100 combines the functions of fan and spray, generates airflow through the fan assembly 110, and releases water mist through the spray assembly 120. On the one hand, the water mist released by the spray assembly 120 can increase the humidity in the air, which is particularly beneficial to dry environments. On the other hand, the water mist can evaporate rapidly under the action of airflow, and the evaporation process can absorb heat from the air, thereby reducing the temperature of the surrounding environment.

[0025] The fan assembly 110 and the spray assembly 120 are controlled by different controllers. That is, the fan assembly 110 and the spray assembly 120 can operate independently and do not affect each other, and users can freely adjust the speed of the fan and the intensity of the spray according to environmental temperature, humidity and personal comfort, etc. factors, to achieve the best cooling and humidifying effect. When cooling is needed, the fan assembly 110 can be turned on. When humidity needs to be increased, the spray assembly 120 can be turned on. Of course, the fan assembly 110 and the spray assembly 120 can also be turned on at the same time, and the water mist can be diffused to a wider range through the airflow.

[0026] The spray assembly 120 can adapt to a wide range of application scenarios, whether it is an industrial site that needs large-area cooling or a commercial or residential environment that needs precise cooling in a specific area. The spray ceiling fan structure 100 can provide sufficient spray effect to meet different needs.

[0027] The fan assembly 110 comprises a connecting rod 1101, a driving assembly 1102 and a fan blade 1103.

[0028] One end of the connecting rod 1101 is connected to a roof beam or a cross beam to ensure that the fan can work stably. The other end of the connecting rod 1101 is fixedly connected with the driving assembly 1102, and the driving assembly 1102 is the core part of the fan assembly 110, which comprises a motor (not shown). The fan blade 1103 is arranged on the side of the driving assembly 1102 facing the connecting rod 1101, and is driven to rotate by the driving assembly 1102. The motor drives the fan blade 1103 to rotate through its output shaft, generates airflow, and achieves the cooling effect.

[0029] The spray assembly 120 is arranged on the side of the driving assembly 1102 opposite to the fan blade 1103. That is, the spray assembly 120 and the fan blade 1103 are respectively arranged on the two sides of the driving assembly 1102, which avoids direct interference between the spray and the fan blade 1103. Separating the spray assembly 120 from the fan blade 1103 can also reduce the safety hazards caused by improper operation or equipment failure. For example, if the spray assembly 120 fails, it will not directly affect the operation of the fan blade 1103, thereby avoiding possible safety accidents caused by equipment failure.

[0030] In this embodiment, the fan blade 1103 is arranged above, and the spray assembly 120 is arranged below. When the fan assembly 110 and the spray assembly 120 work simultaneously, the airflow generated by the fan blade 1103 can fully contact the water mist when passing through the spray area, accelerating the evaporation of the water mist, and the evaporated water mist can absorb the heat in the air, thereby reducing the temperature of the surrounding environment. At the same time, the airflow generated by the fan can also help the water mist to spread further.

[0031] The spray assembly 120 includes a booster water pump (not shown), a water inlet pipe (not shown), a water spraying main pipe 1202, and a water spraying branch pipe 1203.

[0032] The water outlet of the booster water pump is directly communicated with the water inlet pipe to provide sufficient water pressure for the spray assembly 120, ensuring that the water mist can be stably sprayed out. The booster water pump can significantly increase the water pressure in the water inlet pipe, thereby ensuring that the water flow enters the water spraying main pipe 1202 at a higher speed. Higher water pressure means that the water flow can obtain greater impact force when passing through the atomizing nozzle 1231, which helps to refine the water into smaller particles, form a more delicate water mist, and evaporate and absorb heat in the air faster, thereby improving the cooling efficiency. At the same time, higher water pressure also makes the coverage of the spray wider, which can cover a farther area.

[0033] The water inlet pipe is a pipeline connecting the water source (such as a tap pipeline or a water tank) and the spray assembly 120. The water inlet pipe is at least partially accommodated in the hollow structure of the connecting rod 1101, which can save space and protect the water inlet pipe from external environment interference. The hollow design of the connecting rod 1101 facilitates the arrangement of the water inlet pipe and the electric wire, etc., making the overall structure more compact.

[0034] The water inlet pipe is connected to the water spraying main pipe 1202 through a water connection connector 1201, ensuring that the water source can smoothly enter the spray assembly 120. The design of the water connection connector 1201 needs to consider its sealing property and durability to prevent water leakage.

[0035] The water spraying main pipe 1202 is the main pipe for conveying the water source in the spraying assembly 120. One end of the water spraying main pipe 1202 is fixedly connected with the driving assembly 1102 through the water receiving connector 1201 and penetrates through the driving assembly 1102, which can play a function of heat dissipation for the motor. The extension direction of the water spraying main pipe 1202 is the same as the extension direction of the output shaft of the motor, and such a design enables the water flow to flow along the rotation center line of the motor, thereby providing a stable basis for subsequent spraying.

[0036] The other end of the water spraying main pipe 1202 is connected with a plurality of water spraying branch pipes 1203 through the water distributor 1204.

[0037] The water spraying branch pipe 1203 is the pipe responsible for spraying the water mist to the air in the spraying assembly 120. The extension direction of the water spraying branch pipe 1203 is perpendicular to the extension direction of the water spraying main pipe 1202, and at least two water spraying branch pipes 1203 are uniformly arranged around the water spraying main pipe 1202. Such a design can expand the coverage of the water mist, so that the water mist can be sprayed to the air in all directions and uniformly, thereby improving the humidification and cooling effect. In the embodiment, four water spraying branch pipes 1203 are arranged.

[0038] A plurality of atomizing nozzles 1231 are arranged on each water spraying branch pipe 1203. The atomizing nozzles 1231 are used to refine the water flow into tiny water mist particles to increase the air humidity. Since the water spraying branch pipes 1203 are uniformly distributed around the water spraying main pipe 1202, each atomizing nozzle 1231 can spray the water mist at the same angle and distance, thereby ensuring the uniformity and fineness of the water mist.

[0039] The water distributor 1204 is hollowly arranged to communicate the water spraying main pipe 1202 and the water spraying branch pipes 1203. The hollow arrangement of the water distributor 1204 can effectively distribute the water flow of the water spraying main pipe 1202 to each water spraying branch pipe 1203. The extension direction of the water distributor 1204 is the same as the extension direction of the water spraying branch pipe 1203, so that the water flow can maintain a consistent flow direction when being distributed to each water spraying branch pipe 1203.

[0040] Further, in some embodiments, the bottom of the water distributor 1204 can be further provided with a support rod, and the bottom of the support rod is provided with a plurality of end support reinforcing stay rods supporting the water spraying branch pipes 1203. The reinforcing stay rods are arranged one by one corresponding to the water spraying branch pipes 1203, so that the spraying ceiling fan structure 100 is more stable.

[0041] The spray assembly 120 also includes a spray controller (not shown) connected to the booster pump. The spray controller is used to turn on and turn off the booster pump. The design of the spray controller is usually simple and easy for users to operate and maintain. Users can easily turn on or off the booster pump and adjust the spray parameters through the spray controller. At the same time, the spray controller also provides fault diagnosis and alarm functions, which helps users to discover and solve problems in time.

[0042] The spray controller can integrate more intelligent functions. For example, the spray controller can automatically adjust the size of the spray amount or turn on / off the spray assembly 120 according to the user's settings or the signals of external sensors (such as humidity sensors). Such design not only improves the convenience of users, but also realizes the intelligent control of the spray assembly 120.

[0043] The humidity sensor (not shown) is connected to the spray controller. The humidity sensor can monitor the air humidity in the environment in real time and feed back the detected humidity value to the spray controller. When the humidity is lower than the preset critical value, the spray controller will automatically start the booster pump to provide water source for the spray assembly 120, and when the air humidity reaches or exceeds the critical value, the spray controller will turn off the booster pump to stop spraying. Such automatic adjustment mechanism can ensure that the indoor humidity always remains within the comfortable range set by the user. Through the accurate detection of the humidity sensor, the spray controller can only start the booster pump when needed, avoiding unnecessary energy consumption and water waste. The cooperation of the humidity sensor and the spray controller realizes automatic adjustment, reduces manual intervention, and improves the stability and reliability of the spray assembly 120.

[0044] The spray assembly 120 also includes a water pressure detector (not shown). The water pressure detector is used to dynamically monitor the water pressure of the booster pump to ensure that the spray assembly 120 works under stable water pressure conditions. Stable water pressure can ensure that the water mist particles are uniform and fine, improving the coverage range and cooling efficiency of the spray. Moreover, the water pressure detector can issue an alarm when the water pressure abnormally rises or falls, reminding the operator to take timely measures to avoid damage to the booster pump due to long-term overload operation, or to avoid affecting the spray effect of the spray assembly 120 due to insufficient water pressure.

[0045] Of course, in the present utility model, the spray assembly 120 can not only spray clean water, but also freshener, disinfectant water, etc., with more diversified functions. Further, a water cooler can be provided, and the water is cooled by the water cooler and then sprayed through the atomizing nozzle 1231, and the fan blade 1103 blows the water mist to become cool wind with water mist, achieving better cooling effect.

[0046] In summary, the spray ceiling fan structure 100 combines the fan assembly 110 and the spray assembly 120, not only provides the traditional wind cooling, but also through the small water droplets sprayed by the atomizing nozzle 1231 rapidly evaporate in the air, absorb the heat of the surrounding environment, thereby further enhancing the cooling effect, at the same time, the water droplets sprayed by the atomizing nozzle 1231 can also effectively increase the humidity in the air.

[0047] The above examples are only used to illustrate the technical solutions of the utility model and not limit, although the utility model is described in detail with reference to the preferred embodiments, those skilled in the art should understand that the technical solutions of the utility model can be modified or replaced equivalently without departing from the spirit and scope of the technical solutions of the utility model.

Claims

1. A spray ceiling fan structure, characterized in that, include: A fan assembly, including a drive assembly and fan blades that are driven to rotate by the drive assembly; A spray assembly includes a main water spray pipe that runs through the drive assembly. One end of the main water spray pipe is fixedly connected to the drive assembly, and the other end is connected to multiple branch water spray pipes via a water distributor. The water distributor is hollow to connect the main water spray pipe and the branch water spray pipes. Each branch water spray pipe is provided with several atomizing nozzles. The fan assembly also includes a connecting rod, one end of which is connected to a roof beam or crossbeam, and the other end is fixedly connected to the drive assembly. The fan blades are disposed on the side of the drive assembly facing the connecting rod, and the spray assembly is disposed on the side of the drive assembly away from the fan blades. The spray assembly also includes a booster water pump and a spray controller connected to the booster water pump, the spray controller being used to turn the booster water pump on and off. The spray assembly also includes a humidity sensor and a water pressure detector. The humidity sensor is configured to monitor the air humidity in real time and feed back the detected humidity value to the spray controller, which automatically adjusts the spray volume or turns the spray assembly on / off based on the humidity value. The water pressure detector is configured to dynamically monitor the water pressure of the booster pump.

2. The spray ceiling fan structure according to claim 1, characterized in that, The drive assembly includes a motor, the extension direction of the main water spray pipe is the same as the extension direction of the output shaft of the motor, and the extension direction of the branch water spray pipe is perpendicular to the extension direction of the main water spray pipe.

3. The spray ceiling fan structure according to claim 2, characterized in that, The water distributor extends in the same direction as the water spray branch pipe, and there are at least two water spray branch pipes, which are evenly arranged around the periphery of the main water spray pipe.

4. The spray ceiling fan structure according to claim 1, characterized in that, The connecting rod has a hollow structure. The main water spray pipe is fixedly connected to the drive assembly through a water inlet connector. The other end of the water inlet connector is connected to the water inlet pipe. The water inlet pipe is at least partially housed in the connecting rod.

5. The spray ceiling fan structure according to claim 4, characterized in that, The outlet of the booster pump is connected to the inlet pipe.

6. The spray ceiling fan structure according to claim 5, characterized in that, The humidity sensor is connected to the spray controller. When the humidity sensor detects that the air humidity is below a critical value, the spray controller controls the booster water pump to supply water to the spray assembly.

7. The spray ceiling fan structure according to claim 1, characterized in that, The fan assembly and the spray assembly are controlled by different controllers.