Electrical equipment

By driving the air outlet duct to rotate, combined with the atomization assembly and the mist outlet duct design, the problem of poor stability of electrical equipment is solved and higher stability and safety is achieved.

CN223216421UActive Publication Date: 2025-08-12AIRMATE ELECTRICAL (SHEN ZHEN) CO LTD
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Patent Information

Application Number
CN202422473751.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-12
Publication Date
2025-08-12
Estimated Expiration
2034-10-12

AI Technical Summary

Technical Problem

When existing electrical equipment changes the direction of air and fog, the overall weight is large, resulting in poor stability.

Method used

An electrical equipment is designed, including a base, a pipe assembly, an atomization assembly and a driving assembly. The driving assembly drives the air outlet duct to rotate relative to the base, and the mist outlet pipe is connected to the air outlet pipe. The atomization assembly generates water mist and flows out from the mist outlet pipe, avoiding the rotation of the overall equipment.

Benefits of technology

It improves the operating stability of electrical equipment, reduces driving force demand, reduces mechanical wear, and enhances the safety and reliability of the equipment.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model provides electrical equipment which comprises a base, a pipeline assembly, an atomization assembly, a fan assembly and a driving assembly, and the base is provided with a containing cavity; the pipeline assembly is located outside the containing cavity and comprises an air outlet pipe and a mist outlet pipe, the mist outlet pipe is connected to the air outlet pipe, the air outlet pipe is rotatably connected to the base, the mist outlet pipe is provided with a mist outlet, and the air outlet pipe is provided with an electrical equipment air outlet; the atomization assembly is installed in the containing cavity and used for generating water mist, so that the water mist is guided to the mist outlet pipe and flows out of the mist outlet; the driving assembly is connected to the base and the air outlet pipe, and the driving assembly can drive the air outlet pipe to rotate relative to the base. Thus, according to the electrical equipment, only the air outlet pipe and the mist outlet pipe need to be rotated instead of the whole electrical equipment, and therefore the stability of the electrical equipment during operation is greatly improved.
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Description

Technical Field

[0001] The present application relates to the technical field of household appliances, and in particular to an electrical appliance. Background Art

[0002] The electrical device has the functions of a humidifier and a fan. However, in the related art, in order to change the direction of air and mist discharge, the electrical device often needs to be rotated as a whole. Due to the large overall weight of the electrical device, the stability of the electrical device is poor. Utility Model Content

[0003] The embodiment of the present invention provides an electrical device to improve at least one of the above problems.

[0004] The embodiments of the present invention achieve the above-mentioned objectives through the following technical solutions.

[0005] An embodiment of the present utility model provides an electrical device, which includes a base, a pipe assembly, an atomizing assembly, a fan assembly and a driving assembly, wherein the base is provided with a accommodating cavity; the pipe assembly is located outside the accommodating cavity, the pipe assembly includes an air outlet pipe and a mist outlet pipe, the mist outlet pipe is connected to the air outlet pipe, the air outlet pipe is rotatably connected to the base, the mist outlet pipe has a mist outlet, and the air outlet pipe has an electrical device air outlet; the atomizing assembly is installed in the accommodating cavity, the atomizing assembly is used to generate water mist to guide the water mist to the mist outlet pipe and flow out from the mist outlet; the driving assembly is connected to the base and the air outlet pipe, and the driving assembly can drive the air outlet pipe to rotate relative to the base.

[0006] In some embodiments, the drive assembly includes a motor, a first gear and a second gear, the motor is mounted on the base, the rotating shaft of the motor is transmission-connected to the first gear, the second gear is arranged around the air outlet pipe, and the second gear is meshedly connected to the first gear.

[0007] In some embodiments, the air outlet pipe and the mist outlet pipe both extend along the height direction of the base, the air outlet pipe is provided with a mist outlet pipe accommodating space and an avoidance opening, the mist outlet pipe accommodating space and the avoidance opening extend along the length direction of the air outlet pipe, the mist outlet pipe is located in the mist outlet pipe accommodating space, and the mist outlet is connected to the avoidance opening.

[0008] In some embodiments, there are multiple air outlets for electrical equipment, and the air outlets for electrical equipment are provided on both sides of the avoidance opening, and each air outlet for electrical equipment extends along the length direction of the air outlet pipe.

[0009] In some embodiments, the air outlet pipe is arranged around the mist outlet pipe, and the cross section of the mist outlet pipe is non-circular.

[0010] In some embodiments, the atomization assembly includes a water tank, an atomizer, and an atomization pipe. The water tank is used to supply water to the atomizer. The atomizer is used to generate water mist and guide the water mist to the mist outlet pipe through the atomization pipe.

[0011] In some embodiments, the atomization assembly further includes a fan, and the electrical device is used to drive the water mist in the atomization pipe to flow toward the mist outlet pipe and out of the mist outlet.

[0012] In some embodiments, the air outlet pipe further includes an avoidance gap, and the atomization pipe is located in the avoidance gap.

[0013] In some embodiments, the fan assembly includes a fan housing and a fan, the fan housing is provided with a fan accommodating space, a fan air inlet and a fan air outlet, the fan is installed in the fan accommodating space, the fan air inlet and the fan air outlet are both connected to the fan accommodating space, and the fan air outlet is connected to the air outlet duct.

[0014] In some embodiments, the base is provided with a plurality of electrical equipment air inlets connected to the accommodating cavity, and the plurality of electrical equipment air inlets are arranged in an array.

[0015] In the electrical equipment provided by the embodiment of the present utility model, the electrical equipment includes a base, a pipe assembly, an atomizing assembly, a fan assembly and a driving assembly, the base is provided with a housing cavity; the pipe assembly is located outside the housing cavity, the pipe assembly includes an air outlet pipe and a mist outlet pipe, the mist outlet pipe is connected to the air outlet pipe, the air outlet pipe is rotatably connected to the base, the mist outlet pipe has a mist outlet, and the air outlet pipe has an electrical equipment air outlet; the atomizing assembly is installed in the housing cavity, the atomizing assembly is used to generate water mist to guide the water mist to the mist outlet pipe and flow out from the mist outlet; the driving assembly is connected to the base and the air outlet pipe, and the driving assembly can drive the air outlet pipe to rotate relative to the base. In this way, compared with the electrical equipment in the related art, the electrical equipment of the present application only needs to rotate the air outlet pipe and the mist outlet pipe, rather than the entire electrical equipment, thereby greatly improving the stability of the electrical equipment during operation. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] In order to more clearly illustrate the technical solution of the present application, the following is a brief introduction to the drawings required for use in the implementation. Obviously, the drawings described below are only some implementation methods of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without any creative work.

[0017] Figure 1 A structural schematic diagram of an electrical device provided by an embodiment of the present utility model is shown.

[0018] Figure 2 Shown Figure 1 Schematic diagram of the cross-section of electrical equipment.

[0019] Figure 3 Shown Figure 2 Schematic diagram of part of the structure of electrical equipment.

[0020] Figure 4 Shown Figure 2 Schematic diagram of the structure of the center air outlet duct.

[0021] Figure 5 Shown Figure 2 Schematic diagram of the structure of the center mist pipe.

[0022] Figure 6 Shown Figure 2 Schematic diagram of part of the structure of electrical equipment.

[0023] Figure 7 Shown Figure 2 Schematic diagram of part of the structure of electrical equipment.

[0024] Description of Figure Numbers:

[0025] Electrical device 10, base 100, accommodating cavity 110, electrical device air inlet 120, pipe assembly 200, air outlet pipe 210, electrical device air outlet 211, mist outlet pipe accommodating space 212, avoidance opening 213, avoidance gap 214, mist outlet pipe 220, mist outlet 221, atomization assembly 300, water tank 310, atomizer 320, atomization pipe 330, fan 340, fan assembly 400, fan housing 410, fan 420, drive assembly 500, motor 510, first gear 520, second gear 530. DETAILED DESCRIPTION

[0026] In order to enable those skilled in the art to better understand the present invention, the following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments of the utility model, all other embodiments obtained by those skilled in the art without making creative efforts are within the scope of protection of the utility model.

[0027] The technical solutions in the embodiments of the utility model will be described clearly and completely below with reference to the accompanying drawings in the embodiments of the utility model.

[0028] See also Figures 1 to 7 The present invention proposes an electrical device 10, which includes a base 100, a pipe assembly 200, an atomizing assembly 300, a fan assembly 400 and a driving assembly 500. The base 100 is provided with a receiving cavity 110; the pipe assembly 200 is located outside the receiving cavity 110, and the pipe assembly 200 includes an air outlet pipe 210 and a mist outlet pipe 220. The mist outlet pipe 220 is connected to the air outlet pipe 210, and the air outlet pipe 210 is rotatably connected to the base 100. The mist outlet pipe 220 has a mist outlet 221, and the air outlet pipe 210 has a The air outlet 211 of the electrical equipment; the atomizing assembly 300 is installed in the accommodating cavity 110, and the atomizing assembly 300 is used to generate water mist to guide the water mist to the mist outlet pipe 220 and flow out from the mist outlet 221; the fan assembly 400 is installed in the accommodating cavity 110, and the fan assembly 400 is used to drive air to flow toward the air outlet pipe 210 and flow out from the air outlet 211 of the electrical equipment; the driving assembly 500 is connected to the base 100 and the air outlet pipe 210, and the driving assembly 500 can drive the air outlet pipe 210 to rotate relative to the base 100.

[0029] Thus, compared with the electrical equipment in the related art, the electrical equipment 10 of the present application only needs to rotate the air outlet pipe 210 and the mist outlet pipe 220, rather than the entire electrical equipment 10, thereby greatly improving the stability of the electrical equipment 10 during operation.

[0030] In some embodiments, the air outlet duct 210 and the base 100 may be rotatably connected via a bearing; or, the air outlet duct 210 and the base 100 may be rotatably connected via a rotational fit of an annular groove and an annular slider.

[0031] In some embodiments, the driving assembly 500 includes a motor 510, a first gear 520 and a second gear 530. The motor 510 is installed on the base 100, and the rotating shaft of the motor 510 can be transmission-connected to the first gear 520. The second gear 530 is arranged around the air outlet pipe 210, and the second gear 530 is meshedly connected to the first gear 520.

[0032] Among them, the motor 510 is fixed inside the base 100, near the bottom position of the air outlet pipe 210. The selection of the motor 510 should be determined according to the required rotational torque and speed to ensure that the air outlet pipe 210 can be driven smoothly. The rotating shaft of the motor 510 is connected to the first gear 520 directly or through a transmission device such as a coupling. The design of the first gear 520 needs to take into account good engagement with the second gear 530 to ensure effective transmission of power. The second gear 530 surrounds the lower part of the air outlet pipe 210 and is fixed on the air outlet pipe 210 so that when the second gear 530 rotates, it drives the entire air outlet pipe 210 to rotate together. The second gear 530 maintains a good meshing state with the first gear 520, and usually adopts a straight tooth, helical tooth or spiral gear design to adapt to different transmission requirements.

[0033] This gear drive system achieves high mechanical efficiency, reduces energy loss, and more effectively converts the power output by motor 510 into the rotational motion of air outlet duct 210. Gear drive allows for better control of the rotational speed and smoothness of air outlet duct 210, avoiding the potential vibration issues associated with direct drive. The gear drive system design helps evenly distribute the load, reducing excessive stress on individual components and thus extending the service life of the entire drive system.

[0034] In some embodiments, the air outlet pipe 210 and the mist outlet pipe 220 both extend in the height direction of the base 100, and the air outlet pipe 210 is provided with a mist outlet pipe accommodating space 212 and an avoidance opening 213. The mist outlet pipe accommodating space 212 and the avoidance opening 213 extend in the length direction of the air outlet pipe 210, and the mist outlet pipe 220 is located in the mist outlet pipe accommodating space 212, and the mist outlet 221 is connected to the avoidance opening 213. Integrating the mist outlet pipe 220 into the air outlet pipe 210 in this way makes the entire electrical device 10 more compact, saves external space, and also maintains a simple and beautiful appearance design. In addition, by rationally arranging the position of the mist outlet pipe 220 and the design of the avoidance opening 213, interference with the main airflow can be minimized, thereby ensuring the effectiveness of the fan 340 function.

[0035] In some embodiments, the air outlet pipe 210 extends vertically upward along the height direction of the base 100, and a mist outlet pipe accommodating space 212 is provided therein. This space extends from the bottom to the top of the air outlet pipe 210, ensuring that the mist outlet pipe 220 can be completely installed therein.

[0036] In some embodiments, one or both sides of the air outlet pipe 210 are provided with escape openings 213, which also extend along the length of the air outlet pipe 210 and communicate with the mist outlet pipe accommodating space 212. The design of the escape openings 213 should take into account both allowing the water mist to pass smoothly and not causing significant obstruction to the airflow.

[0037] In some embodiments, the mist outlet pipe 220 also extends vertically along the height direction of the base 100 and is located in the mist outlet pipe accommodating space 212 within the air outlet pipe 210. One end of the mist outlet pipe 220 is connected to the atomizing assembly 300 in the base 100, and the other end extends through the avoidance opening 213 on the air outlet pipe 210 to form a mist outlet 221.

[0038] In some embodiments, the avoidance opening 213 should be large enough to allow the mist outlet pipe 220 to pass through smoothly and allow the generated water mist to flow out without obstruction.

[0039] In some embodiments, there are multiple electrical equipment air outlets 211 , and electrical equipment air outlets 211 are provided on both sides of the avoidance opening 213 . Each electrical equipment air outlet 211 extends along the length direction of the air outlet pipe 210 .

[0040] Thus, by providing a plurality of electrical equipment air outlets 211 extending along the length direction on both sides of the avoidance opening 213, the air flow can be more evenly distributed over a larger area. Such a design helps to improve the indoor air circulation effect, especially in larger rooms.

[0041] In addition, since the air flow can be dispersed and discharged through multiple electrical equipment air outlets 211, the pressure of a single electrical equipment air outlet 211 is relatively reduced, which helps to reduce the noise generated when the fan assembly 400 is working and provide a quieter user experience.

[0042] Furthermore, multiple electrical equipment air outlets 211 are provided on both sides of the avoidance opening 213, extending along the length thereof. These outlets are also located on either side of the mist outlet 221. The airflow from the electrical equipment air outlets 211 creates a negative pressure in front of the mist outlet 221, significantly increasing the speed and volume of the mist outflow, resulting in a more pronounced and uniform humidification effect. This negative pressure effect reduces the power required by the fan 420, thereby achieving energy savings.

[0043] In some embodiments, the air outlet pipe 210 is arranged around the mist outlet pipe 220, and the cross-section of the mist outlet pipe 220 is non-circular. The cross-section of the mist outlet pipe 220 is designed to be non-circular, such as an elliptical, polygonal or other irregular shape. In this way, the cross-section of the mist outlet pipe 220 is non-circular, and the air outlet pipe 210 wraps the mist outlet pipe 220; when the air outlet pipe 210 rotates, the mist outlet pipe 220 rotates together with the air outlet pipe 210, ensuring that the direction of the mist outlet 221 is always consistent with the wind outlet direction. This design ensures the synchronous output of airflow and water mist, and improves the ease of operation and reliability of the equipment. In addition, since the mist outlet pipe 220 and the air outlet pipe 210 rotate together, no additional mechanical device is required to separately control the direction of the mist outlet pipe 220, which simplifies the structure and control logic of the entire system.

[0044] In some embodiments, the atomization assembly 300 includes a water tank 310, an atomizer 320, and an atomization pipe 330. The water tank 310 is used to supply water to the atomizer 320. The atomizer 320 is used to generate water mist and guide the water mist to the mist outlet pipe 220 through the atomization pipe 330.

[0045] Among them, the water tank 310 is installed in the accommodating cavity 110 of the base 100 and is used to store water required for humidification. The water tank 310 can be a detachable design to facilitate users to add water and clean it. A water outlet is provided at the bottom of the water tank 310, which is connected to the atomizer 320 through a pipe to ensure that water can flow smoothly into the atomizer 320. The atomizer 320 usually adopts ultrasonic atomization technology or other efficient atomization methods (such as high-pressure injection, heating evaporation, etc.). The atomizer 320 is installed below or next to the water tank 310, and directly draws water from the water tank 310 for atomization. The water mist particles generated by the atomizer 320 are very fine, which is convenient for rapid diffusion in the air. The atomization pipe 330 connects the atomizer 320 and the mist outlet pipe 220, and guides the water mist generated by the atomizer 320 to the mist outlet pipe 220. The atomization pipe 330 can be a flexible hose or a hard pipe, depending on the internal space layout and design requirements of the equipment. In this way, the water mist is guided to the mist outlet pipe 220 through the atomizing pipe 330 , and combined with the rotation function of the air outlet pipe 210 , the water mist can be evenly distributed over a larger range, avoiding local over-wetting or drying.

[0046] In some embodiments, the atomizing assembly 300 further includes a fan 340, and the electrical device 10 is used to drive the water mist in the atomizing pipe 330 to flow toward the mist outlet pipe 220 and out of the mist outlet 221. The fan 340 is installed near the atomizing pipe 330 or above the atomizer 320, and is used to drive the water mist in the atomizing pipe 330 to flow toward the mist outlet pipe 220. The fan 340 can be an axial flow fan 340, a centrifugal fan 340, or other suitable fan 340 types, determined according to the required airflow intensity and equipment size. The fan 340 is integrated with the control system and can be adjusted by buttons on the panel or a remote control to control the wind speed and air volume.

[0047] Thus, driven by the fan 340, the water mist in the atomizing duct 330 can flow more quickly and evenly to the mist outlet pipe 220 and out of the mist outlet 221. This helps to improve the transport efficiency of the water mist and ensure that the water mist can be spread over a wider range.

[0048] In addition, the fan 340 assists in better mixing the water mist with the air, thereby improving the humidification effect. Especially in larger rooms or dry environments, this design can reach the ideal humidity level more quickly.

[0049] In some embodiments, the air outlet pipe 210 further includes a relief notch 214, and the atomizing pipe 330 is located within the relief notch 214. The relief notch 214 is provided on the sidewall of the air outlet pipe 210 to accommodate the atomizing pipe 330. By providing the relief notch 214 on the air outlet pipe 210, the atomizing pipe 330 can be smoothly connected to the atomizing pipe 220 without interfering with the rotation of the air outlet pipe 210. This allows the air outlet pipe 210 to rotate freely during rotation while the atomizing pipe 330 remains fixed in position.

[0050] In some embodiments, the fan assembly 400 includes a fan housing 410 and a fan 420, the fan housing 410 is provided with a fan 420 accommodating space, a fan 420 air inlet and a fan 420 air outlet, the fan 420 is installed in the fan 420 accommodating space, the fan 420 air inlet and the fan 420 air outlet are both connected to the fan 420 accommodating space, and the fan 420 air outlet is connected to the air outlet pipe 210.

[0051] In some embodiments, the fan assembly 400 includes a fan housing 410 and a fan 420, the fan housing 410 is provided with a fan 420 accommodating space, a fan 420 air inlet and a fan 420 air outlet, the fan 420 is installed in the fan 420 accommodating space, the fan 420 air inlet and the fan 420 air outlet are both connected to the fan 420 accommodating space, and the fan 420 air outlet is connected to the air outlet pipe 210.

[0052] The fan housing 410 includes a dedicated space for the fan 420 to accommodate the fan 420. This space should be large enough to ensure proper operation of the fan 420 and provide sufficient heat dissipation. An air inlet for the fan 420 is located on one side or the bottom of the fan housing 410 to draw in outside air. The air inlet should be designed to ensure smooth air flow and may be equipped with a filter to prevent dust and impurities from entering the fan 420. An air outlet for the fan 420 is located on the other side or the top of the fan housing 410 to direct the airflow generated by the fan 420 toward the outlet duct 210. The position and size of the air outlet should match the inlet of the outlet duct 210 to ensure smooth airflow. The fan 420 is fixedly mounted within the fan housing space, typically secured with screws or other fasteners. The selection of the fan 420 should be determined based on the required airflow intensity and noise level. Common types of fans 420 include axial flow fans 420 and centrifugal fans 420. The motor 510 of the fan 420 should have a good heat dissipation design to ensure that it will not overheat during long-term operation.

[0053] In this way, the air entering from the air inlet of the fan 420 is accelerated by the blades of the fan 420 and discharged through the air outlet of the fan 420. The air outlet of the fan 420 is directly connected to the air outlet pipe 210, allowing high-speed airflow to smoothly enter the air outlet pipe 210 and flow out through the multiple air outlets on the air outlet pipe 210, forming a uniformly distributed airflow. This helps ensure that the airflow can be evenly distributed at the air outlets 211 of each electrical device on the air outlet pipe 210, avoiding the airflow from being concentrated in one direction, and improving the coverage and uniformity of the airflow.

[0054] In some embodiments, the base 100 is provided with a plurality of electrical equipment air inlets 120 connected to the accommodating cavity 110, and the plurality of electrical equipment air inlets 120 are arranged in an array. Thus, the array arrangement of the plurality of electrical equipment air inlets 120 increases the total air intake area, allowing more air to enter the accommodating cavity 110. This helps to improve the air intake efficiency of the fan 420 and provide a stronger airflow output.

[0055] In addition, the array-like arrangement of the electrical equipment air inlets 120 ensures that air can enter the accommodating cavity 110 evenly from different directions, reduces turbulence in the airflow, and improves the smoothness and stability of the airflow.

[0056] Furthermore, the plurality of electrical equipment air inlets 120 increases air circulation, which helps to improve the heat dissipation effect inside the electrical equipment 10, especially for the motor 510 and other heat-generating components. This prolongs the service life of the equipment and improves its reliability.

[0057] Based on the above embodiment, the electrical device 10 of the present application has the following advantages: by only partially rotating the air outlet pipe 210 and the mist outlet pipe 220, rather than rotating the entire device as a whole, the required driving force can be significantly reduced. This can reduce the load on the motor 510 and improve the stability and reliability of the device. Since the water tank 310 and other heavy components remain stationary, the center of gravity of the device is more stable during operation, reducing the imbalance problem caused by the rotation of the entire machine and improving safety. Frequent overall rotation may cause additional wear on the mechanical structure of the device, while the partial rotation design reduces such wear and tear, thereby extending the service life of the device. The electrical device 10 integrates the functions of a humidifier and a fan 340, providing users with an integrated solution that can both regulate indoor humidity and provide air circulation. Since heavy objects such as the water tank 310 remain fixed, the risk of the water tank 310 tilting or leaking due to overall rotation is avoided, thereby improving the safety of the device.

[0058] In utility models, unless otherwise expressly specified or limited, terms such as "mounted" and "connected" should be interpreted broadly. For example, these terms may refer to fixed connections, removable connections, or integral connections; mechanical connections; direct connections, indirect connections through an intermediary, internal communication between two components, surface contact only, or surface contact through an intermediary. Those skilled in the art will understand the specific meanings of these terms in utility models based on the specific circumstances.

[0059] In addition, the terms "first", "second", etc. are only used to distinguish the description and cannot be understood as a specific reference or special structure. The description of the term "some embodiments" means that the specific features, structures, materials or characteristics described in conjunction with the embodiment or example are included in at least one embodiment or example of the utility model. In the utility model, the schematic representation of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in a suitable manner in any one or more embodiments or examples. In addition, those skilled in the art can combine and combine different embodiments or examples described in the utility model and the features of different embodiments or examples, unless they are contradictory.

[0060] The above embodiments are only used to illustrate the technical solutions of the utility model, rather than to limit it. Although the utility model is described in detail with reference to the above embodiments, ordinary technicians in this field should understand that they can still modify the technical solutions recorded in the above embodiments, or make equivalent replacements for some of the technical features therein. These modifications or replacements do not deviate the essence of the corresponding technical solutions from the spirit and scope of the technical solutions of the various embodiments of the utility model, and should all be included in the scope of protection of the utility model.

Claims

1. An electrical device, characterized in that: include: A base, wherein the base is provided with a receiving cavity; A pipe assembly, the pipe assembly is located outside the accommodating cavity, the pipe assembly includes an air outlet pipe and a mist outlet pipe, the mist outlet pipe is connected to the air outlet pipe, the air outlet pipe is rotatably connected to the base, the mist outlet pipe has a mist outlet, and the air outlet pipe has an air outlet for electrical equipment; an atomizing assembly, the atomizing assembly being installed in the accommodating chamber and being used to generate water mist so as to guide the water mist to the mist outlet pipe and flow out from the mist outlet; A fan assembly is installed in the accommodating cavity, and is used to drive air to flow toward the air outlet pipe and out of the air outlet of the electrical equipment; as well as A driving assembly is connected to the base and the air outlet pipe, and the driving assembly can drive the air outlet pipe to rotate relative to the base.

2. The electrical equipment according to claim 1, characterized in that: The driving assembly includes a motor, a first gear and a second gear. The motor is installed on the base. The rotating shaft of the motor is transmission-connected to the first gear. The second gear is arranged around the air outlet pipe and is meshedly connected to the first gear.

3. The electrical equipment according to claim 1, characterized in that: The air outlet pipe and the mist outlet pipe both extend along the height direction of the base. The air outlet pipe is provided with a mist outlet pipe accommodating space and an avoidance opening. The mist outlet pipe accommodating space and the avoidance opening extend along the length direction of the air outlet pipe. The mist outlet pipe is located in the mist outlet pipe accommodating space, and the mist outlet is connected to the avoidance opening.

4. The electrical equipment according to claim 3, characterized in that: There are multiple air outlets for electrical equipment, and air outlets for electrical equipment are provided on both sides of the avoidance opening. Each air outlet for electrical equipment extends along the length direction of the air outlet pipe.

5. The electrical equipment according to claim 3, characterized in that: The air outlet pipe is arranged around the mist outlet pipe, and the cross section of the mist outlet pipe is non-circular.

6. The electrical equipment according to claim 1, characterized in that: The atomization assembly includes a water tank, an atomizer, and an atomization pipeline. The water tank is used to supply water to the atomizer. The atomizer is used to generate water mist and guide the water mist to the mist outlet pipe through the atomization pipeline.

7. The electrical equipment according to claim 6, characterized in that: The atomizing assembly further includes a fan, and the electrical device is used to drive the water mist in the atomizing pipe to flow toward the mist outlet pipe and out from the mist outlet.

8. The electrical equipment according to claim 6, characterized in that: The air outlet pipe further includes an avoidance gap, and the atomization pipeline is located in the avoidance gap.

9. The electrical equipment according to claim 1, characterized in that: The fan assembly includes a fan housing and a fan, the fan housing is provided with a fan accommodating space, a fan air inlet and a fan air outlet, the fan is installed in the fan accommodating space, the fan air inlet and the fan air outlet are both connected to the fan accommodating space, and the fan air outlet is connected to the air outlet pipe.

10. The electrical equipment according to claim 1, characterized in that: The base is provided with a plurality of electrical equipment air inlets connected to the accommodating cavity, and the plurality of electrical equipment air inlets are arranged in an array.